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Reference on EC 1.3.3.5 - bilirubin oxidase

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REF.
AUTHORS
TITLE
JOURNAL
VOL.
PAGES
YEAR
ORGANISM (UNIPROT)
PUBMED ID
SOURCE
Murao, S.; Tanaka, N.
Isolation and identification of a microorganism producing bilirubin oxidase
Agric. Biol. Chem.
46
2031-2034
1982
Albifimbria verrucaria, Striaticonidium cinctum, Paramyrothecium roridum
-
Manually annotated by BRENDA team
Tanaka, N.; Murao, S.
Purification and some properties of bilirubin oxidase of Myrotheticum verrucaria MT-1
Agric. Biol. Chem.
46
2499-2503
1982
Albifimbria verrucaria
-
Manually annotated by BRENDA team
Yokosuka, O.; Billing, B.
Enzymatic oxidation of bilirubin by intestinal mucosa
Biochim. Biophys. Acta
923
268-274
1987
BRENDA: Rattus norvegicus
Textmining: Rattus
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Gotoh, Y.; Kondo, Y.; Kaji, H.; Takeda, A.; Samejima, T.
Characterization of copper atoms in bilirubin oxidase by spectroscopic analyses
J. Biochem.
106
621-626
1989
BRENDA: Albifimbria verrucaria
Textmining: Tharsalea heteronea
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Sung, C.; Lavin, A.; Klibanov, A.M.; Langer, R.
An immobilized enzyme reactor for the detoxification of bilirubin
Biotechnol. Bioeng.
28
1531-1539
1986
BRENDA: Albifimbria verrucaria
Textmining: Homo sapiens
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Cardenas-Vazquez, R.; Yokosuka, O.; Billing, B.H.
Enzymic oxidation of unconjugated bilirubin by rat liver
Biochem. J.
236
625-633
1986
BRENDA: Rattus norvegicus
Textmining: Rattus
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Murao, S.; Tanaka, N.
A new enzyme "bilirubin oxidase" produced by Myrotheticum verrucaria MT-1
Agric. Biol. Chem.
45
2383-2384
1981
Albifimbria verrucaria
-
Manually annotated by BRENDA team
Tanaka, N.; Murao, S.
Difference between various copper-containing enzymes (Polyporus laccase, mushroom tyrosinase and cucumber ascorbate oxidase) and bilirubin oxidase
Agric. Biol. Chem.
47
1627-1628
1983
Albifimbria verrucaria, Albifimbria verrucaria MT-1
-
Manually annotated by BRENDA team
Skrika-Alexopoulos, E.; Freedman, R.B.
Factors affecting enzyme characteristics of bilirubin oxidase suspensions in organic solvents
Biotechnol. Bioeng.
41
887-893
1993
Albifimbria verrucaria
Manually annotated by BRENDA team
Skrika-Alexopoulos, E.; Muir, J.; Freedman, R.B.
Stability of bilirubin oxidase in organic solvent media: A comparative study on two low-water systems
Biotechnol. Bioeng.
41
894-899
1993
Albifimbria verrucaria
Manually annotated by BRENDA team
Koikeda, S.; Ando, K.; Kaji, H.; Inoue, T.; Murao, S.; Takeuchi, K.; Samejima, T.
Molecular cloning of the gene for bilirubin oxidase from Myrothecium verrucaria and its expression in yeast
J. Biol. Chem.
268
18801-18809
1993
BRENDA: Albifimbria verrucaria
Textmining: Saccharomyces cerevisiae, Homo sapiens, Verrucaria, Tharsalea heteronea
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Male, K.B.; Luong, J.H.T.
Characterization and kinetic studies of a novel dye prepared from the oxidation of a water-soluble 1,1'-dimethylferrocene-2-hydroxypropyl-.beta-cyclodextrin complex using immobilized bilirubin oxidase
Enzyme Microb. Technol.
16
425-431
1994
Albifimbria verrucaria
-
Manually annotated by BRENDA team
Samejima, T.; Wu, C.S.; Shiboya, K.; Kaji, H.; Koikeda, S.; Ando, K.; Yang, J.T.
Conformation of bilirubin oxidase in native and denatured states
J. Protein Chem.
13
307-313
1994
Albifimbria verrucaria
Manually annotated by BRENDA team
Xu, F.; Shin, W.; Brown, S.H.; Wahleithner, J.A.; Sundaram, U.M.; Solomon, E.I.
A study of a series of recombinant fungal laccases and bilirubin oxidase that exhibit significant differences in redox potential, substrate specificity, and stability
Biochim. Biophys. Acta
1292
303-311
1996
BRENDA: Albifimbria verrucaria
Textmining: Cucurbita pepo var. melopepo, Myceliophthora, Polyporus, Rhizoctonia, Rhizoctonia solani, Scytalidium, Thermothelomyces thermophilus
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Nakai, Y.; Yoshioka, S.; Aso, Y.; Kojima, S.
Solid-state rehydration-induced recovery of bilirubin oxidase activity in lyophilized formulations reduced during freeze-drying
Chem. Pharm. Bull.
46
1031-1033
1998
Albifimbria verrucaria
-
Manually annotated by BRENDA team
Chen, J.P.; Wang, H.Y.
Improved properties of bilirubin oxidase by entrapment in alginate-silicate sol-gel matrix
Biotechnol. Tech.
12
851-853
1998
Albifimbria verrucaria
Manually annotated by BRENDA team
Zhou, X.M.; Liu, J.W.; Zou, X.; Chen, J.J.
Monitoring catalytic reaction of bilirubin oxidase and determination of bilirubin and bilirubin oxidase activity by capillary electrophoresis
Electrophoresis
20
1916-1920
1999
Albifimbria verrucaria
Manually annotated by BRENDA team
Shimizu, A.; Kwon, J.H.; Sasaki, T.; Satoh, T.; Sakurai, N.; Sakurai, T.; Yamaguchi, S.; Samejima, T.
Myrothecium verrucaria Bilirubin Oxidase and Its Mutants for Potential Copper Ligands
Biochemistry
38
3034-3042
1999
BRENDA: Albifimbria verrucaria
Textmining: Aspergillus oryzae, Lycaeninae
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Yoshioka, S.; Aso, Y.; Kojima, S.; Tanimoto, T.
Effect of polymer excipients on the enzyme activity of lyophilized bilirubin oxidase and beta-galactosidase formulations
Chem. Pharm. Bull.
48
283-285
2000
BRENDA: Albifimbria verrucaria
Textmining: potato virus A
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Itoh, S.; Kusaka, T.; Imai, T.; Isobe, K.; Onishi, S.
Effects of bilirubin and its photoisomers on direct bilirubin measurement using bilirubin oxidase
Ann. Clin. Biochem.
37
452-456
2000
BRENDA: Albifimbria verrucaria
Textmining: Homo sapiens, Gossypium hirsutum
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Kim, H.H.; Zhang, Y.; Heller, A.
Bilirubin oxidase label for an enzyme-linked affinity assay with O2 as substrate in a neutral pH NACL solution
Anal. Chem.
76
2411-2414
2004
Albifimbria verrucaria
Manually annotated by BRENDA team
Kang, C.; Shin, H.; Zhang, Y.; Heller, A.
Deactivation of bilirubin oxidase by a product of the reaction of urate and O2
Bioelectrochemistry
65
83-88
2004
Myrothecium sp.
Manually annotated by BRENDA team
Sakurai, T.; Zhan, L.; Fujita, T.; Kataoka, K.; Shimizu, A.; Samejima, T.; Yamaguchi, S.
Authentic and recombinant bilirubin oxidases are in different resting forms
Biosci. Biotechnol. Biochem.
67
1157-1159
2003
BRENDA: Albifimbria verrucaria
Textmining: Aspergillus oryzae, Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Zoppellaro, G.; Sakurai, N.; Kataoka, K.; Sakurai, T.
The reversible change in the redox state of type I Cu in Myrothecium verrucaria bilirubin oxidase depending on pH
Biosci. Biotechnol. Biochem.
68
1998-2000
2004
BRENDA: Albifimbria verrucaria
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Sulistyaningdyah, W.T.; Ogawa, J.; Tanaka, H.; Maeda, C.; Shimizu, S.
Characterization of alkaliphilic laccase activity in the culture supernatant of Myrothecium verrucaria 24G-4 in comparison with bilirubin oxidase
FEMS Microbiol. Lett.
230
209-214
2004
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Shimizu, A.; Samejima, T.; Hirota, S.; Yamaguchi, S.; Sakurai, N.; Sakurai, T.
Type III Cu mutants of Myrothecium verrucaria bilirubin oxidase
J. Biochem.
133
767-772
2003
BRENDA: Albifimbria verrucaria
Textmining: Aspergillus oryzae
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Tsujimura, S.; Kano, K.; Ikeda, T.
Bilirubin oxidase in multiple layers catalyzes four-electron reduction of dioxygen to water without redox mediators
J. Electroanal. Chem.
576
113-120
2005
Myrothecium sp.
-
Manually annotated by BRENDA team
Kataoka, K.; Tanaka, K.; Sakai, Y.; Sakurai, T.
High-level expression of Myrothecium verrucaria bilirubin oxidase in Pichia pastoris, and its facile purification and characterization
Protein Expr. Purif.
41
77-83
2005
BRENDA: Albifimbria verrucaria
Textmining: Komagataella pastoris, Saccharomyces cerevisiae, Aspergillus oryzae
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Wang, T.P.; Quintanar, L.; Severance, S.; Solomon, E.I.; Kosman, D.J.
Targeted suppression of the ferroxidase and iron trafficking activities of the multicopper oxidase Fet3p from Saccharomyces cerevisiae
J. Biol. Inorg. Chem.
8
611-620
2003
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Bunce, J.; Achila, D.; Hetrick, E.; Lesley, L.; Huffman, D.L.
Copper transfer studies between the N-terminal copper binding domains one and four of human Wilson protein
Biochim. Biophys. Acta
1760
907-912
2006
Homo sapiens, Homo sapiens (Q64446)
Automatic Mining of ENzyme DAta
Sakasegawa, S.; Ishikawa, H.; Imamura, S.; Sakuraba, H.; Goda, S.; Ohshima, T.
Bilirubin oxidase activity of Bacillus subtilis CotA
Appl. Environ. Microbiol.
72
972-975
2006
Bacillus subtilis
Manually annotated by BRENDA team
Griffiths, T.A.; Mauk, A.G.; MacGillivray, R.T.
Recombinant expression and functional characterization of human hephaestin: a multicopper oxidase with ferroxidase activity
Biochemistry
44
14725-14731
2005
Homo sapiens
Automatic Mining of ENzyme DAta
Kataoka, K.; Kitagawa, R.; Inoue, M.; Naruse, D.; Sakurai, T.; Huang, H.W.
Point mutations at the type I Cu ligands, Cys457 and Met467, and at the putative proton donor, Asp105, in Myrothecium verrucaria bilirubin oxidase and reactions with dioxygen
Biochemistry
44
7004-7012
2005
Albifimbria verrucaria
Manually annotated by BRENDA team
Stoj, C.S.; Augustine, A.J.; Zeigler, L.; Solomon, E.I.; Kosman, D.J.
Structural basis of the ferrous iron specificity of the yeast ferroxidase, Fet3p
Biochemistry
45
12741-12749
2006
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Christenson, A.; Shleev, S.; Mano, N.; Heller, A.; Gorton, L.
Redox potentials of the blue copper sites of bilirubin oxidases
Biochim. Biophys. Acta
1757
1634-1641
2006
BRENDA: Ganoderma tsunodae, Albifimbria verrucaria (Q12737), Albifimbria verrucaria
Textmining: Tharsalea heteronea, Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Zhang, L.; Zhang, X.; Luo, Z.Y.
Value of bilirubin oxidase and its mutants in the diagnosis of hyperbilirubinemia
Di Yi Jun Yi Da Xue Xue Bao
25
1337-1340
2005
BRENDA: Aspergillus oryzae
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Otsuka, K.; Sugihara, T.; Tsujino, Y.; Osakai, T.; Tamiya, E.
Electrochemical consideration on the optimum pH of bilirubin oxidase
Anal. Biochem.
370
98-106
2007
BRENDA: Albifimbria verrucaria, Albifimbria verrucaria BO3
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Ikeda, T.; Tatsumi, H.; Katano, H.; Wanibuchi, M.; Hibi, T.; Kajino, T.
A bioelectrocatalysis method for the kinetic measurement of thermal inactivation of a redox enzyme, bilirubin oxidase
Anal. Sci.
24
237-241
2008
Albifimbria verrucaria
Manually annotated by BRENDA team
Dronov, R.; Kurth, D.G.; Moehwald, H.; Scheller, F.W.; Lisdat, F.
Communication in a protein stack: electron transfer between cytochrome c and bilirubin oxidase within a polyelectrolyte multilayer
Angew. Chem.
47
3000-3003
2008
BRENDA: Albifimbria verrucaria
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Kataoka, K.; Tsukamoto, K.; Kitagawa, R.; Ito, T.; Sakurai, T.
Compensatory binding of an asparagine residue to the coordination-unsaturated type I Cu center in bilirubin oxidase mutants
Biochem. Biophys. Res. Commun.
371
416-419
2008
BRENDA: Albifimbria verrucaria
Textmining: Tharsalea heteronea
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Ramirez, P.; Mano, N.; Andreu, R.; Ruzgas, T.; Heller, A.; Gorton, L.; Shleev, S.
Direct electron transfer from graphite and functionalized gold electrodes to T1 and T2/T3 copper centers of bilirubin oxidase
Biochim. Biophys. Acta
1777
1364-1369
2008
BRENDA: Ganoderma tsunodae
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Ivnitski, D.; Artyushkova, K.; Atanassov, P.
Surface characterization and direct electrochemistry of redox copper centers of bilirubin oxidase from fungi Myrothecium verrucaria
Bioelectrochemistry
74
101-110
2008
BRENDA: Albifimbria verrucaria
Textmining: Fungi
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Sakurai, T.; Kataoka, K.
Basic and applied features of multicopper oxidases, CueO, bilirubin oxidase, and laccase
Chem. Rec.
7
220-229
2007
BRENDA: Albifimbria verrucaria
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Dronov, R.; Kurth, D.G.; Scheller, F.W.; Lisdat, F.
Direct and cytochrome c mediated electrochemistry of bilirubin oxidase on gold
Electroanalysis
19
1642-1646
2007
Albifimbria verrucaria
-
Manually annotated by BRENDA team
Shin, H.; Kang, C.; Heller, A.
Irreversible and reversible deactivation of bilirubin oxidase by urate
Electroanalysis
19
638-643
2007
Ganoderma tsunodae
-
Manually annotated by BRENDA team
Weigel, M.C.; Tritscher, E.; Lisdat, F.
Direct electrochemical conversion of bilirubin oxidase at carbon nanotube-modified glassy carbon electrodes
Electrochem. Commun.
9
689-693
2007
Albifimbria verrucaria
-
Manually annotated by BRENDA team
Liu, Y.; Zhang, X.; Yan, K.; Wang, H.; Wu, H.
Decolorization of indigo carmine by crude bilirubin oxidase from Myrothecium sp
Fresenius Environ. Bull.
16
1389-1394
2007
Myrothecium sp.
-
Manually annotated by BRENDA team
Zhang, X.; Liu, Y.; Yan, K.; Wu, H.
Decolorization of anthraquinone-type dye by bilirubin oxidase-producing nonligninolytic fungus Myrothecium sp. IMER1
J. Biosci. Bioeng.
104
104-110
2007
BRENDA: Myrothecium sp., Myrothecium sp. IMER1
Textmining: Myrothecium, Solanum tuberosum
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Kamitaka, Y.; Tsujimura, S.; Kataoka, K.; Sakurai, T.; Ikeda, T.; Kano, K.
Effects of axial ligand mutation of the type I copper site in bilirubin oxidase on direct electron transfer-type bioelectrocatalytic reduction of dioxygen
J. Electroanal. Chem.
601
119-124
2007
Albifimbria verrucaria
-
Manually annotated by BRENDA team
Lim, J.; Cirigliano, N.; Wang, J.; Dunn, B.
Direct electron transfer in nanostructured sol-gel electrodes containing bilirubin oxidase
Phys. Chem. Chem. Phys.
9
1809-1814
2007
BRENDA: Albifimbria verrucaria
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Katano, H.; Tatsumi, H.; Hibi, T.; Ikeda, T.; Tsukatani, T.
Application of polyammonium cations to enzyme-immobilized electrode: application as enzyme stabilizer for bilirubin oxidase
Anal. Sci.
24
1421-1424
2008
Albifimbria verrucaria
Manually annotated by BRENDA team
Katano, H.; Uematsu, K.; Hibi, T.; Ikeda, T.; Tsukatani, T.
Application of poly[oxyethylene(dimethylimino)propyl-(dimethylimino)ethylene] as enzyme stabilizer for bilirubin oxidase immobilized electrode
Anal. Sci.
25
1077-1081
2009
Albifimbria verrucaria
Manually annotated by BRENDA team
Dittmer, N.T.; Gorman, M.J.; Kanost, M.R.
Characterization of endogenous and recombinant forms of laccase-2, a multicopper oxidase from the tobacco hornworm, Manduca sexta
Insect Biochem. Mol. Biol.
39
596-606
2009
Manduca sexta, Manduca sexta (Q8I8Y0)
Automatic Mining of ENzyme DAta
Terzulli, A.J.; Kosman, D.J.
