大肠杆菌
甲基杆菌
麦角新碱
生物化学
生物合成
生物
甲基营养素
红杆菌属
ATP合酶
化学
亚砜
酶
基因
突变体
有机化学
抗氧化剂
16S核糖体RNA
作者
Tomoyuki Kamide,Shun Takusagawa,Naoyuki Tanaka,Yasushi Ogasawara,Yusuke Kawano,Iwao Ohtsu,Yasuharu Satoh,Tohru Dairi
标识
DOI:10.1021/acs.jafc.0c01846
摘要
We previously constructed a heterologous production system for ergothioneine (ERG) in Escherichia coli using five ERG biosynthesis genes (egtABCDE) from Mycobacterium smegmatis. However, significant amounts of hercynine (HER), an intermediate of ERG, as ERG were accumulated, suggesting that the reaction of EgtB catalyzing the attachment of γ-glutamylcysteine (γGC) to HER to yield hercynyl-γ-glutamylcysteine sulfoxide was a bottleneck. In this study, we searched for other EgtBs and found many egtB orthologs in diverse microorganisms. Among these, Methylobacterium strains possessed EgtBs that catalyze the direct conversion of HER into hercynylcysteine sulfoxide with l-cysteine (l-Cys) as a sulfur donor, in a manner similar to those of acidobacterial CthEgtB and fungal Egt1. An in vitro study with recombinant EgtBs from Methylobacterium brachiatum and Methylobacterium pseudosasicola clearly showed that both enzymes accepted l-Cys but not γGC. We reconstituted the ERG production system in E. coli with egtB from M. pseudosasicola; ERG productivity reached 657 mg L–1.
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