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细胞色素 P450 可以将氧杂环庚烷环氧化生成活性 2,3-环氧氧杂环庚烷中间体:对苯代谢开环的潜在见解。

Cytochrome P450 Can Epoxidize an Oxepin to a Reactive 2,3-Epoxyoxepin Intermediate: Potential Insights into Metabolic Ring-Opening of Benzene.

机构信息

Department of Chemistry, Grove City College, Grove City, PA 16127, USA.

Department of Chemistry, University of New Hampshire, Durham, NH 03824, USA.

出版信息

Molecules. 2020 Oct 3;25(19):4542. doi: 10.3390/molecules25194542.

Abstract

Dimethyldioxirane epoxidizes 4,5-benzoxepin to form the reactive 2,3-epoxyoxepin intermediate followed by very rapid ring-opening to an -xylylene that immediately isomerizes to the stable product 1-2-benzopyran-1-carboxaldehyde. The present study demonstrates that separate incubations of 4,5-benzoxepin with three cytochrome P450 isoforms (2E1, 1A2, and 3A4) as well as pooled human liver microsomes (pHLM) also produce 1-2-benzopyran-1-carboxaldehyde as the major product, likely via the 2,3-epoxyoxepin. The reaction of 4,5-benzoxepin with cerium (IV) ammonium nitrate (CAN) yields a dimeric oxidized molecule that is also a lesser product of the P450 oxidation of 4,5-benzoxepin. The observation that P450 enzymes epoxidize 4,5-benzoxepin suggests that the 2,3-epoxidation of oxepin is a major pathway for the ring-opening metabolism of benzene to muconaldehyde.

摘要

重氮二甲基乙二醛将 4,5-苯并氧杂环庚烷氧化为反应性 2,3-环氧氧杂环庚烷中间体,随后迅速开环形成 -二甲苯,该物质立即异构化为稳定产物 1-2-苯并吡喃-1-甲醛。本研究表明,4,5-苯并氧杂环庚烷分别与三种细胞色素 P450 同工酶(2E1、1A2 和 3A4)以及人肝微粒体(pHLM)孵育也会产生 1-2-苯并吡喃-1-甲醛作为主要产物,可能通过 2,3-环氧氧杂环庚烷。4,5-苯并氧杂环庚烷与硝酸铈(IV)铵(CAN)的反应生成二聚氧化分子,这也是 4,5-苯并氧杂环庚烷被 P450 氧化的次要产物。观察到 P450 酶氧化 4,5-苯并氧杂环庚烷表明,氧杂环庚烷的 2,3-环氧化是苯开环代谢为粘康醛的主要途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fccd/7582548/5ba52814f18f/molecules-25-04542-sch001.jpg

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