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Mutating a Highly Conserved Residue in Diverse Cytochrome P450s Facilitates Diastereoselective Olefin Cyclopropanation

机译:在多种细胞色素P450s中突变高度保守的残基有助于非对映选择性烯烃环丙烷化

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摘要

Cytochrome P450s and other heme-containing proteins have recently been shown to have promiscuous activity for the cyclopropanation of olefins using diazoacetate reagents. Despite the progress made thus far, engineering selective catalysts for all possible stereoisomers for the cyclopropanation reaction remains a considerable challenge. Previous investigations of a model P450 (P450BM3) revealed that mutation of a conserved active site threonine (Thr268) to alanine transformed the enzyme into a highly active and selective cyclopropanation catalyst. By incorporating this mutation into a diverse panel of P450 scaffolds, we were able to quickly identify enantioselective catalysts for all possible diastereomers in the model reaction of styrene with ethyl diazoacetate. Some alanine variants exhibited selectivities that were markedly different from the wild-type enzyme, with a few possessing moderate to high diastereoselectivity and enantioselectivities up to 97 % for synthetically challenging cis-cyclopropane diastereomers.
机译:最近已经证明,细胞色素P450和其他含血红素的蛋白对于使用重氮乙酸酯试剂进行的烯烃的环丙烷化具有混杂的活性。尽管迄今已取得进展,但对用于环丙烷化反应的所有可能的立体异构体的选择性催化剂的工程设计仍然是一个巨大的挑战。先前对模型P450(P450BM3)的研究表明,保守的活性位点苏氨酸(Thr268)向丙氨酸的突变将酶转变为高活性和选择性的环丙烷化催化剂。通过将此突变整合到一组不同的P450支架中,我们能够快速确定苯乙烯与重氮乙酸乙酯的模型反应中所有可能的非对映异构体的对映选择性催化剂。一些丙氨酸变体表现出与野生型酶显着不同的选择性,其中一些具有对于合成挑战性的顺式环丙烷非对映体具有中等至高的非对映选择性和高达97%的对映选择性。

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