Hemizygous Deletion on Chromosome 3p26.1 Is Associated with Heavy Smoking among African American Subjects in the COPDGene Study.
- Authors
- Begum, Ferdouse; Ruczinski, Ingo; Hokanson, John E; Lutz, Sharon M; Parker, Margaret M; Cho, Michael H; Hetmanski, Jacqueline B; Scharpf, Robert B; Crapo, James D; Silverman, Edwin K; Beaty, Terri H
- Year
- 2016
- Journal
- PloS one
- PMID
- 27711239
- DOI
- 10.1371/journal.pone.0164134
- PMCID
- PMC5053531
Many well-powered genome-wide association studies have identified genetic determinants of self-reported smoking behaviors and measures of nicotine dependence, but most have not considered the role of structural variants, such as copy number variation (CNVs), influencing these phenotypes. Here, we included 2,889 African American and 6,187 non-Hispanic White subjects from the COPDGene cohort (http://www.copdgene.org) to carefully investigate the role of polymorphic CNVs across the genome on various measures of smoking behavior. We identified a CNV component (a hemizygous deletion) on chromosome 3p26.1 associated with two quantitative phenotypes related to smoking behavior among African Americans. This polymorphic hemizygous deletion is significantly associated with pack-years and cigarettes smoked per day among African American subjects in the COPDGene study. We sought evidence of replication in African Americans from the population based Atherosclerosis Risk in Communities (ARIC) study. While we observed similar CNV counts, the extent of exposure to cigarette smoking among ARIC subjects was quite different and the smaller sample size of heavy smokers in ARIC severely limited statistical power, so we were unable to replicate our findings from the COPDGene cohort. But meta-analyses of COPDGene and ARIC study subjects strengthened our association signal. However, a few linkage studies have reported suggestive linkage to the 3p26.1 region, and a few genome-wide association studies (GWAS) have reported markers in the gene (GRM7) nearest to this 3p26.1 area of polymorphic deletions are associated with measures of nicotine dependence among subjects of European ancestry.
Genome-wide CNV association scan for pack-years in African American COPDGene subjects: Each point represents a CNV component estimated by PennCNV.The red dotted line at 3.5 represents the genome-wide significance levels needed to maintain a family-wise error rate (FWER) of 5%, obtained via 10,000 permutation tests. The black dotted line at 3.87 represents the genome-wide significance levels for Bonferroni correction. 22 vertical bands indicate the 22 autosomes examined.
Mean and 95% Confidence Interval (CI) plot of pack-years for two groups of AA subjects.a. Mean pack-years and 95%CI in 77 hemizygous deletion carriers vs. rest of the subjects(2812) in chr 3p26.1. The observed mean difference in pack-years was statistically significantly (p = 0.00629) between these two groups.
No entities extracted from this document yet.
No uploaded files.
| Citation | PMID | DOI | Status |
|---|---|---|---|
| ArgosM, TongL, PierceBL, Rakibuz-ZamanM, AhmedA, IslamT, et al Genome-wide association study of smoking behaviours among Bangladeshi adults. J Med Genet. 2014;51(5):327β33. 10.1136/jmedgenet-2013-102151 24665060PMC4126189 | β | β | β |
| BegumF, RuczinskiI, LiS, SilvermanEK, ChoMH, LynchDA, et al Identifying a Deletion Affecting Total Lung Capacity Among Subjects in the COPDGene Study Cohort. Genet Epidemiol. 2016;40(1):81β8. 10.1002/gepi.21943 26643968PMC4679532 | β | β | β |
| BierutLJ. Genetic variation that contributes to nicotine dependence. Pharmacogenomics. 2007;8(8):881β3. 10.2217/14622416.8.8.881 .17716221 | β | β | β |
| BreenG, WebbBT, ButlerAW, van den OordEJ, TozziF, CraddockN, et al A genome-wide significant linkage for severe depression on chromosome 3: the depression network study. Am J Psychiatry. 2011;168(8):840β7. 10.1176/appi.ajp.2011.10091342 .21572164 | β | β | β |
