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Pathogenic implications for autoimmune mechanisms derived by comparative eQTL analysis of CD4+ versus CD8+ T cells

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2017

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Public Library of Science
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Kasela, S., K. Kisand, L. Tserel, E. Kaleviste, A. Remm, K. Fischer, T. Esko, et al. 2017. “Pathogenic implications for autoimmune mechanisms derived by comparative eQTL analysis of CD4+ versus CD8+ T cells.” PLoS Genetics 13 (3): e1006643. doi:10.1371/journal.pgen.1006643. http://dx.doi.org/10.1371/journal.pgen.1006643.

Abstract

Inappropriate activation or inadequate regulation of CD4+ and CD8+ T cells may contribute to the initiation and progression of multiple autoimmune and inflammatory diseases. Studies on disease-associated genetic polymorphisms have highlighted the importance of biological context for many regulatory variants, which is particularly relevant in understanding the genetic regulation of the immune system and its cellular phenotypes. Here we show cell type-specific regulation of transcript levels of genes associated with several autoimmune diseases in CD4+ and CD8+ T cells including a trans-acting regulatory locus at chr12q13.2 containing the rs1131017 SNP in the RPS26 gene. Most remarkably, we identify a common missense variant in IL27, associated with type 1 diabetes that results in decreased functional activity of the protein and reduced expression levels of downstream IRF1 and STAT1 in CD4+ T cells only. Altogether, our results indicate that eQTL mapping in purified T cells provides novel functional insights into polymorphisms and pathways associated with autoimmune diseases.

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Biology and Life Sciences, Cell Biology, Cellular Types, Animal Cells, Blood Cells, White Blood Cells, T Cells, Immune Cells, Immunology, Medicine and Health Sciences, Biology and life sciences, Cell biology, Cellular types, Animal cells, Blood cells, White blood cells, T cells, Cytotoxic T cells, Immune cells, Medicine and health sciences, Genetics, Gene Expression, Chromosome biology, Chromatin, Chromatin modification, DNA methylation, Epigenetics, Gene expression, DNA, DNA modification, Biochemistry, Nucleic acids, Gene Regulation, Computational Biology, Genome Analysis, Genome-Wide Association Studies, Genomics, Human Genetics, Genetic Loci, Molecular Biology, Molecular Biology Techniques, Gene Mapping

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