Disease areas:
  • lungs
Last updated:
Author(s):
Thorunn A. Olafsdottir, Fannar Theodors, Kristbjorg Bjarnadottir, Unnur Steina Bjornsdottir, Arna B. Agustsdottir, Olafur A. Stefansson, Erna V. Ivarsdottir, Jon K. Sigurdsson, Stefania Benonisdottir, Gudmundur I. Eyjolfsson, David Gislason, Thorarinn Gislason, Steinunn Guðmundsdóttir, Arnaldur Gylfason, Bjarni V. Halldorsson, Gisli H. Halldorsson, Thorhildur Juliusdottir, Anna M. Kristinsdottir, Dora Ludviksdottir, Bjorn R. Ludviksson, Gisli Masson, Kristjan Norland, Pall T. Onundarson, Isleifur Olafsson, Olof Sigurdardottir, Lilja Stefansdottir, Gardar Sveinbjornsson, Vinicius Tragante, Daniel F. Gudbjartsson, Gudmar Thorleifsson, Patrick Sulem, Unnur Thorsteinsdottir, Gudmundur L. Norddahl, Ingileif Jonsdottir, Kari Stefansson
Publish date:
20 January 2020
Journal:
Nature Communications
PubMed ID:
31959851

Abstract

Asthma is one of the most common chronic diseases affecting both children and adults. We report a genome-wide association meta-analysis of 69,189 cases and 702,199 controls from Iceland and UK biobank. We find 88 asthma risk variants at 56 loci, 19 previously unreported, and evaluate their effect on other asthma and allergic phenotypes. Of special interest are two low frequency variants associated with protection against asthma; a missense variant in TNFRSF8 and 3′ UTR variant in TGFBR1. Functional studies show that the TNFRSF8 variant reduces TNFRSF8 expression both on cell surface and in soluble form, acting as loss of function. eQTL analysis suggests that the TGFBR1 variant acts through gain of function and together with an intronic variant in a downstream gene, SMAD3, points to defective TGFβR1 signaling as one of the biological perturbations increasing asthma risk. Our results increase the number of asthma variants and implicate genes with known role in T cell regulation, inflammation and airway remodeling in asthma pathogenesis.

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Institution:
Amsterdam UMC Research BV, Netherlands

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