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Substrate Structure-Activity Relationships Guide Rational Engineering of Modular Polyketide Synthase Ketoreductases

机译:底物结构-活性关系指导合理设计模块化聚酮化合物合酶酮还原酶

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摘要

Modular polyketide synthase ketoreductases can set two chiral centers through a single reduction. To probe the basis of stereocontrol, a structure-activity relationship study was performed with three α-methyl, β-ketothioester substrates and four ketoreductases. Since interactions with the β-ketoacyl moiety were found to be most critical, residues implicated in contacting this moiety were mutated. Two mutations were sufficient to completely reverse the stereoselectivity of the model ketoreductase EryKR1, converting it from an enzyme that generates (2S,3R)-products into one that yields (2S,3S)-products.
机译:模块化聚酮化合物合酶酮还原酶可以通过一次还原来设定两个手性中心。为了探究立体控制的基础,对三种α-甲基,β-酮硫酯底物和四种酮还原酶进行了结构-活性关系研究。因为发现与β-酮酰基部分的相互作用是最关键的,所以与该部分接触有关的残基被突变。两个突变足以完全逆转模型酮还原酶EryKR1的立体选择性,将其从一种产生(2S,3R)产物的酶转变为一种产生(2S,3S)产物的酶。

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