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Influence of Glycosylation Inhibition on the Binding of KIR3DL1 to HLA-B*57:01

Viral infections can affect the glycosylation pattern of glycoproteins involved in antiviral immunity. Given the importance of protein glycosylation for immune function, we investigated the effect that modulation of the highly conserved HLA class I N-glycan has on KIR:HLA interactions and NK cell fu...

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Autores principales: Salzberger, Wilhelm, Garcia-Beltran, Wilfredo F., Dugan, Haley, Gubbala, Supreetha, Simoneau, Camille, Gressens, Simon B., Jost, Stephanie, Altfeld, Marcus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4683028/
https://www.ncbi.nlm.nih.gov/pubmed/26680341
http://dx.doi.org/10.1371/journal.pone.0145324
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author Salzberger, Wilhelm
Garcia-Beltran, Wilfredo F.
Dugan, Haley
Gubbala, Supreetha
Simoneau, Camille
Gressens, Simon B.
Jost, Stephanie
Altfeld, Marcus
author_facet Salzberger, Wilhelm
Garcia-Beltran, Wilfredo F.
Dugan, Haley
Gubbala, Supreetha
Simoneau, Camille
Gressens, Simon B.
Jost, Stephanie
Altfeld, Marcus
author_sort Salzberger, Wilhelm
collection PubMed
description Viral infections can affect the glycosylation pattern of glycoproteins involved in antiviral immunity. Given the importance of protein glycosylation for immune function, we investigated the effect that modulation of the highly conserved HLA class I N-glycan has on KIR:HLA interactions and NK cell function. We focused on HLA-B*57:01 and its interaction with KIR3DL1, which has been shown to play a critical role in determining the progression of a number of human diseases, including human immunodeficiency virus-1 infection. 721.221 cells stably expressing HLA-B*57:01 were treated with a panel of glycosylation enzyme inhibitors, and HLA class I expression and KIR3DL1 binding was quantified. In addition, the functional outcomes of HLA-B*57:01 N-glycan disruption/modulation on KIR3DL1ζ(+) Jurkat reporter cells and primary human KIR3DL1(+) NK cells was assessed. Different glycosylation enzyme inhibitors had varying effects on HLA-B*57:01 expression and KIR3DL1-Fc binding. The most remarkable effect was that of tunicamycin, an inhibitor of the first step of N-glycosylation, which resulted in significantly reduced KIR3DL1-Fc binding despite sustained expression of HLA-B*57:01 on 721.221 cells. This effect was paralleled by decreased activation of KIR3DL1ζ(+) Jurkat reporter cells, as well as increased degranulation of primary human KIR3DL1(+) NK cell clones when encountering HLA-B*57:01-expressing 721.221 cells that were pre-treated with tunicamycin. Overall, these results demonstrate that N-glycosylation of HLA class I is important for KIR:HLA binding and has an impact on NK cell function.
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spelling pubmed-46830282015-12-31 Influence of Glycosylation Inhibition on the Binding of KIR3DL1 to HLA-B*57:01 Salzberger, Wilhelm Garcia-Beltran, Wilfredo F. Dugan, Haley Gubbala, Supreetha Simoneau, Camille Gressens, Simon B. Jost, Stephanie Altfeld, Marcus PLoS One Research Article Viral infections can affect the glycosylation pattern of glycoproteins involved in antiviral immunity. Given the importance of protein glycosylation for immune function, we investigated the effect that modulation of the highly conserved HLA class I N-glycan has on KIR:HLA interactions and NK cell function. We focused on HLA-B*57:01 and its interaction with KIR3DL1, which has been shown to play a critical role in determining the progression of a number of human diseases, including human immunodeficiency virus-1 infection. 721.221 cells stably expressing HLA-B*57:01 were treated with a panel of glycosylation enzyme inhibitors, and HLA class I expression and KIR3DL1 binding was quantified. In addition, the functional outcomes of HLA-B*57:01 N-glycan disruption/modulation on KIR3DL1ζ(+) Jurkat reporter cells and primary human KIR3DL1(+) NK cells was assessed. Different glycosylation enzyme inhibitors had varying effects on HLA-B*57:01 expression and KIR3DL1-Fc binding. The most remarkable effect was that of tunicamycin, an inhibitor of the first step of N-glycosylation, which resulted in significantly reduced KIR3DL1-Fc binding despite sustained expression of HLA-B*57:01 on 721.221 cells. This effect was paralleled by decreased activation of KIR3DL1ζ(+) Jurkat reporter cells, as well as increased degranulation of primary human KIR3DL1(+) NK cell clones when encountering HLA-B*57:01-expressing 721.221 cells that were pre-treated with tunicamycin. Overall, these results demonstrate that N-glycosylation of HLA class I is important for KIR:HLA binding and has an impact on NK cell function. Public Library of Science 2015-12-17 /pmc/articles/PMC4683028/ /pubmed/26680341 http://dx.doi.org/10.1371/journal.pone.0145324 Text en © 2015 Salzberger et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Salzberger, Wilhelm
Garcia-Beltran, Wilfredo F.
Dugan, Haley
Gubbala, Supreetha
Simoneau, Camille
Gressens, Simon B.
Jost, Stephanie
Altfeld, Marcus
Influence of Glycosylation Inhibition on the Binding of KIR3DL1 to HLA-B*57:01
title Influence of Glycosylation Inhibition on the Binding of KIR3DL1 to HLA-B*57:01
title_full Influence of Glycosylation Inhibition on the Binding of KIR3DL1 to HLA-B*57:01
title_fullStr Influence of Glycosylation Inhibition on the Binding of KIR3DL1 to HLA-B*57:01
title_full_unstemmed Influence of Glycosylation Inhibition on the Binding of KIR3DL1 to HLA-B*57:01
title_short Influence of Glycosylation Inhibition on the Binding of KIR3DL1 to HLA-B*57:01
title_sort influence of glycosylation inhibition on the binding of kir3dl1 to hla-b*57:01
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4683028/
https://www.ncbi.nlm.nih.gov/pubmed/26680341
http://dx.doi.org/10.1371/journal.pone.0145324
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