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突变型HLA-DM分子中异常的分子间二硫键结合:对组装、成熟和功能的影响。

Aberrant intermolecular disulfide bonding in a mutant HLA-DM molecule: implications for assembly, maturation, and function.

作者信息

Busch R, Doebele R C, von Scheven E, Fahrni J, Mellins E D

机构信息

Department of Pediatrics, Stanford University Medical Center, CA 94305, USA.

出版信息

J Immunol. 1998 Jan 15;160(2):734-43.

PMID:9551909
Abstract

HLA-DM (abbreviated DM) is an MHC-encoded glycoprotein that catalyzes the selective release of peptides, including class II-associated invariant chain peptides, from MHC class II molecules. To perform its function, DM must assemble in the endoplasmic reticulum (ER), travel to endosomes, and interact productively with class II molecules. We have described previously an EBV-transformed B cell line, 7.12.6, which displays a partial Ag presentation defect and expresses a mutated DM beta-chain with Cys79 replaced by Tyr. In this study, we show that HLA-DR molecules in 7.12.6 have a defect in peptide loading and accumulate class II-associated invariant chain peptides (CLIP). Peptide loading is restored by transfection of wild-type DMB. The mutant DM molecules exit the ER slowly and are degraded rapidly, resulting in greatly reduced levels of mutant DM in post-Golgi compartments. Whereas wild-type DM forms noncovalent alphabeta dimers, such dimers form inefficiently in 7.12.6; many mutant DM beta-chains instead form a disulfide-bonded dimer with DM alpha. Homodimers of DM beta are also detected in 7.12.6 and in the alpha-chain defective mutant, 2.2.93. We conclude that during folding of wild-type DM, the native conformation is stabilized by a conserved disulfide bond involving Cys79beta and by noncovalent contacts with DM alpha. Without these interactions, DM beta can form malfolded structures containing interchain disulfide bonds; malfolding is correlated with ER retention and accelerated degradation.

摘要

HLA-DM(简称为DM)是一种由主要组织相容性复合体(MHC)编码的糖蛋白,它催化从MHCⅡ类分子中选择性释放肽段,包括与Ⅱ类分子相关的恒定链肽段。为了发挥其功能,DM必须在内质网(ER)中组装,转运至内体,并与Ⅱ类分子进行有效相互作用。我们之前描述过一种EB病毒转化的B细胞系7.12.6,它表现出部分抗原呈递缺陷,并且表达一种突变的DMβ链,其中第79位半胱氨酸被酪氨酸取代。在本研究中,我们发现7.12.6中的HLA-DR分子在肽段装载方面存在缺陷,并且积累了与Ⅱ类分子相关的恒定链肽段(CLIP)。通过转染野生型DMB可恢复肽段装载。突变的DM分子从内质网缓慢排出并迅速降解,导致高尔基体后区室中突变DM的水平大幅降低。野生型DM形成非共价的αβ二聚体,而在7.12.6中这种二聚体形成效率低下;许多突变的DMβ链反而与DMα形成二硫键连接的二聚体。在7.12.6和α链缺陷型突变体2.2.93中也检测到了DMβ的同型二聚体。我们得出结论,在野生型DM折叠过程中,天然构象通过涉及Cys79β的保守二硫键以及与DMα的非共价接触得以稳定。没有这些相互作用,DMβ会形成包含链间二硫键的错误折叠结构;错误折叠与内质网滞留和加速降解相关。

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