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大肠杆菌中分泌型和细胞外 N-连接糖蛋白的产生。

Production of secretory and extracellular N-linked glycoproteins in Escherichia coli.

机构信息

Glycobia, Inc., 33 Thornwood Drive, Ithaca, New York 14850, USA.

出版信息

Appl Environ Microbiol. 2011 Feb;77(3):871-81. doi: 10.1128/AEM.01901-10. Epub 2010 Dec 3.

Abstract

The Campylobacter jejuni pgl gene cluster encodes a complete N-linked protein glycosylation pathway that can be functionally transferred into Escherichia coli. In this system, we analyzed the interplay between N-linked glycosylation, membrane translocation and folding of acceptor proteins in bacteria. We developed a recombinant N-glycan acceptor peptide tag that permits N-linked glycosylation of diverse recombinant proteins expressed in the periplasm of glycosylation-competent E. coli cells. With this "glycosylation tag," a clear difference was observed in the glycosylation patterns found on periplasmic proteins depending on their mode of inner membrane translocation (i.e., Sec, signal recognition particle [SRP], or twin-arginine translocation [Tat] export), indicating that the mode of protein export can influence N-glycosylation efficiency. We also established that engineered substrate proteins targeted to environments beyond the periplasm, such as the outer membrane, the membrane vesicles, and the extracellular medium, could serve as substrates for N-linked glycosylation. Taken together, our results demonstrate that the C. jejuni N-glycosylation machinery is compatible with distinct secretory mechanisms in E. coli, effectively expanding the N-linked glycome of recombinant E. coli. Moreover, this simple glycosylation tag strategy expands the glycoengineering toolbox and opens the door to bacterial synthesis of a wide array of recombinant glycoprotein conjugates.

摘要

空肠弯曲菌 pgl 基因簇编码一个完整的 N-连接蛋白糖基化途径,可在大肠杆菌中进行功能转移。在该系统中,我们分析了 N-连接糖基化、膜易位和细菌中受体蛋白折叠之间的相互作用。我们开发了一种重组 N-糖基化受体肽标签,允许在糖基化能力的大肠杆菌细胞周质中表达的各种重组蛋白进行 N-连接糖基化。使用这种“糖基化标签”,根据其内膜易位方式(即 Sec、信号识别颗粒 [SRP] 或双精氨酸转运 [Tat] 输出),观察到周质蛋白上的糖基化模式存在明显差异,表明蛋白输出方式会影响 N-糖基化效率。我们还证实,靶向周质以外环境(如外膜、膜囊泡和细胞外介质)的工程化底物蛋白可以作为 N-连接糖基化的底物。总之,我们的结果表明,空肠弯曲菌 N-糖基化机制与大肠杆菌中的不同分泌机制兼容,有效地扩展了重组大肠杆菌的 N-连接聚糖组。此外,这种简单的糖基化标签策略扩展了糖基工程工具包,并为细菌合成广泛的重组糖蛋白缀合物打开了大门。

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