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Reference on EC 2.3.1.28 - chloramphenicol O-acetyltransferase and Organism(s) Escherichia coli and UniProt Accession P62577

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REF.
AUTHORS
TITLE
JOURNAL
VOL.
PAGES
YEAR
ORGANISM (UNIPROT)
PUBMED ID
SOURCE
Shaw, W.V.
The enzymatic acetylation of chloramphenicol by extracts of R factor-resistant Escherichia coli
J. Biol. Chem.
242
687-693
1967
Escherichia coli
Manually annotated by BRENDA team
Shaw, W.V.; Brodsky, R.F.
Characterization of chloramphenicol acetyltransferase from chloramphenicol-resistant Staphylococcus aureus
J. Bacteriol.
95
28-36
1968
Escherichia coli, Staphylococcus aureus, Staphylococcus aureus C22.1
Manually annotated by BRENDA team
Shaw, W.V.
Chloramphenicol acetyltransferase from chloramphenicol-resistant bacteria
Methods Enzymol.
43
737-755
1975
Agrobacterium tumefaciens, Streptococcus pneumoniae, Escherichia coli, Enterococcus faecalis, Staphylococcus sp.
Manually annotated by BRENDA team
Thibault, G.; Guitard, M.; Daigneault, R.
A study of the enzymatic inactivation of chloramphenicol by highly purified chloramphenicol acetyltransferase
Biochim. Biophys. Acta
614
339-349
1980
Escherichia coli
Manually annotated by BRENDA team
Murray, I.A.; Martinez-Suarez, J.V.; Close, T.J.; Shaw, W.V.
Nucleotide sequences of genes encoding the type II chloramphenicol acetyltransferases of Escherichia coli and Haemophilus influenzae, which are sensitive to inhibition by thiol-reactive reagents
Biochem. J.
272
505-510
1990
Escherichia coli, Haemophilus influenzae
Manually annotated by BRENDA team
Ellis, J.; Bagshaw, C.R.; Shaw, W.V.
Substrate binding to chloramphenicol acetyltransferase: evidence for negative cooperativity from equilibrium and kinetic constants for binary and ternary complexes
Biochemistry
30
10806-10813
1991
Escherichia coli
Manually annotated by BRENDA team
Tanaka, H.; Izaki, K.; Takahashi, H.
Some properties of chloramphenicol acetyltransferase, with particular reference to the mechanism of inhibition by basic triphenylmethane dyes
J. Biochem.
76
1009-1019
1974
Escherichia coli
Manually annotated by BRENDA team
Guitard, M.; Daigneault, R.
Purification of Escherichia coli chloramphenicol acetyltransferase by affinity chromatography
Can. J. Biochem.
52
1087-1090
1974
Escherichia coli, Escherichia coli W677/HJR66
Manually annotated by BRENDA team
Kleanthous, C.; Shaw, W.V.
Analysis of the mechanism of chloramphenicol acetyltransferase by steady-state kinetics. Evidence for a ternary-complex mechanism
Biochem. J.
223
211-220
1984
Escherichia coli, Escherichia coli J53(R387)
Manually annotated by BRENDA team
Van der Schueren, J.; Robben, J.; Volckaert, G.
Misfolding of chloramphenicol acetyltransferase due to carboxy-terminal truncation can be corrected by second-site mutations
Protein Eng.
11
1211-1217
1998
Escherichia coli
Manually annotated by BRENDA team
Kim, S.J.; Jeon, H.Y.; Kim, H.B.
Chloramphenicol acetyltransferase expression of Escherichia coli is increased at 42 DegC
Biotechnol. Tech.
11
435-438
1997
Escherichia coli
-
Manually annotated by BRENDA team
Zhou, M.; Lu, M.L.; Qiu, W.; Campbell, R.L.; Nahoum, V.; Lapointe, J.; Roy, P.H.; Lin, S.X.
Crystallization and preliminary X-ray diffraction analysis of the chloramphenicol acetyltransferase from Tn2424
Acta Crystallogr. Sect. D
57
281-283
2001
Escherichia coli
Manually annotated by BRENDA team
Day, P.J.; Murray, I.A.; Shaw, W.V.
Properties of hybrid active sites in oligomeric proteins: kinetic and ligand binding studies with chloramphenicol acetyltransferase trimers
Biochemistry
34
6416-6422
1995
Escherichia coli
Manually annotated by BRENDA team
Van der Schueren, J.; Robben, J.; Goossens, K.; Heremans, K.; Volckaert, G.
