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Genome-wide joint meta-analysis of SNP and SNP-by-smoking interaction identifies novel loci for pulmonary function.


ABSTRACT: Genome-wide association studies have identified numerous genetic loci for spirometic measures of pulmonary function, forced expiratory volume in one second (FEV(1)), and its ratio to forced vital capacity (FEV(1)/FVC). Given that cigarette smoking adversely affects pulmonary function, we conducted genome-wide joint meta-analyses (JMA) of single nucleotide polymorphism (SNP) and SNP-by-smoking (ever-smoking or pack-years) associations on FEV(1) and FEV(1)/FVC across 19 studies (total N?=?50,047). We identified three novel loci not previously associated with pulmonary function. SNPs in or near DNER (smallest P(JMA?=?)5.00×10(-11)), HLA-DQB1 and HLA-DQA2 (smallest P(JMA?=?)4.35×10(-9)), and KCNJ2 and SOX9 (smallest P(JMA?=?)1.28×10(-8)) were associated with FEV(1)/FVC or FEV(1) in meta-analysis models including SNP main effects, smoking main effects, and SNP-by-smoking (ever-smoking or pack-years) interaction. The HLA region has been widely implicated for autoimmune and lung phenotypes, unlike the other novel loci, which have not been widely implicated. We evaluated DNER, KCNJ2, and SOX9 and found them to be expressed in human lung tissue. DNER and SOX9 further showed evidence of differential expression in human airway epithelium in smokers compared to non-smokers. Our findings demonstrated that joint testing of SNP and SNP-by-environment interaction identified novel loci associated with complex traits that are missed when considering only the genetic main effects.

SUBMITTER: Hancock DB 

PROVIDER: S-EPMC3527213 | biostudies-literature | 2012

REPOSITORIES: biostudies-literature

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Genome-wide joint meta-analysis of SNP and SNP-by-smoking interaction identifies novel loci for pulmonary function.

Hancock Dana B DB   Soler Artigas María M   Gharib Sina A SA   Henry Amanda A   Manichaikul Ani A   Ramasamy Adaikalavan A   Loth Daan W DW   Imboden Medea M   Koch Beate B   McArdle Wendy L WL   Smith Albert V AV   Smolonska Joanna J   Sood Akshay A   Tang Wenbo W   Wilk Jemma B JB   Zhai Guangju G   Zhao Jing Hua JH   Aschard Hugues H   Burkart Kristin M KM   Curjuric Ivan I   Eijgelsheim Mark M   Elliott Paul P   Gu Xiangjun X   Harris Tamara B TB   Janson Christer C   Homuth Georg G   Hysi Pirro G PG   Liu Jason Z JZ   Loehr Laura R LR   Lohman Kurt K   Loos Ruth J F RJ   Manning Alisa K AK   Marciante Kristin D KD   Obeidat Ma'en M   Postma Dirkje S DS   Aldrich Melinda C MC   Brusselle Guy G GG   Chen Ting-hsu TH   Eiriksdottir Gudny G   Franceschini Nora N   Heinrich Joachim J   Rotter Jerome I JI   Wijmenga Cisca C   Williams O Dale OD   Bentley Amy R AR   Hofman Albert A   Laurie Cathy C CC   Lumley Thomas T   Morrison Alanna C AC   Joubert Bonnie R BR   Rivadeneira Fernando F   Couper David J DJ   Kritchevsky Stephen B SB   Liu Yongmei Y   Wjst Matthias M   Wain Louise V LV   Vonk Judith M JM   Uitterlinden André G AG   Rochat Thierry T   Rich Stephen S SS   Psaty Bruce M BM   O'Connor George T GT   North Kari E KE   Mirel Daniel B DB   Meibohm Bernd B   Launer Lenore J LJ   Khaw Kay-Tee KT   Hartikainen Anna-Liisa AL   Hammond Christopher J CJ   Gläser Sven S   Marchini Jonathan J   Kraft Peter P   Wareham Nicholas J NJ   Völzke Henry H   Stricker Bruno H C BH   Spector Timothy D TD   Probst-Hensch Nicole M NM   Jarvis Deborah D   Jarvelin Marjo-Riitta MR   Heckbert Susan R SR   Gudnason Vilmundur V   Boezen H Marike HM   Barr R Graham RG   Cassano Patricia A PA   Strachan David P DP   Fornage Myriam M   Hall Ian P IP   Dupuis Josée J   Tobin Martin D MD   London Stephanie J SJ  

PLoS genetics 20121220 12


Genome-wide association studies have identified numerous genetic loci for spirometic measures of pulmonary function, forced expiratory volume in one second (FEV(1)), and its ratio to forced vital capacity (FEV(1)/FVC). Given that cigarette smoking adversely affects pulmonary function, we conducted genome-wide joint meta-analyses (JMA) of single nucleotide polymorphism (SNP) and SNP-by-smoking (ever-smoking or pack-years) associations on FEV(1) and FEV(1)/FVC across 19 studies (total N = 50,047).  ...[more]

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