Caramelo Julio J, Parodi Armando J
Laboratory of Glycobiology, Fundación Instituto Leloir, Avda. Patricias Argentinas 435, C1405BWE Buenos Aires, Argentina.
Semin Cell Dev Biol. 2007 Dec;18(6):732-42. doi: 10.1016/j.semcdb.2007.09.006. Epub 2007 Sep 8.
The N-glycan-dependent quality control of glycoprotein folding prevents endoplasmic reticulum to Golgi exit of folding intermediates, irreparably misfolded glycoproteins and not completely assembled multimeric complexes. It also enhances folding efficiency by preventing aggregation and facilitating formation of proper disulfide bonds. The control mechanism essentially involves four components, resident lectin-chaperones that recognize monoglucosylated polymannose glycans, a lectin-associated oxidoreductase acting on monoglucosylated glycoproteins, a glucosyltransferase and a glucosidase that creates monoglucosylated epitopes in glycans transferred in protein N-glycosylation or removes the glucose units added by the glucosyltransferase. This last enzyme is the only mechanism component sensing glycoprotein conformations as it creates monoglucosylated glycans exclusively in not properly folded species or in not completely assembled complexes. The purpose of the review is to describe the most significant recent findings on the mechanism of glycoprotein folding and assembly quality control and to discuss the main still unanswered questions.
糖蛋白折叠的 N-聚糖依赖性质量控制可防止折叠中间体、不可修复的错误折叠糖蛋白和未完全组装的多聚体复合物从内质网转运至高尔基体。它还通过防止聚集和促进正确二硫键的形成来提高折叠效率。该控制机制主要涉及四个组分:识别单葡萄糖基化多聚甘露糖聚糖的驻留凝集素伴侣、作用于单葡萄糖基化糖蛋白的凝集素相关氧化还原酶、一种葡糖基转移酶和一种糖苷酶,后者在蛋白质 N-糖基化转移的聚糖中产生单葡萄糖基化表位或去除葡糖基转移酶添加的葡萄糖单元。最后一种酶是唯一能感知糖蛋白构象的机制组分,因为它仅在折叠不正确的物种或未完全组装的复合物中产生单葡萄糖基化聚糖。本综述的目的是描述糖蛋白折叠和组装质量控制机制方面的最重要最新发现,并讨论主要的仍未解答的问题。