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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Theoretical Insights into the Mechanism and Stereoselectivity of Olefin Cyclopropanation Catalyzed by Two Engineered Cytochrome P450 Enzymes
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Theoretical Insights into the Mechanism and Stereoselectivity of Olefin Cyclopropanation Catalyzed by Two Engineered Cytochrome P450 Enzymes

机译:用两种工程化细胞色素P450酶催化烯烃环丙烷机理和立体选择性的理论见解

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摘要

Engineered P450s can catalyze some non-natural reactions with high efficiency and excellent selectivity, such as the carbine transfer, nitrene transfer, C-H insertion, and C-H amination, opening alternative routes for sustainable production of chemicals. Recent experiments revealed that two engineered cytochrome P450 enzymes (P450(BM3)-CIS and P411(BM3)-CIS) show different efficiencies and stereoselectivities in the olefin cyclopropanation, but key factors that affect the activity remain unclear. In this work, both quantum mechanics (QM) and QM/molecular mechanics (MM) methods were employed to explore the catalytic reactions and selectivity of these two engineered cytochrome P450 enzymes. On the basis of our results, the cyclopropanation of styrene is suggested to mainly occur on the open-shell singlet (OSS) and triplet state surfaces, which contain two elementary steps. The reactive iron(III)-porphyrin carbene (IPC) radical first attacks the terminal alkenyl group of styrene to form a C-radical intermediate, which then undergoes a cyclization reaction affording the cyclopropanation products. Importantly, it is found that the stereoselectivity of cyclopropanations is elucidated only if considering the real protein environment, and the stereoselectivity is determined by multiple factors, such as the relative orientation of IPC to styrene, the binding affinity of the substrate, and the reaction barriers of rate-limiting steps. It is the enzymatic environment that makes the reaction highly stereoselective, which provides useful clues for designing whole-cell catalysts for non-natural chemical reactions.
机译:工程化P450S可以高效率和优异的选择性催化一些非天然反应,例如Carbine转移,硝基转移,C-H插入和C-H胺化,开放可持续生产化学品的替代途径。最近的实验表明,两个工程化细胞色素P450酶(P450(BM3)-CIS和P411(BM3)-CIS)显示了烯烃环丙烷中的不同效率和立体选择性,而是影响活动的关键因素仍然不清楚。在这项工作中,使用量子力学(QM)和QM /分子力学(MM)方法探讨这两种工程化细胞色素P450酶的催化反应和选择性。在我们的结果的基础上,提出了苯乙烯的环丙烷主要发生在开壳单线(OSS)和三重态状态表面上,其含有两个基本步骤。反应性铁(III) - 孢子基石(IPC)自由基首先攻击苯乙烯的末端链烯基以形成C-自由基中间体,然后进行C-自由基中间体,然后经历环丙烷化产物的环化反应。重要的是,发现cyclopropanations的立体选择性是阐明仅当考虑到实际蛋白质环境,立体选择性是由多个因素,诸如IPC的苯乙烯,所述底物的结合亲和力的相对方位,并且将反应障碍确定速率限制步骤。它是使反应高度立体选择性的酶促环境,其为设计用于非天然化学反应的全细胞催化剂提供有用的线索。

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