化学
大肠杆菌
周质间隙
蛋白质工程
定向进化
基质(水族馆)
辅因子
生物化学
组合化学
突变体
酶
基因
海洋学
地质学
作者
Jingming Zhao,Johannes G. Rebelein,Hendrik Mallin,Christian Trindler,Michela M. Pellizzoni,Thomas R. Ward
摘要
Artificial metalloenzymes (ArMs), which combine an abiotic metal cofactor with a protein scaffold, catalyze various synthetically useful transformations. To complement the natural enzymes' repertoire, effective optimization protocols to improve ArM's performance are required. Here we report on our efforts to optimize the activity of an artificial transfer hydrogenase (ATHase) using Escherichia coli whole cells. For this purpose, we rely on a self-immolative quinolinium substrate which, upon reduction, releases fluorescent umbelliferone, thus allowing efficient screening. Introduction of a loop in the immediate proximity of the Ir-cofactor afforded an ArM with up to 5-fold increase in transfer hydrogenation activity compared to the wild-type ATHase using purified mutants.
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