Enhanced astrocyte responses are driven by a genetic risk allele associated with multiple sclerosis.

Ponath, Gerald; Lincoln, Matthew R; Levine-Ritterman, Maya; Park, Calvin; Dahlawi, Somiah; Mubarak, Mayyan; Sumida, Tomokazu; Airas, Laura et al. · Nat Commun · 2018

basic_science · Level V

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Abstract

Epigenetic annotation studies of genetic risk variants for multiple sclerosis (MS) implicate dysfunctional lymphocytes in MS susceptibility; however, the role of central nervous system (CNS) cells remains unclear. We investigated the effect of the risk variant, rs7665090<sup>G</sup>, located near NFKB1, on astrocytes. We demonstrated that chromatin is accessible at the risk locus, a prerequisite for its impact on astroglial function. The risk variant was associated with increased NF-κB signaling and target gene expression, driving lymphocyte recruitment, in cultured human astrocytes and astrocytes within MS lesions, and with increased lesional lymphocytic infiltrates and lesion sizes. Thus, our study establishes a link between genetic risk for MS (rs7665090<sup>G</sup>) and dysfunctional astrocyte responses associated with increased CNS access for peripheral immune cells. MS may therefore result from variant-driven dysregulation of the peripheral immune system and of the CNS, where perturbed CNS cell function aids in establishing local autoimmune inflammation.

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