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Direct oxidation of polymeric substrates by multifunctional manganese peroxidase isoenzyme from Pleurotus ostreatus without redox mediators

机译:平菇中的多功能锰过氧化物酶同工酶直接氧化聚合物底物而无需氧化还原介质

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摘要

VPs (versatile peroxidases) sharing the functions of LiP (lignin peroxidase) and MnP (manganese peroxidase) have been described in basidiomycetous fungi Pleurotus and Bjerkandera. Despite the importance of this enzyme in polymer degradation, its reactivity with polymeric substrates remains poorly understood. In the present study, we first report that, unlike LiP, VP from Pleurotus ostreatus directly oxidized two polymeric substrates, bovine pancreatic RNase and Poly R-478, through a long-range electron pathway without redox mediators. P. ostreatus produces several MnP isoenzymes, including the multifunctional enzyme MnP2 (VP) and a typical MnP isoenzyme MnP3. MnP2 (VP) depolymerized a polymeric azo dye, Poly R-478, to complete its catalytic cycle. Reduction of the oxidized intermediates of MnP2 (VP) to its resting state was also observed for RNase. RNase inhibited the oxidation of VA (veratryl alcohol) in a competitive manner. Blocking of the exposed tryptophan by N-bromosuccinimide inhibited the oxidation of RNase and VA by MnP2 (VP), but its Mn2+-oxidizing activity was retained, suggesting that Trp-170 exposed on an enzyme surface is a substrate-binding site both for VA and the polymeric substrates. The direct oxidation of RNase and Poly R by MnP2 (VP) is in sharp contrast with redox mediator-dependent oxidation of these polymers by LiP from Phanerochaete chrysosporium. Molecular modelling of MnP2 (VP) revealed that the differences in the dependence on redox mediators in polymer oxidation by MnP2 (VP) and LiP were explained by the anionic microenvironment surrounding the exposed tryptophan.
机译:在担子菌真菌白灵菇和Bjerkandera中已经描述了具有LiP(木质素过氧化物酶)和MnP(锰过氧化物酶)功能的VP(通用过氧化物酶)。尽管该酶在聚合物降解中很重要,但其与聚合物底物的反应性仍知之甚少。在本研究中,我们首先报道,与LiP不同,来自平菇的VP通过没有氧化还原介体的远程电子途径直接氧化了两种聚合底物,即牛胰腺RNase和Poly R-478。南美白对虾产生几种MnP同工酶,包括多功能酶MnP2(VP)和典型的MnP同工酶MnP3。 MnP2(VP)使聚合的偶氮染料Poly R-478解聚,以完成其催化循环。对于RNase,也观察到MnP2(VP)的氧化中间体还原至其静止状态。核糖核酸酶以竞争性方式抑制VA(藜芦醇)的氧化。 N-溴代琥珀酰亚胺对暴露的色氨酸的阻滞抑制了MnP2(VP)抑制RNase和VA的氧化,但保留了其Mn 2 + -氧化活性,表明Trp-170暴露于酶表面VA和VA是聚合物底物的底物结合位点。 MnP2(VP)对RNase和Poly R的直接氧化与Phanerochaete chrysosporium的LiP对这些聚合物的氧化还原介质依赖性氧化形成鲜明对比。 MnP2(VP)的分子模型表明,MnP2(VP)和LiP氧化聚合物对氧化还原介体的依赖性不同是由暴露色氨酸周围的阴离子微环境解释的。

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