The Fox1 ferroxidase of Chlamydomonas reinhardtii: a new multicopper oxidase structural paradigm
J. Biol. Inorg. Chem.
14
315-325
2009
Chlamydomonas reinhardtii, Chlamydomonas reinhardtii (A8IZT9)
Automatic Mining of ENzyme DAta
Mizutani, K.; Toyoda, M.; Sagara, K.; Takahashi, N.; Sato, A.; Kamitaka, Y.; Tsujimura, S.; Nakanishi, Y.; Sugiura, T.; Yamaguchi, S.; Kano, K.; Mikami, B.
X-ray analysis of bilirubin oxidase from Myrothecium verrucaria at 2.3 A resolution using a twinned crystal
Acta Crystallogr. Sect. F
66
765-770
2010
BRENDA: Albifimbria verrucaria (Q12737), Albifimbria verrucaria, Albifimbria verrucaria MT-1 (Q12737)
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Ikeda, T.; Uematsu, K.; Ma, H.; Katano, H.; Hibi, T.
Measurements of reversible and irreversible inactivation processes of a redox enzyme, bilirubin oxidase, by electrochemical methods based on bioelectrocatalysis
Anal. Sci.
25
1283-1288
2009
Albifimbria verrucaria
Manually annotated by BRENDA team
Pakhadnia, Y.G.; Malinouski, N.I.; Lapko, A.G.
Purification and characteristics of an enzyme with both bilirubin oxidase and laccase activities from mycelium of the basidiomycete Pleurotus ostreatus
Biochemistry (Moscow)
74
1027-1034
2009
Pleurotus ostreatus
Automatic Mining of ENzyme DAta
Iwaki, M.; Kataoka, K.; Kajino, T.; Sugiyama, R.; Morishita, H.; Sakurai, T.
ATR-FTIR study of the protonation states of the Glu residue in the multicopper oxidases, CueO and bilirubin oxidase
FEBS Lett.
584
4027-4031
2010
Albifimbria verrucaria (Q12737)
Manually annotated by BRENDA team
Liu, Y.; Huang, J.; Zhang, X.
Decolorization and biodegradation of remazol brilliant blue R by bilirubin oxidase
J. Biosci. Bioeng.
108
496-500
2009
BRENDA: Albifimbria verrucaria, Albifimbria verrucaria IMER1
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Dos Santos, L.; Climent, V.; Blanford, C.F.; Armstrong, F.A.
Mechanistic studies of the blue Cu enzyme, bilirubin oxidase, as a highly efficient electrocatalyst for the oxygen reduction reaction
Phys. Chem. Chem. Phys.
12
13962-13974
2010
BRENDA: Albifimbria verrucaria
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Ziegler, L.; Terzulli, A.; Sedlak, E.; Kosman, D.J.
Core glycan in the yeast multicopper ferroxidase, Fet3p: a case study of N-linked glycosylation, protein maturation, and stability
Protein Sci.
19
1739-1750
2010
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Molina-Quintero, L.R.; Lucas-Elio, P.; Sanchez-Amat, A.
Regulation of the Marinomonas mediterranea antimicrobial protein lysine oxidase by L-lysine and the sensor histidine kinase PpoS
Appl. Environ. Microbiol.
76
6141-6149
2010
Marinomonas mediterranea, Marinomonas mediterranea (F2JXJ3), Microbiota, Posidonia oceanica, bacterium, plant
Automatic Mining of ENzyme DAta
Durand, F.; Gounel, S.; Kjaergaard, C.H.; Solomon, E.I.; Mano, N.
Bilirubin oxidase from Magnaporthe oryzae: an attractive new enzyme for biotechnological applications
Appl. Microbiol. Biotechnol.
96
1489-1498
2012
BRENDA: Pyricularia oryzae, Pyricularia oryzae ATCC MYA-4617
Textmining: Komagataella pastoris, Lycaeninae, Verrucaria, Albifimbria verrucaria
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Mano, N.
Features and applications of bilirubin oxidases
Appl. Microbiol. Biotechnol.
96
301-307
2012
Aspergillus sojae, Penicillium janthinellum, Pyricularia oryzae, Ganoderma tsunodae, Bacillus pumilus (A8FAG9), Bacillus subtilis (P07788), Albifimbria verrucaria (Q12737), Bacillus licheniformis (Q65MU7), Pleurotus ostreatus (Q9UVY4)
Manually annotated by BRENDA team
Durand, F.; Kjaergaard, C.H.; Suraniti, E.; Gounel, S.; Hadt, R.G.; Solomon, E.I.; Mano, N.
Bilirubin oxidase from Bacillus pumilus: a promising enzyme for the elaboration of efficient cathodes in biofuel cells
Biosens. Bioelectron.
35
140-146
2012
BRENDA: Bacillus pumilus
Textmining: Escherichia coli, Bacillus subtilis, Lycaeninae, Ganoderma tsunodae, Albifimbria verrucaria
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Fernandes, A.T.; Damas, J.M.; Todorovic, S.; Huber, R.; Baratto, M.C.; Pogni, R.; Soares, C.M.; Martins, L.O.
The multicopper oxidase from the archaeon Pyrobaculum aerophilum shows nitrous oxide reductase activity
FEBS J.
277
3176-3189
2010
Pyrobaculum aerophilum, archaeon, Escherichia coli
Automatic Mining of ENzyme DAta
Han, X.; Zhao, M.; Lu, L.; Liu, Y.
Purification, characterization and decolorization of bilirubin oxidase from Myrothecium verrucaria 3.2190
Fungal Biol.
116
863-871
2012
BRENDA: Albifimbria verrucaria, Albifimbria verrucaria 3.2190
Textmining: Indigofera, Verrucaria
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Durand, F.; Gounel, S.; Mano, N.
Purification and characterization of a new laccase from the filamentous fungus Podospora anserina
Protein Expr. Purif.
88
61-66
2013
Albifimbria verrucaria, Podospora anserina, Komagataella pastoris, Lycaeninae
Automatic Mining of ENzyme DAta
Rowland, J.L.; Niederweis, M.
A multicopper oxidase is required for copper resistance in Mycobacterium tuberculosis
J. Bacteriol.
195
3724-3733
2013
Mycobacterium tuberculosis
Automatic Mining of ENzyme DAta
Uthandi, S.; Prunetti, L.; De Vera, I.M.; Fanucci, G.E.; Angerhofer, A.; Maupin-Furlow, J.A.
Enhanced archaeal laccase production in recombinant Escherichia coli by modification of N-terminal propeptide and twin arginine translocation motifs
J. Ind. Microbiol. Biotechnol.
39
1523-1532
2012
Haloferax, Escherichia coli, Haloferax volcanii, Haloferax volcanii (D4GPK6)
Automatic Mining of ENzyme DAta
Classen, T.; Pietruszka, J.; Schuback, S.M.
A new multicopper oxidase from Gram-positive bacterium Rhodococcus erythropolis with activity modulating methionine rich tail
Protein Expr. Purif.
89
97-108
2013
Rhodococcus erythropolis, bacterium
Automatic Mining of ENzyme DAta
Sakuraba, H.; Koga, K.; Yoneda, K.; Kashima, Y.; Ohshima, T.
Structure of a multicopper oxidase from the hyperthermophilic archaeon Pyrobaculum aerophilum
Acta Crystallogr. Sect. F
67
753-757
2011
Pyrobaculum aerophilum, Pyrobaculum aerophilum (Q8ZWA8), archaeon
Automatic Mining of ENzyme DAta
Sakamoto, H.; Uchii, T.; Yamaguchi, K.; Koto, A.; Takamura, E.; Satomura, T.; Sakuraba, H.; Ohshima, T.; Suye, S.
Construction of a biocathode using the multicopper oxidase from the hyperthermophilic archaeon, Pyrobaculum aerophilum: towards a long-life biobattery
Biotechnol. Lett.
37
1399-1404
2015
Pyrobaculum aerophilum (Q8ZUN8), Pyrobaculum aerophilum, Pyrobaculum aerophilum (Q8ZWA8), archaeon
Automatic Mining of ENzyme DAta
Scherbahn, V.; Putze, M.T.; Dietzel, B.; Heinlein, T.; Schneider, J.J.; Lisdat, F.
Biofuel cells based on direct enzyme-electrode contacts using PQQ-dependent glucose dehydrogenase/bilirubin oxidase and modified carbon nanotube materials
Biosens. Bioelectron.
61
631-638
2014
Homo sapiens, Electron
Automatic Mining of ENzyme DAta
Dick, G.J.; Torpey, J.W.; Beveridge, T.J.; Tebo, B.M.
Direct identification of a bacterial manganese(II) oxidase, the multicopper oxidase MnxG, from spores of several different marine Bacillus species
Appl. Environ. Microbiol.
74
1527-1534
2008
Bacillus
Automatic Mining of ENzyme DAta
Geszvain, K.; McCarthy, J.K.; Tebo, B.M.
Elimination of manganese(II,III) oxidation in Pseudomonas putida GB-1 by a double knockout of two putative multicopper oxidase genes
Appl. Environ. Microbiol.
79
357-366
2013
Pseudomonas putida GB-1
Automatic Mining of ENzyme DAta
Francis, C.A.; Casciotti, K.L.; Tebo, B.M.
Localization of Mn(II)-oxidizing activity and the putative multicopper oxidase, MnxG, to the exosporium of the marine Bacillus sp. strain SG-1
Arch. Microbiol.
178
450-456
2002
Bacillus sp. (in: Bacteria), Exosporium, Novibacillus thermophilus
Automatic Mining of ENzyme DAta
Jia, H.; Gao, Z.; Ma, Y.; Zhong, C.; Wang, C.; Zhou, H.; Wei, P.
Preparation and characterization of a highly stable phenoxazinone synthase nanogel
Chem. Cent. J.
10
34
2016
Streptomyces
Automatic Mining of ENzyme DAta
Ridge, J.P.; Lin, M.; Larsen, E.I.; Fegan, M.; McEwan, A.G.; Sly, L.I.
A multicopper oxidase is essential for manganese oxidation and laccase-like activity in Pedomicrobium sp. ACM 3067
Environ. Microbiol.
9
944-953
2007
Pedomicrobium
Automatic Mining of ENzyme DAta
Tao, L.; Stich, T.A.; Butterfield, C.N.; Romano, C.A.; Spiro, T.G.; Tebo, B.M.; Casey, W.H.; Britt, R.D.
Mn(II) binding and subsequent oxidation by the multicopper oxidase MnxG investigated by electron paramagnetic resonance spectroscopy
J. Am. Chem. Soc.
137
10563-10575
2015
Electron
Automatic Mining of ENzyme DAta
Butterfield, C.N.; Tebo, B.M.
Substrate specificity and copper loading of the manganese-oxidizing multicopper oxidase Mnx from Bacillus sp. PL-12
Metallomics
9
183-191
2017
Bacillus sp. (in: Bacteria)
Automatic Mining of ENzyme DAta
Agullo, L.; Romero-Silva, M.J.; Domenech, M.; Seeger, M.
p-Cymene promotes its catabolism through the p-cymene and the p-cumate pathways, activates a stress response and reduces the biofilm formation in Burkholderia xenovorans LB400
PLoS ONE
12
e0169544
2017
Paraburkholderia xenovorans
Automatic Mining of ENzyme DAta
Afreen, S.; Shamsi, T.N.; Baig, M.A.; Ahmad, N.; Fatima, S.; Qureshi, M.I.; Hassan, M.I.; Fatma, T.
A novel multicopper oxidase (laccase) from cyanobacteria Purification, characterization with potential in the decolorization of anthraquinonic dye
PLoS ONE
12
e0175144
2017
Cyanobacteria
Automatic Mining of ENzyme DAta
Su, J.; Bao, P.; Bai, T.; Deng, L.; Wu, H.; Liu, F.; He, J.
CotA, a multicopper oxidase from Bacillus pumilus WH4, exhibits manganese-oxidase activity
PLoS ONE
8
e60573
2013
Bacillus pumilus WH4, Bacillus pumilus WH4 (I3XLC2)
Automatic Mining of ENzyme DAta
Khlupova, M.E.; Vasileva, I.S.; Shumakovich, G.P.; Morozova, O.V.; Chertkov, V.A.; Shestakova, A.K.; Kisin, A.V.; Yaropolov, A.I.
Enzymatic polymerization of dihydroquercetin using bilirubin oxidase
Biochemistry (Moscow)
80
233-241
2015
Albifimbria verrucaria (Q12737)
Manually annotated by BRENDA team
Boonen, F.; Vandamme, A.M.; Etoundi, E.; Pigneur, L.M.; Housen, I.
Identification and characterization of a novel multicopper oxidase from Acidomyces acidophilus with ferroxidase activity
Biochimie
102
37-46
2014
Acidomyces acidophilus, Acidomyces acidophilus (M9PLY0)
Automatic Mining of ENzyme DAta
Santoro, C.; Babanova, S.; Erable, B.; Schuler, A.; Atanassov, P.
Bilirubin oxidase based enzymatic air-breathing cathode operation under pristine and contaminated conditions
Bioelectrochemistry
108
1-7
2016
BRENDA: Albifimbria verrucaria (Q12737)
Textmining: Bacteria, activated sludge metagenome
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Filip, J.; Tkac, J.
The pH dependence of the cathodic peak potential of the active sites in bilirubin oxidase
Bioelectrochemistry
96
14-20
2014
Albifimbria verrucaria (Q12737)
Manually annotated by BRENDA team
Filip, J.; Andicsova-Eckstein, A.; Vikartovska, A.; Tkac, J.
Immobilization of bilirubin oxidase on graphene oxide flakes with different negative charge density for oxygen reduction. The effect of GO charge density on enzyme coverage, electron transfer rate and current density
Biosens. Bioelectron.
89
384-389
2017
BRENDA: Albifimbria verrucaria (Q12737)
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Navaee, A.; Salimi, A.; Jafari, F.
Electrochemical pretreatment of amino-carbon nanotubes on graphene support as a novel platform for bilirubin oxidase with improved bioelectrocatalytic activity towards oxygen reduction
Chemistry
21
4949-4953
2015
Albifimbria verrucaria (Q12737)
Manually annotated by BRENDA team
Tsujimura, S.; Murata, K.
Electrochemical oxygen reduction catalyzed by bilirubin oxidase with the aid of 2,2'-azinobis(3-ethylbenzothiazolin-6-sulfonate) on a MgO-template carbon electrode
Electrochim. Acta
180
555-559
2015
Bacillus pumilus (A8FAG9), Bacillus pumilus SAFR-032 (A8FAG9)
-
Manually annotated by BRENDA team
Cortes, L.; Roberts, B.R.; Wedd, A.G.; Xiao, Z.
Molecular aspects of a robust assay for ferroxidase function of ceruloplasmin
Inorg. Chem.
56
5275-5284
2017
Mammalia
Automatic Mining of ENzyme DAta
Gounel, S.; Rouhana, J.; Stines-Chaumeil, C.; Cadet, M.; Mano, N.
Increasing the catalytic activity of bilirubin oxidase from Bacillus pumilus importance of host strain and chaperones proteins
J. Biotechnol.
230
19-25
2016
BRENDA: Bacillus pumilus (A8FAG9), Bacillus pumilus, Bacillus pumilus SAFR-032 (A8FAG9)
Textmining: Escherichia coli
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Tasca, F.; Farias, D.; Castro, C.; Acuna-Rougier, C.; Antiochia, R.
Bilirubin oxidase from Myrothecium verrucaria physically absorbed on graphite electrodes. Insights into the alternative resting form and the sources of activity loss
PLoS ONE
10
e0132181
2015
Albifimbria verrucaria (Q12737), Albifimbria verrucaria
Manually annotated by BRENDA team
Yamamoto, K.; Matsumoto, T.; Shimada, S.; Tanaka, T.; Kondo, A.
Starchy biomass-powered enzymatic biofuel cell based on amylases and glucose oxidase multi-immobilized bioanode
New Biotechnol.
30
531-535
2013
BRENDA: Albifimbria verrucaria (Q12737)
Textmining: Myrothecium, Oryza sativa
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Kataoka, K.; Hirota, S.; Maeda, Y.; Kogi, H.; Shinohara, N.; Sekimoto, M.; Sakurai, T.
Enhancement of laccase activity through the construction and breakdown of a hydrogen bond at the type I copper center in Escherichia coli CueO and the deletion mutant Deltaalpha5-7 CueO
Biochemistry
50
558-565
2011
Escherichia coli, Escherichia coli (P36649)
Automatic Mining of ENzyme DAta
Djoko, K.Y.; Chong, L.X.; Wedd, A.G.; Xiao, Z.
Reaction mechanisms of the multicopper oxidase CueO from Escherichia coli support its functional role as a cuprous oxidase
J. Am. Chem. Soc.
132
2005-2015
2010
Escherichia coli, Escherichia coli (P36649)
Automatic Mining of ENzyme DAta
Rowland, J.L.; Niederweis, M.
A multicopper oxidase is required for copper resistance in Mycobacterium tuberculosis
J. Bacteriol.
195
3724-3373
2013
Mycobacterium tuberculosis, Mycobacterium tuberculosis (I6WZK7)
Automatic Mining of ENzyme DAta
Roberts, S.; Wildner, G.; Grass, G.; Weichsel, A.; Ambrus, A.; Rensing, C.; Montfort, W.
