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非典型蒽环类化合物的生物合成揭示了黄素蛋白单加氧酶催化的新的环重排反应。

Biosynthesis of Atypical Angucyclines Unveils New Ring Rearrangement Reactions Catalyzed by Flavoprotein Monooxygenases.

机构信息

Key Laboratory of Marine Drugs, Chinese Ministry of Education, School of Medicine and Pharmacy, Ocean University of China, Qingdao, Shandong 266003, People's Republic of China.

Laboratory for Marine Drugs and Bioproducts, Qingdao Marine Science and Technology Center, Qingdao, Shandong 266237, People's Republic of China.

出版信息

Org Lett. 2024 Sep 13;26(36):7489-7494. doi: 10.1021/acs.orglett.4c02074. Epub 2024 Aug 28.

Abstract

Six new angucycline structures, including spirocyclione A (), which contains an unusual oxaspiro[5.5]undecane architecture, and its ring-A-cleaved product spirocyclione B (), were discovered by heterologous expression of a type II polyketide biosynthetic gene cluster captured from a marine actinomycete strain sp. HDN155000. Three flavoprotein monooxygenases are confirmed to be responsible for the oxidative carbon skeleton rearrangements in the biosynthesis of compounds and . The obtained compounds showed promising cytotoxicity against different types of cancer cells.

摘要

六个新的安库利诺环型结构,包括含有不寻常的氧杂螺[5.5]十一烷骨架的螺环酮 A (),以及其环 A 断裂产物螺环酮 B (),是通过异源表达从海洋放线菌菌株 sp. HDN155000 中捕获的 II 型聚酮生物合成基因簇发现的。三种黄素蛋白单加氧酶被证实负责化合物和的生物合成中的氧化碳骨架重排。获得的化合物对不同类型的癌细胞表现出有希望的细胞毒性。

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