Literature DB >> 30679032

Exome Chip Meta-analysis Fine Maps Causal Variants and Elucidates the Genetic Architecture of Rare Coding Variants in Smoking and Alcohol Use.

David M Brazel1, Yu Jiang2, Jordan M Hughey2, Valérie Turcot3, Xiaowei Zhan4, Jian Gong5, Chiara Batini6, J Dylan Weissenkampen2, MengZhen Liu7, Daniel R Barnes8, Sarah Bertelsen9, Yi-Ling Chou10, A Mesut Erzurumluoglu6, Jessica D Faul11, Jeff Haessler5, Anke R Hammerschlag12, Chris Hsu13, Manav Kapoor9, Dongbing Lai14, Nhung Le15, Christiaan A de Leeuw12, Anu Loukola16, Massimo Mangino17, Carl A Melbourne6, Giorgio Pistis18, Beenish Qaiser16, Rebecca Rohde19, Yaming Shao19, Heather Stringham20, Leah Wetherill14, Wei Zhao21, Arpana Agrawal10, Laura Bierut10, Chu Chen22, Charles B Eaton23, Alison Goate9, Christopher Haiman13, Andrew Heath10, William G Iacono7, Nicholas G Martin24, Tinca J Polderman12, Alex Reiner25, John Rice26, David Schlessinger27, H Steven Scholte28, Jennifer A Smith21, Jean-Claude Tardif3, Hilary A Tindle29, Andries R van der Leij28, Michael Boehnke20, Jenny Chang-Claude30, Francesco Cucca18, Sean P David31, Tatiana Foroud14, Joanna M M Howson8, Sharon L R Kardia21, Charles Kooperberg5, Markku Laakso32, Guillaume Lettre3, Pamela Madden10, Matt McGue7, Kari North19, Danielle Posthuma33, Timothy Spector34, Daniel Stram13, Martin D Tobin6, David R Weir11, Jaakko Kaprio16, Gonçalo R Abecasis35, Dajiang J Liu36, Scott Vrieze37.   

Abstract

BACKGROUND: Smoking and alcohol use have been associated with common genetic variants in multiple loci. Rare variants within these loci hold promise in the identification of biological mechanisms in substance use. Exome arrays and genotype imputation can now efficiently genotype rare nonsynonymous and loss of function variants. Such variants are expected to have deleterious functional consequences and to contribute to disease risk.
METHODS: We analyzed ∼250,000 rare variants from 16 independent studies genotyped with exome arrays and augmented this dataset with imputed data from the UK Biobank. Associations were tested for five phenotypes: cigarettes per day, pack-years, smoking initiation, age of smoking initiation, and alcoholic drinks per week. We conducted stratified heritability analyses, single-variant tests, and gene-based burden tests of nonsynonymous/loss-of-function coding variants. We performed a novel fine-mapping analysis to winnow the number of putative causal variants within associated loci.
RESULTS: Meta-analytic sample sizes ranged from 152,348 to 433,216, depending on the phenotype. Rare coding variation explained 1.1% to 2.2% of phenotypic variance, reflecting 11% to 18% of the total single nucleotide polymorphism heritability of these phenotypes. We identified 171 genome-wide associated loci across all phenotypes. Fine mapping identified putative causal variants with double base-pair resolution at 24 of these loci, and between three and 10 variants for 65 loci. Twenty loci contained rare coding variants in the 95% credible intervals.
CONCLUSIONS: Rare coding variation significantly contributes to the heritability of smoking and alcohol use. Fine-mapping genome-wide association study loci identifies specific variants contributing to the biological etiology of substance use behavior.
Copyright © 2018 Society of Biological Psychiatry. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Alcohol; Behavioral genetics; GWAS; Heritability; Nicotine; Tobacco

Mesh:

Year:  2018        PMID: 30679032      PMCID: PMC6534468          DOI: 10.1016/j.biopsych.2018.11.024

Source DB:  PubMed          Journal:  Biol Psychiatry        ISSN: 0006-3223            Impact factor:   13.382


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