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首页> 外文期刊>The journal of immunology >Rheumatoid Arthritis (RA)-Associated HLA-DR Alleles Form Less Stable Complexes with Class II-Associated Invariant Chain Peptide Than Non-RA-Associated HLA-DR Alleles
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Rheumatoid Arthritis (RA)-Associated HLA-DR Alleles Form Less Stable Complexes with Class II-Associated Invariant Chain Peptide Than Non-RA-Associated HLA-DR Alleles

机译:与非RA相关的HLA-DR等位基因相比,类风湿关节炎(RA)相关的HLA-DR等位基因与II类相关的恒定链肽形成的稳定性较差

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Certain HLA-DR alleles confer strong susceptibility to the autoimmune disease rheumatoid arthritis (RA). We compared RA-associated alleles, HLA-DR*0401, HLA-DR*0404, and HLA-DR*0405, with closely related, non-RA-associated alleles, HLA-DR*0402 and HLA-DR*0403, to determine whether they differ in their interactions with the class II chaperone, invariant chain (Ii). Ii binds to class II molecules in the endoplasmic reticulum, inhibits binding of other ligands, and directs class II-Ii complexes to endosomes, where Ii is degraded to class II-associated Ii peptide (CLIP). To evaluate the interaction of Ii and CLIP with these DR4 alleles, we introduced HLA-DR*0401, *0402, and *0404 alleles into a human B cell line that lacked endogenous HLA-DR or HLA-DM molecules. In a similar experiment, we introduced HLA-DR*0403 and *0405 into an HLA-DM-expressing B cell line, 8.1.6, and its DM-negative derivative, 9.5.3. Surface abundance of DR4-CLIP peptide complexes and their susceptibility to SDS-induced denaturation suggested that the different DR4-CLIP complexes had different stabilities. Pulse-chase experiments showed CLIP dissociated more rapidly from RA-associated DR molecules in B cell lines. In vitro assays using soluble rDR4 molecules showed that DR-CLIP complexes of DR*0401 and DR*0404 were less stable than complexes of DR*0402. Using CLIP peptide variants, we mapped the reduced CLIP interaction of RA-associated alleles to the shared epitope region. The reduced interaction of RA-associated HLA-DR4 molecules with CLIP may contribute to the pathophysiology of autoimmunity in RA.
机译:某些HLA-DR等位基因赋予自身免疫性疾病类风湿关节炎(RA)高度敏感性。我们将RA相关的等位基因HLA-DR * 0401,HLA-DR * 0404和HLA-DR * 0405与密切相关的非RA相关的等位基因HLA-DR * 0402和HLA-DR * 0403进行了比较确定它们与II类分子伴侣不变链(Ii)的相互作用是否不同。 Ii与内质网中的II类分子结合,抑制其他配体的结合,并将II-Ii类复合物引导至内体,其中Ii降解为与II类相关的Ii肽(CLIP)。为了评估Ii和CLIP与这些DR4等位基因的相互作用,我们将HLA-DR * 0401,* 0402和* 0404等位基因引入了缺乏内源性HLA-DR或HLA-DM分子的人B细胞系。在类似的实验中,我们将HLA-DR * 0403和* 0405引入了表达HLA-DM的B细胞系8.1.6,以及其DM阴性衍生物9.5.3。 DR4-CLIP肽复合物的表面丰度及其对SDS诱导的变性的敏感性表明,不同的DR4-CLIP复合物具有不同的稳定性。脉冲追踪实验显示CLIP与B细胞系中RA相关的DR分子解离的速度更快。使用可溶性rDR4分子进行的体外分析表明,DR * 0401和DR * 0404的DR-CLIP复合物的稳定性低于DR * 0402的复合物。使用CLIP肽变体,我们将与RA相关的等位基因减少的CLIP相互作用映射到了共享的表位区域。 RA相关的HLA-DR4分子与CLIP相互作用减少,可能有助于RA自身免疫的病理生理。

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