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四氯嗪的发现和生物合成揭示了通过 - 醌甲醚的酶促苄基脱氢反应。

Discovery and Biosynthesis of Tetrachlorizine Reveals Enzymatic Benzylic Dehydrogenation via an -Quinone Methide.

出版信息

J Am Chem Soc. 2021 Mar 17;143(10):3682-3686. doi: 10.1021/jacs.0c12415. Epub 2021 Mar 3.

Abstract

-quinone methides (-QMs) are reactive intermediates in biosynthesis that give rise to a variety of intra- and intermolecular cyclization/addition products in bacteria, fungi, and plants. Herein, we report a new metabolic deviation of an -QM intermediate in a benzylic dehydrogenation reaction that links the newly described marine bacterial natural products dihydrotetrachlorizine and tetrachlorizine. We discovered these novel dichloropyrrole-containing compounds from actinomycete strain AJS-327 that unexpectedly harbors in its genome a biosynthetic gene cluster (BGC) of striking similarity to that of chlorizidine, another marine alkaloid bearing a different carbon skeleton. Heterologous expression of the homologous flavin-dependent oxidoreductase enzymes Tcz9 and Clz9 revealed their native functions in tetrachlorizine and chlorizidine biosynthesis, respectively, supporting divergent oxidative dehydrogenation and pyrrolizine-forming reactions. Swapping these berberine bridge enzyme-like oxidoreductases, we produced cyclized and dehydrogenated analogs of tetrachlorizine and chlorizidine, including a dearomatized chlorizidine analog that stabilizes an -QM via conjugation with a 3-pyrrolizine ring.

摘要

醌甲(-QMs)是生物合成中的反应中间体,在细菌、真菌和植物中产生各种分子内和分子间的环化/加成产物。本文报道了一种新型的 -QM 中间体在苄基脱氢反应中的代谢偏离,该中间体将新描述的海洋细菌天然产物二氢四氯嗪和四氯嗪联系起来。我们从放线菌菌株 AJS-327 中发现了这些新型的含二氯吡咯的化合物,该菌株出人意料地在其基因组中含有一个生物合成基因簇(BGC),与另一种具有不同碳骨架的海洋生物碱氯嗪的 BGC 惊人地相似。异源表达同源黄素依赖性氧化还原酶 Tcz9 和 Clz9 揭示了它们在四氯嗪和氯嗪生物合成中的天然功能,分别支持不同的氧化脱氢和吡咯嗪形成反应。交换这些小檗碱桥酶样氧化还原酶,我们产生了四氯嗪和氯嗪的环化和脱氢类似物,包括一个去芳构化的氯嗪类似物,通过与 3-吡咯嗪环共轭稳定 -QM。

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