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Literature summary extracted from

  • Popp, J.L.; Kirk, T.K.
    Oxidation of methoxybenzenes by manganese peroxidase and by Mn3+ (1991), Arch. Biochem. Biophys., 288, 145-148.
    View publication on PubMed

Activating Compound

EC Number Activating Compound Comment Organism Structure
1.11.1.13 H2O2 H2O2-dependent Lentinula edodes
1.11.1.13 H2O2 H2O2-dependent Phanerodontia chrysosporium

Inhibitors

EC Number Inhibitors Comment Organism Structure
1.11.1.13 diphosphate
-
Phanerodontia chrysosporium

Localization

EC Number Localization Comment Organism GeneOntology No. Textmining
1.11.1.13 extracellular
-
Lentinula edodes
-
-
1.11.1.13 extracellular
-
Phanerodontia chrysosporium
-
-

Natural Substrates/ Products (Substrates)

EC Number Natural Substrates Organism Comment (Nat. Sub.) Natural Products Comment (Nat. Pro.) Rev. Reac.
1.11.1.13 Mn2+ + H+ + H2O2 Lentinula edodes involved in lignin-degradation Mn3+ + H2O
-
?
1.11.1.13 Mn2+ + H+ + H2O2 Phanerodontia chrysosporium involved in lignin-degradation Mn3+ + H2O Mn3+ functions not as a primary oxidant of nonphenolic units in lignin, i.e. it plays another role in lignin-degradation than lignin peroxidase ?
1.11.1.13 Mn2+ + H+ + H2O2 Phanerodontia chrysosporium acts together with lignin peroxidase in lignin-degradation of white rot fungi Mn3+ + H2O Mn3+ functions not as a primary oxidant of nonphenolic units in lignin, i.e. it plays another role in lignin-degradation than lignin peroxidase ?

Organism

EC Number Organism UniProt Comment Textmining
1.11.1.13 Lentinula edodes
-
-
-
1.11.1.13 Phanerodontia chrysosporium
-
white rot basidomycete
-

Purification (Commentary)

EC Number Purification (Comment) Organism
1.11.1.13
-
Phanerodontia chrysosporium

Substrates and Products (Substrate)

EC Number Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
1.11.1.13 Mn2+ + H+ + H2O2
-
Lentinula edodes Mn3+ + H2O Mn3+ oxidizes vanillylacetone ?
1.11.1.13 Mn2+ + H+ + H2O2
-
Phanerodontia chrysosporium Mn3+ + H2O Mn3+ oxidizes vanillylacetone ?
1.11.1.13 Mn2+ + H+ + H2O2
-
Phanerodontia chrysosporium Mn3+ + H2O Mn3+ oxidizes a variety of phenols ?
1.11.1.13 Mn2+ + H+ + H2O2
-
Phanerodontia chrysosporium Mn3+ + H2O Mn3+ oxidizes methoxy benzenes: 1,2,4-tri-, 1,2,3,5-tetra-, 1,2,4,5-tetra-, pentamethoxybenzene, veratryl alcohol is oxidized by thiyl radicals derived from Mn3+ oxidation of glutathione, not directly by Mn3+ ?
1.11.1.13 Mn2+ + H+ + H2O2 involved in lignin-degradation Lentinula edodes Mn3+ + H2O
-
?
1.11.1.13 Mn2+ + H+ + H2O2 involved in lignin-degradation Phanerodontia chrysosporium Mn3+ + H2O Mn3+ functions not as a primary oxidant of nonphenolic units in lignin, i.e. it plays another role in lignin-degradation than lignin peroxidase ?
1.11.1.13 Mn2+ + H+ + H2O2 acts together with lignin peroxidase in lignin-degradation of white rot fungi Phanerodontia chrysosporium Mn3+ + H2O Mn3+ functions not as a primary oxidant of nonphenolic units in lignin, i.e. it plays another role in lignin-degradation than lignin peroxidase ?
1.11.1.13 additional information
-
Phanerodontia chrysosporium ?
-
?
1.11.1.13 additional information enzyme oxidizes non-phenolic lignin-related compounds, including veratryl alcohol Lentinula edodes ?
-
?