化学
氮丙啶
立体选择性
立体中心
立体化学
非对映体
羟基化
饱和突变
催化作用
键裂
立体异构
酶
组合化学
对映选择合成
戒指(化学)
有机化学
生物化学
突变体
基因
作者
Hui Tao,Richiro Ushimaru,Takayoshi Awakawa,Takahiro Mori,Masanobu Uchiyama,Ikuro Abe
摘要
Non-heme iron enzymes are versatile catalysts in the biosynthesis of medicinal natural products and have attracted increasing attention as practical catalytic tools in chemical synthesis due to their ability to perform chemically challenging transformations. The Fe(II)/α-ketoglutarate-dependent oxygenase TqaL catalyzes unusual aziridine formation from l-Val via cleavage of the unactivated Cβ–H bond. However, the mechanistic details as well as the synthetic potential of TqaL-catalyzed ring closure remain unclear. Herein, we show that the TqaL-catalyzed aziridination of l-Val proceeds with an atypical, mixed stereochemical course involving both the retention and inversion of the C3(Cβ) stereocenter. It is also demonstrated that TqaL accepts l-Ile and l-allo-Ile to generate the same diastereomeric pairs of aziridine products via an enzyme-controlled, stereoconvergent process. Our mutagenesis studies reveal that the reaction type (aziridination versus hydroxylation) and the stereochemical outcome are regulated by Ile343 and Phe345. Proper substitutions of Ile343 or Phe345 also make TqaL highly active toward the oxidation of α-amino acid substrates. This work provides mechanistic insights into the stereoselectivity and substrate specificity of the TqaL reactions.
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