Cargando…
Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): a genetic association study in UK Biobank
BACKGROUND: Understanding the genetic basis of airflow obstruction and smoking behaviour is key to determining the pathophysiology of chronic obstructive pulmonary disease (COPD). We used UK Biobank data to study the genetic causes of smoking behaviour and lung health. METHODS: We sampled individual...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4593935/ https://www.ncbi.nlm.nih.gov/pubmed/26423011 http://dx.doi.org/10.1016/S2213-2600(15)00283-0 |
_version_ | 1782393380260544512 |
---|---|
author | Wain, Louise V Shrine, Nick Miller, Suzanne Jackson, Victoria E Ntalla, Ioanna Artigas, María Soler Billington, Charlotte K Kheirallah, Abdul Kader Allen, Richard Cook, James P Probert, Kelly Obeidat, Ma'en Bossé, Yohan Hao, Ke Postma, Dirkje S Paré, Peter D Ramasamy, Adaikalavan Mägi, Reedik Mihailov, Evelin Reinmaa, Eva Melén, Erik O'Connell, Jared Frangou, Eleni Delaneau, Olivier Freeman, Colin Petkova, Desislava McCarthy, Mark Sayers, Ian Deloukas, Panos Hubbard, Richard Pavord, Ian Hansell, Anna L Thomson, Neil C Zeggini, Eleftheria Morris, Andrew P Marchini, Jonathan Strachan, David P Tobin, Martin D Hall, Ian P |
author_facet | Wain, Louise V Shrine, Nick Miller, Suzanne Jackson, Victoria E Ntalla, Ioanna Artigas, María Soler Billington, Charlotte K Kheirallah, Abdul Kader Allen, Richard Cook, James P Probert, Kelly Obeidat, Ma'en Bossé, Yohan Hao, Ke Postma, Dirkje S Paré, Peter D Ramasamy, Adaikalavan Mägi, Reedik Mihailov, Evelin Reinmaa, Eva Melén, Erik O'Connell, Jared Frangou, Eleni Delaneau, Olivier Freeman, Colin Petkova, Desislava McCarthy, Mark Sayers, Ian Deloukas, Panos Hubbard, Richard Pavord, Ian Hansell, Anna L Thomson, Neil C Zeggini, Eleftheria Morris, Andrew P Marchini, Jonathan Strachan, David P Tobin, Martin D Hall, Ian P |
author_sort | Wain, Louise V |
collection | PubMed |
description | BACKGROUND: Understanding the genetic basis of airflow obstruction and smoking behaviour is key to determining the pathophysiology of chronic obstructive pulmonary disease (COPD). We used UK Biobank data to study the genetic causes of smoking behaviour and lung health. METHODS: We sampled individuals of European ancestry from UK Biobank, from the middle and extremes of the forced expiratory volume in 1 s (FEV(1)) distribution among heavy smokers (mean 35 pack-years) and never smokers. We developed a custom array for UK Biobank to provide optimum genome-wide coverage of common and low-frequency variants, dense coverage of genomic regions already implicated in lung health and disease, and to assay rare coding variants relevant to the UK population. We investigated whether there were shared genetic causes between different phenotypes defined by extremes of FEV(1). We also looked for novel variants associated with extremes of FEV(1) and smoking behaviour and assessed regions of the genome that had already shown evidence for a role in lung health and disease. We set genome-wide significance at p<5 × 10(−8). FINDINGS: UK Biobank participants were recruited from March 15, 2006, to July 7, 2010. Sample selection for the UK BiLEVE study started on Nov 22, 2012, and was completed on Dec 20, 2012. We selected 50 008 unique samples: 10 002 individuals with low FEV(1), 10 000 with average FEV(1), and 5002 with high FEV(1) from each of the heavy smoker and never smoker groups. We noted a substantial sharing of genetic causes of low FEV(1) between heavy smokers and never smokers (p=2·29 × 10(−16)) and between individuals with and without doctor-diagnosed asthma (p=6·06 × 10(−11)). We discovered six novel genome-wide significant signals of association with extremes of FEV(1), including signals at four novel loci (KANSL1, TSEN54, TET2, and RBM19/TBX5) and independent signals at two previously reported loci (NPNT and HLA-DQB1/HLA-DQA2). These variants also showed association with COPD, including in individuals with no history of smoking. The number of copies of a 150 kb region containing the 5′ end of KANSL1, a gene that is important for epigenetic gene regulation, was associated with extremes of FEV(1). We also discovered five new genome-wide significant signals for smoking behaviour, including a variant in NCAM1 (chromosome 11) and a variant on chromosome 2 (between TEX41 and PABPC1P2) that has a trans effect on expression of NCAM1 in brain tissue. INTERPRETATION: By sampling from the extremes of the lung function distribution in UK Biobank, we identified novel genetic causes of lung function and smoking behaviour. These results provide new insight into the specific mechanisms underlying airflow obstruction, COPD, and tobacco addiction, and show substantial shared genetic architecture underlying airflow obstruction across individuals, irrespective of smoking behaviour and other airway disease. FUNDING: Medical Research Council. |
