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人源OS-9是一种糖蛋白内质网相关降解所需的凝集素,可识别经过甘露糖修剪的N-聚糖。

Human OS-9, a lectin required for glycoprotein endoplasmic reticulum-associated degradation, recognizes mannose-trimmed N-glycans.

作者信息

Hosokawa Nobuko, Kamiya Yukiko, Kamiya Daiki, Kato Koichi, Nagata Kazuhiro

机构信息

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

Okazaki Institute for Integrative Bioscience, National Institutes of Natural Sciences, Okazaki 444-8787, Japan; Graduate School of Pharmaceutical Sciences, Nagaya City University, Nagoya 467-8063, Japan.

出版信息

J Biol Chem. 2009 Jun 19;284(25):17061-17068. doi: 10.1074/jbc.M809725200. Epub 2009 Apr 3.

DOI:10.1074/jbc.M809725200
PMID:19346256
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2719344/
Abstract

In the endoplasmic reticulum (ER), lectins and processing enzymes are involved in quality control of newly synthesized proteins for productive folding as well as in the ER-associated degradation (ERAD) of misfolded proteins. ER quality control requires the recognition and modification of the N-linked oligosaccharides attached to glycoproteins. Mannose trimming from the N-glycans plays an important role in targeting of misfolded glycoproteins for ERAD. Recently, two mammalian lectins, OS-9 and XTP3-B, which contain mannose 6-phosphate receptor homology domains, were reported to be involved in ER quality control. Here, we examined the requirement for human OS-9 (hOS-9) lectin activity in degradation of the glycosylated ERAD substrate NHK, a genetic variant of alpha1-antitrypsin. Using frontal affinity chromatography, we demonstrated that the recombinant hOS-9 mannose 6-phosphate receptor homology domain specifically binds N-glycans lacking the terminal mannose from the C branch in vitro. To examine the specificity of OS-9 recognition of N-glycans in vivo, we modified the oligosaccharide structures on NHK by overexpressing ER alpha1,2-mannosidase I or EDEM3 and examined the effect of these modifications on NHK degradation in combination with small interfering RNA-mediated knockdown of hOS-9. The ability of hOS-9 to enhance glycoprotein ERAD depended on the N-glycan structures on NHK, consistent with the frontal affinity chromatography results. Thus, we propose a model for mannose trimming and the requirement for hOS-9 lectin activity in glycoprotein ERAD in which N-glycans lacking the terminal mannose from the C branch are recognized by hOS-9 and targeted for degradation.

摘要

在内质网(ER)中,凝集素和加工酶参与新合成蛋白质的质量控制以促进其有效折叠,以及错误折叠蛋白质的内质网相关降解(ERAD)。内质网质量控制需要识别并修饰糖蛋白上连接的N - 连接寡糖。从N - 聚糖上修剪甘露糖在将错误折叠的糖蛋白靶向ERAD过程中起重要作用。最近,据报道两种含有甘露糖6 - 磷酸受体同源结构域的哺乳动物凝集素OS - 9和XTP3 - B参与内质网质量控制。在此,我们研究了人OS - 9(hOS - 9)凝集素活性在糖基化ERAD底物NHK(α1 - 抗胰蛋白酶的一种遗传变体)降解中的必要性。使用前沿亲和色谱法,我们证明重组hOS - 9甘露糖6 - 磷酸受体同源结构域在体外特异性结合缺乏C分支末端甘露糖的N - 聚糖。为了在体内检测OS - 9对N - 聚糖识别的特异性,我们通过过表达内质网α1,2 - 甘露糖苷酶I或EDEM3来修饰NHK上的寡糖结构,并结合小干扰RNA介导的hOS - 9敲低来检测这些修饰对NHK降解的影响。hOS - 9增强糖蛋白ERAD的能力取决于NHK上的N - 聚糖结构,这与前沿亲和色谱结果一致。因此,我们提出了一个甘露糖修剪模型以及hOS - 9凝集素活性在糖蛋白ERAD中的必要性,其中缺乏C分支末端甘露糖的N - 聚糖被hOS - 9识别并靶向降解。

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本文引用的文献

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Frontal affinity chromatography: theory for its application to studies on specific interactions of biomolecules.前沿亲和色谱法:应用于生物分子特异性相互作用研究的理论
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OS-9 and GRP94 deliver mutant alpha1-antitrypsin to the Hrd1-SEL1L ubiquitin ligase complex for ERAD.OS-9和GRP94将突变型α1-抗胰蛋白酶递送至Hrd1-SEL1L泛素连接酶复合体以进行内质网相关降解。
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