Rare variant analysis in eczema identifies exonic variants in DUSP1, NOTCH4 and SLC9A4
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Published:2021-11-16
Issue:1
Volume:12
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Grosche Sarah, Marenholz Ingo, Esparza-Gordillo Jorge, Arnau-Soler Aleix, Pairo-Castineira ErolaORCID, Rüschendorf FranzORCID, Ahluwalia Tarunveer S.ORCID, Almqvist Catarina, Arnold Andreas, Baurecht HansjörgORCID, Bisgaard HansORCID, Bønnelykke KlausORCID, Brown Sara J.ORCID, Bustamante MarionaORCID, Curtin John A., Custovic AdnanORCID, Dharmage Shyamali C., Esplugues Ana, Falchi MarioORCID, Fernandez-Orth DietmarORCID, Ferreira Manuel A. R., Franke AndreORCID, Gerdes Sascha, Gieger ChristianORCID, Hakonarson HakonORCID, Holt Patrick G.ORCID, Homuth Georg, Hubner NorbertORCID, Hysi Pirro G.ORCID, Jarvelin Marjo-RiittaORCID, Karlsson RobertORCID, Koppelman Gerard H.ORCID, Lau Susanne, Lutz Manuel, Magnusson Patrik K. E.ORCID, Marks Guy B., Müller-Nurasyid MartinaORCID, Nöthen Markus M.ORCID, Paternoster LaviniaORCID, Pennell Craig E.ORCID, Peters AnnetteORCID, Rawlik KonradORCID, Robertson Colin F., Rodriguez ElkeORCID, Sebert SylvainORCID, Simpson Angela, Sleiman Patrick M. A., Standl Marie, Stölzl Dora, Strauch Konstantin, Szwajda Agnieszka, Tenesa AlbertORCID, Thompson Philip J., Ullemar Vilhelmina, Visconti AlessiaORCID, Vonk Judith M.ORCID, Wang Carol A.ORCID, Weidinger Stephan, Wielscher Matthias, Worth Catherine L.ORCID, Xu Chen-Jian, Lee Young-AeORCID,
Abstract
AbstractPrevious genome-wide association studies revealed multiple common variants involved in eczema but the role of rare variants remains to be elucidated. Here, we investigate the role of rare variants in eczema susceptibility. We meta-analyze 21 study populations including 20,016 eczema cases and 380,433 controls. Rare variants are imputed with high accuracy using large population-based reference panels. We identify rare exonic variants in DUSP1, NOTCH4, and SLC9A4 to be associated with eczema. In DUSP1 and NOTCH4 missense variants are predicted to impact conserved functional domains. In addition, five novel common variants at SATB1-AS1/KCNH8, TRIB1/LINC00861, ZBTB1, TBX21/OSBPL7, and CSF2RB are discovered. While genes prioritized based on rare variants are significantly up-regulated in the skin, common variants point to immune cell function. Over 20% of the single nucleotide variant-based heritability is attributable to rare and low-frequency variants. The identified rare/low-frequency variants located in functional protein domains point to promising targets for novel therapeutic approaches to eczema.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Reference76 articles.
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