对映选择合成
化学
磺胺
药效团
组合化学
生物催化
烯胺
催化作用
曼尼希反应
反应性(心理学)
立体异构
有机化学
酶催化
立体化学
立体选择性
定向进化
活动站点
结构母题
酶
共价键
环胺
作者
Zhixi Zhu,Qinru Hu,Yao Wu,Binju Wang,Zhi Zhou
标识
DOI:10.1021/acscatal.6c03969
摘要
The sulfonamide motif is a privileged pharmacophore found in numerous therapeutics, and seven-membered cyclic sulfonamides in particular are valued for their structural and biological properties. However, study on the synthesis of chiral sulfonamides via enzymatic catalysis remains rare. Herein, we report the directed evolution and mechanistic characterization of an artificial Mannichase that promotes an asymmetric biocatalytic Mannich reaction between cyclic ketones and cyclic sulfonyl-imines through an enamine activation pathway. Iterative rounds of engineering delivered variants that furnish seven-membered cyclic sulfonamide products with high stereoselectivity (up to 95.5:4.5 e.r., >20:1 d.r.) and reactivity (up to >99% yield). Complementary molecular dynamics and QM/MM calculations reveal key active-site interactions and transition-state features that underlie the observed stereoselectivity. This work expands the toolkit of biocatalytic Mannichases, establishes a practical route to enantioenriched cyclic sulfonamides, and highlights the power of combining the covalent anchoring strategy with directed evolution to access new-to-nature asymmetric transformations with potential applications in medicinal chemistry.
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