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Emerging Structural Insights into Glycoprotein Quality Control Coupled with N-Glycan Processing in the Endoplasmic Reticulum

机译:糖蛋白质量控制与内质网中N-聚糖加工相结合的新兴结构见解

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In the endoplasmic reticulum (ER), the sugar chain is initially introduced onto newly synthesized proteins as a triantennary tetradecasaccharide (Glc(3)Man(9)GlcNAc(2)). The attached oligosaccharide chain is subjected to stepwise trimming by the actions of specific glucosidases and mannosidases. In these processes, the transiently expressed N-glycans, as processing intermediates, function as signals for the determination of glycoprotein fates, i.e., folding, transport, or degradation through interactions of a series of intracellular lectins. The monoglucosylated glycoforms are hallmarks of incompletely folded states of glycoproteins in this system, whereas the outer mannose trimming leads to ER-associated glycoprotein degradation. This review outlines the recently emerging evidence regarding the molecular and structural basis of this glycoprotein quality control system, which is regulated through dynamic interplay among intracellular lectins, glycosidases, and glycosyltransferase. Structural snapshots of carbohydrate-lectin interactions have been provided at the atomic level using X-ray crystallographic analyses. Conformational ensembles of uncomplexed triantennary high-mannose-type oligosaccharides have been characterized in a quantitative manner using molecular dynamics simulation in conjunction with nuclear magnetic resonance spectroscopy. These complementary views provide new insights into glycoprotein recognition in quality control coupled with N-glycan processing.
机译:在内质网(ER)中,糖链最初作为三触角十四糖(Glc(3)Man(9)GlcNAc(2))引入到新合成的蛋白质上。附着的寡糖链通过特定的葡萄糖苷酶和甘露糖苷酶的作用进行逐步修整。在这些过程中,瞬时表达的N-聚糖作为加工中间体,起着确定糖蛋白命运的信号的作用,即通过一系列细胞内凝集素的相互作用来确定折叠,转运或降解的信号。单糖基化糖型是该系统中糖蛋白不完全折叠状态的标志,而外​​部甘露糖修整导致ER相关糖蛋白降解。这篇综述概述了有关该糖蛋白质量控制系统的分子和结构基础的最新证据,该系统通过细胞内凝集素,糖苷酶和糖基转移酶之间的动态相互作用来调节。使用X射线晶体学分析已在原子水平上提供了碳水化合物-凝集素相互作用的结构快照。使用分子动力学模拟结合核磁共振波谱定量地表征了未复杂的三触角高甘露糖型低聚糖的构象合奏。这些互补的观点为质量控制与N-聚糖加工相结合提供了糖蛋白识别的新见解。

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