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Lignin-degrading enzyme from Phanerochaete chrysosporium: Purification, characterization, and catalytic properties of a unique H(2)O(2)-requiring oxygenase.白腐真菌木质素降解酶:一种独特的需要 H(2)O(2)的氧化酶的纯化、表征和催化特性。
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Effects of Nitrogen Supplements on Degradation of Aspen Wood Lignin and Carbohydrate Components by Phanerochaete chrysosporium.氮素添加对黄孢原毛平革菌降解杨木木质素和碳水化合物的影响。
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An extracellular H2O2-requiring enzyme preparation involved in lignin biodegradation by the white rot basidiomycete Phanerochaete chrysosporium.一种参与白腐担子菌黄孢原毛平革菌木质素生物降解的需细胞外过氧化氢的酶制剂。
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锰(II)对木质素过氧化物酶和木质素降解白腐真菌中锰依赖过氧化物酶的调控。

Mn(II) Regulation of Lignin Peroxidases and Manganese-Dependent Peroxidases from Lignin-Degrading White Rot Fungi.

机构信息

Institute for Microbial and Biochemical Technology, Forest Products Laboratory, One Gifford Pinchot Drive, Madison, Wisconsin 53705.

出版信息

Appl Environ Microbiol. 1990 Jan;56(1):210-7. doi: 10.1128/aem.56.1.210-217.1990.

DOI:10.1128/aem.56.1.210-217.1990
PMID:16348093
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC183274/
Abstract

Two families of peroxidases-lignin peroxidase (LiP) and manganese-dependent lignin peroxidase (MnP)-are formed by the lignin-degrading white rot basidiomycete Phanerochaete chrysosporium and other white rot fungi. Isoenzymes of these enzyme families carry out reactions important to the biodegradation of lignin. This research investigated the regulation of LiP and MnP production by Mn(II). In liquid culture, LiP titers varied as an inverse function of and MnP titers varied as a direct function of the Mn(II) concentration. The extracellular isoenzyme profiles differed radically at low and high Mn(II) levels, whereas other fermentation parameters, including extracellular protein concentrations, the glucose consumption rate, and the accumulation of cell dry weight, did not change significantly with the Mn(II) concentration. In the absence of Mn(II), extracellular LiP isoenzymes predominated, whereas in the presence of Mn(II), MnP isoenzymes were dominant. The release of CO(2) from C-labeled dehydrogenative polymerizate lignin was likewise affected by Mn(II). The rate of CO(2) release increased at low Mn(II) and decreased at high Mn(II) concentrations. This regulatory effect of Mn(II) occurred with five strains of P. chrysosporium, two other species of Phanerochaete, three species of Phlebia, Lentinula edodes, and Phellinus pini.

摘要

两种过氧化物酶——木质素过氧化物酶(LiP)和锰依赖型木质素过氧化物酶(MnP)——由木质素降解的白腐担子菌糙皮侧耳(Phanerochaete chrysosporium)和其他白腐真菌形成。这些酶家族的同工酶进行的反应对木质素的生物降解很重要。本研究调查了 Mn(II)对 LiP 和 MnP 产生的调节。在液体培养中,LiP 效价随 Mn(II)浓度的增加呈反函数变化,而 MnP 效价随 Mn(II)浓度的增加呈正函数变化。在低和高 Mn(II)水平下,细胞外同工酶谱差异很大,而其他发酵参数,包括细胞外蛋白浓度、葡萄糖消耗率和细胞干重的积累,与 Mn(II)浓度没有显著变化。在没有 Mn(II)的情况下,细胞外 LiP 同工酶占优势,而在存在 Mn(II)的情况下,MnP 同工酶占优势。来自 C 标记的脱氢聚合物木质素的 CO2 的释放也受到 Mn(II)的影响。在低 Mn(II)和高 Mn(II)浓度下,CO2 的释放速率增加。Mn(II)的这种调节作用发生在五株糙皮侧耳(P. chrysosporium)、两种其他 Phanerochaete 物种、三种 Phlebia 物种、香菇(Lentinula edodes)和松生拟层孔菌(Phellinus pini)中。