A labile regulatory copper ion lies near the T1 copper site in the multicopper oxidase CueO
J. Biol. Chem.
278
31958-31963
2003
Escherichia coli, Escherichia coli (P36649)
Automatic Mining of ENzyme DAta
Kataoka, K.; Komori, H.; Ueki, Y.; Konno, Y.; Kamitaka, Y.; Kurose, S.; Tsujimura, S.; Higuchi, Y.; Kano, K.; Seo, D.; Sakurai, T.
Structure and function of the engineered multicopper oxidase CueO from Escherichia coli - deletion of the methionine-rich helical region covering the substrate-binding site
J. Mol. Biol.
373
141-152
2007
Escherichia coli, Escherichia coli (P36649)
Automatic Mining of ENzyme DAta
Cortes, L.; Wedd, A.G.; Xiao, Z.
The functional roles of the three copper sites associated with the methionine-rich insert in the multicopper oxidase CueO from E. coli
Metallomics
7
776-785
2015
Escherichia coli, Escherichia coli (P36649)
Automatic Mining of ENzyme DAta
Mancini, S.; Kumar, R.; Mishra, V.; Solioz, M.
Desulfovibrio DA2_CueO is a novel multicopper oxidase with cuprous, ferrous and phenol oxidase activity
Microbiology
163
1229-1236
2017
Desulfovibrio
Automatic Mining of ENzyme DAta
Roberts, S.; Weichsel, A.; Grass, G.; Thakali, K.; Hazzard, J.; Tollin, G.; Rensing, C.; Montfort, W.
Crystal structure and electron transfer kinetics of CueO, a multicopper oxidase required for copper homeostasis in Escherichia coli
Proc. Natl. Acad. Sci. USA
99
2766-2771
2002
Escherichia coli, Escherichia coli (P36649), Electron, Lycaeninae
Automatic Mining of ENzyme DAta
Kataoka, K.; Ito, T.; Okuda, Y.; Sakai, Y.; Yamashita, S.; Sakurai, T.
Roles of the indole ring of Trp396 covalently bound with the imidazole ring of His398 coordinated to type I copper in bilirubin oxidase
Biochem. Biophys. Res. Commun.
521
620-624
2020
BRENDA: Albifimbria verrucaria
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Tsujimura, S.
From fundamentals to applications of bioelectrocatalysis bioelectrocatalytic reactions of FAD-dependent glucose dehydrogenase and bilirubin oxidase
Biosci. Biotechnol. Biochem.
83
39-48
2019
Albifimbria verrucaria
Manually annotated by BRENDA team
Tang, J.; Yan, X.; Huang, W.; Engelbrekt, C.; Duus, J.O.; Ulstrup, J.; Xiao, X.; Zhang, J.
Bilirubin oxidase oriented on novel type three-dimensional biocathodes with reduced graphene aggregation for biocathode
Biosens. Bioelectron.
167
112500
2020
BRENDA: Albifimbria verrucaria
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Takimoto, D.; Tsujimura, S.
Oxygen reduction reaction activity and stability of electrochemically deposited bilirubin oxidase
Chem. Lett.
47
1269-1271
2018
Albifimbria verrucaria
-
Manually annotated by BRENDA team
Akter, M.; Tokiwa, T.; Shoji, M.; Nishikawa, K.; Shigeta, Y.; Sakurai, T.; Higuchi, Y.; Kataoka, K.; Shibata, N.
Redox potential-dependent formation of an unusual His-Trp bond in bilirubin oxidase
Chemistry
24
18052-18058
2018
Albifimbria verrucaria
Manually annotated by BRENDA team
Roucher, A.; Roussarie, E.; Gauvin, R.M.; Rouhana, J.; Gounel, S.; Stines-Chaumeil, C.; Mano, N.; Backov, R.
Bilirubin oxidase-based silica macrocellular robust catalyst for on line dyes degradation
Enzyme Microb. Technol.
120
77-83
2019
Bacillus pumilus (A8FAG9), Bacillus pumilus, Bacillus pumilus SAFR-032 (A8FAG9)
Manually annotated by BRENDA team
Rawal, R.; Kharangarh, P.R.; Dawra, S.; Bhardwaj, P.
Synthesis, characterization and immobilization of bilirubin oxidase nanoparticles (BOxNPs) with enhanced activity Application for serum bilirubin determination in jaundice patients
Enzyme Microb. Technol.
143
109716
2021
BRENDA: Albifimbria verrucaria
Textmining: Homo sapiens, Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Gross, A.J.; Chen, X.; Giroud, F.; Travelet, C.; Borsali, R.; Cosnier, S.
Redox-active glyconanoparticles as electron shuttles for mediated electron transfer with bilirubin oxidase in solution
J. Am. Chem. Soc.
139
16076-16079
2017
BRENDA: Albifimbria verrucaria
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Bayineni, V.K.; Suresh, S.; Sharma, A.; Kadeppagari, R.K.
Improvement of bilirubin oxidase productivity of Myrothecium verrucaria and studies on the enzyme overproduced by the mutant strain in the solid-state fermentation
J. Gen. Appl. Microbiol.
64
68-75
2018
Albifimbria verrucaria, Albifimbria verrucaria MTCC 2140
Manually annotated by BRENDA team
Tokiwa, T.; Shoji, M.; Sladek, V.; Shibata, N.; Higuchi, Y.; Kataoka, K.; Sakurai, T.; Shigeta, Y.; Misaizu, F.
Structural changes of the trinuclear copper center in bilirubin oxidase upon reduction
Molecules
24
76
2018
Albifimbria verrucaria
Manually annotated by BRENDA team
Sadeghian, I.; Rezaie, Z.; Rahmatabadi, S.; Hemmati, S.
Biochemical insights into a novel thermo/organo tolerant bilirubin oxidase from Thermosediminibacter oceani and its application in dye decolorization
Process Biochem.
88
38-50
2020
Thermosediminibacter oceani (D9RY72), Thermosediminibacter oceani DSM 16646 (D9RY72)
-
Manually annotated by BRENDA team
Hasan, M.Q.; Kuis, R.; Narayanan, J.S.; Slaughter, G.
Fabrication of highly effective hybrid biofuel cell based on integral colloidal platinum and bilirubin oxidase on gold support
Sci. Rep.
8
16351
2018
Albifimbria verrucaria
Manually annotated by BRENDA team
Koval, T.; Svecova, L.; Ostergaard, L.H.; Skalova, T.; Duskova, J.; Hasek, J.; Kolenko, P.; Fejfarova, K.; Stransky, J.; Trundova, M.; Dohnalek, J.
Trp-His covalent adduct in bilirubin oxidase is crucial for effective bilirubin binding but has a minor role in electron transfer
Sci. Rep.
9
13700
2019
BRENDA: Albifimbria verrucaria (Q12737), Albifimbria verrucaria, Albifimbria verrucaria ATCC24571 (Q12737)
Textmining: Electron
Manually annotated by BRENDA teamAutomatic Mining of ENzyme DAta
Shao, X; Jiang, M; Yu, Z; Cai, H; Li, L
Surface display of heterologous proteins in Bacillus thuringiensis using a peptidoglycan hydrolase anchor.
Microb Cell Fact
8
48
2009
Bacillus thuringiensis
Automatic Mining of ENzyme DAta
Hung, IH; Suzuki, M; Yamaguchi, Y; Yuan, DS; Klausner, RD; Gitlin, JD
Biochemical characterization of the Wilson disease protein and functional expression in the yeast Saccharomyces cerevisiae.
J Biol Chem
272
21461-6
1997
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Hassett, R; Dix, DR; Eide, DJ; Kosman, DJ
The Fe(II) permease Fet4p functions as a low affinity copper transporter and supports normal copper trafficking in Saccharomyces cerevisiae.
Biochem J
351 Pt 2
477-84
2000
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Chang, PK; Scharfenstein, LL; Mack, B; Wei, Q; Gilbert, M; Lebar, M; Cary, JW
Identification of a copper-transporting ATPase involved in biosynthesis of A. flavus conidial pigment.
Appl Microbiol Biotechnol
103
4889-4897
2019
Aspergillus nidulans
Automatic Mining of ENzyme DAta
Salaj-Kosla, U; Scanlon, MD; Baumeister, T; Zahma, K; Ludwig, R; Conghaile, PO; Macaodha, D; Leech, D; Magner, E
Mediated electron transfer of cellobiose dehydrogenase and glucose oxidase at osmium polymer-modified nanoporous gold electrodes.
Anal Bioanal Chem
405
3823-30
2013
Melanocarpus albomyces, Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Milton, RD; Lim, K; Hickey, DP; Minteer, SD
Employing FAD-dependent glucose dehydrogenase within a glucose/oxygen enzymatic fuel cell operating in human serum.
Bioelectrochemistry
106
56-63
2015
Homo sapiens, Electron
Automatic Mining of ENzyme DAta
Daka, NJ; Sipehia, R; Chang, TM
Enhanced oxidation of bilirubin by an immobilized tri-enzyme system of glucose oxidase, bilirubin oxidase and horseradish peroxidase.
Biochim Biophys Acta
991
487-9
1989
Armoracia rusticana
Automatic Mining of ENzyme DAta
Abu-Bakar, A; Arthur, DM; Aganovic, S; Ng, JC; Lang, MA
Inducible bilirubin oxidase: A novel function for the mouse cytochrome P450 2A5.
Toxicol Appl Pharmacol
2011
Mus musculus, Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Guo, J; Liang, XX; Mo, PS; Li, GX
Purification and properties of bilirubin oxidase from Myrothecium verrucaria.
Appl Biochem Biotechnol
31
135-43
1991
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Guo, J; Tao, S; Mo, PS; Liang, X; Li, G
[Isolation of bilirubin oxidase from Myrothecium verrucaria and the optimum conditions of enzyme production]
Wei Sheng Wu Xue Bao
31
156-9
1991
Albifimbria verrucaria, Sulfurospirillum carboxydovorans
Automatic Mining of ENzyme DAta
Goldfinch, ME; Maguire, GA
Investigation of the use of bilirubin oxidase to measure the apparent unbound bilirubin concentration in human plasma.
Ann Clin Biochem
25 ( Pt 1)
73-7
1988
Homo sapiens
Automatic Mining of ENzyme DAta
Volosianko, RP
[Copper balance and copper oxidase activity in children with acute leukemia]
Pediatr Akus Ginekol
1
24-5
0
Homo sapiens
Automatic Mining of ENzyme DAta
Kriukova, NA; Aleksandrova, NI
[Oxyproline, uric acid and copper oxidase content of blood in children and adolescents with rheumatism]
Pediatriia
53
55-6
1974
Homo sapiens
Automatic Mining of ENzyme DAta
Kapoor, SK; Singh, M; Ghai, OP
Study of serum copper and copper oxidase in patients with Indian childhood cirrhosis.
Indian J Med Res
59
115-21
1971
Homo sapiens
Automatic Mining of ENzyme DAta
Tumasheva, NI; Borisenko, AM
[Effect of copper oxidase in the blood and cerebrospinal fluid of patients with syphilitic lesions of the central vervous system]
Zh Nevropatol Psikhiatr Im S S Korsakova
66
391-3
1966
Homo sapiens
Automatic Mining of ENzyme DAta
Chan, P; Risler, JL; Raguenez, G; Salier, JP
The three heavy-chain precursors for the inter-alpha-inhibitor family in mouse: new members of the multicopper oxidase protein group with differential transcription in liver and brain.
Biochem J
306 ( Pt 2)
505-12
1995
Mus musculus
Automatic Mining of ENzyme DAta
Lee, YA; Hendson, M; Panopoulos, NJ; Schroth, MN
Molecular cloning, chromosomal mapping, and sequence analysis of copper resistance genes from Xanthomonas campestris pv. juglandis: homology with small blue copper proteins and multicopper oxidase.
J Bacteriol
176
173-88
1994
Xanthomonas arboricola pv. juglandis, Tharsalea heteronea
Automatic Mining of ENzyme DAta
Askwith, C; Eide, D; Van Ho, A; Bernard, PS; Li, L; Davis-Kaplan, S; Sipe, DM; Kaplan, J
The FET3 gene of S. cerevisiae encodes a multicopper oxidase required for ferrous iron uptake.
Cell
76
403-10
1994
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Spizzo, T; Byersdorfer, C; Duesterhoeft, S; Eide, D
The yeast FET5 gene encodes a FET3-related multicopper oxidase implicated in iron transport.
Mol Gen Genet
256
547-56
1997
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Askwith, CC; Kaplan, J
Site-directed mutagenesis of the yeast multicopper oxidase Fet3p.
J Biol Chem
273
22415-9
1998
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Kamisako, T; Miyawaki, S; Gabazza, EC; Ishihara, T; Kamei, A; Kawamura, N; Adachi, Y
Polyethylene glycol-modified bilirubin oxidase improves hepatic energy charge and urinary prostaglandin levels in rats with obstructive jaundice.
J Hepatol
29
424-9
1998
Rattus, Homo sapiens, Metazoa
Automatic Mining of ENzyme DAta
Davis-Kaplan, SR; Askwith, CC; Bengtzen, AC; Radisky, D; Kaplan, J
Chloride is an allosteric effector of copper assembly for the yeast multicopper oxidase Fet3p: an unexpected role for intracellular chloride channels.
Proc Natl Acad Sci U S A
95
13641-5
1998
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Brouwers, GJ; de Vrind, JP; Corstjens, PL; Cornelis, P; Baysse, C; de Vrind-de Jong, EW
cumA, a gene encoding a multicopper oxidase, is involved in Mn2+ oxidation in Pseudomonas putida GB-1.
Appl Environ Microbiol
65
1762-8
1999
Pseudomonas putida GB-1
Automatic Mining of ENzyme DAta
Eck, R; Hundt, S; Härtl, A; Roemer, E; Künkel, W
A multicopper oxidase gene from Candida albicans: cloning, characterization and disruption.
Microbiology
145 ( Pt 9)
2415-22
1999
Candida albicans, Saccharomyces cerevisiae, Homo sapiens
Automatic Mining of ENzyme DAta
di Patti, MC; Pascarella, S; Catalucci, D; Calabrese, L
Homology modeling of the multicopper oxidase Fet3 gives new insights in the mechanism of iron transport in yeast.
Protein Eng
12
895-7
1999
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Blackburn, NJ; Ralle, M; Hassett, R; Kosman, DJ
Spectroscopic analysis of the trinuclear cluster in the Fet3 protein from yeast, a multinuclear copper oxidase.
Biochemistry
39
2316-24
2000
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Kim, C; Lorenz, WW; Hoopes, JT; Dean, JF
Oxidation of phenolate siderophores by the multicopper oxidase encoded by the Escherichia coli yacK gene.
J Bacteriol
183
4866-75
2001
Escherichia coli
Automatic Mining of ENzyme DAta
Francis, CA; Tebo, BM
cumA multicopper oxidase genes from diverse Mn(II)-oxidizing and non-Mn(II)-oxidizing Pseudomonas strains.
Appl Environ Microbiol
67
4272-8
2001
Pseudomonas, Pseudomonas putida
Automatic Mining of ENzyme DAta
Huffman, DL; Huyett, J; Outten, FW; Doan, PE; Finney, LA; Hoffman, BM; O'Halloran, TV
Spectroscopy of Cu(II)-PcoC and the multicopper oxidase function of PcoA, two essential components of Escherichia coli pco copper resistance operon.
Biochemistry
41
10046-55
2002
Escherichia coli
Automatic Mining of ENzyme DAta
Huston, WM; Jennings, MP; McEwan, AG
The multicopper oxidase of Pseudomonas aeruginosa is a ferroxidase with a central role in iron acquisition.
Mol Microbiol
45
1741-50
2002
Pseudomonas aeruginosa
Automatic Mining of ENzyme DAta
Herbik, A; Bölling, C; Buckhout, TJ
The involvement of a multicopper oxidase in iron uptake by the green algae Chlamydomonas reinhardtii.
Plant Physiol
130
2039-48
2002
Chlorophyta, Chlamydomonas reinhardtii
Automatic Mining of ENzyme DAta
Masuda-Nishimura, I; Ichikawa, K; Hatamoto, O; Abe, K; Koyama, Y
cDNA cloning of bilirubin oxidase from Pleurotus ostreatus strain Shinshu and its expression in Aspergillus sojae: an efficient screening of transformants, using the laccase activity of bilirubin oxidase.
J Gen Appl Microbiol
45
93-97
1999
Pleurotus ostreatus, Aspergillus sojae
Automatic Mining of ENzyme DAta
Li, L; Vulpe, CD; Kaplan, J
Functional studies of hephaestin in yeast: evidence for multicopper oxidase activity in the endocytic pathway.
Biochem J
375
793-8
2003
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
DEJORGE, FB; DELASCIO, D; ANTUNES, ML
COPPER AND COPPER OXIDASE CONCENTRATIONS IN THE BLOOD SERUM OF NORMAL PREGNANT WOMEN.
Obstet Gynecol
26
225-7
1965
Homo sapiens
Automatic Mining of ENzyme DAta
BUSILA, VT; DRAGOMIRESCU, M
[CHANGES IN SERUM COPPER OXIDASE IN PATIENTS WITH HEPATIC DISEASES.]
Stud Cercet Med Interna
40
157-9
1965
Homo sapiens
Automatic Mining of ENzyme DAta
Larrondo, LF; Salas, L; Melo, F; Vicuña, R; Cullen, D
A novel extracellular multicopper oxidase from Phanerochaete chrysosporium with ferroxidase activity.
