突变
胺气处理
还原胺化
丙氨酸扫描
化学
对接(动物)
活动站点
丙氨酸
异丙基
胺化
生物化学
氨基酸
组合化学
酶
突变体
立体化学
酮
催化作用
有机化学
基因
医学
护理部
作者
Xiaoqing Mu,Tao Wu,Yong Mao,Yi‐Lei Zhao,Yan Xu,Yao Nie
出处
期刊:Chemcatchem
[Wiley]
日期:2021-11-03
卷期号:13 (24): 5243-5253
被引量:13
标识
DOI:10.1002/cctc.202101558
摘要
Abstract Direct reductive amination of prochiral ketones catalyzed by amine dehydrogenases is attractive in the synthesis of active pharmaceutical ingredients. Here, we report the protein engineering of L‐ Bacillus cereus amine dehydrogenase to allow reactivity on synthetically useful aromatic ketone substrates using an iterative, multiple‐site alanine scanning mutagenesis approach. Mutagenesis libraries based on molecular docking, iterative alanine scanning, and double‐proximity filter approach significantly expand the scope of active pharmaceutical ingredients relevant building blocks. The eventual quintuple mutant (A115G/T136A/L42A/V296A/V293A) showed reactivity toward aromatic ketones 12 a (5‐phenyl‐pentan‐2‐one) and 13 a (6‐phenyl‐hexan‐2‐one), which have not been reported to serve as targets of reductive amination by currently available amine dehydrogenases. Docking simulation and tunnel analysis provided valuable insights into the source of the acquired specificity and activity.
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