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Manganese Peroxidase and Its Role in the Degradation of Wood Lignin

机译:锰过氧化物酶及其在木质木质素降解中的作用

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White-rot wood-rotting and litter-decomposing fungi produce lignin-degrading enzymes the most common of which are lignin peroxidase (Lip), manganese peroxidase (MnP) and laccase. According to literature and our own results, MnP and laccase are common ligninolytic enzymes whereas LiP is less common. Molecular properties of MnPs produced by several fungi are well known. MnP oxidizes Mn(II) to Mn(III), which in chelated form is a powerful oxidizing system, and when amended with unsaturated lipids is also able to mineralize up to 16% of ~(14)C-labelled synthetic lignin to ~(14)CO_2. The results obtained until now indicate that the mineralization of lignin may occur outside the fungal cell wall. This points to the key role of MnP in lignin degradation. MnP in a mixture of Tween 80, Mn~(2+), Mn-chelating organic acid and hydrogen peroxide generating system resulted both in depolymerization of milled pine wood, and polymerization of the insoluble part of pine wood, but depolymerization was the most prominent reaction. Many suitable fungi for biopulping produce MnP whereas the production of LiP does not seem to be necessary in this application. The role of laccase is unclear. However, selective lignin degradation and efficiency in biopulping require a proper balance between lignin and cellulose degradation, and therefore also thorough studies to clarify the significance of cellulose and hemicellulose degradation in lignin-selective fungi are needed.
机译:白腐木腐和垃圾分解真菌产生木质素降解酶的最常见的是木质素过氧化物酶(LIP),锰过氧化物酶(锰过氧化物酶)和漆酶。根据文献和我们自己的结果,锰过氧化物酶和漆酶是常见的木质素降解酶,而唇较少见。由几个真菌产生的MNP的分子性质是众所周知的。 MnP的氧化锰(II)与Mn(III),其螯合形式是一个强大的氧化系统,并且当与不饱和脂质修正也能够矿化高达〜(14)C-标记的合成的16%的木质素至〜( 14)CO_2。到现在为止所获得的结果表明,可以在真菌细胞壁外发生木质素的矿化。这点的MNP木质素降解的关键作用。 MnP的在吐温80的混合物,锰〜(2+),锰螯合有机酸和过氧化氢产生系统,导致无论是在经研磨的松木,和松木的不溶部分的聚合,但解聚的解聚是最突出的反应。用于生物制浆生产锰过氧化物酶,而生产唇许多适合真菌似乎没有必要在此应用。漆酶的作用尚不明确。然而,选择性木质素降解和效率在生物制浆需要木质素和纤维素的降解,并因此还深入研究之间的适当平衡,以澄清在木质素选择性真菌需要的纤维素和半纤维素降解的意义。

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