Appl Environ Microbiol
69
6257-63
2003
Phanerodontia chrysosporium
Automatic Mining of ENzyme DAta
Hoopes, JT; Dean, JF
Ferroxidase activity in a laccase-like multicopper oxidase from Liriodendron tulipifera.
Plant Physiol Biochem
42
27-33
2004
Liriodendron tulipifera, Nicotiana tabacum
Automatic Mining of ENzyme DAta
Larrondo, LF; González, B; Cullen, D; Vicuña, R
Characterization of a multicopper oxidase gene cluster in Phanerochaete chrysosporium and evidence of altered splicing of the mco transcripts.
Microbiology
150
2775-83
2004
Phanerodontia chrysosporium
Automatic Mining of ENzyme DAta
Ruijssenaars, HJ; Hartmans, S
A cloned Bacillus halodurans multicopper oxidase exhibiting alkaline laccase activity.
Appl Microbiol Biotechnol
65
177-82
2004
Alkalihalobacillus halodurans, Alkalihalobacillus halodurans C-125
Automatic Mining of ENzyme DAta
McCaig, BC; Meagher, RB; Dean, JF
Gene structure and molecular analysis of the laccase-like multicopper oxidase (LMCO) gene family in Arabidopsis thaliana.
Planta
221
619-36
2005
Arabidopsis thaliana, Magnoliopsida, plant
Automatic Mining of ENzyme DAta
Bonaccorsi di Patti, MC; Miele, R; Eugenia Schininà, M; Barra, D
The yeast multicopper oxidase Fet3p and the iron permease Ftr1p physically interact.
Biochem Biophys Res Commun
333
432-7
2005
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Sitthisak, S; Howieson, K; Amezola, C; Jayaswal, RK
Characterization of a multicopper oxidase gene from Staphylococcus aureus.
Appl Environ Microbiol
71
5650-3
2005
Staphylococcus aureus
Automatic Mining of ENzyme DAta
Wiethaus, J; Wildner, GF; Masepohl, B
The multicopper oxidase CutO confers copper tolerance to Rhodobacter capsulatus.
FEMS Microbiol Lett
256
67-74
2006
Rhodobacter capsulatus, Escherichia coli, bacterium
Automatic Mining of ENzyme DAta
Quintanar, L; Stoj, C; Taylor, AB; Hart, PJ; Kosman, DJ; Solomon, EI
Shall we dance? How a multicopper oxidase chooses its electron transfer partner.
Acc Chem Res
40
445-52
2007
Electron
Automatic Mining of ENzyme DAta
Kellner, H; Luis, P; Buscot, F
Diversity of laccase-like multicopper oxidase genes in Morchellaceae: identification of genes potentially involved in extracellular activities related to plant litter decay.
FEMS Microbiol Ecol
61
153-63
2007
Morchellaceae, plant, Ascomycota
Automatic Mining of ENzyme DAta
Tree, JJ; Ulett, GC; Hobman, JL; Constantinidou, C; Brown, NL; Kershaw, C; Schembri, MA; Jennings, MP; McEwan, AG
The multicopper oxidase (CueO) and cell aggregation in Escherichia coli.
Environ Microbiol
9
2110-6
2007
Escherichia coli, Escherichia coli K-12
Automatic Mining of ENzyme DAta
Djoko, KY; Xiao, Z; Wedd, AG
Copper resistance in E. coli: the multicopper oxidase PcoA catalyzes oxidation of copper(I) in Cu(I)Cu(II)-PcoC.
Chembiochem
9
1579-82
2008
Escherichia coli
Automatic Mining of ENzyme DAta
Gorman, MJ; Dittmer, NT; Marshall, JL; Kanost, MR
Characterization of the multicopper oxidase gene family in Anopheles gambiae.
Insect Biochem Mol Biol
38
817-24
2008
Anopheles gambiae
Automatic Mining of ENzyme DAta
Li, Y; Yin, J; Qu, G; Lv, L; Li, Y; Yang, S; Wang, XG
Gene cloning, protein purification, and enzymatic properties of multicopper oxidase, from Klebsiella sp. 601.
Can J Microbiol
54
725-33
2008
Klebsiella sp, bacterium
Automatic Mining of ENzyme DAta
Hall, SJ; Hitchcock, A; Butler, CS; Kelly, DJ
A Multicopper oxidase (Cj1516) and a CopA homologue (Cj1161) are major components of the copper homeostasis system of Campylobacter jejuni.
J Bacteriol
190
8075-85
2008
Campylobacter jejuni
Automatic Mining of ENzyme DAta
Thompson, IA; Huber, DM; Schulze, DG
Evidence of a Multicopper Oxidase in Mn Oxidation by Gaeumannomyces graminis var. tritici.
Phytopathology
96
130-6
2006
Gaeumannomyces graminis
Automatic Mining of ENzyme DAta
Tominaga, M; Ohtani, M; Taniguchi, I
Gold single-crystal electrode surface modified with self-assembled monolayers for electron tunneling with bilirubin oxidase.
Phys Chem Chem Phys
10
6928-34
2008
Electron
Automatic Mining of ENzyme DAta
Sedlák, E; Ziegler, L; Kosman, DJ; Wittung-Stafshede, P
In vitro unfolding of yeast multicopper oxidase Fet3p variants reveals unique role of each metal site.
Proc Natl Acad Sci U S A
105
19258-63
2008
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Levasseur, A; Saloheimo, M; Navarro, D; Andberg, M; Pontarotti, P; Kruus, K; Record, E
Exploring laccase-like multicopper oxidase genes from the ascomycete Trichoderma reesei: a functional, phylogenetic and evolutionary study.
BMC Biochem
11
32
2010
Trichoderma reesei
Automatic Mining of ENzyme DAta
Bettedi, L; Aslam, MF; Szular, J; Mandilaras, K; Missirlis, F
Iron depletion in the intestines of Malvolio mutant flies does not occur in the absence of a multicopper oxidase.
J Exp Biol
214
971-8
2011
Diptera
Automatic Mining of ENzyme DAta
Wegerich, F; Turano, P; Allegrozzi, M; Mo?hwald, H; Lisdat, F
Electroactive Multilayer Assemblies of Bilirubin Oxidase and Human Cytochrome C Mutants: Insight in Formation and Kinetic Behavior.
Langmuir
27
4202-4211
2011
Homo sapiens
Automatic Mining of ENzyme DAta
Lawton, TJ; Rosenzweig, AC
Detection and characterization of a multicopper oxidase from Nitrosomonas europaea.
Methods Enzymol
496
423-33
2011
Nitrosomonas europaea, Tharsalea heteronea
Automatic Mining of ENzyme DAta
Cracknell, JA; McNamara, TP; Lowe, ED; Blanford, CF
Bilirubin oxidase from Myrothecium verrucaria: X-ray determination of the complete crystal structure and a rational surface modification for enhanced electrocatalytic O2 reduction.
Dalton Trans
40
6668-75
2011
Albifimbria verrucaria, plant, Bacillus subtilis
Automatic Mining of ENzyme DAta
Li, Y; Gong, Z; Li, X; Li, Y; Wang, XG
Engineering Klebsiella sp. 601 multicopper oxidase enhances the catalytic efficiency towards phenolic substrates.
BMC Biochem
12
30
2011
Klebsiella sp, Escherichia coli
Automatic Mining of ENzyme DAta
Hsiao, YM; Liu, YF; Lee, PY; Hsu, PC; Tseng, SY; Pan, YC
Functional Characterization of copA Gene Encoding Multicopper Oxidase in Xanthomonas campestris pv. campestris.
J Agric Food Chem
2011
Xanthomonas campestris
Automatic Mining of ENzyme DAta
Pggeler, S
Evolution of multicopper oxidase genes in coprophilous and non-coprophilous members of the order sordariales.
Curr Genomics
12
95-103
2011
Sordariales
Automatic Mining of ENzyme DAta
Ramos, JA; Barends, S; Verhaert, RM; de Graaff, LH
The Aspergillus niger multicopper oxidase family: analysis and overexpression of laccase-like encoding genes.
Microb Cell Fact
10
78
2011
Aspergillus niger
Automatic Mining of ENzyme DAta
Silva, CS; Duro, P; Fillat, A; Lindley, PF; Martins, LO; Bento, I
Crystal structure of the multicopper oxidase from the pathogenic bacterium Campylobacter jejuni CGUG11284: characterization of a metallo-oxidase.
Metallomics
4
37-47
2012
Campylobacter jejuni, bacterium
Automatic Mining of ENzyme DAta
Serrano-Posada, H; Valderrama, B; Stojanoff, V; Rudio-Piera, E
Thermostable multicopper oxidase from Thermus thermophilus HB27: crystallization and preliminary X-ray diffraction analysis of apo and holo forms.
Acta Crystallogr Sect F Struct Biol Cryst Commun
67
1595-8
2011
Thermus thermophilus HB27
Automatic Mining of ENzyme DAta
Tomkov, L; Ku?era, L; Vaculov, K; Milotov, J
Characterization and mapping of a putative laccase-like multicopper oxidase gene in the barley (Hordeum vulgare L.).
Plant Sci
183
77-85
2012
Hordeum vulgare
Automatic Mining of ENzyme DAta
Rademacher, C; Moser, R; Lackmann, JW; Klinkert, B; Narberhaus, F; Masepohl, B
Transcriptional and post-transcriptional events control copper-responsive expression of a Rhodobacter capsulatus multicopper oxidase.
J Bacteriol
2012
Rhodobacter capsulatus
Automatic Mining of ENzyme DAta
Bello, M; Valderrama, B; Serrano-Posada, H; Rudio-Piera, E
Molecular dynamics of a thermostable multicopper oxidase from Thermus thermophilus HB27: structural differences between the apo and holo forms.
PLoS One
7
e40700
2012
Thermus thermophilus HB27
Automatic Mining of ENzyme DAta
Cadet, M; Brilland, X; Gounel, S; Louerat, F; Mano, N
Design of a Highly Efficient O(2) Cathode Based on Bilirubin Oxidase from Magnaporthe oryzae.
Chemphyschem
2013
Pyricularia oryzae, Fungi
Automatic Mining of ENzyme DAta
Sherif, M; Waung, D; Korbeci, B; Mavisakalyan, V; Flick, R; Brown, G; Abou-Zaid, M; Yakunin, AF; Master, ER
Biochemical studies of the multicopper oxidase (small laccase) from Streptomyces coelicolor using bioactive phytochemicals and site-directed mutagenesis.
Microb Biotechnol
6
588-97
2013
Streptomyces coelicolor
Automatic Mining of ENzyme DAta
Singh, V; Mani, I; Chaudhary, DK
Analysis of the multicopper oxidase gene regulatory network of Aeromonas hydrophila.
Syst Synth Biol
6
51-9
2012
Aeromonas hydrophila, Electron
Automatic Mining of ENzyme DAta
Wen, Q; Liu, X; Wang, H; Lin, J
A versatile and efficient markerless gene disruption system for Acidithiobacillus thiooxidans: application for characterizing a copper tolerance related multicopper oxidase gene.
Environ Microbiol
2014
Acidithiobacillus thiooxidans
Automatic Mining of ENzyme DAta
Wu, T; Wang, S; Wang, Z; Peng, X; Lu, Y; Wu, Q
A multicopper oxidase contributes to the copper tolerance of Brucella melitensis 16M.
FEMS Microbiol Lett
362
fnv078
2015
Brucella melitensis bv. 1 str. 16M, Brucella, Escherichia coli, Tharsalea heteronea
Automatic Mining of ENzyme DAta
Zhang, Z; Zhang, Z; Chen, H; Liu, J; Liu, C; Ni, H; Zhao, C; Ali, M; Liu, F; Li, L
Surface Mn(II) oxidation actuated by a multicopper oxidase in a soil bacterium leads to the formation of manganese oxide minerals.
Sci Rep
5
10895
2015
bacterium
Automatic Mining of ENzyme DAta
Shiroyama, K; Kawasaki, Y; Unno, Y; Amachi, S
A putative multicopper oxidase, IoxA, is involved in iodide oxidation by Roseovarius sp. strain A-2.
Biosci Biotechnol Biochem
79
1898-905
2015
Anaeroplasma varium, Roseovarius
Automatic Mining of ENzyme DAta
Ye, YX; Pan, PL; Kang, D; Lu, JB; Zhang, CX
The multicopper oxidase gene family in the brown planthopper, Nilaparvata lugens.
Insect Biochem Mol Biol
63
124-32
2015
Nilaparvata lugens
Automatic Mining of ENzyme DAta
Chaplin, AK; Petrus, ML; Mangiameli, G; Hough, MA; Svistunenko, DA; Nicholls, P; Claessen, D; Vijgenboom, E; Worrall, JA
GlxA is a new structural member of the radical copper oxidase family and is required for glycan deposition at hyphal tips and morphogenesis of Streptomyces lividans.
Biochem J
469
433-44
2015
Streptomyces lividans
Automatic Mining of ENzyme DAta
Ausec, L; ?rnigoj, M; najder, M; Ulrih, NP; Mandic-Mulec, I
Characterization of a novel high-pH-tolerant laccase-like multicopper oxidase and its sequence diversity in Thioalkalivibrio sp.
Appl Microbiol Biotechnol
99
9987-99
2015
Thioalkalivibrio
Automatic Mining of ENzyme DAta
Moghadam, MS; Albersmeier, A; Winkler, A; Cimmino, L; Rise, K; Hohmann-Marriott, MF; Kalinowski, J; Rckert, C; Wentzel, A; Lale, R
Isolation and genome sequencing of four Arctic marine Psychrobacter strains exhibiting multicopper oxidase activity.
BMC Genomics
17
117
2016
Psychrobacter
Automatic Mining of ENzyme DAta
Fan, L; Wang, Y; Zhao, M; Song, J; Wang, J; Jin, Z
Magnetic Ganoderma lucidum spore microspheres: A novel material to immobilize CotA multicopper oxidase for dye decolorization.
J Hazard Mater
313
122-9
2016
Ganoderma lucidum
Automatic Mining of ENzyme DAta
Yang, S; Long, Y; Yan, H; Cai, H; Li, Y; Wang, X
Gene cloning, identification and characterization of the multicopper oxidase CumA from Pseudomonas sp. 593.
Biotechnol Appl Biochem
2016
Pseudomonas sp., bacterium
Automatic Mining of ENzyme DAta
Wherland, S; Miyazaki, K; Pecht, I
Intramolecular Electron Transfer in the Bacterial Two-Domain Multicopper Oxidase mgLAC.
Biochemistry
55
2960-6
2016
Electron
Automatic Mining of ENzyme DAta
Schlesinger, O; Pasi, M; Dandela, R; Meijler, MM; Alfonta, L
Electron transfer rate analysis of a site-specifically wired copper oxidase.
Phys Chem Chem Phys
20
6159-6166
2018
Electron
Automatic Mining of ENzyme DAta
Gentil, S; Carriere, M; Cosnier, S; Gounel, S; Mano, N; Le Goff, A
Direct electrochemistry of bilirubin oxidase from Magnaporthe orizae on covalently-functionalized MWCNT for the design of high-performance oxygen-reducing biocathode.
Chemistry
2018
Magnaporthe
Automatic Mining of ENzyme DAta
Wang, X; Yin, S; Yang, Z; Zhou, B
Drosophila multicopper oxidase 3 is a potential ferroxidase involved in iron homeostasis.
Biochim Biophys Acta Gen Subj
1862
1826-1834
2018
Drosophila
Automatic Mining of ENzyme DAta
Taguchi, T; Ebihara, K; Yanagisaki, C; Yoshikawa, J; Horiguchi, H; Amachi, S
Decolorization of recalcitrant dyes by a multicopper oxidase produced by Iodidimonas sp. Q-1 with iodide as a novel inorganic natural redox mediator.
Sci Rep
8
6717
2018
Iodidimonas
Automatic Mining of ENzyme DAta
Granja-Travez, RS; Bugg, TDH
Characterization of multicopper oxidase CopA from Pseudomonas putida KT2440 and Pseudomonas fluorescens Pf-5: Involvement in bacterial lignin oxidation.
Arch Biochem Biophys
660
97-107
2018
Pseudomonas putida KT2440, Pseudomonas protegens Pf-5
Automatic Mining of ENzyme DAta
Takamura, E; Nakamura, T; Sakamoto, H; Satomura, T; Sakuraba, H; Ohshima, T; Suye, SI
Effects of multicopper oxidase orientation in multiwalled carbon nanotube biocathodes on direct electron transfer.
Biotechnol Appl Biochem
2018
Electron
Automatic Mining of ENzyme DAta
Zerva, A; Koutroufini, E; Kostopoulou, I; Detsi, A; Topakas, E
A novel thermophilic laccase-like multicopper oxidase from Thermothelomyces thermophila and its application in the oxidative cyclization of 2',3,4-trihydroxychalcone.
N Biotechnol
49
10-18
2019
Thermothelomyces thermophilus
Automatic Mining of ENzyme DAta
Berni, R; Piasecki, E; Legay, S; Hausman, JF; Siddiqui, KS; Cai, G; Guerriero, G
Identification of the laccase-like multicopper oxidase gene family of sweet cherry (Prunus avium L.) and expression analysis in six ancient Tuscan varieties.
Sci Rep
9
3557
2019
Prunus avium
Automatic Mining of ENzyme DAta
Zhang, Q; Miao, R; Liu, T; Huang, Z; Peng, W; Gan, B; Zhang, X; Tan, H
Biochemical characterization of a key laccase-like multicopper oxidase of artificially cultivable Morchella importuna provides insights into plant-litter decomposition.