Identification of local carboxy-terminal hydrophobic interactions essential for folding or stability of chloramphenicol acetyltransferase
J. Mol. Biol.
256
878-888
1996
Escherichia coli
Manually annotated by BRENDA team
Alipour, H.; Eriksson, P.; Norbeck, J.; Blomberg, A.
Quantitative aspects of the use of bacterial chloramphenicol acetyltransferase as a reporter system in the yeast Saccharomyces cerevisiae
Anal. Biochem.
270
153-158
1999
Escherichia coli
Manually annotated by BRENDA team
Qiu, W.; Shi, R.; Lu, M.L.; Zhou, M.; Roy, P.H.; Lapointe, J.; Lin, S.X.
Crystal structure of chloramphenicol acetyltransferase B2 encoded by the multiresistance transposon Tn2424
Proteins
57
858-861
2004
Escherichia coli
Manually annotated by BRENDA team
Christensen, T.; Trabbic-Carlson, K.; Liu, W.; Chilkoti, A.
Purification of recombinant proteins from Escherichia coli at low expression levels by inverse transition cycling
Anal. Biochem.
360
166-168
2007
Escherichia coli
Manually annotated by BRENDA team
Panchenko, T.; Zhu, W.W.; Montclare, J.K.
Influence of global fluorination on chloramphenicol acetyltransferase activity and stability
Biotechnol. Bioeng.
94
921-930
2006
Escherichia coli
Manually annotated by BRENDA team
Voloshchuk, N.; Lee, M.X.; Zhu, W.W.; Tanrikulu, I.C.; Montclare, J.K.
Fluorinated chloramphenicol acetyltransferase thermostability and activity profile: Improved thermostability by a single-isoleucine mutant
Bioorg. Med. Chem. Lett.
17
5907-5911
2007
Escherichia coli
Manually annotated by BRENDA team
Eom, H.J.; Park, J.M.; Seo, M.J.; Kim, M.D.; Han, N.S.
2 Monitoring of Leuconostoc mesenteroides DRC starter in fermented vegetable by random integration of chloramphenicol acetyltransferase gene
J. Ind. Microbiol. Biotechnol.
35
953-959
2008
Escherichia coli, Staphylococcus sp.
Manually annotated by BRENDA team
Van Dorst, B.; Mehta, J.; Rouah-Martin, E.; Backeljau, J.; De Coen, W.; Eeckhout, D.; De Jaeger, G.; Blust, R.; Robbens, J.
Selection of scFv phages specific for chloramphenicol acetyl transferase (CAT), as alternatives for antibodies in CAT detection assays
J. Appl. Toxicol.
32
783-789
2012
Escherichia coli
Manually annotated by BRENDA team
Biswas, T.; Houghton, J.L.; Garneau-Tsodikova, S.; Tsodikov, O.V.
The structural basis for substrate versatility of chloramphenicol acetyltransferase CATI
Protein Sci.
21
520-530
2012
Escherichia coli (P62577)
Manually annotated by BRENDA team
Choi, I.; Kim, D.E.; Ahn, J.H.; Yeo, W.S.
On-chip enzymatic assay for chloramphenicol acetyltransferase using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry
Colloids Surf. B Biointerfaces
136
465-469
2015
Escherichia coli
Manually annotated by BRENDA team
Appu, A.P.; Arun, P.; Krishnan, J.K.; Moffett, J.R.; Namboodiri, A.M.
Rapid intranasal delivery of chloramphenicol acetyltransferase in the active form to different brain regions as a model for enzyme therapy in the CNS
J. Neurosci. Methods
259
129-134
2016
Escherichia coli
Manually annotated by BRENDA team
Brewitz, H.H.; Goradia, N.; Schubert, E.; Galler, K.; Kuehl, T.; Syllwasschy, B.; Popp, J.; Neugebauer, U.; Hagelueken, G.; Schiemann, O.; Ohlenschlaeger, O.; Imhof, D.
Heme interacts with histidine- and tyrosine-based protein motifs and inhibits enzymatic activity of chloramphenicol acetyltransferase from Escherichia coli
Biochim. Biophys. Acta
1860
1343-1353
2016
Escherichia coli (P62577), Escherichia coli
Manually annotated by BRENDA team