Roth Jürgen, Zuber Christian
Division of Cell and Molecular Pathology, University of Zurich, 8091, Zurich, Switzerland.
Histochem Cell Biol. 2017 Feb;147(2):269-284. doi: 10.1007/s00418-016-1513-9. Epub 2016 Nov 1.
Protein N-glycosylation and quality control of protein folding as well as the connected ER-associated degradation of misfolded glycoproteins (ERAD) are not only evolutionary highly conserved but also functionally linked. It is now established that particular N-glycan structures which result from processing reactions by exo-glycosidases in the ER are of importance for glycoprotein folding and for ERAD. Thus, mono-glucosylated N-glycan intermediates harbor structural information which is important for promoting glycoprotein folding. On the other hand, specific mannose-trimmed N-glycans harbor structural information for routing misfolded glycoproteins to ERAD. In this review, we summarize current knowledge concerning the role played by glucosidases I and II, in concert with the bifunctional glucosyltransferase and calnexin/calreticulin in glycoprotein folding, the role of conventional ER mannosidase I in concert with the mannosidase EDEM1 in handling and routing of misfolded glycoproteins, and how the bifunctional OS-9 provides a link to the ER dislocon for degradation.
蛋白质N-糖基化、蛋白质折叠的质量控制以及与之相关的错误折叠糖蛋白的内质网相关降解(ERAD)不仅在进化上高度保守,而且在功能上相互关联。现已确定,内质网中外切糖苷酶加工反应产生的特定N-聚糖结构对于糖蛋白折叠和ERAD至关重要。因此,单葡萄糖基化的N-聚糖中间体携带促进糖蛋白折叠的重要结构信息。另一方面,特定的甘露糖修剪型N-聚糖携带将错误折叠糖蛋白引导至ERAD的结构信息。在本综述中,我们总结了关于葡糖苷酶I和II、双功能葡糖基转移酶以及钙连蛋白/钙网蛋白在糖蛋白折叠中所起作用的现有知识,传统内质网甘露糖苷酶I与甘露糖苷酶EDEM1在处理和引导错误折叠糖蛋白方面的作用,以及双功能OS-9如何为内质网转运体提供与降解的联系。