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A mutant human histocompatibility leukocyte antigen DR molecule associated with invariant chain peptides

机译:与不变链肽相关的突变的人类组织相容性白细胞抗原DR分子

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摘要

From a human histocompatibility leukocyte antigen (HLA)-DR/DQ hemizygous, B lymphoblastoid progenitor, we isolated a cell line, 10.24.6, with a DR alpha missense mutation (96P-->96S), which results in an N-linked carbohydrate addition at position 94 in the DR alpha 2 domain. Several features of 10.24.6 cells suggest that the mutation disrupts normal intracellular formation of peptide/DR complexes. The mutant HLA-DR dimers, though expressed at the cell surface, lack the conformation of the mature, peptide-loaded class II molecules of the progenitor cell, as assessed by their loss of binding of certain antibodies and by the lack of stability in detergent (sodium dodecyl sulfate) solution. In addition, presentation of endocytosed antigen to HLA-DR-restricted T cells is defective in the mutant, but can be restored by transfection of a wild type DRA gene. Assays with synthetic peptides indicate that the 10.24.6 phenotype is not due to an intrinsic inability of the mutant DR molecules to bind peptides. Therefore, to directly evaluate peptide occupancy of the mutant molecules, we analyzed acid-eluted, HLA-DR-associated peptides. The predominant species from the 10.24.6 mutant is a nested set of invariant chain (Ii)- derived peptides that are undetectable in the DR eluate from progenitor cells. The region of DR alpha altered in the mutant molecules is thus implicated in normal formation of peptide/DR complexes. Further, the same set of Ii peptides associated with the DR molecules is present in the eluate from an antigen presentation mutant with a defect in an major histocompatibility complex (MHC)-linked gene. These results suggest that DR molecules in 10.24.6 and in certain presentation mutants are affected at the same or related steps in class II molecule biosynthesis, raising the possibility that class II molecules interact with an MHC-encoded accessory molecule during antigen presentation.
机译:从人类组织相容性白细胞抗原(HLA)-DR / DQ半合子B淋巴母细胞祖细胞中,我们分离出了10.24.6带有DR alpha错义突变(96P-> 96S)的细胞系,这导致了N连锁DR alpha 2域中94位的碳水化合物添加。 10.24.6细胞的几个特征表明该突变破坏了肽/ DR复合物的正常细胞内形成。突变的HLA-DR二聚体尽管在细胞表面表达,但缺乏祖细胞中成熟的,载有肽的II类分子的构象,这是通过它们与某些抗体的结合力丧失以及去污剂缺乏稳定性来评估的。 (十二烷基硫酸钠)溶液。另外,将内吞抗原呈递给HLA-DR限制性T细胞在突变体中是有缺陷的,但是可以通过转染野生型DRA基因来恢复。合成肽的测定表明10.24.6表型不是由于突变DR分子固有的能力无法结合肽。因此,为了直接评估突变分子的肽占据率,我们分析了酸洗脱的HLA-DR相关肽。来自10.24.6突变体的主要种类是嵌套的一组不变链(Ii)衍生的肽,其在祖细胞的DR洗脱液中无法检测到。因此,突变分子中改变的DRα区域与肽/ DR复合物的正常形成有关。此外,与DR分子相关的同一组Ii肽存在于抗原呈递突变体的洗脱液中,该突变体具有主要组织相容性复合体(MHC)相关基因的缺陷。这些结果表明10.24.6和某些呈递突变体中的DR分子在II类分子生物合成的相同或相关步骤受到影响,从而增加了II类分子在抗原呈递过程中与MHC编码的辅助分子相互作用的可能性。

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