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N-linked sugar-regulated protein folding and quality control in the ER

机译:内质网中N联糖调节的蛋白折叠和质量控制

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摘要

Asparagine-linked glycans (N-glycans) are displayed on the majority of proteins synthesized in the endoplasmic reticulum (ER). Removal of the outermost glucose residue recruits the lectin chaperone malectin possibly involved in a first triage of defective polypeptides. Removal of a second glucose promotes engagement of folding and quality control machineries built around the ER lectin chaperones calnexin (CNX) and calreticulin (CRT) and including oxidoreductases and peptidyl-prolyl isomerases. Deprivation of the last glucose residue dictates the release of N- glycosylated polypeptides from the lectin chaperones. Correctly folded proteins are authorized to leave the ER. Non-native polypeptides are recognized by the ER quality control key player UDP-glucose glycoprotein glucosyltransferase 1 (UGT1), re-glucosylated and re-addressed to the CNX/CRT chaperone binding cycle to provide additional opportunity for the protein to fold in the ER. Failure to attain the native structure determines the selection of the misfolded polypeptides for proteasome-mediated degradation.
机译:天冬酰胺连接的聚糖(N-聚糖)显示在内质网(ER)中合成的大多数蛋白质上。最外层葡萄糖残基的去除募集可能参与有缺陷的多肽的第一分类的凝集素伴侣马来蛋白。去除第二个葡萄糖可促进围绕ER凝集素伴侣钙粘蛋白(CNX)和钙网蛋白(CRT)构建的折叠和质量控制机制的参与,其中包括氧化还原酶和肽基脯氨酰异构酶。最后一个葡萄糖残基的剥夺决定了从凝集素伴侣中释放N-糖基化多肽。正确折叠的蛋白质被授权离开内质网。非天然多肽被ER质量控制关键参与者UDP-葡萄糖糖蛋白葡萄糖基转移酶1(UGT1)识别,重新糖基化并重新定位到CNX / CRT伴侣结合循环,从而为蛋白质在ER中折叠提供了更多机会。无法获得天然结构决定了用于蛋白酶体介导降解的错折叠多肽的选择。

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