| ChoMH, BoutaouiN, KlandermanBJ, SylviaJS, ZinitiJP, HershCP, et al Variants in FAM13A are associated with chronic obstructive pulmonary disease. Nat Genet. 2010;42(3):200β2. Epub 2010/02/23. 10.1038/ng.535 20173748PMC2828499 | β | β | β |
| ChoMH, CastaldiPJ, WanES, SiedlinskiM, HershCP, DemeoDL, et al A genome-wide association study of COPD identifies a susceptibility locus on chromosome 19q13. Hum Mol Genet. 2012;21(4):947β57. Epub 2011/11/15. 10.1093/hmg/ddr524 22080838PMC3298111 | β | β | β |
| ChoMH, McDonaldML, ZhouX, MattheisenM, CastaldiPJ, HershCP, et al Risk loci for chronic obstructive pulmonary disease: a genome-wide association study and meta-analysis. Lancet Respir Med. 2014;2(3):214β25. Epub 2014/03/14. 10.1016/S2213-2600(14)70002-5 .24621683PMC4176924 | β | β | β |
| DavidSP, HamidovicA, ChenGK, BergenAW, WesselJ, KasbergerJL, et al Genome-wide meta-analyses of smoking behaviors in African Americans. Transl Psychiatry. 2012;2:e119 10.1038/tp.2012.41 22832964PMC3365260 | β | β | β |
| GelernterJ, KranzlerHR, ShervaR, AlmasyL, HermanAI, KoestererR, et al Genome-wide association study of nicotine dependence in American populations: identification of novel risk loci in both African-Americans and European-Americans. Biol Psychiatry. 2015;77(5):493β503. Epub 2015/01/04. 10.1016/j.biopsych.2014.08.025 25555482PMC4386684 | β | β | β |
| GeneralTS. The Health Consequences of Smokingβ50 Years of Progress. Rockville, MD: 2014. | β | β | β |
| GrydelandTB, DirksenA, CoxsonHO, PillaiSG, SharmaS, EideGE, et al Quantitative computed tomography: emphysema and airway wall thickness by sex, age and smoking. Eur Respir J. 2009;34(4):858β65. Epub 2009/03/28. 10.1183/09031936.00167908 .19324952 | β | β | β |
| HamidovicA, GoodloeRJ, BergenAW, BenowitzNL, StynMA, KasbergerJL, et al Gene-centric analysis of serum cotinine levels in African and European American populations. Neuropsychopharmacology. 2012;37(4):968β74. 10.1038/npp.2011.280 22089314PMC3280653 | β | β | β |
| HancockDB, ReginssonGW, GaddisNC, ChenX, SacconeNL, LutzSM, et al Genome-wide meta-analysis reveals common splice site acceptor variant in CHRNA4 associated with nicotine dependence. Transl Psychiatry. 2015;5:e651 10.1038/tp.2015.149 .26440539PMC4930126 | β | β | β |
| HarariO, WangJC, BucholzK, EdenbergHJ, HeathA, MartinNG, et al Pathway analysis of smoking quantity in multiple GWAS identifies cholinergic and sensory pathways. PLoS One. 2012;7(12):e50913 10.1371/journal.pone.0050913 23227220PMC3515482 | β | β | β |
| investigators TA. The Atherosclerosis Risk in Communities (ARIC) Study: design and objectives. Am J Epidemiol. 1989;129(4):687β702. .2646917 | β | β | β |
| JakobssonM, ScholzSW, ScheetP, GibbsJR, VanLiereJM, FungHC, et al Genotype, haplotype and copy-number variation in worldwide human populations. Nature. 2008;451(7181):998β1003. 10.1038/nature06742 .18288195 | β | β | β |
| LeeJW MM, ChoMH, WanES, CastaldiPJ, HunninghakeGM, MarchettiN, LynchDA, CrapoJD, LomasDA, CoxsonHO, BakkePS, SilvermanEK, HershCP. DNAH5 is associated with total lung capacity in chronic obstructive pulmonary disease. Respiratory Resch. 2014;15(97). 10.1186/s12931-014-0097-y 25134640PMC4169636 | β | β | β |
| LiMD. The genetics of smoking related behavior: a brief review. Am J Med Sci. 2003;326(4):168β73. 10.1097/00000441-200310000-00003 .14557728 | β | β | β |
| LiuQR, DrgonT, JohnsonC, WaltherD, HessJ, UhlGR. Addiction molecular genetics: 639,401 SNP whole genome association identifies many "cell adhesion" genes. Am J Med Genet B Neuropsychiatr Genet. 2006;141B(8):918β25. 10.1002/ajmg.b.30436 .17099884 | β | β | β |