3 Biotech
9
171
2019
Morchella importuna
Automatic Mining of ENzyme DAta
Kinkar, E; Kinkar, A; Saleh, M
The multicopper oxidase of Mycobacterium tuberculosis (MmcO) exhibits ferroxidase activity and scavenges reactive oxygen species in activated THP-1 cells.
Int J Med Microbiol
151324
2019
Mycobacterium tuberculosis
Automatic Mining of ENzyme DAta
Xu, J; Fang, F
[Expression and characterization of a multicopper oxidase from Lactobacillus fermentum].
Sheng Wu Gong Cheng Xue Bao
35
1286-1294
2019
Lactobacillus, Limosilactobacillus fermentum, Escherichia coli BL21
Automatic Mining of ENzyme DAta
Matsumoto, Y; Hattori, M
Characterization of multicopper oxidase genes in the green rice leafhopper, Nephotettix cincticeps (Hemiptera: Cicadellidae), with focus on salivary gland-specific genes.
Arch Insect Biochem Physiol
e21602
2019
Nephotettix cincticeps
Automatic Mining of ENzyme DAta
Nishide, Y; Kageyama, D; Hatakeyama, M; Yokoi, K; Jouraku, A; Tanaka, H; Koga, R; Futahashi, R; Fukatsu, T
Diversity and function of multicopper oxidase genes in the stinkbug Plautia stali.
Sci Rep
10
3464
2020
Plautia stali, Bacteria, Oryza sativa, Fungi, Tribolium castaneum, Metazoa
Automatic Mining of ENzyme DAta
Kaur, K; Sidhu, H; Capalash, N; Sharma, P
Multicopper oxidase of Acinetobacter baumannii: Assessing its role in metal homeostasis, stress management and virulence.
Microb Pathog
143
104124
2020
Acinetobacter baumannii, Escherichia coli
Automatic Mining of ENzyme DAta
Zouraris, D; Kiafi, S; Zerva, A; Topakas, E; Karantonis, A
FTacV study of electroactive immobilized enzyme/free substrate reactions: Enzymatic catalysis of epinephrine by a multicopper oxidase from Thermothelomyces thermophila.
Bioelectrochemistry
134
107538
2020
Thermothelomyces thermophilus
Automatic Mining of ENzyme DAta
Chakraborty, T; Tth, Z; Tth, R; Vgvlgyi, C; Gcser, A
Iron Metabolism, Pseudohypha Production, and Biofilm Formation through a Multicopper Oxidase in the Human-Pathogenic Fungus Candida parapsilosis.
mSphere
5
2020
Candida parapsilosis
Automatic Mining of ENzyme DAta
Pit?kov, H; Jan?ov, P; Ber?kov, L; Bu?ka, F; Sokolov, I; opk, T; Marlkov, K; Amaral, OMRP; Bu?kov, L
Application of qPCR for multicopper oxidase gene (MCO) in biogenic amines degradation by Lactobacillus casei.
Food Microbiol
91
103550
2020
Lacticaseibacillus casei, Lactobacillus casei group
Automatic Mining of ENzyme DAta
Agrawal, K; Shankar, J; Kumar, R; Verma, P
Insight into multicopper oxidase laccase from Myrothecium verrucaria ITCC-8447: a case study using in silico and experimental analysis.
J Environ Sci Health B
1-13
2020
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Agrawal, K; Shankar, J; Verma, P
Multicopper oxidase (MCO) laccase from Stropharia sp. ITCC-8422: an apparent authentication using integrated experimental and in silico analysis.
3 Biotech
10
413
2020
Stropharia
Automatic Mining of ENzyme DAta
Takamura, E; Taki, S; Sakamoto, H; Satomura, T; Sakuraba, H; Ohshima, T; Suye, SI
Site-Directed Mutagenesis of Multicopper Oxidase from Hyperthermophilic Archaea for High-Voltage Biofuel Cells.
Appl Biochem Biotechnol
193
492-501
2021
Archaea
Automatic Mining of ENzyme DAta
Ishida, K; Tsukamoto, Y; Horitani, M; Ogawa, T; Tanaka, Y
Biochemical properties of CumA multicopper oxidase from plant pathogen, Pseudomonas syringae.
Biosci Biotechnol Biochem
85
1995-2002
2021
Pseudomonas syringae, plant, bacterium
Automatic Mining of ENzyme DAta
Daou, M; Bisotto, A; Haon, M; Oliveira Correia, L; Cottyn, B; Drula, E; Garajov, S; Bertrand, E; Record, E; Navarro, D; Raouche, S; Baumberger, S; Faulds, CB
A Putative Lignin Copper Oxidase from Trichoderma reesei.
J Fungi (Basel)
7
2021
Trichoderma reesei
Automatic Mining of ENzyme DAta
Sakamoto H;Uchii T;Yamaguchi K;Koto A;Takamura Ei;Satomura T;Sakuraba H;Ohshima T;Suye Si
Construction of a biocathode using the multicopper oxidase from the hyperthermophilic archaeon, Pyrobaculum aerophilum: towards a long-life biobattery
Biotechnology letters
37
1399-1404
2015
Pyrobaculum aerophilum, archaeon
Automatic Mining of ENzyme DAta
Tomkov L;Ku?era L;Vaculov K;Milotov J
Characterization and mapping of a putative laccase-like multicopper oxidase gene in the barley (Hordeum vulgare L.)
Plant science : an international journal of experimental plant biology
183
77-85
2012
Hordeum vulgare
Automatic Mining of ENzyme DAta
Thompson IA;Huber DM;Schulze DG
Evidence of a multicopper oxidase in Mn oxidation by Gaeumannomyces graminis var. tritici.
Phytopathology
96
130-136
2006
Gaeumannomyces graminis
Automatic Mining of ENzyme DAta
Hellwig, P; Gomes, CM; Teixeira, M
FTIR spectroscopic characterization of the cytochrome aa3 from Acidianus ambivalens: evidence for the involvement of acidic residues in redox coupled proton translocation.
Biochemistry
42
6179-84
2003
archaeon
Automatic Mining of ENzyme DAta
Germann, UA; Lerch, K
Isolation and partial nucleotide sequence of the laccase gene from Neurospora crassa: amino acid sequence homology of the protein to human ceruloplasmin.
Proc Natl Acad Sci U S A
83
8854-8
1986
Tharsalea heteronea
Automatic Mining of ENzyme DAta
Guissani, A; Henry, Y; Gilles, L
Radical scavenging and electron-transfer reactions in Polyporus versicolor laccase a pulse radiolysis study.
Biophys Chem
15
177-90
1982
Polyporus
Automatic Mining of ENzyme DAta
Hirota, S; Matsumoto, H; Huang, HW; Sakurai, T; Kitagawa, T; Yamauchi, O
Observation of Cu-N3- stretching and N3- asymmetric stretching bands for mono-azide adduct of Rhus vernicifera laccase.
Biochem Biophys Res Commun
243
435-7
1998
Lycaeninae, Toxicodendron vernicifluum
Automatic Mining of ENzyme DAta
Jiang, N; Xiao, D; Zhang, D; Sun, N; Yan, B; Zhu, X
Negative roles of a novel NMR gene TAR1 in laccase production and nitrate utilization in the basidiomycete Cryptococcus neoformans.
Appl Environ Microbiol
2009
Fungi
Automatic Mining of ENzyme DAta
Wu, J; Kim, KS; Lee, JH; Lee, YC
Cloning, expression in Escherichia coli, and enzymatic properties of laccase from Aeromonas hydrophila WL-11.
J Environ Sci (China)
22
635-40
2010
Klebsiella sp
Automatic Mining of ENzyme DAta
Gupta, A; Nederlof, I; Sottini, S; Tepper, AW; Groenen, EJ; Thomassen, EA; Canters, GW
Involvement of Tyr108 in the enzyme mechanism of the small laccase from Streptomyces coelicolor.
J Am Chem Soc
134
18213-6
2012
Streptomyces coelicolor
Automatic Mining of ENzyme DAta
Ghatge, S; Yang, Y; Song, WY; Kim, TY; Hur, HG
A novel laccase from thermoalkaliphilic bacterium Caldalkalibacillus thermarum strain TA2.A1 able to catalyze dimerization of a lignin model compound.
Appl Microbiol Biotechnol
2018
Caldalkalibacillus thermarum TA2.A1, bacterium, Escherichia coli
Automatic Mining of ENzyme DAta
Itoh, N; Hayashi, Y; Honda, S; Yamamoto, Y; Tanaka, D; Toda, H
Construction and characterization of a functional chimeric laccase from metagenomes suitable as a biocatalyst.
AMB Express
11
90
2021
metagenomes
Automatic Mining of ENzyme DAta
Kwon SI;Anderson AJ
Genes for multicopper proteins and laccase activity: common features in plant-associated Fusarium isolates.
Canadian journal of botany. Journal canadien de botanique
80
563-570
2002
Fusarium, Fusarium culmorum, Fusarium fujikuroi, Fusarium proliferatum, Triticum aestivum
Automatic Mining of ENzyme DAta
Smith, AW; Camara-Artigas, A; Olea, C; Francisco, WA; Allen, JP
Crystallization and initial X-ray analysis of phenoxazinone synthase from Streptomyces antibioticus.
Acta Crystallogr D Biol Crystallogr
60
1453-5
2004
Streptomyces antibioticus
Automatic Mining of ENzyme DAta
Smith, AW; Camara-Artigas, A; Wang, M; Allen, JP; Francisco, WA
Structure of Phenoxazinone Synthase from Streptomyces antibioticus Reveals a New Type 2 Copper Center(,).
Biochemistry
45
4378-87
2006
Streptomyces antibioticus
Automatic Mining of ENzyme DAta
Elmarakby, SA; Duffel, MW; Rosazza, JP
In vitro metabolic transformations of vinblastine: oxidations catalyzed by human ceruloplasmin.
J Med Chem
32
2158-62
1989
Homo sapiens, Vinca, Transformation
Automatic Mining of ENzyme DAta
Bonaccorsi di Patti, MC; Felice, MR; Camuti, AP; Lania, A; Musci, G
The essential role of Glu-185 and Tyr-354 residues in the ferroxidase activity of Saccharomyces cerevisiae Fet3.
FEBS Lett
472
283-6
2000
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Machonkin, TE; Quintanar, L; Palmer, AE; Hassett, R; Severance, S; Kosman, DJ; Solomon, EI
Spectroscopy and reactivity of the type 1 copper site in Fet3p from Saccharomyces cerevisiae: correlation of structure with reactivity in the multicopper oxidases.
J Am Chem Soc
123
5507-17
2001
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Stoj, CS; Augustine, AJ; Solomon, EI; Kosman, DJ
Structure-function analysis of the cuprous oxidase activity in Fet3p from Saccharomyces cerevisiae.
J Biol Chem
282
7862-8
2007
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Sedlak, E; Wittung-Stafshede, P
Discrete roles of copper ions in chemical unfolding of human ceruloplasmin.
Biochemistry
46
9638-44
2007
Homo sapiens
Automatic Mining of ENzyme DAta
Sedlák, E; Zoldák, G; Wittung-Stafshede, P
Role of copper in thermal stability of human ceruloplasmin.
Biophys J
94
1384-91
2008
Homo sapiens
Automatic Mining of ENzyme DAta
Vashchenko, G; Bleackley, MR; Griffiths, TA; Macgillivray, RT
Oxidation of organic and biogenic amines by recombinant human hephaestin expressed in Pichia pastoris.
Arch Biochem Biophys
2011
Homo sapiens
Automatic Mining of ENzyme DAta
Das, S; Sahoo, PK
Ceruloplasmin, a moonlighting protein in fish.
Fish Shellfish Immunol
82
460-468
2018
vertebrata
Automatic Mining of ENzyme DAta
Mukhopadhyay, BP
Putative role of conserved water molecules in the hydration and inter-domain recognition of mono nuclear copper centers in O2-bound human ceruloplasmin: A comparative study between X-ray and MD simulated structures.
Bioinformation
15
402-411
2019
Homo sapiens
Automatic Mining of ENzyme DAta
Moon, SJ; Kim, HW; Jeon, SJ
Biochemical characterization of a thermostable cobalt- or copper-dependent polyphenol oxidase with dye decolorizing ability from Geobacillus sp. JS12.
Enzyme Microb Technol
118
30-36
2018
Escherichia coli
Automatic Mining of ENzyme DAta
López-Serrano, D; Solano, F; Sanchez-Amat, A
Involvement of a novel copper chaperone in tyrosinase activity and melanin synthesis in Marinomonas mediterranea.
Microbiology
153
2241-9
2007
Marinomonas mediterranea
Automatic Mining of ENzyme DAta
Hashim, FJ; Vichitphan, S; Han, J; Vichitphan, K
Alternative Approach for Specific Tyrosinase Inhibitor Screening: Uncompetitive Inhibition of Tyrosinase by Moringa oleifera.
Molecules
26
2021
Fungi, Metazoa
Automatic Mining of ENzyme DAta
Petrus, ML; Vijgenboom, E; Chaplin, AK; Worrall, JA; van Wezel, GP; Claessen, D
The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces.
Open Biol
6
2016
Streptomyces lividans, bacterium
Automatic Mining of ENzyme DAta
Miyata, N; Tani, Y; Maruo, K; Tsuno, H; Sakata, M; Iwahori, K
Manganese(IV) oxide production by Acremonium sp. strain KR21-2 and extracellular Mn(II) oxidase activity.
Appl Environ Microbiol
72
6467-73
2006
Acremonium sp., Ascomycota, Myrothecium, Acremonium
Automatic Mining of ENzyme DAta
Geszvain, K; Smesrud, L; Tebo, BM
Identification of a Third Mn(II) Oxidase Enzyme in Pseudomonas putida GB-1.
Appl Environ Microbiol
82
3774-82
2016
bacterium, Pseudomonas putida GB-1
Automatic Mining of ENzyme DAta
Wilmoth, JL; Moran, MA; Thompson, A
Transient O2 pulses direct Fe crystallinity and Fe(III)-reducer gene expression within a soil microbiome.
Microbiome
6
189
2018
Anaeromyxobacter, Electron, Geobacter, Pelosinus
Automatic Mining of ENzyme DAta
Gmez-Sanz, E; Kadlec, K; Feler, AT; Zarazaga, M; Torres, C; Schwarz, S
Novel erm(T)-carrying multiresistance plasmids from porcine and human isolates of methicillin-resistant Staphylococcus aureus ST398 that also harbor cadmium and copper resistance determinants.
Antimicrob Agents Chemother
57
3275-82
2013
plasmids
Automatic Mining of ENzyme DAta
Dancis, A
Genetic analysis of iron uptake in the yeast Saccharomyces cerevisiae.
J Pediatr
132
S24-9
1998
Homo sapiens, Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Sugi, K; Inoue, M; Morino, Y; Sato, T
Effect of obstructive jaundice on the fate of a nephrophilic organic anion in the rat.
Biochim Biophys Acta
987
217-21
1989
Rattus, Metazoa
Automatic Mining of ENzyme DAta
Kozubal, MA; Dlakic, M; Macur, RE; Inskeep, WP
Terminal oxidase diversity and function in "Metallosphaera yellowstonensis": gene expression and protein modeling suggest mechanisms of Fe(II) oxidation in the sulfolobales.
Appl Environ Microbiol
77
1844-53
2011
Tharsalea heteronea, Metallosphaera yellowstonensis
Automatic Mining of ENzyme DAta
Ma, J; Zhang, K; Liao, H; Hector, SB; Shi, X; Li, J; Liu, B; Xu, T; Tong, C; Liu, X; Zhu, Y
Genomic and secretomic insight into lignocellulolytic system of an endophytic bacterium Pantoea ananatis Sd-1.
Biotechnol Biofuels
9
25
2016
Pantoea ananatis
Automatic Mining of ENzyme DAta
Nishide, Y; Kageyama, D; Tanaka, Y; Yokoi, K; Jouraku, A; Futahashi, R; Fukatsu, T
Effectiveness of orally-delivered double-stranded RNA on gene silencing in the stinkbug Plautia stali.
PLoS One
16
e0245081
2021
Plautia stali, Hexapoda
Automatic Mining of ENzyme DAta
Gardner, SP; Olson, JW
Interaction of Copper Toxicity and Oxidative Stress in Campylobacter jejuni.
J Bacteriol
2018
Campylobacter jejuni
Automatic Mining of ENzyme DAta
Knight, SA; Lesuisse, E; Stearman, R; Klausner, RD; Dancis, A
Reductive iron uptake by Candida albicans: role of copper, iron and the TUP1 regulator.
Microbiology
148
29-40
2002
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Howard, DH
Iron gathering by zoopathogenic fungi.
FEMS Immunol Med Microbiol
40
95-100
2004
Fungi
Automatic Mining of ENzyme DAta
Giri, AV; Anishetty, S; Gautam, P
Functionally specified protein signatures distinctive for each of the different blue copper proteins.
BMC Bioinformatics
5
127
2004
Tharsalea heteronea
Automatic Mining of ENzyme DAta
Bernal, M; Casero, D; Singh, V; Wilson, GT; Grande, A; Yang, H; Dodani, SC; Pellegrini, M; Huijser, P; Connolly, EL; Merchant, SS; Krmer, U
Transcriptome Sequencing Identifies SPL7-Regulated Copper Acquisition Genes FRO4/FRO5 and the Copper Dependence of Iron Homeostasis in Arabidopsis.