format | Online Article Text |
id | pubmed-4593935 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-45939352015-10-28 Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): a genetic association study in UK Biobank Wain, Louise V Shrine, Nick Miller, Suzanne Jackson, Victoria E Ntalla, Ioanna Artigas, María Soler Billington, Charlotte K Kheirallah, Abdul Kader Allen, Richard Cook, James P Probert, Kelly Obeidat, Ma'en Bossé, Yohan Hao, Ke Postma, Dirkje S Paré, Peter D Ramasamy, Adaikalavan Mägi, Reedik Mihailov, Evelin Reinmaa, Eva Melén, Erik O'Connell, Jared Frangou, Eleni Delaneau, Olivier Freeman, Colin Petkova, Desislava McCarthy, Mark Sayers, Ian Deloukas, Panos Hubbard, Richard Pavord, Ian Hansell, Anna L Thomson, Neil C Zeggini, Eleftheria Morris, Andrew P Marchini, Jonathan Strachan, David P Tobin, Martin D Hall, Ian P Lancet Respir Med Articles BACKGROUND: Understanding the genetic basis of airflow obstruction and smoking behaviour is key to determining the pathophysiology of chronic obstructive pulmonary disease (COPD). We used UK Biobank data to study the genetic causes of smoking behaviour and lung health. METHODS: We sampled individuals of European ancestry from UK Biobank, from the middle and extremes of the forced expiratory volume in 1 s (FEV(1)) distribution among heavy smokers (mean 35 pack-years) and never smokers. We developed a custom array for UK Biobank to provide optimum genome-wide coverage of common and low-frequency variants, dense coverage of genomic regions already implicated in lung health and disease, and to assay rare coding variants relevant to the UK population. We investigated whether there were shared genetic causes between different phenotypes defined by extremes of FEV(1). We also looked for novel variants associated with extremes of FEV(1) and smoking behaviour and assessed regions of the genome that had already shown evidence for a role in lung health and disease. We set genome-wide significance at p<5 × 10(−8). FINDINGS: UK Biobank participants were recruited from March 15, 2006, to July 7, 2010. Sample selection for the UK BiLEVE study started on Nov 22, 2012, and was completed on Dec 20, 2012. We selected 50 008 unique samples: 10 002 individuals with low FEV(1), 10 000 with average FEV(1), and 5002 with high FEV(1) from each of the heavy smoker and never smoker groups. We noted a substantial sharing of genetic causes of low FEV(1) between heavy smokers and never smokers (p=2·29 × 10(−16)) and between individuals with and without doctor-diagnosed asthma (p=6·06 × 10(−11)). We discovered six novel genome-wide significant signals of association with extremes of FEV(1), including signals at four novel loci (KANSL1, TSEN54, TET2, and RBM19/TBX5) and independent signals at two previously reported loci (NPNT and HLA-DQB1/HLA-DQA2). These variants also showed association with COPD, including in individuals with no history of smoking. The number of copies of a 150 kb region containing the 5′ end of KANSL1, a gene that is important for epigenetic gene regulation, was associated with extremes of FEV(1). We also discovered five new genome-wide significant signals for smoking behaviour, including a variant in NCAM1 (chromosome 11) and a variant on chromosome 2 (between TEX41 and PABPC1P2) that has a trans effect on expression of NCAM1 in brain tissue. INTERPRETATION: By sampling from the extremes of the lung function distribution in UK Biobank, we identified novel genetic causes of lung function and smoking behaviour. These results provide new insight into the specific mechanisms underlying airflow obstruction, COPD, and tobacco addiction, and show substantial shared genetic architecture underlying airflow obstruction across individuals, irrespective of smoking behaviour and other airway disease. FUNDING: Medical Research Council. Elsevier 2015-10 /pmc/articles/PMC4593935/ /pubmed/26423011 http://dx.doi.org/10.1016/S2213-2600(15)00283-0 Text en © 2015 Wain et al. Open Access article distributed under the terms of CC BY http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Articles