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由选择性木质素降解真菌粗毛纤孔菌产生的环氧化角鲨烷酸。

Epoxy ceriporic acid produced by selective lignin-degrading fungus Ceriporiopsis subvermispora.

机构信息

Laboratory of Biomass Conversion, Research Institute for Sustainable Humanosphere, Kyoto University, Gokasho, Uji, Kyoto, Japan.

出版信息

Chem Phys Lipids. 2011 Nov;164(8):707-12. doi: 10.1016/j.chemphyslip.2011.07.005. Epub 2011 Aug 12.

Abstract

Ceriporiopsis subvermispora is a selective white rot basidiomycete which degrades lignin in wood at a distance far from enzymes. Low molecular mass metabolites play a central role in the oxidative degradation of lignin. To understand the unique wood-decaying mechanism, we surveyed the oxidized derivatives of ceriporic acids (alk(en)ylitaconic acids) produced by C. subvermispora using high-resolution liquid chromatography multiple-stage mass spectrometry (HR-LC/MS(n)). The analysis of the precursor and product ions from the extract suggested that an epoxidized derivative of ceriporic acid is produced by the fungus. To identify the new metabolite, an authentic compound of ceriporic acid epoxide was synthesized in vitro by reacting (R)-3-[(Z)-hexadec-7-enyl]-itaconic acid (ceriporic acid C) with m-chloroperbenzoic acid. The precursor and product ions from the natural metabolite and authentic epoxide were identical and distinguishable from those of hydroxy and hydroperoxy derivatives after reduction with NaBD(4). Feeding experiments with [U-(13)C]-glucose, 99% and the subsequent analyses of the first and second generation product ions demonstrated that the oxidized ceriporic acid was (R)-3-(7,8-epoxy-hexadecyl)-itaconic acid. To our knowledge, this study is the first to report that natural alkylitaconic acid bears an epoxy group on its side chain.

摘要

绒盖牛肝菌是一种选择性白腐担子菌,它能在远离酶的地方降解木材中的木质素。低相对分子质量代谢物在木质素的氧化降解中起着核心作用。为了了解其独特的木材降解机制,我们利用高分辨液相色谱多级质谱(HR-LC/MS(n))对绒盖牛肝菌产生的 Ceriporiopsis 酸(烯(炔)基异戊烯酸)的氧化衍生物进行了调查。从提取物中分析前体和产物离子表明,真菌会产生 Ceriporiopsis 酸的环氧化衍生物。为了鉴定这种新的代谢物,我们通过(R)-3-[(Z)-十六-7-烯基]-异戊烯酸(Ceriporiopsis C)与间氯过苯甲酸反应,在体外合成了 Ceriporiopsis 酸环氧化物的纯化合物。天然代谢物和纯环氧化物的前体和产物离子与还原后的羟基和过氧基衍生物的前体和产物离子相同且可区分。用 [U-(13)C]-葡萄糖进行喂养实验,99%,随后分析第一代和第二代产物离子表明,氧化的 Ceriporiopsis 酸为(R)-3-(7,8-环氧-十六烷基)-异戊烯酸。据我们所知,这项研究首次报道天然烷基异戊烯酸在其侧链上带有环氧基团。

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