Plant Cell
2012
Arabidopsis, Chlorophyta, Homo sapiens, Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Wu, X; Zhao, F; Varcoe, JR; Thumser, AE; Avignone-Rossa, C; Slade, RC
A one-compartment fructose/air biological fuel cell based on direct electron transfer.
Biosens Bioelectron
25
326-31
2009
Electron
Automatic Mining of ENzyme DAta
So, K; Kawai, S; Hamano, Y; Kitazumi, Y; Shirai, O; Hibi, M; Ogawa, J; Kano, K
Improvement of a direct electron transfer-type fructose/dioxygen biofuel cell with a substrate-modified biocathode.
Phys Chem Chem Phys
16
4823-9
2014
Electron
Automatic Mining of ENzyme DAta
Mano, N; Mao, F; Heller, A
Characteristics of a miniature compartment-less glucose-O2 biofuel cell and its operation in a living plant.
J Am Chem Soc
125
6588-94
2003
Ganoderma tsunodae, plant, Aspergillus niger, Vitis vinifera
Automatic Mining of ENzyme DAta
Zhao, M; Gao, Y; Sun, J; Gao, F
Mediatorless glucose biosensor and direct electron transfer type glucose/air biofuel cell enabled with carbon nanodots.
Anal Chem
87
2615-22
2015
Electron
Automatic Mining of ENzyme DAta
Ells, R; Kock, JL; Albertyn, J; Kemp, G; Pohl, CH
Effect of inhibitors of arachidonic acid metabolism on prostaglandin E(2) production by Candida albicans and Candida dubliniensis biofilms.
Med Microbiol Immunol
2010
Candida
Automatic Mining of ENzyme DAta
Matsuura, A; Nagayama, T; Kitagawa, T
Analytical studies on beta-lactam antibiotics. II. Displacement effect of beta-lactam antibiotics on bilirubin bound to human serum albumin.
Chemotherapy
34
345-53
1988
Albifimbria verrucaria, Homo sapiens
Automatic Mining of ENzyme DAta
Schlüter, A; Rüberg, S; Krämer, M; Weidner, S; Priefer, UB
A homolog of the Rhizobium meliloti nitrogen fixation gene fixN is involved in the production of a microaerobically induced oxidase activity in the phytopathogenic bacterium Agrobacterium tumefaciens.
Mol Gen Genet
247
206-15
1995
Agrobacterium tumefaciens
Automatic Mining of ENzyme DAta
Delanghe, JR; Louagie, HK; De Buyzere, ML; Leroux-Roels, GG
Glomerular filtration rate and creatinine production in adult icteric patients.
Clin Chim Acta
224
33-44
1994
Homo sapiens
Automatic Mining of ENzyme DAta
Paronetto, MP; Miele, R; Maugliani, A; Borro, M; Bonaccorsi di Patti, MC
Cloning of Pichia pastoris Fet3: insights into the high affinity iron uptake system.
Arch Biochem Biophys
392
162-7
2001
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Francis, CA; Tebo, BM
Enzymatic manganese(II) oxidation by metabolically dormant spores of diverse Bacillus species.
Appl Environ Microbiol
68
874-80
2002
Bacillus sp. (in: Bacteria), Novibacillus thermophilus, bacterium
Automatic Mining of ENzyme DAta
Kim, JS; Kim, MH; Joe, MH; Song, SS; Lee, IS; Choi, SY
The sctR of Salmonella enterica serova Typhimurium encoding a homologue of MerR protein is involved in the copper-responsive regulation of cuiD.
FEMS Microbiol Lett
210
99-103
2002
Salmonella enterica
Automatic Mining of ENzyme DAta
Voloudakis, AE; Reignier, TM; Cooksey, DA
Regulation of resistance to copper in Xanthomonas axonopodis pv. vesicatoria.
Appl Environ Microbiol
71
782-9
2005
Pseudomonas syringae, Escherichia coli
Automatic Mining of ENzyme DAta
Dick, GJ; Lee, YE; Tebo, BM
Manganese(II)-oxidizing Bacillus spores in Guaymas Basin hydrothermal sediments and plumes.
Appl Environ Microbiol
72
3184-90
2006
Bacillus, California
Automatic Mining of ENzyme DAta
Kwok, EY; Severance, S; Kosman, DJ
Evidence for iron channeling in the Fet3p-Ftr1p high-affinity iron uptake complex in the yeast plasma membrane.
Biochemistry
45
6317-27
2006
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Fernandes, AT; Soares, CM; Pereira, MM; Huber, R; Grass, G; Martins, LO
A robust metallo-oxidase from the hyperthermophilic bacterium Aquifex aeolicus.
FEBS J
274
2683-94
2007
Aquifex aeolicus, Escherichia coli
Automatic Mining of ENzyme DAta
Erb-Downward, JR; Noverr, MC
Characterization of prostaglandin E2 production by Candida albicans.
Infect Immun
75
3498-505
2007
Candida albicans
Automatic Mining of ENzyme DAta
Sánchez-Sutil, MC; Gómez-Santos, N; Moraleda-Muñoz, A; Martins, LO; Pérez, J; Muñoz-Dorado, J
Differential expression of the three multicopper oxidases from Myxococcus xanthus.
J Bacteriol
189
4887-98
2007
Myxococcus xanthus
Automatic Mining of ENzyme DAta
Larrondo, LF; Canessa, P; Melo, F; Polanco, R; Vicuña, R
Cloning and characterization of the genes encoding the high-affinity iron-uptake protein complex Fet3/Ftr1 in the basidiomycete Phanerochaete chrysosporium.
Microbiology
153
1772-80
2007
Phanerodontia chrysosporium
Automatic Mining of ENzyme DAta
Huston, WM; Naylor, J; Cianciotto, NP; Jennings, MP; McEwan, AG
Functional analysis of the multi-copper oxidase from Legionella pneumophila.
Microbes Infect
10
497-503
2008
Legionella pneumophila
Automatic Mining of ENzyme DAta
Fernandes, AT; Martins, LO; Melo, EP
The hyperthermophilic nature of the metallo-oxidase from Aquifex aeolicus.
Biochim Biophys Acta
1794
75-83
2009
Aquifex aeolicus
Automatic Mining of ENzyme DAta
Sevcenco, AM; Krijger, GC; Pinkse, MW; Verhaert, PD; Hagen, WR; Hagedoorn, PL
Development of a generic approach to native metalloproteomics: application to the quantitative identification of soluble copper proteins in Escherichia coli.
J Biol Inorg Chem
14
631-40
2009
Escherichia coli
Automatic Mining of ENzyme DAta
Geszvain, K; Tebo, BM
Identification of a two-component regulatory pathway essential for Mn(II) oxidation in Pseudomonas putida GB-1.
Appl Environ Microbiol
76
1224-31
2010
Pseudomonas putida GB-1, transposons, insertion sequences
Automatic Mining of ENzyme DAta
Flexer, V; Mano, N
From dynamic measurements of photosynthesis in a living plant to sunlight transformation into electricity.
Anal Chem
82
1444-9
2010
Transformation, plant
Automatic Mining of ENzyme DAta
Sanchez-Amat, A; Solano, F; Lucas-Elío, P
Finding new enzymes from bacterial physiology: a successful approach illustrated by the detection of novel oxidases in Marinomonas mediterranea.
Mar Drugs
8
519-41
2010
Marinomonas mediterranea
Automatic Mining of ENzyme DAta
Ueda, A; Kato, D; Kurita, R; Kamata, T; Inokuchi, H; Umemura, S; Hirono, S; Niwa, O
Efficient Direct Electron Transfer with Enzyme on a Nanostructured Carbon Film Fabricated with a Maskless Top-Down UV/Ozone Process.
J Am Chem Soc
133
4840-6
2011
Electron
Automatic Mining of ENzyme DAta
Roncal, T; Muoz, C; Lorenzo, L; Maestro, B; Daz de Guereu, Mdel M
Two-step oxidation of glycerol to glyceric acid catalyzed by the Phanerochaete chrysosporium glyoxal oxidase.
Enzyme Microb Technol
50
143-50
2012
Phanerodontia chrysosporium
Automatic Mining of ENzyme DAta
Gmez-Santos, N; Treuner-Lange, A; Moraleda-Muoz, A; Garca-Bravo, E; Garca-Hernndez, R; Martnez-Cayuela, M; Prez, J; Sgaard-Andersen, L; Muoz-Dorado, J
A comprehensive set of integrative plasmid vectors for copper inducible gene expression in Myxococcus xanthus.
Appl Environ Microbiol
2012
Myxococcus xanthus
Automatic Mining of ENzyme DAta
Lucas-Elo, P; Goodwin, L; Woyke, T; Pitluck, S; Nolan, M; Kyrpides, NC; Detter, JC; Copeland, A; Teshima, H; Bruce, D; Detter, C; Tapia, R; Han, S; Land, ML; Ivanova, N; Mikhailova, N; Johnston, AW; Sanchez-Amat, A
Complete genome sequence of the melanogenic marine bacterium Marinomonas mediterranea type strain (MMB-1(T)).
Stand Genomic Sci
6
63-73
2012
Marinomonas mediterranea
Automatic Mining of ENzyme DAta
Aklujkar, M; Coppi, MV; Leang, C; Kim, BC; Chavan, MA; Perpetua, LA; Giloteaux, L; Liu, A; Holmes, DE
Proteins involved in electron transfer to Fe(III) and Mn(IV) oxides by Geobacter sulfurreducens and Geobacter uraniireducens.
Microbiology
159
515-35
2013
Electron
Automatic Mining of ENzyme DAta
Xie, N; Chapeland-Leclerc, F; Silar, P; Ruprich-Robert, G
Systematic gene deletions evidences that laccases are involved in several stages of wood degradation in the filamentous fungus Podospora anserina.
Environ Microbiol
2013
Podospora anserina, Ascomycota, plant
Automatic Mining of ENzyme DAta
Puopolo, G; Giovannini, O; Pertot, I
Lysobacter capsici AZ78 can be combined with copper to effectively control Plasmopara viticola on grapevine.
Microbiol Res
2013
Lectera capsici
Automatic Mining of ENzyme DAta
Xie, N; Ruprich-Robert, G; Silar, P; Chapeland-Leclerc, F
Bilirubin oxidase-like proteins from Podospora anserina: promising thermostable enzymes for application in transformation of plant biomass.
Environ Microbiol
2014
Podospora anserina, Transformation, plant, Fungi
Automatic Mining of ENzyme DAta
Strachan, CR; Singh, R; VanInsberghe, D; Ievdokymenko, K; Budwill, K; Mohn, WW; Eltis, LD; Hallam, SJ
Metagenomic scaffolds enable combinatorial lignin transformation.
Proc Natl Acad Sci U S A
111
10143-8
2014
Transformation
Automatic Mining of ENzyme DAta
Zeng, T; Pankratov, D; Falk, M; Leimkhler, S; Shleev, S; Wollenberger, U
Miniature direct electron transfer based sulphite/oxygen enzymatic fuel cells.
Biosens Bioelectron
66
39-42
2015
Electron, Homo sapiens, Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Conghaile, P; Falk, M; MacAodha, D; Yakovleva, ME; Gonaus, C; Peterbauer, CK; Gorton, L; Shleev, S; Leech, D
Fully Enzymatic Membraneless Glucose|Oxygen Fuel Cell That Provides 0.275 mA cm(-2) in 5 mM Glucose, Operates in Human Physiological Solutions, and Powers Transmission of Sensing Data.
Anal Chem
88
2156-63
2016
Homo sapiens, Komagataella pastoris
Automatic Mining of ENzyme DAta
Xu, N; Qiu, GW; Lou, WJ; Li, ZK; Jiang, HB; Price, NM; Qiu, BS
Identification of an iron permease, cFTR1, in cyanobacteria involved in the iron reduction/re-oxidation uptake pathway.
Environ Microbiol
2016
Synechocystis, Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Kimura, N; Kamagata, Y
A Thermostable Bilirubin-Oxidizing Enzyme from Activated Sludge Isolated by a Metagenomic Approach.
Microbes Environ
31
435-441
2016
activated sludge metagenome
Automatic Mining of ENzyme DAta
Gupta, V; Capalash, N; Gupta, N; Sharma, P
Bio-Prospecting Laccases in the Bacterial Diversity of Activated Sludge From Pulp and Paper Industry.
Indian J Microbiol
57
75-82
2017
activated sludge metagenome
Automatic Mining of ENzyme DAta
Yuliana, T; Nakajima, N; Yamamura, S; Tomita, M; Suzuki, H; Amachi, S
Draft Genome Sequence of Roseovarius sp. A-2, an Iodide-Oxidizing Bacterium Isolated from Natural Gas Brine Water, Chiba, Japan.
J Genomics
5
51-53
2017
Iodidimonas
Automatic Mining of ENzyme DAta
Tao, L; Stich, TA; Liou, SH; Soldatova, AV; Delgadillo, DA; Romano, CA; Spiro, TG; Goodin, DB; Tebo, BM; Casey, WH; Britt, RD
Copper Binding Sites in the Manganese-Oxidizing Mnx Protein Complex Investigated by Electron Paramagnetic Resonance Spectroscopy.
J Am Chem Soc
139
8868-8877
2017
Bacteria, Bacillus
Automatic Mining of ENzyme DAta
Dankai, W; Pongpom, M; Vanittanakom, N
An investigation into the possible regulation of the expression of genes by yapA in Talaromyces marneffei using the qRT- PCR method.
Med Mycol
2017
Saccharomyces cerevisiae, Talaromyces marneffei
Automatic Mining of ENzyme DAta
Granja-Travez, RS; Wilkinson, RC; Persinoti, GF; Squina, FM; Flp, V; Bugg, TDH
Structural and functional characterisation of multi-copper oxidase CueO from lignin-degrading bacterium Ochrobactrum sp. reveal its activity towards lignin model compounds and lignosulfonate.
FEBS J
2018
Ochrobactrum sp., Bacteria, Paenibacillus sp.
Automatic Mining of ENzyme DAta
Li, L; Liu, Z; Meng, D; Liu, X; Li, X; Zhang, M; Tao, J; Gu, Y; Zhong, S; Yin, H
Comparative Genomic Analysis Reveals the Distribution, Organization, and Evolution of Metal Resistance Genes in the Genus Acidithiobacillus.
Appl Environ Microbiol
85
2019
Acidithiobacillus ferrooxidans, Acidithiobacillus ferrivorans, Acidithiobacillus ferridurans
Automatic Mining of ENzyme DAta
Ji, R; Ge, W; Wang, H; Zhao, Y; Feng, H
BrSKS13, a multiple-allele-inherited male sterility-related gene in Chinese cabbage (Brassica rapa L. ssp. pekinensis), affects pollen development and pollination/fertilization process.
Gene
696
113-121
2019
Arabidopsis thaliana
Automatic Mining of ENzyme DAta
Carri-Segu, ; Ruiz-Rivero, O; Villamayor-Belinchn, L; Puig, S; Perea-Garca, A; Pearrubia, L
The Altered Expression of microRNA408 Influences the Arabidopsis Response to Iron Deficiency.
Front Plant Sci
10
324
2019
Arabidopsis thaliana
Automatic Mining of ENzyme DAta
Macedo, LJA; Hassan, A; Sedenho, GC; Crespilho, FN
Assessing electron transfer reactions and catalysis in multicopper oxidases with operando X-ray absorption spectroscopy.
Nat Commun
11
316
2020
Electron
Automatic Mining of ENzyme DAta
Li, B; Wang, Y; Xue, L; Lu, S
Heterologous Expression and Application of Multicopper Oxidases from Enterococcus spp. for Degradation of Biogenic Amines.
Protein Pept Lett
2020
Enterococcus, Escherichia coli
Automatic Mining of ENzyme DAta
Blackwell, N; Bryce, C; Straub, D; Kappler, A; Kleindienst, S
Genomic Insights into Two Novel Fe(II)-Oxidizing Zetaproteobacteria Isolates Reveal Lifestyle Adaption to Coastal Marine Sediments.
Appl Environ Microbiol
86
2020
Zetaproteobacteria
Automatic Mining of ENzyme DAta
Zhuang, Y; Zuo, D; Tao, Y; Cai, H; Li, L
Laccase3-based extracellular domain provides possible positional information for directing Casparian strip formation in Arabidopsis.
Proc Natl Acad Sci U S A
117
15400-15402
2020
Arabidopsis
Automatic Mining of ENzyme DAta
Liu, J; Gu, T; Li, L; Li, L
Synthesis of MnO/C/NiO-Doped Porous Multiphasic Composites for Lithium-Ion Batteries by Biomineralized Mn Oxides from Engineered Pseudomonas putida Cells.
Nanomaterials (Basel)
11
2021
Pseudomonas putida
Automatic Mining of ENzyme DAta
Zeiner, CA; Purvine, SO; Zink, E; Wu, S; Paa-Toli?, L; Chaput, DL; Santelli, CM; Hansel, CM
Mechanisms of Manganese(II) Oxidation by Filamentous Ascomycete Fungi Vary With Species and Time as a Function of Secretome Composition.
Front Microbiol
12
610497
2021
Pyrenochaeta, Paraphaeosphaeria sporulosa, Stagonospora sp.
