雅罗维亚
谷胱甘肽
生物化学
半胱氨酸
氨基酸
代谢工程
酵母
生物合成
DNA连接酶
抗氧化剂
化学
生物
基因
酶
作者
D.G. Do,Mümine Guruk,Małgorzata Kus‐Liśkiewicz,Christian Damblon,Anthony Argüelles Arias,Hüseyin Erten,Patrick Fickers
标识
DOI:10.1002/biot.202300564
摘要
Abstract The dipeptide γ‐glutamylcysteine (γ‐GC), the first intermediate of glutathione (GSH) synthesis, is considered as a promising drug to reduce or prevent plethora of age‐related disorders such as Alzheimer and Parkinson diseases. The unusual γ‐linkage between the two constitutive amino acids, namely cysteine and glutamate, renders its chemical synthesis particularly challenging. Herein, we report on the metabolic engineering of the non‐conventional yeast Yarrowia lipolytica for efficient γ‐GC synthesis. The yeast was first converted into a γ‐GC producer by disruption of gene GSH2 encoding GSH synthase and by constitutive expression of GSH1 encoding glutamylcysteine ligase. Subsequently genes involved in cysteine and glutamate anabolism, namely MET4 , CYSE , CYSF , and GDH1 were overexpressed with the aim to increase their intracellular availability. With such a strategy, a γ‐GC titer of 464 nmol mg −1 protein (93 mg gDCW −1 ) was obtained within 24 h of cell growth.
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