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非典型蒽环类抗生素生物合成中由AlpJ家族加氧酶催化的不依赖辅因子的C-C键裂解反应。

Cofactor-independent C-C bond cleavage reactions catalyzed by the AlpJ family of oxygenases in atypical angucycline biosynthesis.

作者信息

Gao Jinmin, Li Liyuan, Shen Shijie, Ai Guomin, Wang Bin, Guo Fang, Yang Tongjian, Han Hui, Xu Zhengren, Pan Guohui, Fan Keqiang

机构信息

State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, No. 1 Beichen West Road, Beijing 100101, China.

University of Chinese Academy of Sciences, No. 1 Yanqihu East Road, Beijing 101408, China.

出版信息

Beilstein J Org Chem. 2024 May 23;20:1198-1206. doi: 10.3762/bjoc.20.102. eCollection 2024.

Abstract

Biosynthesis of atypical angucyclines involves unique oxidative B-ring cleavage and rearrangement reactions, which are catalyzed by AlpJ-family oxygenases, including AlpJ, JadG, and GilOII. Prior investigations established the essential requirement for FADH/FMNH as cofactors when utilizing the quinone intermediate dehydrorabelomycin as a substrate. In this study, we unveil a previously unrecognized facet of these enzymes as cofactor-independent oxygenases when employing the hydroquinone intermediate CR1 as a substrate. The enzymes autonomously drive oxidative ring cleavage and rearrangement reactions of CR1, yielding products identical to those observed in cofactor-dependent reactions of AlpJ-family oxygenases. Furthermore, the AlpJ- and JadG-catalyzed reactions of CR1 could be quenched by superoxide dismutase, supporting a catalytic mechanism wherein the substrate CR1 reductively activates molecular oxygen, generating a substrate radical and the superoxide anion O . Our findings illuminate a substrate-controlled catalytic mechanism of AlpJ-family oxygenases, expanding the realm of cofactor-independent oxygenases. Notably, AlpJ-family oxygenases stand as a pioneering example of enzymes capable of catalyzing oxidative reactions in either an FADH/FMNH-dependent or cofactor-independent manner.

摘要

非典型安古霉素的生物合成涉及独特的氧化性B环裂解和重排反应,这些反应由AlpJ家族加氧酶催化,包括AlpJ、JadG和GilOII。先前的研究表明,当以醌中间体脱氢阿霉素为底物时,FADH/FMNH作为辅因子是必不可少的。在本研究中,我们揭示了这些酶在以对苯二酚中间体CR1为底物时,作为不依赖辅因子的加氧酶的一个先前未被认识的方面。这些酶自主驱动CR1的氧化性环裂解和重排反应,产生与在AlpJ家族加氧酶的依赖辅因子反应中观察到的产物相同的产物。此外,超氧化物歧化酶可以淬灭AlpJ和JadG催化的CR1反应,这支持了一种催化机制,即底物CR1还原激活分子氧,产生底物自由基和超氧阴离子O。我们的发现阐明了AlpJ家族加氧酶的底物控制催化机制,扩展了不依赖辅因子的加氧酶的领域。值得注意的是,AlpJ家族加氧酶是能够以依赖FADH/FMNH或不依赖辅因子的方式催化氧化反应的酶的一个开创性例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/877b/11181247/4b6ceb5f2c1b/Beilstein_J_Org_Chem-20-1198-g004.jpg

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