Automatic Mining of ENzyme DAta
Farran, R; Mekmouche, Y; Vo, NT; Herrero, C; Quaranta, A; Sircoglou, M; Banse, F; Rousselot-Pailley, P; Simaan, AJ; Aukauloo, A; Tron, T; Leibl, W
Tracking light-induced electron transfer toward O2 in a hybrid photoredox-laccase system.
iScience
24
102378
2021
Electron
Automatic Mining of ENzyme DAta
Martnez-Ruiz, EB; Cooper, M; Barrero-Canosa, J; Haryono, MAS; Bessarab, I; Williams, RBH; Szewzyk, U
Genome analysis of Pseudomonas sp. OF001 and Rubrivivax sp. A210 suggests multicopper oxidases catalyze manganese oxidation required for cylindrospermopsin transformation.
BMC Genomics
22
464
2021
Leptothrix discophora SS-1
Automatic Mining of ENzyme DAta
Lu, RN; Yang, S; Wu, HM; Zheng, XL
Unconjugated bilirubin inhibits proteolytic cleavage of von Willebrand factor by ADAMTS13 protease.
J Thromb Haemost
13
1064-72
2015
Homo sapiens
Automatic Mining of ENzyme DAta
Comfort, AR; Mullon, CJ; Koh, J; Albert, E; Tosone, CP; Hall, J; Langer, R
Stability and immunologic activity of immobilized heparinase and bilirubin oxidase.
ASAIO Trans
34
538-42
0
Oryctolagus cuniculus
Automatic Mining of ENzyme DAta
Tuckwell, D; Lavens, SE; Birch, M
Two families of extracellular phospholipase C genes are present in aspergilli.
Mycol Res
110
1140-51
2006
Fungi
Automatic Mining of ENzyme DAta
Payne, AS; Gitlin, JD
Functional expression of the menkes disease protein reveals common biochemical mechanisms among the copper-transporting P-type ATPases.
J Biol Chem
273
3765-70
1998
Saccharomyces cerevisiae, Homo sapiens
Automatic Mining of ENzyme DAta
Hu, H; Yu, T; Arpiainen, S; Lang, MA; Hakkola, J; Abu-Bakar, A
Tumour suppressor protein p53 regulates the stress activated bilirubin oxidase cytochrome P450 2A6.
Toxicol Appl Pharmacol
289
30-9
2015
Homo sapiens
Automatic Mining of ENzyme DAta
Ohisa, Y; Kawamura, T; Abe, Y; Ishimori, A
[Effect of bilirubin on serum fructosamine value, and the elimination of bilirubin by bilirubin oxidase]
Rinsho Byori
40
194-8
1992
Homo sapiens
Automatic Mining of ENzyme DAta
Ihara, H; Aoki, Y; Aoki, T; Yoshida, M
Light has a greater effect on direct bilirubin measured by the bilirubin oxidase method than by the diazo method.
Clin Chem
36
895-7
1990
Homo sapiens
Automatic Mining of ENzyme DAta
Kimura, M; Matsumura, Y; Konno, T; Miyauchi, Y; Maeda, H
Enzymatic removal of bilirubin toxicity by bilirubin oxidase in vitro and excretion of degradation products in vivo.
Proc Soc Exp Biol Med
195
64-9
1990
Homo sapiens, Mus musculus
Automatic Mining of ENzyme DAta
Kimura, M; Matsumura, Y; Miyauchi, Y; Maeda, H
A new tactic for the treatment of jaundice: an injectable polymer-conjugated Bilirubin oxidase.
Proc Soc Exp Biol Med
188
364-9
1988
Albifimbria verrucaria, Rattus
Automatic Mining of ENzyme DAta
Sugi, K; Inoue, M; Morino, Y
Degradation of plasma bilirubin by a bilirubin oxidase derivative which has a relatively long half-life in the circulation.
Biochim Biophys Acta
991
405-9
1989
Homo sapiens, Rattus, Rattus norvegicus, Metazoa
Automatic Mining of ENzyme DAta
Umaji, K; Okumiya, T; Park, K; Sasaki, M
[A colorimetric method for determination of delta-bilirubin in serum using bilirubin oxidase (Trachyderma tsunodae)]
Rinsho Byori
37
905-10
1989
Homo sapiens, Ganoderma tsunodae
Automatic Mining of ENzyme DAta
Singh, BR; Choi, J; Kwon, TI; Song, PS
Use of bilirubin oxidase for probing chromophore topography in tetrapyrrole proteins.
J Biochem Biophys Methods
18
135-47
1989
Homo sapiens, plant
Automatic Mining of ENzyme DAta
Mullon, CJ; Tosone, CM; Langer, R
Simulation of bilirubin detoxification in the newborn using an extracorporeal bilirubin oxidase reactor.
Pediatr Res
26
452-7
1989
Rattus norvegicus, Homo sapiens
Automatic Mining of ENzyme DAta
Doumas, BT; Perry, B; Jendrzejczak, B; Davis, L
Measurement of direct bilirubin by use of bilirubin oxidase.
Clin Chem
33
1349-53
1987
Homo sapiens
Automatic Mining of ENzyme DAta
Mullon, CJ; Langer, R
Determination of conjugated and total bilirubin in serum of neonates, with use of bilirubin oxidase.
Clin Chem
33
1822-5
1987
Homo sapiens
Automatic Mining of ENzyme DAta
Perry, B; Doumas, BT; Buffone, G; Glick, M; Ou, CN; Ryder, K
Measurement of total bilirubin by use of bilirubin oxidase.
Clin Chem
32
329-32
1986
Homo sapiens
Automatic Mining of ENzyme DAta
Artiss, JD; McEnroe, RJ; Zak, B
Bilirubin interference in a peroxidase-coupled procedure for creatinine eliminated by bilirubin oxidase.
Clin Chem
30
1389-92
1984
Homo sapiens
Automatic Mining of ENzyme DAta
Bell, M; Jamison, M; Braganza, JM
Serum copper oxidase activity (coeruloplasmin) in chronic pancreatitis: inverse correlation with pancreatic exocrine function.
Clin Chim Acta
117
259-68
1981
Homo sapiens
Automatic Mining of ENzyme DAta
Wong, SS; Schenkel, OJ
Quantification of plasma hemoglobin in the presence of bilirubin with bilirubin oxidase.
Ann Clin Lab Sci
25
247-51
0
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Soltys, PJ; Mullon, C; Langer, R
Oral treatment for jaundice using immobilized bilirubin oxidase.
Artif Organs
16
331-5
1992
Rattus, Homo sapiens, Rattus norvegicus
Automatic Mining of ENzyme DAta
Shimizu, A; Sasaki, T; Kwon, JH; Odaka, A; Satoh, T; Sakurai, N; Sakurai, T; Yamaguchi, S; Samejima, T
Site-directed mutagenesis of a possible type 1 copper ligand of bilirubin oxidase; a Met467Gln mutant shows stellacyanin-like properties.
J Biochem (Tokyo)
125
662-8
1999
Albifimbria verrucaria, Tharsalea heteronea
Automatic Mining of ENzyme DAta
Doumas, BT; Yein, F; Perry, B; Jendrzejczak, B; Kessner, A
Determination of the sum of bilirubin sugar conjugates in plasma by bilirubin oxidase.
Clin Chem
45
1255-60
1999
Homo sapiens, Indicator
Automatic Mining of ENzyme DAta
Kimura, S; Iyama, S; Yamaguchi, Y; Hayashi, S; Yanagihara, T
Enzymatic assay for conjugated bilirubin (Bc) in serum using bilirubin oxidase (BOD).
J Clin Lab Anal
13
219-23
1999
Homo sapiens, Myrothecium
Automatic Mining of ENzyme DAta
Lawton, TJ; Sayavedra-Soto, LA; Arp, DJ; Rosenzweig, AC
Crystal structure of a two-domain multicopper oxidase: IMPLICATIONS FOR THE EVOLUTION OF MULTICOPPER BLUE PROTEINS.
J Biol Chem
284
10174-80
2009
Nitrosomonas europaea, Tharsalea heteronea
Automatic Mining of ENzyme DAta
Zaballa, ME; Ziegler, L; Kosman, DJ; Vila, AJ
NMR study of the exchange coupling in the trinuclear cluster of the multicopper oxidase Fet3p.
J Am Chem Soc
132
11191-6
2010
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Kjaergaard, CH; Durand, F; Tasca, F; Qayyum, MF; Kauffmann, B; Gounel, S; Suraniti, E; Hodgson, KO; Hedman, B; Mano, N; Solomon, EI
Spectroscopic and Crystallographic Characterization of 'Alternative Resting' and 'Resting Oxidized' Enzyme Forms of Bilirubin Oxidase: Implications for Activity and Electrochemical Behavior of Multicopper Oxidases.
J Am Chem Soc
2012
Trametes versicolor
Automatic Mining of ENzyme DAta
Batra, B; Lata, S; Sunny, ; Rana, JS; Pundir, CS
Construction of an amperometric bilirubin biosensor based on covalent immobilization of bilirubin oxidase onto zirconia coated silica nanoparticles/chitosan hybrid film.
Biosens Bioelectron
44
64-9
2013
Homo sapiens, Electron
Automatic Mining of ENzyme DAta
Pita, M; Gutierrez-Sanchez, C; Toscano, MD; Shleev, S; De Lacey, AL
Oxygen biosensor based on bilirubin oxidase immobilized on a nanostructured gold electrode.
Bioelectrochemistry
94C
69-74
2013
Electron, Homo sapiens
Automatic Mining of ENzyme DAta
Pankratov, DV; Zeifman, YS; Dudareva, AV; Pankratova, GK; Khlupova, ME; Parunova, YM; Zajtsev, DN; Bashirova, NF; Popov, VO; Shleev, SV
Impact of surface modification with gold nanoparticles on the bioelectrocatalytic parameters of immobilized bilirubin oxidase.
Acta Naturae
6
102-6
2014
Electron, Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Morishita, H; Kurita, D; Kataoka, K; Sakurai, T
Study on dioxygen reduction by mutational modifications of the hydrogen bond network leading from bulk water to the trinuclear copper center in bilirubin oxidase.
Biochem Biophys Res Commun
450
767-72
2014
Electron
Automatic Mining of ENzyme DAta
Lalaoui, N; Le Goff, A; Holzinger, M; Cosnier, S
Fully Oriented Bilirubin Oxidase on Porphyrin-Functionalized Carbon Nanotube Electrodes for Electrocatalytic Oxygen Reduction.
Chemistry
21
16868-73
2015
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
McArdle, T; McNamara, TP; Fei, F; Singh, K; Blanford, CF
Optimizing the Mass-Specific Activity of Bilirubin Oxidase Adlayers through Combined Electrochemical Quartz Crystal Microbalance and Dual Polarization Interferometry Analyses.
ACS Appl Mater Interfaces
7
25270-80
2015
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Serrano-Posada, H; Centeno-Leija, S; Rojas-Trejo, SP; Rodrguez-Almazn, C; Stojanoff, V; Rudio-Piera, E
X-ray-induced catalytic active-site reduction of a multicopper oxidase: structural insights into the proton-relay mechanism and O2-reduction states.
Acta Crystallogr D Biol Crystallogr
71
2396-411
2015
Thermus thermophilus HB27, collection
Automatic Mining of ENzyme DAta
Ausec, L; Berini, F; Casciello, C; Cretoiu, MS; van Elsas, JD; Marinelli, F; Mandic-Mulec, I
The first acidobacterial laccase-like multicopper oxidase revealed by metagenomics shows high salt and thermo-tolerance.
Appl Microbiol Biotechnol
101
6261-6276
2017
soil metagenome
Automatic Mining of ENzyme DAta
Bello-Gil, D; Roig-Molina, E; Fonseca, J; Sarmiento-Ferrndez, MD; Ferrndiz, M; Franco, E; Mira, E; Maestro, B; Sanz, JM
An enzymatic system for decolorization of wastewater dyes using immobilized CueO laccase-like multicopper oxidase on poly-3-hydroxybutyrate.
Microb Biotechnol
11
881-892
2018
Escherichia coli
Automatic Mining of ENzyme DAta
Satomura, T; Hirano, T; Inagaki, K; Horinaga, K; Takamura, E; Sakamoto, H; Ohshida, T; Ohshima, T; Sakuraba, H; Suye, SI
Activity enhancement of multicopper oxidase from a hyperthermophile via directed evolution, and its application as the element of a high performance biocathode.
J Biotechnol
325
226-232
2021
Pyrobaculum aerophilum, archaeon
Automatic Mining of ENzyme DAta
Tang, W; Liu, H; Zeng, X
Structural and functional study on cysteine 495, coordinating ligand to T1Cu site in multicopper oxidase CopA.
Chemosphere
281
130807
2021
Brevibacillus panacihumi
Automatic Mining of ENzyme DAta
Ahn, SH; Duffel, MW; Rosazza, JP
Oxidations of vincristine catalyzed by peroxidase and ceruloplasmin.
J Nat Prod
60
1125-9
1997
Armoracia rusticana, Catharanthus, Homo sapiens
Automatic Mining of ENzyme DAta
Thorum, MS; Anderson, CA; Hatch, JJ; Campbell, AS; Marshall, NM; Zimmerman, SC; Lu, Y; Gewirth, AA
Direct, Electrocatalytic Oxygen Reduction by Laccase on Anthracene-2-methanethiol Modified Gold.
J Phys Chem Lett
1
2251-2254
2010
Electron
Automatic Mining of ENzyme DAta
Hu, J; Lu, K; Dong, S; Huang, Q; Mao, L
Inactivation of Laccase by the Attack of As (III) Reaction in Water.
Environ Sci Technol
52
2945-2952
2018
Lycaeninae
Automatic Mining of ENzyme DAta
Gollan, JL; Stocks, J; Dormandy, TL; Sherlock, S
Reduced oxidase activity in the caeruloplasmin of two families with Wilson's disease.
J Clin Pathol
30
81-3
1977
Homo sapiens
Automatic Mining of ENzyme DAta
Sokolov, AV; Golenkina, EA; Kostevich, VA; Vasilyev, VB; Sud'ina, GF
Interaction of ceruloplasmin and 5-lipoxygenase.
Biochemistry (Mosc)
75
1464-9
2010
Homo sapiens
Automatic Mining of ENzyme DAta
Akter, M; Inoue, C; Komori, H; Matsuda, N; Sakurai, T; Kataoka, K; Higuchi, Y; Shibata, N
Biochemical, spectroscopic and X-ray structural analysis of deuterated multicopper oxidase CueO prepared from a new expression construct for neutron crystallography.
Acta Crystallogr F Struct Biol Commun
72
788-794
2016
Escherichia coli
Automatic Mining of ENzyme DAta
Aleksejeva, O; Sokolov, AV; Marquez, I; Gustafsson, A; Bushnev, S; Eriksson, H; Ljunggren, L; Shleev, S
Autotolerant ceruloplasmin based biocathodes for implanted biological power sources.
Bioelectrochemistry
140
107794
2021
Albifimbria verrucaria, Homo sapiens, Toxicodendron vernicifluum
Automatic Mining of ENzyme DAta
Iwamori, S; Sato, E; Saigusa, D; Yoshinari, K; Ito, S; Sato, H; Takahashi, N
A novel and sensitive assay for heme oxygenase activity.
Am J Physiol Renal Physiol
309
F667-71
2015
Mus musculus
Automatic Mining of ENzyme DAta
Hu, J; Li, H; Chooi, YH
Fungal Dirigent Protein Controls the Stereoselectivity of Multicopper Oxidase-Catalyzed Phenol Coupling in Viriditoxin Biosynthesis.
J Am Chem Soc
141
8068-8072
2019
Aspergillus nidulans
Automatic Mining of ENzyme DAta
Scanlon, MD; Salaj-Kosla, U; Belochapkine, S; MacAodha, D; Leech, D; Ding, Y; Magner, E
Characterization of nanoporous gold electrodes for bioelectrochemical applications.
Langmuir
28
2251-61
2012
Albifimbria verrucaria, Areas, Electron
Automatic Mining of ENzyme DAta
Wu, TW; Li, GS
A new bilirubin-degrading enzyme from orange peels.
Biochem Cell Biol
66
1248-52
1988
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Tokiwa, T; Nakano, S; Yamamoto, Y; Ishikawa, T; Ito, S; Sladek, V; Fukuzawa, K; Mochizuki, Y; Tokiwa, H; Misaizu, F; Shigeta, Y
Development of an Analysis Toolkit, AnalysisFMO, to Visualize Interaction Energies Generated by Fragment Molecular Orbital Calculations.
J Chem Inf Model
59
25-30
2019
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Johnson, HA; Tebo, BM
In vitro studies indicate a quinone is involved in bacterial Mn(II) oxidation.
Arch Microbiol
189
59-69
2008
Bacteria
Automatic Mining of ENzyme DAta
Melo, AFAA; Hassan, A; Macedo, LJA; Osica, I; Shrestha, LK; Ji, Q; Oliveira, ON; Henzie, J; Ariga, K; Crespilho, FN
Microwires of Au-Ag Nanocages Patterned via Magnetic Nanoadhesives for Investigating Proteins using Surface Enhanced Infrared Absorption Spectroscopy.
ACS Appl Mater Interfaces
11
18053-18061
2019
Bos taurus
Automatic Mining of ENzyme DAta
Ikeda, T
A novel electrochemical approach to the characterization of oxidoreductase reactions.
Chem Rec
4
192-203
2004
Myrothecium, Escherichia coli, Electron
Automatic Mining of ENzyme DAta
Zhang, L; Zhou, M; Wen, D; Bai, L; Lou, B; Dong, S
Small-size biofuel cell on paper.
