半胱氨酸
谷胱甘肽
内质网
化学
生物化学
分泌物
二硫键
分泌途径
分泌蛋白
胱氨酸
细胞生物学
生物
酶
高尔基体
作者
Xiaotian Zhong,Tao He,Amar S. Prashad,Wenge Wang,Justin Cohen,Darren E. Ferguson,Amy Tam,Eric Sousa,Laura Lin,Lioudmila Tchistiakova,Scott Gatto,Aaron M. D’Antona,Yen‐Tung Luan,Weijun Ma,Richard Zollner,Jing Zhou,Bo Arve,Will Somers,Ronald Kriz
标识
DOI:10.1016/j.jbiotec.2017.03.006
摘要
Protein modifications by intricate cellular machineries often redesign the structure and function of existing proteins to impact biological networks. Disulfide bond formation between cysteine (Cys) pairs is one of the most common modifications found in extracellularly-destined proteins, key to maintaining protein structure. Unpaired surface cysteines on secreted mammalian proteins are also frequently found disulfide-bonded with free Cys or glutathione (GSH) in circulation or culture, the mechanism for which remains unknown. Here we report that these so-called Cys-capping modifications take place outside mammalian cells, not in the endoplasmic reticulum (ER) where oxidoreductase-mediated protein disulfide formation occurs. Unpaired surface cysteines of extracellularly-arrived proteins such as antibodies are uncapped upon secretion before undergoing disulfide exchange with cystine or oxidized GSH in culture medium. This observation has led to a feasible way to selectively modify the nucleophilic thiol side-chain of cell-surface or extracellular proteins in live mammalian cells, by applying electrophiles with a chemical handle directly into culture medium. These findings provide potentially an effective approach for improving therapeutic conjugates and probing biological systems.
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