1.11.1.14: lignin peroxidase
This is an abbreviated version!
For detailed information about lignin peroxidase, go to the full flat file.
Word Map on EC 1.11.1.14
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1.11.1.14
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chrysosporium
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phanerochaete
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manganese
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laccase
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melanin
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ligninolytic
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veratryl
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peroxidases
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melanoma
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melanogenesis
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white-rot
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kojic
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decolor
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l-dopa
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diphenolase
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basidiomycete
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trametes
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monophenolase
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versicolor
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hyperpigmentation
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lignin-degrading
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whitening
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textile
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anti-tyrosinase
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o-quinones
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manganese-dependent
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l-3,4-dihydroxyphenylalanine
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microphthalmia-associated
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anti-melanogenic
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o-diphenols
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bjerkandera
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arbutin
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skin-whitening
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non-phenolic
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1.14.18.1
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dopaquinone
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phlebia
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tyrosinase-related
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delignification
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dopachrome
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remazol
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lignocellulolytic
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anti-melanogenesis
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eryngii
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tyrosinases
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catecholase
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depigmenting
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biotechnology
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dye-decolorizing
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synthesis
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environmental protection
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lignocellulose-degrading
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analysis
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degradation
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industry
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irpex
- 1.11.1.14
- chrysosporium
- phanerochaete
- manganese
- laccase
- melanin
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ligninolytic
-
veratryl
- peroxidases
- melanoma
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melanogenesis
-
white-rot
-
kojic
-
decolor
- l-dopa
- diphenolase
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basidiomycete
- trametes
- monophenolase
- versicolor
- hyperpigmentation
-
lignin-degrading
-
whitening
-
textile
-
anti-tyrosinase
- o-quinones
-
manganese-dependent
- l-3,4-dihydroxyphenylalanine
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microphthalmia-associated
-
anti-melanogenic
- o-diphenols
- bjerkandera
- arbutin
-
skin-whitening
-
non-phenolic
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1.14.18.1
- dopaquinone
- phlebia
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tyrosinase-related
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delignification
- dopachrome
-
remazol
-
lignocellulolytic
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anti-melanogenesis
- eryngii
- tyrosinases
- catecholase
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depigmenting
- biotechnology
-
dye-decolorizing
- synthesis
- environmental protection
-
lignocellulose-degrading
- analysis
- degradation
- industry
- irpex
Reaction
Synonyms
ALiP-P3, bacterial lignin peroxidase, diarylpropane oxygenase, diarylpropane peroxidase, diarylpropane:oxygen,hydrogen-peroxide oxidoreductase (C-C-bond-cleaving), DypB, fungal lignin peroxidase, Glg4, H2O2-dependent ligninase, heme-containing lignin peroxidase, heme-containing peroxidase, lignin peroxidase, lignin peroxidase H8, lignin peroxidase isozyme H8, lignin peroxidase LIII, ligninase, ligninase H2, ligninase H8, ligninase I, ligninase LG5, LIP, Lip1, LIP2, LiPH8, lipJ, LPA, LPOA, microbial lignin peroxidase, More, mushroom tyrosinase, oxygenase, diarylpropane, Pr-lip1, Pr-lip4
ECTree
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Activating Compound
Activating Compound on EC 1.11.1.14 - lignin peroxidase
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H2O2
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degradation of tetracycline and oxytetracycline is not detected without the addition of H2O2, but enhances greatly with the addition of 0.1 mM H2O2
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without veratryl alcohol in the reaction system, there are only 18% of tetracycline removal and 14% of oxytetracycline removal. The degradation percentage reaches its maximum with veratryl alcohol concentration larger than 2.0 mM for tetracycline and 1.5 mM for oxytetracycline
veratryl alcohol
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the mediator is effective to enhance the efficacy of the melanin degradation
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Under the optimized conditions,the catalytic efficiency of lignin peroxidase in the N-gluconyl glutamic acid didecyl ester/Triton X-100 reverse micelle is 40times higher than that in the sodium bis (2-ethylhexyl) sulfosuccinate reverse micelle. The full expression of catalytic activity of lignin peroxidase in this medium is mainly due to the lack of electrostatic interaction between lignin peroxidase and the head group of N-gluconyl glutamic acid didecyl ester and Triton X-100 and to the size fit between lignin peroxidase and the inner water cavity of the reverse micelle
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additional information
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in order to obtain a high and sustainable activity of lignin peroxidase, H2O2 is supplied through a co-immobilized glucose oxidase (GOD)-catalyzed oxidation reaction
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