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Genetic landscape of chronic obstructive pulmonary disease identifies heterogeneous cell-type and phenotype associations
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4499972
Author(s) Sakornsakolpat, Phuwanat; Prokopenko, Dmitry; Lamontagne, Maxime; Reeve, Nicola F.; Guyatt, Anna L.; Jackson, Victoria E.; Shrine, Nick; Qiao, Dandi; Bartz, Traci M.; Kim, Deog Kyeom; Lee, Mi Kyeong; Latourelle, Jeanne C.; Li, Xingnan; Morrow, Jarrett D.; Obeidat, Ma'en; Wyss, Annah B.; Bakke, Per; Barr, R. Graham; Beaty, Terri H.; Belinsky, Steven A.; Brusselle, Guy G.; Crapo, James D.; de Jong, Kim; DeMeo, Dawn L.; Fingerlin, Tasha E.; Gharib, Sina A.; Gulsvik, Amund; Hall, Ian P.; Hokanson, John E.; Kim, Woo Jin; Lomas, David A.; London, Stephanie J.; Meyers, Deborah A.; O'Connor, George T.; Rennard, Stephen I.; Schwartz, David A.; Sliwinski, Pawel; Sparrow, David; Strachan, David P.; Tal-Singer, Ruth; Tesfaigzi, Yohannes; Vestbo, Jørgen; Vonk, Judith M.; Yim, Jae-Joon; Zhou, Xiaobo; Bossé, Yohan; Manichaikul, Ani; Lahousse, Lies; Silverman, Edwin K.; Boezen, H. Marike; Wain, Louise V.; Tobin, Martin D.; Hobbs, Brian D.; Cho, Michael H.; SpiroMeta Consortium,; International Copd Genetics Consortium,
Author(s) at UniBasel Imboden, Medea
Probst Hensch, Nicole
Year 2019
Title Genetic landscape of chronic obstructive pulmonary disease identifies heterogeneous cell-type and phenotype associations
Journal Nature genetics
Volume 51
Number 3
Pages / Article-Number 494-505
Abstract Chronic obstructive pulmonary disease (COPD) is the leading cause of respiratory mortality worldwide. Genetic risk loci provide new insights into disease pathogenesis. We performed a genome-wide association study in 35,735 cases and 222,076 controls from the UK Biobank and additional studies from the International COPD Genetics Consortium. We identified 82 loci associated with P < 5 × 10; -8; ; 47 of these were previously described in association with either COPD or population-based measures of lung function. Of the remaining 35 new loci, 13 were associated with lung function in 79,055 individuals from the SpiroMeta consortium. Using gene expression and regulation data, we identified functional enrichment of COPD risk loci in lung tissue, smooth muscle, and several lung cell types. We found 14 COPD loci shared with either asthma or pulmonary fibrosis. COPD genetic risk loci clustered into groups based on associations with quantitative imaging features and comorbidities. Our analyses provide further support for the genetic susceptibility and heterogeneity of COPD.
Publisher Nature Publ
ISSN/ISBN 1061-4036
edoc-URL https://edoc.unibas.ch/69761/
Full Text on edoc No
Digital Object Identifier DOI 10.1038/s41588-018-0342-2
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/30804561
ISI-Number WOS:000459947200017
Document type (ISI) Journal Article
 
   

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