Structural and regulatory diversity shape HLA-C protein expression levels

Expression of HLA-C varies widely across individuals in an allele-specific manner. This variation in expression can influence efficacy of the immune response, as shown for infectious and autoimmune diseases. MicroRNA binding partially influences differential HLA-C expression, but the additional cont...

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Veröffentlicht in:Nature communications 2017-06, Vol.8 (1), p.15924-12, Article 15924
Hauptverfasser: Kaur, Gurman, Gras, Stephanie, Mobbs, Jesse I., Vivian, Julian P., Cortes, Adrian, Barber, Thomas, Kuttikkatte, Subita Balaram, Jensen, Lise Torp, Attfield, Kathrine E., Dendrou, Calliope A., Carrington, Mary, McVean, Gil, Purcell, Anthony W., Rossjohn, Jamie, Fugger, Lars
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Sprache:eng
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Zusammenfassung:Expression of HLA-C varies widely across individuals in an allele-specific manner. This variation in expression can influence efficacy of the immune response, as shown for infectious and autoimmune diseases. MicroRNA binding partially influences differential HLA-C expression, but the additional contributing factors have remained undetermined. Here we use functional and structural analyses to demonstrate that HLA-C expression is modulated not just at the RNA level, but also at the protein level. Specifically, we show that variation in exons 2 and 3, which encode the α1/α2 domains, drives differential expression of HLA-C allomorphs at the cell surface by influencing the structure of the peptide-binding cleft and the diversity of peptides bound by the HLA-C molecules. Together with a phylogenetic analysis, these results highlight the diversity and long-term balancing selection of regulatory factors that modulate HLA-C expression. HLA-C expression levels correlate with immune responses to pathogens and autoimmunity, and vary in an allele-specific manner across individuals. Here the authors identify factors that drive differential expression of HLA-C allomorphs at the cell surface, and influence the structure of the peptide-binding cleft and diversity of peptides bound by HLA-C molecules.
ISSN:2041-1723
2041-1723
DOI:10.1038/ncomms15924