化学选择性
区域选择性
化学
基质(水族馆)
细胞色素P450
立体化学
酶
组合化学
生物化学
催化作用
生物
生态学
作者
Peng Jiang,Hong-Bo Jin,Guangtao Zhang,Wenjun Zhang,Wei Liu,Yiguang Zhu,Changsheng Zhang,Liping Zhang
标识
DOI:10.1002/anie.202310728
摘要
Abstract Regio‐ and chemoselective C−H activation at multi‐positions of a single molecule is fascinating but chemically challenging. The homologous cytochrome P450 enzymes IkaD and CftA catalyze multiple C−H oxidations on the same polycyclic tetramate macrolactam (PoTeM) ikarugamycin, with distinct regio‐ and chemoselectivity. Herein we provide mechanistic understanding of their functional differences by solving crystal structures of IkaD and CftA in complex with ikarugamycin and unnatural substrates. Distinct conformations of the F/G region in IkaD and CftA are found to differentiate the orientation of PoTeM substrates, by causing different binding patterns with polar moieties to determine site selection, oxidation order, and chemoselectivity. Fine‐tuning the polar subpocket altered the regioselectivity of IkaD, indicating that substrate re‐orientation by mutating residues distal to the oxidation site could serve as an important method in future engineering of P450 enzymes.
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