Enzymatic combustion of aromatic and aliphatic compounds by manganese peroxidase from Nematoloma frowardii

被引:0
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作者
Hofrichter, M [1 ]
Scheibner, K [1 ]
Schneegass, I [1 ]
Fritsche, W [1 ]
机构
[1] Univ Jena, Inst Microbiol, Dept Tech Microbiol, D-07743 Jena, Germany
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中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The direct involvement of manganese peroxidase (MnP) in the mineralization of natural and xenobiotic compounds was evaluated, A broad spectrum of aromatic substances were partially mineralized by the MnP system of the white rot fungus Nematoloma frowardii. The cell-free MnP system partially converted several aromatic compounds, including [U-C-14]pentachlorophenol ([U-C-14]PCP), [U-C-14]catechol, [U-C-14]tyrosine, [U-C-14] tryptophan, [4,5,9,10-C-14]pyrene, and [ring U-C-14]2-amino-4,6-dinitrotoluene ([C-14]2-AmDNT), to (CO2)-C-14.,, Mineralization was;as dependent on the ratio of MnP activity to concentration of reduced glutathione (thiol-mediated oxidation), a finding which was demonstrated by using [C-14]2-AmDNT as an example., At [C-14]2-AmDNT concentrations ranging from 2 to 120 mu M, the amount of released (CO2)-C-14, was directly proportional to the concentration of [C-14]2-AmDNT. The formation of highly polar products was also observed with [C-14]2-AmDNT and [U-C-14]PCP; these products were probably low-molecular-weight, carboxylic acids, Among the aliphatic compounds tested, glyoxalate was mineralized to the greatest extent, Eighty-six percent of the (COOH)-C-14-glyoxalate and 9% of the (CHO)-C-14-glyoxalate were converted to (CO2)-C-14,, indicating that decarboxylation reactions may be the final step in MnP-catalyzed mineralization, The extracellular enzymatic combustion catalyzed by MnP could represent an important pathway for the formation of carbon dioxide from recalcitrant xenobiotic compounds and may also have general significance in the overall biodegradation of resistant natural macromolecules, such as lignins and humic substances.
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页码:399 / 404
页数:6
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