Manganese peroxidase (gene MnP) from Bjerkandera adusta

Enzyme Description

Extremophile
No
EC Number

Sequence

Length: 366 amino acids
MAFKQLAAALSIALALPFSQAAITRRVACPDGVNTATNAACCALFAVRDDIQQNLFDGGECGEEVHESLRLTFHDAIGISPSIAATGKFGGGGADGSIMIFDDIEPNFHANNGVDEIISAQKPFVAKHNMTAGDFIQFAGAVGVSNCPGAPQLSFFLGRPAATQPAPDGLVPEPFDSVTDILNRFADAGGFTTQEVVWLLASHSIAAADHVDPTIPGSPFDSTPEIFDTQFFVETLLKGTLFPGTSGNQGEVESPLAGEIRLQSDADFARDSRTACEWQSFVNNQPRMQVLFKAAMQKLSILGHDLTQMIDCSDVIPVPPSTAVRGSHLPAGNTLDDIEQACASTPFPTLTADPGPATSVAPVPPS
Shinichi Yoshida et al. (1998) β€” Reaction of manganese peroxidase of Bjerkandera adusta with synthetic lignin in acetone solution
Journal of Wood Science  Β· doi:10.1007/BF00833415 β†—  Β· Activity - Classical
18 measurements
Database ID
UniProt: Q3SC77 β†—
Sequence Annotation
Inferred - from protein name
Protein Source
Purified, fungus Bjerkandera adusta

Experimental Data (18 measurements)

18 measurements
Property Assay Solvent Solvent Volume Aqueous Reference Measured Value Units Solution pH Temperature Substrate(s) Product(s) Cofactor(s) Shaking Comments
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Acetonitrile 70% 100 77 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Dimethyl Sulfoxide (DMSO) 70% 100 0 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Dimethylformamide (DMF) 70% 100 0 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Methanol 70% 100 1 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Ethanol 70% 100 20 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent 2-Methoxyethanol 70% 100 16 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Ethylene Glycol 70% 100 31 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent 1,4-Dioxane 70% 100 23 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized 2,6-Dimethoxyphenol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Acetone 70% 100 73 % 50 mM lactate buffer 4.5 37Β°C 14 mM 2,6-Dimethoxyphenol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized 2,6-Dimethoxyphenol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Acetonitrile 70% 100 35 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Dimethyl Sulfoxide (DMSO) 70% 100 0 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Dimethylformamide (DMF) 70% 100 0 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Methanol 70% 100 0 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Ethanol 70% 100 0 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent 2-Methoxyethanol 70% 100 11 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Ethylene Glycol 70% 100 17 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent 1,4-Dioxane 70% 100 20 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)
Activity - Classical Activity measured by absorbance spectrophotometry (oxidized guaiacol reaction products absorbance measurement, 465 nm) in the presence of organic solvent Acetone 70% 100 26 % 50 mM lactate buffer 4.5 37Β°C 14 mM Guaiacol, 0.25 mM Hβ‚‚Oβ‚‚ (Hydrogen Peroxide) H2O , Oxidized guaiacol 0.2 mM MnSOβ‚„ β€” Classical aqueous control (in %)

Visualization : Activity β€” Classical

Shinichi Yoshida et al. (1998)

One bar per measurement. Colour = solvent, shade = solvent volume.

K. Iwahara et al. (2000) β€” Polymerization of guaiacol by lignin-degrading manganese peroxidase from Bjerkandera adusta in aqueous organic solvents
Applied Microbiology and Biotechnology  Β· doi:10.1007/s002530000340 β†—  Β· Activity + Stability - Product Formation
13 measurements
Yuxin Wang et al. (2002) β€” Purification, Characterization, and Chemical Modification of Manganese Peroxidase from Bjerkandera adusta UAMH 8258
Current Microbiology  Β· doi:10.1007/s00284-001-0081-x β†—  Β· Activity - Classical
56 measurements

Structure

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