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Structure and Catalytic Mechanism of the Thioesterase CalE7 in Enediyne Biosynthesis

机译:硫酯酶CalE7在烯对二烯生物合成中的结构和催化机理

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摘要

The biosynthesis of the enediyne moiety of the antitumor natural product calicheamicin involves an iterative polyketide synthase (CalE8) and other ancillary enzymes. In the proposed mechanism for the early stage of 10-membered enediyne biosynthesis, CalE8 produces a carbonyl-conjugated polyene with the assistance of a putative thioesterase (CalE7). We have determined the x-ray crystal structure of CalE7 and found that the subunit adopts a hotdog fold with an elongated and kinked substrate-binding channel embedded between two subunits. The 1.75-Å crystal structure revealed that CalE7 does not contain a critical catalytic residue (Glu or Asp) conserved in other hotdog fold thioesterases. Based on biochemical and site-directed mutagenesis studies, we proposed a catalytic mechanism in which the conserved Arg37 plays a crucial role in the hydrolysis of the thioester bond, and that Tyr29 and a hydrogen-bonded water network assist the decarboxylation of the β-ketocarboxylic acid intermediate. Moreover, computational docking suggested that the substrate-binding channel binds a polyene substrate that contains a single cis double bond at the C4/C5 position, raising the possibility that the C4=C5 double bond in the enediyne moiety could be generated by the iterative polyketide synthase. Together, the results revealed a hotdog fold thioesterase distinct from the common type I and type II thioesterases associated with polyketide biosynthesis and provided interesting insight into the enediyne biosynthetic mechanism.
机译:抗肿瘤天然产物加利车霉素的烯二炔部分的生物合成涉及迭代的聚酮化合物合酶(CalE8)和其他辅助酶。在提议的10元烯二炔生物合成早期阶段的机理中,CalE8在推定的硫酯酶(CalE7)的帮助下产生了羰基共轭多烯。我们已经确定了CalE7的X射线晶体结构,并发现该亚基采用热狗折叠,在两个亚基之间嵌入了细长的扭结底物结合通道。 1.75-α晶体结构表明,CalE7不包含在其他热狗折叠硫酯酶中保守的关键催化残基(Glu或Asp)。基于生化和定点诱变研究,我们提出了一种催化机制,其中保守的Arg 37 在硫酯键的水解中起关键作用,而Tyr 29

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