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首页> 外文期刊>International Biodeterioration & Biodegradation >Highly efficient oxidation of synthetic and natural lignin-related compounds by Physisporinus vitreus versatile peroxidase
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Highly efficient oxidation of synthetic and natural lignin-related compounds by Physisporinus vitreus versatile peroxidase

机译:由Physisporinus vitreus veridile过氧化物高效氧化合成和天然木质素相关的化合物

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Versatile peroxidases (VPs) have outstanding oxidative capacity for a wide range of substrates and potential applications in industrial sectors and more. In this study, the VP1 from Physisporinus vitreus PF18 was obtained and overexpressed as inclusion body in Escherichia coli, then refolded successfully in vitro. Steady-state kinetic analysis and dye decolorization indicated that Mn(II) could promote the oxidation of low redox potential substrates and increase decolorization efficiency up to 70% by recombinant VP1 (rVP1). Results of pyrolysis-gas chromatography mass spectroscopy showed that most derivatives of G-type lignin increased slightly by rVP1 treatment, compared with the control. Surprisingly, the ratio of guaiacyl-type to syringyl-type derivatives (G/S) after rVP1 treatment was 5.4 times higher than that of the control. The polymerization of alkali lignin may be attributed to the transformation of S-type into G-type lignin by demethoxylation. Thus, our study provides a high-efficient candidate for biodegradation and biocatalysis.
机译:多功能过氧化物酶(VPS)具有出色的氧化能力,用于各种基材和工业部门的潜在应用等。在本研究中,在大肠杆菌中获得并过表达来自Physisporinus Vitreus PF18的VP1,然后在大肠杆菌中过表达,然后在体外成功重叠。稳态动力学分析和染料脱色表明Mn(II)可以通过重组VP1(RVP1)促进低氧化还原潜在基材的氧化,并增加脱色效率高达70%。热解 - 气相色谱结果质谱表明,与对照相比,RVP1处理略微增加了G型木质素的大多数衍生物。令人惊讶的是,RVP1处理后Guaiacyl型与陶醉型衍生物(g / s)的比率比对照的比例高5.4倍。碱木质素的聚合可以归因于去甲氧化物将S型转化为G型木质素。因此,我们的研究为生物降解和生物分析提供了一种高效的候选者。

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