Department of Health Technology, Technical University of Denmark, DK-2800, Lyngby, Denmark.
Pure MHC, LLC, Oklahoma City, OK, USA.
Commun Biol. 2023 Apr 21;6(1):442. doi: 10.1038/s42003-023-04749-7.
Human leukocyte antigen (HLA) class II antigen presentation is key for controlling and triggering T cell immune responses. HLA-DQ molecules, which are believed to play a major role in autoimmune diseases, are heterodimers that can be formed as both cis and trans variants depending on whether the α- and β-chains are encoded on the same (cis) or opposite (trans) chromosomes. So far, limited progress has been made for predicting HLA-DQ antigen presentation. In addition, the contribution of trans-only variants (i.e. variants not observed in the population as cis) in shaping the HLA-DQ immunopeptidome remains largely unresolved. Here, we seek to address these issues by integrating state-of-the-art immunoinformatics data mining models with large volumes of high-quality HLA-DQ specific mass spectrometry immunopeptidomics data. The analysis demonstrates highly improved predictive power and molecular coverage for models trained including these novel HLA-DQ data. More importantly, investigating the role of trans-only HLA-DQ variants reveals a limited to no contribution to the overall HLA-DQ immunopeptidome. In conclusion, this study furthers our understanding of HLA-DQ specificities and casts light on the relative role of cis versus trans-only HLA-DQ variants in the HLA class II antigen presentation space. The developed method, NetMHCIIpan-4.2, is available at https://services.healthtech.dtu.dk/services/NetMHCIIpan-4.2 .
人类白细胞抗原(HLA)II 类抗原呈递对于控制和触发 T 细胞免疫反应至关重要。HLA-DQ 分子被认为在自身免疫性疾病中起主要作用,它们是异二聚体,可以形成顺式和反式变体,具体取决于 α 和 β 链是否在同一(顺式)或相反(反式)染色体上编码。到目前为止,对于 HLA-DQ 抗原呈递的预测进展有限。此外,反式仅变体(即在人群中未观察到的顺式变体)在塑造 HLA-DQ 免疫肽组方面的贡献在很大程度上仍未得到解决。在这里,我们通过将最先进的免疫信息学数据挖掘模型与大量高质量的 HLA-DQ 特异性质谱免疫肽组学数据集成来解决这些问题。分析表明,包括这些新 HLA-DQ 数据在内的模型的预测能力和分子覆盖率得到了显著提高。更重要的是,研究反式仅 HLA-DQ 变体的作用表明,它们对整体 HLA-DQ 免疫肽组的贡献有限或没有。总之,这项研究加深了我们对 HLA-DQ 特异性的理解,并阐明了顺式与反式仅 HLA-DQ 变体在 HLA Ⅱ类抗原呈递空间中的相对作用。开发的方法 NetMHCIIpan-4.2 可在 https://services.healthtech.dtu.dk/services/NetMHCIIpan-4.2 获得。