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磷霉素生物合成酶Fom3介导的立体特异性自由基依赖性B-甲基转移反应

Stereospecific Radical-Mediated B-Dependent Methyl Transfer by the Fosfomycin Biosynthesis Enzyme Fom3.

作者信息

McLaughlin Martin I, van der Donk Wilfred A

出版信息

Biochemistry. 2018 Aug 21;57(33):4967-4971. doi: 10.1021/acs.biochem.8b00616. Epub 2018 Jul 10.

Abstract

Fom3, the antepenultimate enzyme in the fosfomycin biosynthetic pathway in Streptomyces spp., is a class B cobalamin-dependent radical SAM methyltransferase that catalyzes methylation of (5'-cytidylyl)-2-hydroxyethylphosphonate (2-HEP-CMP) to form (5'-cytidylyl)-2-hydroxypropylphosphonate (2-HPP-CMP). Previously, the reaction of Fom3 with 2-HEP-CMP produced 2-HPP-CMP with mixed stereochemistry at C2. Mechanistic characterization has been challenging because of insoluble expression and poor cobalamin (B) incorporation in Escherichia coli. Recently, soluble E. coli expression and incorporation of cobalamin into Fom3 were achieved by overexpression of the BtuCEDFB cobalamin uptake system. Herein, we use this new method to obtain Fom3 from Streptomyces wedmorensis. We show that the initiator 5'-deoxyadenosyl radical stereospecifically abstracts the pro- R hydrogen atom from the C2 position of 2-HEP-CMP and use the downstream enzymes FomD and Fom4 to demonstrate that our preparation of Fom3 produces only (2 S)-2-HPP-CMP. Additionally, we show that the added methyl group originates from SAM under multiple-turnover conditions, but the first turnover uses a methyl donor already present on the enzyme; furthermore, cobalamin isolated from Fom3 reaction mixtures contains methyl groups derived from SAM. These results are consistent with a model in which Fom3 catalyzes methyl transfer from SAM to cobalamin and the resulting methylcobalamin (MeCbl) is the ultimate methyl source for the reaction.

摘要

Fom3是链霉菌属中磷霉素生物合成途径的倒数第二个酶,是一种B类钴胺素依赖性自由基SAM甲基转移酶,催化(5'-胞苷基)-2-羟乙基膦酸酯(2-HEP-CMP)甲基化形成(5'-胞苷基)-2-羟丙基膦酸酯(2-HPP-CMP)。此前,Fom3与2-HEP-CMP的反应在C2位产生了具有混合立体化学结构的2-HPP-CMP。由于在大肠杆菌中表达不溶性且钴胺素(B)掺入不佳,其机制表征一直具有挑战性。最近,通过过表达BtuCEDFB钴胺素摄取系统实现了在大肠杆菌中的可溶性表达以及钴胺素掺入Fom3。在此,我们使用这种新方法从韦氏链霉菌中获得Fom3。我们表明引发剂5'-脱氧腺苷自由基立体定向地从2-HEP-CMP的C2位提取前手性R氢原子,并使用下游酶FomD和Fom4证明我们制备的Fom3仅产生(2S)-2-HPP-CMP。此外,我们表明在多轮反应条件下添加的甲基源自SAM,但第一轮反应使用的是酶上已存在的甲基供体;此外,从Fom3反应混合物中分离出的钴胺素含有源自SAM的甲基。这些结果与一个模型一致,即Fom3催化甲基从SAM转移到钴胺素,所得甲基钴胺素(MeCbl)是该反应的最终甲基来源。

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