氨基酸
转醛醇酶
化学
生物催化
组合化学
有机合成
催化作用
酶
有机化学
生物化学
反应机理
磷酸戊糖途径
糖酵解
作者
Tyler J. Doyon,Prasanth Kumar,Sierra A. Thein,Maeve Kim,Abigail Stitgen,Abbigail M. Grieger,Cormac Madigan,Patrick H. Willoughby,Andrew R. Buller
出处
期刊:ChemBioChem
[Wiley]
日期:2021-10-26
卷期号:23 (2)
被引量:21
标识
DOI:10.1002/cbic.202100577
摘要
Enzymes from secondary metabolic pathways possess broad potential for the selective synthesis of complex bioactive molecules. However, the practical application of these enzymes for organic synthesis is dependent on the development of efficient, economical, operationally simple, and well-characterized systems for preparative scale reactions. We sought to bridge this knowledge gap for the selective biocatalytic synthesis of β-hydroxy-α-amino acids, which are important synthetic building blocks. To achieve this goal, we demonstrated the ability of ObiH, an l-threonine transaldolase, to achieve selective milligram-scale synthesis of a diverse array of non-standard amino acids (nsAAs) using a scalable whole cell platform. We show how the initial selectivity of the catalyst is high and how the diastereomeric ratio of products decreases at high conversion due to product re-entry into the catalytic cycle. ObiH-catalyzed reactions with a variety of aromatic, aliphatic and heterocyclic aldehydes selectively generated a panel of β-hydroxy-α-amino acids possessing broad functional-group diversity. Furthermore, we demonstrated that ObiH-generated β-hydroxy-α-amino acids could be modified through additional transformations to access important motifs, such as β-chloro-α-amino acids and substituted α-keto acids.
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