对映选择合成
化学
胺化
硝基苯
烯丙基重排
催化作用
组合化学
有机催化
立体化学
还原胺化
有机化学
小学(天文学)
天文
物理
作者
Yang Yang,Inha Cho,Xiaotian Qi,Peng Liu,Frances H. Arnold
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2019-10-14
卷期号:11 (11): 987-993
被引量:176
标识
DOI:10.1038/s41557-019-0343-5
摘要
The ability to selectively functionalize ubiquitous C-H bonds streamlines the construction of complex molecular architectures from easily available precursors. Here we report enzyme catalysts derived from a cytochrome P450 that use a nitrene transfer mechanism for the enantioselective amination of primary, secondary and tertiary C(sp3)-H bonds. These fully genetically encoded enzymes are produced and function in bacteria, where they can be optimized by directed evolution for a broad spectrum of enantioselective C(sp3)-H amination reactions. These catalysts can aminate a variety of benzylic, allylic and aliphatic C-H bonds in excellent enantioselectivity with access to either antipode of product. Enantioselective amination of primary C(sp3)-H bonds in substrates that bear geminal dimethyl substituents furnished chiral amines that feature a quaternary stereocentre. Moreover, these enzymes enabled the enantioconvergent transformation of racemic substrates that possess a tertiary C(sp3)-H bond to afford products that bear a tetrasubstituted stereocentre, a process that has eluded small-molecule catalysts. Further engineering allowed for the enantioselective construction of methyl-ethyl stereocentres, which is notoriously challenging in asymmetric catalysis.
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