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Exome-wide analysis of rare coding variation identifies novel associations with COPD and airflow limitation in MOCS3, IFIT3 and SERPINA12

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posted on 2016-03-01, 13:37 authored by Victoria E. Jackson, Ioanna Ntalla, Chris E. Brightling, I. Sayers, R. Morris, P. Whincup, J-P. Casas, A. Amuzu, M. Choi, C. Dale, M. Kumari, J. Engmann, N. Kalsheker, S. Chappell, T. Guetta-Baranes, T. M. McKeever, C. N. A. Tavendale, R. Palmer, J. W. Holloway, A. A. Sayer, E. M. Dennison, C. Cooper, M. Bafadhel, Bethan Barker, C. E. Bolton, M. E. John, S. G. Parker, M. F. Moffat, A. J. Wardlaw, M. J. Connolly, D. J. Porteous, B. H. Smith, S. Padmanabhan, L. Hocking, K. E. Stirrups, P. Deloukas, D. P. Strachan, I. P. Hall, Martin D. Tobin, Louise V. Wain, Louise V. Taylor
Background Several regions of the genome have shown to be associated with COPD in genome-wide association studies of common variants. Objective To determine rare and potentially functional single nucleotide polymorphisms (SNPs) associated with the risk of COPD and severity of airflow limitation. Methods 3226 current or former smokers of European ancestry with lung function measures indicative of Global Initiative for Chronic Obstructive Lung Disease (GOLD) 2 COPD or worse were genotyped using an exome array. An analysis of risk of COPD was carried out using ever smoking controls (n=4784). Associations with %predicted FEV1 were tested in cases. We followed-up signals of interest (p<10−5) in independent samples from a subset of the UK Biobank population and also undertook a more powerful discovery study by meta-analysing the exome array data and UK Biobank data for variants represented on both arrays. Results Among the associated variants were two in regions previously unreported for COPD; a low frequency non-synonymous SNP in MOCS3 (rs7269297, pdiscovery=3.08×10−6, preplication=0.019) and a rare SNP in IFIT3, which emerged in the meta-analysis (rs140549288, pmeta=8.56×10−6). In the meta-analysis of % predicted FEV1 in cases, the strongest association was shown for a splice variant in a previously unreported region, SERPINA12 (rs140198372, pmeta=5.72×10−6). We also confirmed previously reported associations with COPD risk at MMP12, HHIP, GPR126 and CHRNA5. No associations in novel regions reached a stringent exome-wide significance threshold (p<3.7×10−7). Conclusions This study identified several associations with the risk of COPD and severity of airflow limitation, including novel regions MOCS3, IFIT3 and SERPINA12, which warrant further study.

History

Citation

Thorax, 2016;71:501-509

Author affiliation

/Organisation/COLLEGE OF MEDICINE, BIOLOGICAL SCIENCES AND PSYCHOLOGY/School of Medicine/Department of Infection, Immunity and Inflammation

Version

  • VoR (Version of Record)

Published in

Thorax

Publisher

BMJ Publishing Group with British Thoracic Society (BTS)

issn

0040-6376

eissn

1468-3296

Acceptance date

2016-02-01

Copyright date

2016

Available date

2016-03-01

Publisher version

http://thorax.bmj.com/content/71/6/501.long

Language

en

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