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首页> 外文期刊>Arthritis research & therapy. >The increased ability to present citrullinated peptides is not unique to HLA-SE molecules: arginine-to-citrulline conversion also enhances peptide affinity for HLA-DQ molecules
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The increased ability to present citrullinated peptides is not unique to HLA-SE molecules: arginine-to-citrulline conversion also enhances peptide affinity for HLA-DQ molecules

机译:呈现瓜氨酸化肽的能力增强并非HLA-SE分子独有:精氨酸向瓜氨酸的转化还增强了对HLA-DQ分子的亲和力

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Background Presentation of citrullinated neo-epitopes by HLA-DRB1 molecules that carry the shared epitope (SE) sequence was proposed to explain the association between HLA and seropositive RA. Although it is shown that several HLA-DRB1-SE molecules display enhanced binding affinities for citrullinated ligands, the ability of other HLA molecules to present citrullinated epitopes has not been investigated in a systematic manner. To better understand the HLA-RA connection, we aimed to investigate if the enhanced capacity to present arginine-to-citrulline-converted peptides is unique for HLA-SE alleles. Methods We selected four HLA molecules (one HLA-DR and three HLA-DQ molecules) that could potentially prefer citrulline over arginine residues in specific pockets and in addition two HLA-SE alleles as a method validation control. The affinity of peptides containing arginine/citrulline residues at positions interacting with the various peptide-binding pockets was compared by HLA class II peptide affinity assays. Results Pocket 4 of HLA-DRB1*04:04 and -DRB1*04:05 displayed a preference for citrulline over arginine, a property found in other pockets as well. HLA-DRB1*03:01 did not display an enhanced affinity for peptides containing a citrulline. In contrast, several peptide-binding pockets of the analyzed HLA-DQ molecules showed enhanced affinities for citrulline compared to arginine residues: i.e., pockets 4, 6, 7, and 9 of HLA-DQ2 and pockets 1, 6, and 9 of HLA-DQ7 and HLA-DQ8. Conclusions Arginine-to-citrulline conversion of peptides can also enhance the binding affinity for non-HLA-SE molecules. Hence the capacity to present citrullinated neo-epitopes is not confined to HLA-SE molecules, opening the possibility that also other HLA molecules could potentiate a possible breach of T cell tolerance toward citrullinated antigens.
机译:背景技术有人提出了带有共享表位(SE)序列的HLA-DRB1分子瓜氨酸化的新表位,以解释HLA与血清阳性RA之间的联系。尽管已显示几种HLA-DRB1-SE分子显示出对瓜氨酸化配体的增强的结合亲和力,但尚未以系统的方式研究其他HLA分子呈递瓜氨酸化表位的能力。为了更好地理解HLA-RA之间的联系,我们旨在研究呈递精氨酸到瓜氨酸转化的肽的增强能力对于HLA-SE等位基因是否独特。方法我们选择了四个HLA分子(一个HLA-DR和三个HLA-DQ分子),它们可能比特定口袋中的精氨酸残基更喜欢瓜氨酸,另外还选择了两个HLA-SE等位基因作为方法验证对照。通过HLA II类肽亲和力测定法比较了在与各种肽结合口袋相互作用的位置上含有精氨酸/瓜氨酸残基的肽的亲和力。结果HLA-DRB1 * 04:04和-DRB1 * 04:05的口袋4显示出瓜氨酸优先于精氨酸,而在其他口袋中也具有这种特性。 HLA-DRB1 * 03:01对包含瓜氨酸的肽未显示增强的亲和力。相反,与精氨酸残基相比,分析的HLA-DQ分子的几个肽结合口袋显示出对瓜氨酸的亲和力增强:即HLA-DQ2的口袋4、6、7和9和HLA的口袋1、6和9 -DQ7和HLA-DQ8。结论肽的精氨酸转化为瓜氨酸也可以增强与非HLA-SE分子的结合亲和力。因此,呈递瓜氨酸化的新表位的能力不限于HLA-SE分子,从而打开了其他HLA分子也可能增强T细胞对瓜氨酸化抗原的耐受性的可能性。

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