THE OXIDATION OF VERATRYL ALCOHOL, DIMERIC LIGNIN MODELS AND LIGNIN BY LIGNIN PEROXIDASE - THE REDOX CYCLE REVISITED

被引:54
作者
SCHOEMAKER, HE
LUNDELL, TK
HATAKKA, AI
PIONTEK, K
机构
[1] UNIV HELSINKI,DEPT APPL CHEM & MICROBIOL,SF-00100 HELSINKI 10,FINLAND
[2] SWISS FED INST TECHNOL,BIOCHEM LAB,CH-8092 ZURICH,SWITZERLAND
关键词
LIGNIN PEROXIDASE REDOX CYCLE; INVOLVEMENT OF CARBOHYDRATE RESIDUES; VERATRYL ALCOHOL AS A MEDIATOR; MARCUS THEORY; LONG-RANGE ELECTRON TRANSFER;
D O I
10.1016/0168-6445(94)90089-2
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The mechanism of oxidation of veratryl alcohol and beta-O-4 dimeric lignin models is reviewed. Veratryl alcohol radicals are intermediates in both oxidation pathways. The possible role of the veratryl alcohol radical cation as a mediator is discussed. The lignin peroxidase (LiP) redox cycle is analyzed in terms of the Marcus theory of electron transfer. Reduction of both LiP-Compound I (LiP-I) and LiP-Compound II (LiP-II) by veratryl alcohol occurs in the endergonic region of the driving force. The reduction of LiP-II has a higher reorganization energy due to the change in spin state and the accompanying conformational change in the protein. It is suggested that a reversible nucleophilic addition of a carbohydrate residue located at the entrance of the active site channel plays a key role in the LiP redox cycle. Moreover, (polymeric) hydroxysubstituted benzyl radicals may reduce LiP-II via long-range electron transfer.
引用
收藏
页码:321 / 332
页数:12
相关论文
共 66 条
[21]   SINGLE-ELECTRON TRANSFER PROCESSES AND THE REACTION-MECHANISM OF ENZYMIC DEGRADATION OF LIGNIN [J].
HARVEY, PJ ;
SCHOEMAKER, HE ;
BOWEN, RM ;
PALMER, JM .
FEBS LETTERS, 1985, 183 (01) :13-16
[22]   CATALYTIC MECHANISMS AND REGULATION OF LIGNIN PEROXIDASE [J].
HARVEY, PJ ;
FLORIS, R ;
LUNDELL, T ;
PALMER, JM ;
SCHOEMAKER, HE ;
WEVER, R .
BIOCHEMICAL SOCIETY TRANSACTIONS, 1992, 20 (02) :345-349
[23]  
HAYASHI Y, 1979, J BIOL CHEM, V254, P9101
[24]   BIO-ALTERATION OF KRAFT PINE LIGNIN BY PHANEROCHAETE-CHRYSOSPORIUM [J].
JANSHEKAR, H ;
BROWN, C ;
HALTMEIER, T ;
LEISOLA, M ;
FIECHTER, A .
ARCHIVES OF MICROBIOLOGY, 1982, 132 (01) :14-21
[25]   COMPARISON OF LIGNIN PEROXIDASE, HORSERADISH-PEROXIDASE AND LACCASE IN THE OXIDATION OF METHOXYBENZENES [J].
KERSTEN, PJ ;
KALYANARAMAN, B ;
HAMMEL, KE ;
REINHAMMAR, B ;
KIRK, TK .
BIOCHEMICAL JOURNAL, 1990, 268 (02) :475-480
[26]  
KERSTEN PJ, 1985, J BIOL CHEM, V260, P2609
[27]   INVOLVEMENT OF A NEW ENZYME, GLYOXAL OXIDASE, IN EXTRACELLULAR H2O2 PRODUCTION BY PHANEROCHAETE-CHRYSOSPORIUM [J].
KERSTEN, PJ ;
KIRK, TK .
JOURNAL OF BACTERIOLOGY, 1987, 169 (05) :2195-2201
[28]   ENZYMATIC COMBUSTION - THE MICROBIAL-DEGRADATION OF LIGNIN [J].
KIRK, TK ;
FARRELL, RL .
ANNUAL REVIEW OF MICROBIOLOGY, 1987, 41 :465-505
[29]   NEW MECHANISM OF THE C-ALPHA-C-BETA CLEAVAGE IN NONPHENOLIC ARYLGLYCEROL BETA-ARYL ETHER LIGNIN SUBSTRUCTURES CATALYZED BY LIGNIN PEROXIDASE [J].
LUNDELL, T ;
SCHOEMAKER, H ;
HATAKKA, A ;
BRUNOW, G .
HOLZFORSCHUNG, 1993, 47 (03) :219-224
[30]   LIGNIN PEROXIDASE L3 FROM PHLEBIA-RADIATA - PRE-STEADY-STATE AND STEADY-STATE STUDIES WITH VERATRYL ALCOHOL AND A NONPHENOLIC LIGNIN MODEL-COMPOUND 1-(3,4-DIMETHOXYPHENYL)-2-(2-METHOXYPHENOXY)PROPANE-1,3-DIOL [J].
LUNDELL, T ;
WEVER, R ;
FLORIS, R ;
HARVEY, P ;
HATAKKA, A ;
BRUNOW, G ;
SCHOEMAKER, H .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1993, 211 (03) :391-402