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Non-natural olefin cyclopropanation catalyzed by diverse cytochrome P450s and other hemoproteins

机译:多种细胞色素P450和其他血红蛋白催化的非天然烯烃环丙烷化

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摘要

Recent work has shown that engineered variants of cytochrome P450BM3 (CYP102A1) efficiently catalyze non-natural reactions, including carbene- and nitrene-transfer reactions. Given the broad substrate range of natural P450 enzymes, we set out to explore if this diversity could be leveraged to generate a broad panel of new catalysts for olefin cyclopropanation (i.e. carbene transfer). Here we take a step towards this goal by characterizing the carbene-transfer activities of four new wild-type P450s that have different native substrates. All four were active and exhibited a range of product selectivities in the model reaction, cyclopropanation of styrene using ethyl diazoacetate (EDA). Previous work on P450BM3 demonstrated that mutation of the axial coordinating cysteine, universally conserved among P450 enzymes, to serine, increased activity for this non-natural reaction. The equivalent mutation in the selected P450s was found to activate carbene-transfer chemistry both in vitro and in vivo. Furthermore, serum albumins complexed with hemin were also found to be efficient in vitro cyclopropanation catalysts.
机译:最近的工作表明,细胞色素P450BM3(CYP102A1)的工程变体可以有效催化非天然反应,包括卡宾和腈转移反应。鉴于天然P450酶的底物范围广,我们着手探讨是否可以利用这种多样性来产生大量新的烯烃环丙烷化(即卡宾转移)催化剂。在这里,我们通过表征具有不同天然底物的四种新型野生型P450的卡宾转移活性,朝着这一目标迈出了一步。这四种都具有活性,并且在模型反应(使用重氮乙酸乙酯(EDA)对苯乙烯进行环丙烷化)中表现出一定的产物选择性。先前对P450BM3的研究表明,在P450酶中普遍保守的轴向配位半胱氨酸突变为丝氨酸,增加了这种非天然反应的活性。发现在选定的P450中的等效突变在体外和体内均激活卡宾转移化学。此外,还发现与血红素复合的血清白蛋白是有效的体外环丙烷化催化剂。

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