酶动力学
脱氧腺苷
化学
定向进化
基质(水族馆)
立体化学
组合化学
酶
活动站点
生物化学
生物
突变体
生态学
基因
作者
Huihua Sun,Wan Lin Yeo,Yee Hwee Lim,Xinying Chew,Derek J. Smith,Bo Xue,Kok Ping Chan,Robert Robinson,Edward G. Robins,Huimin Zhao,Ee Lui Ang
标识
DOI:10.1002/anie.201606722
摘要
Abstract Fluorinases offer an environmentally friendly alternative for selective fluorination under mild conditions. However, their diversity is limited in nature and they have yet to be engineered through directed evolution. Herein, we report the directed evolution of the fluorinase FlA1 for improved conversion of the non‐native substrate 5′‐chloro‐5′‐deoxyadenosine (5′‐ClDA) into 5′‐fluoro‐5′‐deoxyadenosine (5′‐FDA). The evolved variants, fah2081 (A279Y) and fah2114 (F213Y, A279L), were successfully applied in the radiosynthesis of 5′‐[ 18 F]FDA, with overall radiochemical conversion (RCC) more than 3‐fold higher than wild‐type FlA1. Kinetic studies of the two‐step reaction revealed that the variants show a significantly improved k cat value in the conversion of 5′‐ClDA into S ‐adenosyl‐ l ‐methionine (SAM) but a reduced k cat value in the conversion of SAM into 5′‐FDA.
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