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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Laboratory-Evolved Enzymes Provide Snapshots of the Development of Enantioconvergence in Enzyme-Catalyzed Epoxide Hydrolysis
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Laboratory-Evolved Enzymes Provide Snapshots of the Development of Enantioconvergence in Enzyme-Catalyzed Epoxide Hydrolysis

机译:实验室进化的酶提供了酶催化环氧化物水解中对映融合发展的快照

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摘要

Engineered enzyme variants of potato epoxide hydrolase (StEH1) display varying degrees of enrichment of (2R)-3-phenylpropane-1,2-diol from racemic benzyloxirane. Curiously, the observed increase in the enantiomeric excess of the (R)-diol is not only a consequence of changes in enantioselectivity for the preferred epoxide enantiomer, but also to changes in the regioselectivity of the epoxide ring opening of (S)-benzyloxirane. In order to probe the structural origin of these differences in substrate selectivity and catalytic regiopreference, we solved the crystal structures for the evolved StEH1 variants. We used these structures as a starting point for molecular docking studies of the epoxide enantiomers into the respective active sites. Interestingly, despite the simplicity of our docking analysis, the apparent preferred binding modes appear to rationalize the experimentally determined regioselectivities. The analysis also identifies an active site residue (F33) as a potentially important interaction partner, a role that could explain the high conservation of this residue during evolution. Overall, our experimental, structural, and computational studies provide snapshots into the evolution of enantioconvergence in StEH1-catalyzed epoxide hydrolysis.
机译:马铃薯环氧化物水解酶(StEH1)的工程化酶变体显示出外消旋苄基环氧乙烷对(2R)-3-苯基丙烷-1,2-二醇的富集程度不同。奇怪的是,观察到的(R)-二醇对映体过量的增加不仅是对优选的环氧对映体的对映选择性变化的结果,而且是(S)-苄基环氧乙烷的环氧开环的区域选择性变化的结果。为了探究这些底物选择性和催化区域选择性差异的结构起源,我们解决了进化的StEH1变体的晶体结构。我们以这些结构为起点,将环氧化物对映异构体分子对接研究成各自的活性位点。有趣的是,尽管我们的对接分析很简单,但显然优选的结合模式似乎可以合理化实验确定的区域选择性。分析还确定了一个活性位点残基(F33)作为潜在的重要相互作用伴侣,这一作用可以解释该残基在进化过程中的高度保守性。总的来说,我们的实验,结构和计算研究提供了有关StEH1催化的环氧化物水解中对映收敛的演变的快照。

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