| Literature DB >> 28340352 |
Gaddiel Galarza-Muñoz1, Farren B S Briggs2, Irina Evsyukova3, Geraldine Schott-Lerner4, Edward M Kennedy5, Tinashe Nyanhete6, Liuyang Wang5, Laura Bergamaschi7, Steven G Widen4, Georgia D Tomaras8, Dennis C Ko9, Shelton S Bradrick1, Lisa F Barcellos10, Simon G Gregory11, Mariano A Garcia-Blanco12.
Abstract
Multiple sclerosis (MS) is an autoimmune disorder where T cells attack neurons in the central nervous system (CNS) leading to demyelination and neurological deficits. A driver of increased MS risk is the soluble form of the interleukin-7 receptor alpha chain gene (sIL7R) produced by alternative splicing of IL7R exon 6. Here, we identified the RNA helicase DDX39B as a potent activator of this exon and consequently a repressor of sIL7R, and we found strong genetic association of DDX39B with MS risk. Indeed, we showed that a genetic variant in the 5' UTR of DDX39B reduces translation of DDX39B mRNAs and increases MS risk. Importantly, this DDX39B variant showed strong genetic and functional epistasis with allelic variants in IL7R exon 6. This study establishes the occurrence of biological epistasis in humans and provides mechanistic insight into the regulation of IL7R exon 6 splicing and its impact on MS risk.Entities:
Keywords: DDX39B; IL7R; alternative splicing; autoimmune disorders; epistasis; genetic association; multiple sclerosis
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Year: 2017 PMID: 28340352 PMCID: PMC5456452 DOI: 10.1016/j.cell.2017.03.007
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582