Biosens Bioelectron
2012
Coffea, Vitis vinifera, Citrullus lanatus subsp. vulgaris
Automatic Mining of ENzyme DAta
MacAodha, D; Conghaile, P; Egan, B; Kavanagh, P; Leech, D
Membraneless glucose/oxygen enzymatic fuel cells using redox hydrogel films containing carbon nanotubes.
Chemphyschem
14
2302-7
2013
Albifimbria verrucaria, Streptomyces coelicolor, Tharsalea heteronea, Thermothelomyces thermophilus
Automatic Mining of ENzyme DAta
Korani, A; Salimi, A
Fabrication of High performance bioanode based on fruitful association of dendrimer and carbon nanotube used for design O2/glucose membrane-less biofuel cell with improved bilirubine oxidase biocathode.
Biosens Bioelectron
50
186-93
2013
Electron
Automatic Mining of ENzyme DAta
Babadi, AA; Bagheri, S; Hamid, SB
Progress on implantable biofuel cell: Nano-carbon functionalization for enzyme immobilization enhancement.
Biosens Bioelectron
79
850-60
2016
Electron, animal
Automatic Mining of ENzyme DAta
Siepenkoetter, T; Salaj-Kosla, U; Xiao, X; Conghaile, P; Pita, M; Ludwig, R; Magner, E
Immobilization of Redox Enzymes on Nanoporous Gold Electrodes: Applications in Biofuel Cells.
Chempluschem
82
553-560
2017
Areas
Automatic Mining of ENzyme DAta
Wang, X; Falk, M; Ortiz, R; Matsumura, H; Bobacka, J; Ludwig, R; Bergelin, M; Gorton, L; Shleev, S
Mediatorless sugar/oxygen enzymatic fuel cells based on gold nanoparticle-modified electrodes.
Biosens Bioelectron
31
219-25
2012
Crassicarpon thermophilum, Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Falk, M; Andoralov, V; Blum, Z; Sotres, J; Suyatin, DB; Ruzgas, T; Arnebrant, T; Shleev, S
Biofuel cell as a power source for electronic contact lenses.
Biosens Bioelectron
37
38-45
2012
Albifimbria verrucaria, Crassicarpon thermophilum, Electron, Homo sapiens
Automatic Mining of ENzyme DAta
Shao, M; Zafar, MN; Falk, M; Ludwig, R; Sygmund, C; Peterbauer, CK; Guschin, DA; MacAodha, D; Conghaile, P; Leech, D; Toscano, MD; Shleev, S; Schuhmann, W; Gorton, L
Optimization of a membraneless glucose/oxygen enzymatic fuel cell based on a bioanode with high coulombic efficiency and current density.
Chemphyschem
14
2260-9
2013
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Lamberg, P; Shleev, S; Ludwig, R; Arnebrant, T; Ruzgas, T
Performance of enzymatic fuel cell in cell culture.
Biosens Bioelectron
55
168-73
2014
Crassicarpon thermophilum, Albifimbria verrucaria, Mus musculus
Automatic Mining of ENzyme DAta
Gonzlez-Arribas, E; Bobrowski, T; Di Bari, C; Sliozberg, K; Ludwig, R; Toscano, MD; De Lacey, AL; Pita, M; Schuhmann, W; Shleev, S
Transparent, mediator- and membrane-free enzymatic fuel cell based on nanostructured chemically modified indium tin oxide electrodes.
Biosens Bioelectron
97
46-52
2017
Corynascus, Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Bobrowski, T; Gonzlez Arribas, E; Ludwig, R; Toscano, MD; Shleev, S; Schuhmann, W
Rechargeable, flexible and mediator-free biosupercapacitor based on transparent ITO nanoparticle modified electrodes acting in M glucose containing buffers.
Biosens Bioelectron
101
84-89
2018
Acinetobacter calcoaceticus, Crassicarpon thermophilum, Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Rengaraj, S; Kavanagh, P; Leech, D
A comparison of redox polymer and enzyme co-immobilization on carbon electrodes to provide membrane-less glucose/O2 enzymatic fuel cells with improved power output and stability.
Biosens Bioelectron
30
294-9
2011
Trametes hirsuta, Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Trifonov, A; Herkendell, K; Tel-Vered, R; Yehezkeli, O; Woerner, M; Willner, I
Enzyme-capped relay-functionalized mesoporous carbon nanoparticles: effective bioelectrocatalytic matrices for sensing and biofuel cell applications.
ACS Nano
7
11358-68
2013
Armoracia rusticana
Automatic Mining of ENzyme DAta
Kilic, MS; Korkut, S; Hazer, B; Erhan, E
Development and operation of gold and cobalt oxide nanoparticles containing polypropylene based enzymatic fuel cell for renewable fuels.
Biosens Bioelectron
61
500-5
2014
Meleagris gallopavo, Carpobrotus acinaciformis, plant
Automatic Mining of ENzyme DAta
Campbell, AS; Jeong, YJ; Geier, SM; Koepsel, RR; Russell, AJ; Islam, MF
Membrane/Mediator-free rechargeable enzymatic biofuel cell utilizing graphene/single-wall carbon nanotube cogel electrodes.
ACS Appl Mater Interfaces
7
4056-65
2015
Electron, collection
Automatic Mining of ENzyme DAta
Minteer, SD
Oxidative bioelectrocatalysis: From natural metabolic pathways to synthetic metabolons and minimal enzyme cascades.
Biochim Biophys Acta
2015
Electron
Automatic Mining of ENzyme DAta
Abdel-Hamid, AM; Solbiati, JO; Cann, IK
Insights into lignin degradation and its potential industrial applications.
Adv Appl Microbiol
82
1-28
2013
Bacteria, Fungi
Automatic Mining of ENzyme DAta
Chesta, J; Palma, R; Antezana, C; Aldunate, JP; Molina, O
Serum copper in intrahepatic cholestasis of pregnancy.
Acta Gastroenterol Latinoam
21
89-95
1991
Homo sapiens
Automatic Mining of ENzyme DAta
Brodersen, R; Stern, L
Deposition of bilirubin acid in the central nervous system--a hypothesis for the development of kernicterus.
Acta Paediatr Scand
79
12-9
1990
Homo sapiens
Automatic Mining of ENzyme DAta
Otsuji, S; Mizuno, K; Ito, S; Kawahara, S; Kai, M
A new enzymatic approach for estimating total and direct bilirubin.
Clin Biochem
21
33-8
1988
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Kosaka, A; Yamamoto, C; Morishita, Y; Nakane, K
Enzymatic determination of bilirubin fractions in serum.
Clin Biochem
20
451-8
1987
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Lavin, A; Sung, C; Klibanov, AM; Langer, R
Enzymatic removal of bilirubin from blood: a potential treatment for neonatal jaundice.
Science
230
543-5
1985
Homo sapiens, Rattus
Automatic Mining of ENzyme DAta
Harris, ZL; Takahashi, Y; Miyajima, H; Serizawa, M; MacGillivray, RT; Gitlin, JD
Aceruloplasminemia: molecular characterization of this disorder of iron metabolism.
Proc Natl Acad Sci U S A
92
2539-43
1995
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Winzerling, JJ; Law, JH
Comparative nutrition of iron and copper.
Annu Rev Nutr
17
501-26
1997
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Hung, IH; Casareno, RL; Labesse, G; Mathews, FS; Gitlin, JD
HAH1 is a copper-binding protein with distinct amino acid residues mediating copper homeostasis and antioxidant defense.
J Biol Chem
273
1749-54
1998
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Harris, ZL; Klomp, LW; Gitlin, JD
Aceruloplasminemia: an inherited neurodegenerative disease with impairment of iron homeostasis.
Am J Clin Nutr
67
972S-977S
1998
Saccharomyces cerevisiae, Homo sapiens
Automatic Mining of ENzyme DAta
Gitlin, JD
Aceruloplasminemia.
Pediatr Res
44
271-6
1998
Saccharomyces cerevisiae, Homo sapiens
Automatic Mining of ENzyme DAta
Morimoto, Y; Ishihara, T; Takayama, M; Kaito, M; Adachi, Y
Novel assay for measuring serum conjugated bilirubin and its clinical relevance.
J Clin Lab Anal
14
27-31
2000
Homo sapiens
Automatic Mining of ENzyme DAta
Mano, N; Kim, HH; Zhang, Y; Heller, A
An oxygen cathode operating in a physiological solution.
J Am Chem Soc
124
6480-6
2002
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Arnesano, F; Banci, L; Bertini, I; Mangani, S; Thompsett, AR
A redox switch in CopC: an intriguing copper trafficking protein that binds copper(I) and copper(II) at different sites.
Proc Natl Acad Sci U S A
100
3814-9
2003
Bacteria
Automatic Mining of ENzyme DAta
Zhang, Y; Pothukuchy, A; Shin, W; Kim, Y; Heller, A
Detection of approximately 10(3) copies of DNA by an electrochemical enzyme-amplified sandwich assay with ambient O(2) as the substrate.
Anal Chem
76
4093-7
2004
Armoracia rusticana, Shigella flexneri
Automatic Mining of ENzyme DAta
Webb, SM; Dick, GJ; Bargar, JR; Tebo, BM
Evidence for the presence of Mn(III) intermediates in the bacterial oxidation of Mn(II).
Proc Natl Acad Sci U S A
102
5558-63
2005
Bacillus sp. (in: Bacteria), Electron, Novibacillus thermophilus
Automatic Mining of ENzyme DAta
Heller, A
Potentially implantable miniature batteries.
Anal Bioanal Chem
385
469-73
2006
Homo sapiens
Automatic Mining of ENzyme DAta
Gnanou, JV; Thykadavil, VG; Thuppil, V
Pros and cons of immunochemical and enzymatic method in the diagnosis of Wilson's disease.
Indian J Med Sci
60
371-5
2006
Homo sapiens
Automatic Mining of ENzyme DAta
Rowinski, P; Kang, C; Shin, H; Heller, A
Mechanical and chemical protection of a wired enzyme oxygen cathode by a cubic phase lyotropic liquid crystal.
Anal Chem
79
1173-80
2007
Metazoa
Automatic Mining of ENzyme DAta
Jenkins, PA; Boland, S; Kavanagh, P; Leech, D
Evaluation of performance and stability of biocatalytic redox films constructed with different copper oxygenases and osmium-based redox polymers.
Bioelectrochemistry
76
162-8
2009
Trametes, Melanocarpus albomyces
Automatic Mining of ENzyme DAta
Miyata, N; Tani, Y; Iwahori, K; Soma, M
Enzymatic formation of manganese oxides by an Acremonium-like hyphomycete fungus, strain KR21-2.
FEMS Microbiol Ecol
47
101-9
2004
Bacteria, Ascomycota
Automatic Mining of ENzyme DAta
Szczupak, A; Kol-Kalman, D; Alfonta, L
A hybrid biocathode: surface display of O2-reducing enzymes for microbial fuel cell applications.
Chem Commun (Camb)
48
49-51
2012
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Rasmussen, M; Ritzmann, RE; Lee, I; Pollack, AJ; Scherson, D
An implantable biofuel cell for a live insect.
J Am Chem Soc
134
1458-60
2012
Electron, Blaberus discoidalis
Automatic Mining of ENzyme DAta
Geszvain, K; Butterfield, C; Davis, RE; Madison, AS; Lee, SW; Parker, DL; Soldatova, A; Spiro, TG; Luther, GW; Tebo, BM
The molecular biogeochemistry of manganese(II) oxidation.
Biochem Soc Trans
40
1244-8
2012
Bacteria
Automatic Mining of ENzyme DAta
Falk, M; Andoralov, V; Silow, M; Toscano, MD; Shleev, S
Miniature biofuel cell as a potential power source for glucose-sensing contact lenses.
Anal Chem
85
6342-8
2013
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Xue, Q; Kato, D; Kamata, T; Guo, Q; You, T; Niwa, O
Improved direct electrochemistry for proteins adsorbed on a UV/ozone-treated carbon nanofiber electrode.
Anal Sci
29
611-8
2013
Electron
Automatic Mining of ENzyme DAta
Fernandes, TA; da Silveira, WB; Passos, FM; Zucchi, TD
Oligonucleotide primers for specific detection of actinobacterial laccases from superfamilies I and K.
Antonie Van Leeuwenhoek
106
391-8
2014
Actinomycetia
Automatic Mining of ENzyme DAta
Cheng, J; Han, Y; Deng, L; Guo, S
Carbon nanotube-bilirubin oxidase bioconjugate as a new biofuel cell label for self-powered immunosensor.
Anal Chem
86
11782-8
2014
Homo sapiens
Automatic Mining of ENzyme DAta
Lalaoui, N; de Poulpiquet, A; Haddad, R; Le Goff, A; Holzinger, M; Gounel, S; Mermoux, M; Infossi, P; Mano, N; Lojou, E; Cosnier, S
A membraneless air-breathing hydrogen biofuel cell based on direct wiring of thermostable enzymes on carbon nanotube electrodes.
Chem Commun (Camb)
51
7447-50
2015
Bacillus pumilus
Automatic Mining of ENzyme DAta
Lu, L; Zeng, G; Fan, C; Guo, J; Zhang, J; Chen, M; Wu, H; Yuan, Y; He, X; He, Y
Environmental factors shaping the abundance and distribution of laccase-encoding bacterial community with potential phenolic oxidase capacity during composting.
Appl Microbiol Biotechnol
99
9191-201
2015
Bacteria
Automatic Mining of ENzyme DAta
Han, Y; Chabu, JM; Hu, S; Deng, L; Liu, YN; Guo, S
Rational Tuning of the Electrocatalytic Nanobiointerface for a "Turn-Off" Biofuel-Cell-Based Self-Powered Biosensor for p53 Protein.
Chemistry
21
13045-51
2015
Electron
Automatic Mining of ENzyme DAta
Chakraborty, S; Babanova, S; Rocha, RC; Desireddy, A; Artyushkova, K; Boncella, AE; Atanassov, P; Martinez, JS
A Hybrid DNA-Templated Gold Nanocluster For Enhanced Enzymatic Reduction of Oxygen.
J Am Chem Soc
137
11678-87
2015
Electron
Automatic Mining of ENzyme DAta
McNamara, TP; Blanford, CF
A sensitivity metric and software to guide the analysis of soft films measured by a quartz crystal microbalance.
Analyst
141
2911-9
2016
Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Liang, J; Bai, Y; Men, Y; Qu, J
Microbe-microbe interactions trigger Mn(II)-oxidizing gene expression.
ISME J
2016
Arthrobacter
Automatic Mining of ENzyme DAta
Szczupak, A; Aizik, D; Moras, S; Vazana, Y; Barak, Y; Bayer, EA; Alfonta, L
The Electrosome: A Surface-Displayed Enzymatic Cascade in a Biofuel Cell's Anode and a High-Density Surface-Displayed Biocathodic Enzyme.
Nanomaterials (Basel)
7
2017
Saccharomyces cerevisiae
Automatic Mining of ENzyme DAta
Di Bari, C; Mano, N; Shleev, S; Pita, M; L De Lacey, A
Halides inhibition of multicopper oxidases studied by FTIR spectroelectrochemistry using azide as an active infrared probe.
J Biol Inorg Chem
22
1179-1186
2017
Trametes hirsuta, Pyricularia oryzae
Automatic Mining of ENzyme DAta
Szczesny, J; Markovi?, N; Conzuelo, F; Zacarias, S; Pereira, IAC; Lubitz, W; Plumer, N; Schuhmann, W; Ruff, A
A gas breathing hydrogen/air biofuel cell comprising a redox polymer/hydrogenase-based bioanode.
Nat Commun
9
4715
2018
Electron
Automatic Mining of ENzyme DAta
Shen, F; Pankratov, D; Pankratova, G; Toscano, MD; Zhang, J; Ulstrup, J; Chi, Q; Gorton, L
Supercapacitor/biofuel cell hybrid device employing biomolecules for energy conversion and charge storage.
Bioelectrochemistry
128
94-99
2019
Electron
Automatic Mining of ENzyme DAta
Zhou, X; Gai, P; Zhang, P; Sun, H; Lv, F; Liu, L; Wang, S
Conjugated Polymer Enhanced Photoelectric Response of Self-Circulating Photosynthetic Bioelectrochemical Cell.
ACS Appl Mater Interfaces
11
38993-39000
2019
Electron
Automatic Mining of ENzyme DAta
Mukha, D; Cohen, Y; Yehezkeli, O
BiVO4/Bilirubin Oxidase Photo(bio)electrochemical Cells for Unbiased Light-Triggered Electrical Power Generation.
ChemSusChem
2020
Bacillus pumilus, Albifimbria verrucaria
Automatic Mining of ENzyme DAta
Govil, T; Saxena, P; Samanta, D; Singh, SS; Kumar, S; Salem, DR; Sani, RK
Adaptive Enrichment of a Thermophilic Bacterial Isolate for Enhanced Enzymatic Activity.
Microorganisms
8
2020
Geobacillus, Pseudomonas zeshuii
Automatic Mining of ENzyme DAta
Hitaishi, VP; Mazurenko, I; Vengasseril Murali, A; de Poulpiquet, A; Coustillier, G; Delaporte, P; Lojou, E
Nanosecond Laser-Fabricated Monolayer of Gold Nanoparticles on ITO for Bioelectrocatalysis.
Front Chem
8
431
2020
Thermus thermophilus, Albifimbria verrucaria
Automatic Mining of ENzyme DAta