Serveur d'exploration sur le phanerochaete - Curation (Accueil)

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List of bibliographic references

Number of relevant bibliographic references: 40.
[0-20] [0 - 20][0 - 40][20-40]
Ident.Authors (with country if any)Title
000655 (2009) Ming Hu [République populaire de Chine] ; Weican Zhang ; Ying Wu ; Peiji Gao ; Xuemei LuCharacteristics and function of a low-molecular-weight compound with reductive activity from Phanerochaetechrysosporium in lignin biodegradation.
000762 (2007) Thomas D. Pfister [États-Unis] ; Amir Y. Mirarefi ; Alan J. Gengenbach ; Xuan Zhao ; Connor Danstrom ; Nicole Conatser ; Yi-Gui Gao ; Howard Robinson ; Charles F. Zukoski ; Andrew H-J Wang ; Yi LuKinetic and crystallographic studies of a redesigned manganese-binding site in cytochrome c peroxidase.
000A06 (2002) Maria G. Mason [Royaume-Uni] ; Michael T. Wilson ; Andrew Ball ; Peter NichollsOxygen reduction by cellobiose oxidoreductase: the role of the haem group.
000A74 (2000) B. Van Aken [Belgique] ; M D Cameron ; J D Stahl ; A. Plumat ; H. Naveau ; S D Aust ; S N AgathosGlutathione-mediated mineralization of 14C-labeled 2-amino-4,6-dinitrotoluene by manganese-dependent peroxidase H5 from the white-rot fungus Phanerochaete chrysosporium.
000B23 (1999) S J George [Royaume-Uni] ; M. Kvaratskhelia ; M J Dilworth ; R N ThorneleyReversible alkaline inactivation of lignin peroxidase involves the release of both the distal and proximal site calcium ions and bishistidine co-ordination of the haem.
000B67 (1998) P J Teunissen [Pays-Bas] ; D. Sheng ; G V Reddy ; P. Moënne-Loccoz ; J A Field ; M H Gold2-Chloro-1,4-dimethoxybenzene cation radical: formation and role in the lignin peroxidase oxidation of anisyl alcohol.
000B95 (1997) A. Khindaria [États-Unis] ; G. Nie ; S D AustDetection and characterization of the lignin peroxidase compound II-veratryl alcohol cation radical complex.
000C09 (1997) S L Timofeevski [États-Unis] ; S D AustKinetics of calcium release from manganese peroxidase during thermal inactivation.
000C15 (1997) K. Kishi [États-Unis] ; D P Hildebrand ; M. Kusters-Van Someren ; J. Gettemy ; A G Mauk ; M H GoldSite-directed mutations at phenylalanine-190 of manganese peroxidase: effects on stability, function, and coordination.
000C17 (1997) G R Sutherland [États-Unis] ; L S Zapanta ; M. Tien ; S D AustRole of calcium in maintaining the heme environment of manganese peroxidase.
000C31 (1996) A. Khindaria [États-Unis] ; S D AustEPR detection and characterization of lignin peroxidase porphyrin pi-cation radical.
000C64 (1996) Y H Han [Corée du Sud] ; K S Shin ; H D Youn ; Y C Hah ; S O KangMode of action and active site of an extracellular peroxidase from Pleurotus ostreatus.
000C69 (1996) M M Whittaker [États-Unis] ; P J Kersten ; N. Nakamura ; J. Sanders-Loehr ; E S Schweizer ; J W WhittakerGlyoxal oxidase from Phanerochaete chrysosporium is a new radical-copper oxidase.
000C71 (1995) A. Khindaria [États-Unis] ; I. Yamazaki ; S D AustVeratryl alcohol oxidation by lignin peroxidase.
000C95 (1995) S J Rasmussen [États-Unis] ; N. Chung ; A. Khindaria ; T A Grover ; S D AustReductions catalyzed by a quinone and peroxidases from Phanerochaete chrysosporium.
000D01 (1995) B. Kalyanaraman [États-Unis]Radical intermediates during degradation of lignin-model compounds and environmental pollutants: an electron spin resonance study.
000D03 (1995) A. Khindaria [États-Unis] ; D P Barr ; S D AustLignin peroxidases can also oxidize manganese.
000D32 (1994) A. Khindaria ; T A Grover ; S D AustOxalate-dependent reductive activity of manganese peroxidase from Phanerochaete chrysosporium.
000D85 (1993) N. Chung ; M M Shah ; T A Grover ; S D AustReductive activity of a manganese-dependent peroxidase from Phanerochaete chrysosporium.
000E10 (1993) I C Kuan [États-Unis] ; M. TienGlyoxylate-supported reactions catalyzed by Mn peroxidase of Phanerochaete chrysosporium: activity in the absence of added hydrogen peroxide.
000E16 (1993) M M Shah ; S D AustIodide as the mediator for the reductive reactions of peroxidases.

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