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首页> 外文期刊>Advanced synthesis & catalysis >Structure-Based Insight into the Asymmetric Bioreduction of the C=C Double Bond of α,β-Unsaturated Nitroalkenes by Pentaerythritol Tetranitrate Reductase
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Structure-Based Insight into the Asymmetric Bioreduction of the C=C Double Bond of α,β-Unsaturated Nitroalkenes by Pentaerythritol Tetranitrate Reductase

机译:季戊四醇四酯还原酶对α,β-不饱和硝基烯烃的C = C双键的不对称生物还原的基于结构的见解

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摘要

Biocatalytic reduction of α- or β-alkyl-β-arylnitroalkenes provides a convenient and efficient method to prepare chiral substituted nitroalkanes. Pentaerythritol tetranitrate reductase (PETN reductase) from Enterobacter cloacae st. PB2 catalyses the reduction of nitroolefins such as 1-nitrocyclohexene (1) with steady state and rapid reaction kinetics comparable to other old yellow enzyme homologues. Furthermore, it reduces 2-aryl-1-nitropropenes (4a-d) to their equivalent (S)-nitropropanes 9a-d. The enzyme shows a preference for the (Z)-isomer of substrates 4a-d, providing almost pure enantiomeric products 9a-d (ees up to>99%) in quantitative yield, whereas the respective (E)-isomers are reduced with lower enantioselectivity (63-89% ee) and lower product yields. 1-Aryl-2-nitropropenes (5a, b) are also reduced efficiently, but the products (R)-10 have lower optical purities. The structure of the enzyme complex with 1-nitrocyclohexene (1) was determined by X-ray crystallography, revealing two substrate-binding modes, with only one compatible with hydride transfer. Models of nitropropenes 4 and 5 in the active site of PETN reductase predicted that the enantioselectivity of the reaction was dependent on the orientation of binding of the (E)- and (Z)-substrates. This work provides a structural basis for understanding the mechanism of asymmetric bioreduction of nitroalkenes by PETN reductase.
机译:α-或β-烷基-β-芳基硝基链烯的生物催化还原提供了一种方便有效的方法来制备手性取代的硝基链烷。阴沟肠杆菌中的季戊四醇四硝酸盐还原酶(PETN还原酶)。 PB2催化的硝基烯烃(例如1-硝基环己烯(1))的还原具有与其他旧黄色酶同系物相当的稳定状态和快速的反应动力学。此外,其将2-芳基-1-硝基丙烯(4a-d)还原为其等效的(S)-硝基丙烷9a-d。该酶表现出对底物4a-d的(Z)异构体的偏爱,可提供定量纯度几乎纯的对映体产物9a-d(ee高达> 99%),而相应的(E)异构体的还原度较低对映体选择性(63-89%ee)和较低的产物收率。 1-芳基-2-硝基丙烯(5a,b)也有效地还原,但是产物(R)-10的光学纯度较低。 X射线晶体学测定具有1-硝基环己烯(1)的酶复合物的结构,揭示了两种底物结合模式,只有一种与氢化物转移相容。 PETN还原酶活性位点中的硝基丙烯4和5的模型预测,反应的对映选择性取决于(E)和(Z)底物的结合方向。这项工作为理解PETN还原酶对硝基烯烃进行不对称生物还原的机理提供了结构基础。

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