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The Loss of HLA-F/KIR3DS1 Ligation Is Mediated by Hemoglobin Peptides

机译:HLA-F / KIR3DS1连接的丧失由血红蛋白肽介导

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摘要

The human leukocyte antigen (HLA)-Ib molecule, HLA-F, is known as a CD4+ T-cell protein and mediator of HIV progression. While HLA-Ia molecules do not have the chance to select and present viral peptides for immune recognition due to protein downregulation, HLA-F is upregulated. Post HIV infection, HLA-F loses the affinity to its activating receptor KIR3DS1 on NK cells leading to progression of the HIV infection. Several studies aimed to solve the question of the biophysical interface between HLA ligands and their cognate receptors. It became clear that even an invariant HLA molecule can be structurally modified by the variability of the bound peptide. We recently discovered the ability of HLA-F to select and present peptides and the HLA-F allele-specific peptide selection from the proteomic content using soluble HLA (sHLA) technology and a sophisticated MS method. We established recombinant K562 cells that express membrane-bound HLA-F*01:01, 01:03 or 01:04 complexes. While a recombinant soluble form of KIR3DS1 did not bind to the peptide-HLA-F complexes, acid elution of the peptides resulted in the presentation of HLA-F open conformers, and the binding of the soluble KIR3DS1 receptor increased. We used CD4+/HIV− and CD4+/HIV+ cells and performed an MS proteome analysis. We could detect hemoglobin as significantly upregulated in CD4+ T-cells post HIV infection. The expression of cellular hemoglobin in nonerythroid cells has been described, yet HLA-Ib presentation of hemoglobin-derived peptides is novel. Peptide sequence analysis from HLA-F allelic variants featured hemoglobin peptides as dominant and shared. The reciprocal experiment of binding hemoglobin peptide fractions to the HLA-F open conformers resulted in significantly diminished receptor recognition. These results underpin the molecular involvement of HLA-F and its designated peptide ligand in HIV immune escape.
机译:人白细胞抗原(HLA)-IB分子HLA-F称为CD4 + T细胞蛋白和HIV进展的介体。虽然HLA-IA分子由于蛋白质下调而没有机会选择和呈现用于免疫识别的病毒肽,但是HLA-F是上调的。 HIV感染后,HLA-F对其激活受体Kir3DS1的亲和力导致艾滋病毒感染的进展。若干研究旨在解决HLA配体与其同源受体之间的生物物理界面的问题。很明显,即使是非结合肽的可变性也可以在结构上改变甚至不变的HLA分子。我们最近发现HLA-F选择和呈现肽的能力和使用可溶性HLA(SHLA)技术和复杂的MS方法从蛋白质组学含量和HLA-F特异性肽选择。我们建立了表达膜结合HLA-F * 01:01,01:03或01:04复合物的重组K562细胞。虽然kir3ds1的重组可溶性形式没有结合肽-hla-f络合物,但肽的酸洗脱导致HLA-F开放式聚合物的呈递,并且可溶性kir3ds1受体的结合增加。我们使用了CD4 + / HIV-和CD4 + / HIV +细胞并进行了MS蛋白质组分析。我们可以检测HIV感染后CD4 + T细胞显着上调的血红蛋白。已经描述了幼虫细胞中细胞血红蛋白的表达,但HLA-1B呈血红蛋白衍生的肽是新的。 HLA-F等位基因变体的肽序列分析以血红蛋白肽为主和共用。将血红蛋白肽级分结合到HLA-F开放式面板的倒数实验导致受体识别显着降低。这些结果基于HIV免疫逸出中HLA-F及其指定的肽配体的分子拮抗。

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