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

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...

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Autores principales: Hò, Gia-Gia T., Hiemisch, Wiebke, Pich, Andreas, Behrens, Georg M. N., Blasczyk, Rainer, Bade-Doeding, Christina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7672607/
https://www.ncbi.nlm.nih.gov/pubmed/33126487
http://dx.doi.org/10.3390/ijms21218012
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author Hò, Gia-Gia T.
Hiemisch, Wiebke
Pich, Andreas
Behrens, Georg M. N.
Blasczyk, Rainer
Bade-Doeding, Christina
author_facet Hò, Gia-Gia T.
Hiemisch, Wiebke
Pich, Andreas
Behrens, Georg M. N.
Blasczyk, Rainer
Bade-Doeding, Christina
author_sort Hò, Gia-Gia T.
collection PubMed
description 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.
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spelling pubmed-76726072020-11-19 The Loss of HLA-F/KIR3DS1 Ligation Is Mediated by Hemoglobin Peptides Hò, Gia-Gia T. Hiemisch, Wiebke Pich, Andreas Behrens, Georg M. N. Blasczyk, Rainer Bade-Doeding, Christina Int J Mol Sci Article 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. MDPI 2020-10-28 /pmc/articles/PMC7672607/ /pubmed/33126487 http://dx.doi.org/10.3390/ijms21218012 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hò, Gia-Gia T.
Hiemisch, Wiebke
Pich, Andreas
Behrens, Georg M. N.
Blasczyk, Rainer
Bade-Doeding, Christina
The Loss of HLA-F/KIR3DS1 Ligation Is Mediated by Hemoglobin Peptides
title The Loss of HLA-F/KIR3DS1 Ligation Is Mediated by Hemoglobin Peptides
title_full The Loss of HLA-F/KIR3DS1 Ligation Is Mediated by Hemoglobin Peptides
title_fullStr The Loss of HLA-F/KIR3DS1 Ligation Is Mediated by Hemoglobin Peptides
title_full_unstemmed The Loss of HLA-F/KIR3DS1 Ligation Is Mediated by Hemoglobin Peptides
title_short The Loss of HLA-F/KIR3DS1 Ligation Is Mediated by Hemoglobin Peptides
title_sort loss of hla-f/kir3ds1 ligation is mediated by hemoglobin peptides
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7672607/
https://www.ncbi.nlm.nih.gov/pubmed/33126487
http://dx.doi.org/10.3390/ijms21218012
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