立体中心
化学
立体化学
对映选择合成
氨基酸
吡咯烷
色氨酸合酶
组合化学
酶
寡肽
亚胺
四肽
非核糖体肽
环肽
活动站点
易裂键
色氨酸
级联
立体异构
丝氨酸
蛋白质工程
不对称氢化
蛋白质结构
生物催化
结构母题
级联反应
支化(高分子化学)
基质(水族馆)
作者
Wenxuan Li,Noah X. Hamlish,Rodell C. Barrientos,Mengbin Chen,Anna Fryszkowska,Yining Ji,Chey M. Jones,Andrew Kelly,Mikhail Reibarkh,Heather Wang,Matthew S. Winston,Richard Ayikpoe,Noah P. Dunham
标识
DOI:10.1021/acscatal.6c02110
摘要
Noncanonical amino acids (ncAAs) are valuable building blocks for novel therapeutics. Prolines are particularly useful because their cyclic cores can limit the conformational flexibility of a larger molecular framework, allowing such scaffolds to be further tuned to enhance engagement with their biological targets. Herein, we describe a convergent approach to synthesizing noncanonical prolines from readily available starting materials mediated by a tryptophan synthase β-subunit (TrpB)-imine reductase (IRED) cascade. In the first step, the TrpB catalyzes ketone substrate activation and C–C bond formation with an L-serine- or L-threonine (L-Thr)-derived amino acrylate intermediate. In the second step, the IRED reduces the cyclic imine intermediate, in some cases simultaneously setting two stereocenters via a dynamic kinetic resolution. With this one-pot, sequential cascade, we demonstrate the synthesis of mono-, bi-, and tricyclic prolines bearing as many as four chiral centers, including three examples possessing a remote desymmetrized stereocenter and one example possessing an L-Thr-derived, fully functionalized pyrrolidine ring. Furthermore, we show that D-prolines are accessible from L-amino acid starting materials, which has not been observed in tryptophan synthase catalysis previously. This cascade is a scalable, operation-ally simple method to synthesize new prolines, and is poised to expand the development of novel therapeutics featuring structurally complex ncAAs.
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