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        2022

        張長(cháng)生研究員團隊在《Nature Communications》發(fā)表論文

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        時(shí)間:2022-08-22  作者:LMB  來(lái)源:文本大?。骸?a href="javascript:doZoom(16)">大 |  | 】  【打印

        題目: Flavin-enabled reductive and oxidative epoxide ring opening reactions

        作者:  Bidhan Chandra De#, Wenjun Zhang#, Chunfang Yang, Attila Mándi, Chunshuai Huang, Liping Zhang, Wei Liu, Mark W. Ruszczycky, Yiguang Zhu, Ming Ma, Ghader Bashiri, Tibor Kurtán, Hung-wen Liu*, and Changsheng Zhang*

        刊物: Nature Communications

        年卷期頁(yè): 2022

        摘要:Epoxide ring opening reactions are common and important in both biological processes and synthetic applications and can be catalyzed in a non-redox manner by epoxide hydrolases or reductively by oxidoreductases. Here we report that fluostatins (FSTs), a family of atypical angucyclines with a benzofluorene core, can undergo nonenzyme-catalyzed epoxide ring opening reactions in the presence of flavin adenine dinucleotide (FAD) and nicotinamide adenine dinucleotide (NADH). The 2,3-epoxide ring in FST C is shown to open reductively via a putative enol intermediate, or oxidatively via a peroxylated intermediate with molecular oxygen as the oxidant. These reactions lead to multiple products with different redox states that possess a single hydroxyl group at C-2, a 2,3-vicinal diol, a contracted five-membered A-ring, or an expanded seven-membered A-ring. Similar reactions also take place in both natural products and other organic compounds harboring an epoxide adjacent to a carbonyl group that is conjugated to an aromatic moiety. Our findings extend the repertoire of known flavin chemistry that may provide new and useful tools for organic synthesis.

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