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Deciphering HLA-I motifs across HLA peptidomes improves neo-antigen predictions and identifies allostery regulating HLA specificity

机译:跨HLA肽基破译HLA-I基序可改善新抗原预测并鉴定调节HLA特异性的变构

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摘要

The precise identification of Human Leukocyte Antigen class I (HLA-I) binding motifs plays a central role in our ability to understand and predict (neo-)antigen presentation in infectious diseases and cancer. Here, by exploiting co-occurrence of HLA-I alleles across ten newly generated as well as forty public HLA peptidomics datasets comprising more than 115,000 unique peptides, we show that we can rapidly and accurately identify many HLA-I binding motifs and map them to their corresponding alleles without any a priori knowledge of HLA-I binding specificity. Our approach recapitulates and refines known motifs for 43 of the most frequent alleles, uncovers new motifs for 9 alleles that up to now had less than five known ligands and provides a scalable framework to incorporate additional HLA peptidomics studies in the future. The refined motifs improve neo-antigen and cancer testis antigen predictions, indicating that unbiased HLA peptidomics data are ideal for in silico predictions of neo-antigens from tumor exome sequencing data. The new motifs further reveal distant modulation of the binding specificity at P2 for some HLA-I alleles by residues in the HLA-I binding site but outside of the B-pocket and we unravel the underlying mechanisms by protein structure analysis, mutagenesis and in vitro binding assays.
机译:人类白细胞抗原I类(HLA-1)结合基序的精确鉴定在我们理解和预测传染病和癌症中(新)抗原呈递的能力中起着核心作用。在这里,通过在包含超过115,000个独特肽的十个新生成的和40个公共HLA肽组学数据集中同时使用HLA-I等位基因,我们表明我们可以快速,准确地识别许多HLA-1结合基序并将其映射到其相应的等位基因,而无需任何先验的HLA-1结合特异性知识。我们的方法概述并完善了43个最常见的等位基因的已知基序,揭示了截至目前具有不到五个已知配体的9个等位基因的新基序,并提供了可扩展的框架,可用于将来进行其他HLA肽组学研究。精炼的基序改善了新抗原和癌症睾丸抗原的预测,表明无偏见的HLA肽组学数据对于从肿瘤外显子组测序数据进行新抗原的计算机模拟预测是理想的。新的基序进一步揭示了HLA-1结合位点但在B口袋之外的残基对某些HLA-1等位基因在P2的结合特异性的远距离调节,我们通过蛋白质结构分析,诱变和体外揭示了潜在的机制。结合测定。

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