Wain, Louise V Shrine, Nick Miller, Suzanne Jackson, Victoria E Ntalla, Ioanna Artigas, María Soler Billington, Charlotte K Kheirallah, Abdul Kader Allen, Richard Cook, James P Probert, Kelly Obeidat, Ma'en Bossé, Yohan Hao, Ke Postma, Dirkje S Paré, Peter D Ramasamy, Adaikalavan Mägi, Reedik Mihailov, Evelin Reinmaa, Eva Melén, Erik O'Connell, Jared Frangou, Eleni Delaneau, Olivier Freeman, Colin Petkova, Desislava McCarthy, Mark Sayers, Ian Deloukas, Panos Hubbard, Richard Pavord, Ian Hansell, Anna L Thomson, Neil C Zeggini, Eleftheria Morris, Andrew P Marchini, Jonathan Strachan, David P Tobin, Martin D Hall, Ian P Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): a genetic association study in UK Biobank |
title | Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): a genetic association study in UK Biobank |
title_full | Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): a genetic association study in UK Biobank |
title_fullStr | Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): a genetic association study in UK Biobank |
title_full_unstemmed | Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): a genetic association study in UK Biobank |
title_short | Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): a genetic association study in UK Biobank |
title_sort | novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (uk bileve): a genetic association study in uk biobank |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4593935/ https://www.ncbi.nlm.nih.gov/pubmed/26423011 http://dx.doi.org/10.1016/S2213-2600(15)00283-0 |
work_keys_str_mv | AT wainlouisev novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT shrinenick novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT millersuzanne novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT jacksonvictoriae novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT ntallaioanna novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT artigasmariasoler novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT billingtoncharlottek novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT kheirallahabdulkader novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT allenrichard novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT cookjamesp novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT probertkelly novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT obeidatmaen novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT bosseyohan novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT haoke novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT postmadirkjes novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT parepeterd novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT ramasamyadaikalavan novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT magireedik novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT mihailovevelin novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT reinmaaeva novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT melenerik novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT oconnelljared novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT frangoueleni novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT delaneauolivier novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT freemancolin novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT petkovadesislava novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT mccarthymark novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT sayersian novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT deloukaspanos novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT hubbardrichard novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT pavordian novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT hansellannal novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT thomsonneilc novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT zegginieleftheria novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT morrisandrewp novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT marchinijonathan novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT strachandavidp novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT tobinmartind novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank AT hallianp novelinsightsintothegeneticsofsmokingbehaviourlungfunctionandchronicobstructivepulmonarydiseaseukbileveageneticassociationstudyinukbiobank |