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EDEM1 可加速 N-聚糖 C 分支上 α1,2-连接甘露糖的修剪。

EDEM1 accelerates the trimming of alpha1,2-linked mannose on the C branch of N-glycans.

机构信息

Department of Molecular and Cellular Biology, Institute for Frontier Medical Sciences, Kyoto University, Kyoto 606-8397, Japan.

出版信息

Glycobiology. 2010 May;20(5):567-75. doi: 10.1093/glycob/cwq001. Epub 2010 Jan 11.

Abstract

Glycoprotein folding and degradation in the endoplasmic reticulum (ER) is mediated by the ER quality control system. Mannose trimming plays an important role by forming specific N-glycans that permit the recognition and sorting of terminally misfolded conformers for ERAD (ER-associated degradation). The EDEM (ER degradation enhancing alpha-mannosidase-like protein) subgroup of proteins belonging to the Class I alpha1,2-mannosidase family (glycosylhydrolase family 47) has been shown to enhance ERAD. We recently reported that overexpression of EDEM3 enhances glycoprotein ERAD with a concomitant increase in mannose-trimming activity in vivo. Herein, we report that overexpression of EDEM1 produces Glc(1)Man(8)GlcNAc(2) isomer C on terminally misfolded null Hong Kong alpha1-antitrypsin (NHK) in vivo. Levels of this isomer increased throughout the chase period and comprised approximately 10% of the [(3)H]mannose-labeled N-glycans on NHK after a 3-h chase. Furthermore, overexpression of EDEM1 E220Q containing a mutation in a conserved catalytic residue essential for alpha1,2-mannosidase activity did not yield detectable levels of Glc(1)Man(8)GlcNAc(2) isomer C. Yet, the same extent of NHK ERAD-enhancement was observed in both EDEM1 and EDEM1 E220Q overexpressing cells. This can be attributed to both wild-type and mutant EDEM1 inhibiting aberrant NHK dimer formation. We further analyzed the N-glycan profile of total cellular glycoproteins from HepG2 cells stably overexpressing EDEM1 and found that the relative amount of Man(7)GlcNAc(2) isomer A, which lacks the terminal B and C branch mannoses, was increased compared to parental HepG2 cells. Based on this observation, we conclude that EDEM1 activity trims mannose from the C branch of N-glycans in vivo.

摘要

内质网 (ER) 中的糖蛋白折叠和降解是由 ER 质量控制系统介导的。甘露糖修剪通过形成特定的 N-聚糖发挥重要作用,这些聚糖允许识别和分拣末端错误折叠的构象,以进行 ERAD(ER 相关降解)。属于 I 类 α1,2-甘露糖苷酶家族(糖苷水解酶家族 47)的 EDEM(内质网降解增强的 α-甘露糖苷酶样蛋白)亚组蛋白已被证明可增强 ERAD。我们最近报道,EDEM3 的过表达增强了糖蛋白 ERAD,同时体内甘露糖修剪活性增加。在此,我们报告 EDEM1 的过表达在体内产生末端错误折叠的空香港 α1-抗胰蛋白酶 (NHK) 上的 Glc(1)Man(8)GlcNAc(2)异构 C。在整个追踪期内,这种异构体的水平增加,并且在 3 小时追踪后,NHK 上的 [(3)H]甘露糖标记的 N-聚糖中约占 10%。此外,含有保守催化残基突变的 EDEM1 E220Q 的过表达,该残基对于 α1,2-甘露糖苷酶活性至关重要,没有产生可检测水平的 Glc(1)Man(8)GlcNAc(2)异构 C。然而,在 EDEM1 和 EDEM1 E220Q 过表达细胞中都观察到相同程度的 NHK ERAD 增强。这可以归因于野生型和突变型 EDEM1 均抑制异常的 NHK 二聚体形成。我们进一步分析了稳定过表达 EDEM1 的 HepG2 细胞的总细胞糖蛋白的 N-聚糖谱,发现缺乏末端 B 和 C 分支甘露糖的 Man(7)GlcNAc(2)异构 A 的相对量与亲本 HepG2 细胞相比增加。基于这一观察结果,我们得出结论,EDEM1 活性在体内从 N-聚糖的 C 分支修剪甘露糖。

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