| LoukolaA, HallforsJ, KorhonenT, KaprioJ. Genetics and smoking. Curr Addict Rep. 2014;1(1):75β82. Epub 2014/04/30. 10.1007/s40429-013-0006-3 24778978PMC4000030 | β | β | β |
| MaioS, SherrillDL, MacNeeW, LangeP, CostabelU, DahlenSE, et al The European Respiratory Society spirometry tent: a unique form of screening for airway obstruction. Eur Respir J. 2012;39(6):1458β67. 10.1183/09031936.00111910 .22267757 | β | β | β |
| NielsenDA, JiF, YuferovV, HoA, HeC, OttJ, et al Genome-wide association study identifies genes that may contribute to risk for developing heroin addiction. Psychiatr Genet. 2010;20(5):207β14. 10.1097/YPG.0b013e32833a2106 20520587PMC3832188 | β | β | β |
| OlfsonE, SacconeNL, JohnsonEO, ChenLS, CulverhouseR, DohenyK, et al Rare, low frequency and common coding variants in CHRNA5 and their contribution to nicotine dependence in European and African Americans. Mol Psychiatry. 2015 10.1038/mp.2015.105. .26239294PMC4740321 | β | β | β |
| Organization WH. Report on the Global Tobacco Epidemic, 2009: Implementing smoke-free environments. Geneva, Switzerland: 2009. | β | β | β |
| ParkerMM, ForemanMG, AbelHJ, MathiasRA, HetmanskiJB, CrapoJD, et al Admixture mapping identifies a quantitative trait locus associated with FEV1/FVC in the COPDGene Study. Genet Epidemiol. 2014;38(7):652β9. Epub 2014/08/13. 10.1002/gepi.21847 25112515PMC4190160 | β | β | β |
| PergadiaML, GlowinskiAL, WrayNR, AgrawalA, SacconeSF, LoukolaA, et al A 3p26-3p25 genetic linkage finding for DSM-IV major depression in heavy smoking families. Am J Psychiatry. 2011;168(8):848β52. 10.1176/appi.ajp.2011.10091319 21572167PMC3433250 | β | β | β |
| PowellGL, LevineRB, FrazierAM, FregosiRF. Influence of developmental nicotine exposure on spike-timing precision and reliability in hypoglossal motoneurons. J Neurophysiol. 2015;113(6):1862β72. 10.1152/jn.00838.2014 25552642PMC4359999 | β | β | β |
| ReganEA, HokansonJE, MurphyJR, MakeB, LynchDA, BeatyTH, et al Genetic epidemiology of COPD (COPDGene) study design. COPD. 2010;7(1):32β43. Epub 2010/03/11. 10.3109/15412550903499522 20214461PMC2924193 | β | β | β |
| SacconeNL, WangJC, BreslauN, JohnsonEO, HatsukamiD, SacconeSF, et al The CHRNA5-CHRNA3-CHRNB4 nicotinic receptor subunit gene cluster affects risk for nicotine dependence in African-Americans and in European-Americans. Cancer Res. 2009;69(17):6848β56. 10.1158/0008-5472.CAN-09-0786 19706762PMC2874321 | β | β | β |
| ScharpfRB, MirelesL, YangQ, KottgenA, RuczinskiI, SusztakK, et al Copy number polymorphisms near SLC2A9 are associated with serum uric acid concentrations. BMC Genet. 2014;15:81 Epub 2014/07/11. 10.1186/1471-2156-15-81 25007794PMC4118309 | β | β | β |
| SjodinP, JakobssonM. Population genetic nature of copy number variation. Methods Mol Biol. 2012;838:209β23. 10.1007/978-1-61779-507-7_10 .22228014 | β | β | β |
| The Atherosclerosis Risk in Communities (ARIC) Study: design and objectives. The ARIC investigators. Am J Epidemiol. 1989;129(4):687β702. Epub 1989/04/01. .2646917 | β | β | β |
| TsengTS, ParkJY, ZabaletaJ, Moody-ThomasS, SothernMS, ChenT, et al Role of nicotine dependence on the relationship between variants in the nicotinic receptor genes and risk of lung adenocarcinoma. PLoS One. 2014;9(9):e107268 Epub 2014/09/19. 10.1371/journal.pone.0107268 25233467PMC4169410 | β | β | β |
| UhlGR, LiuQR, DrgonT, JohnsonC, WaltherD, RoseJE. Molecular genetics of nicotine dependence and abstinence: whole genome association using 520,000 SNPs. BMC Genet. 2007;8:10 10.1186/1471-2156-8-10 17407593PMC1853105 | β | β | β |
| VestboJ, AndersonW, CoxsonHO, CrimC, DawberF, EdwardsL, et al Evaluation of COPD Longitudinally to Identify Predictive Surrogate End-points (ECLIPSE). Eur Respir J. 2008;31(4):869β73. Epub 2008/01/25. 10.1183/09031936.00111707 .18216052 | β | β | β |
| VestboJ, HurdSS, AgustiAG, JonesPW, VogelmeierC, AnzuetoA, et al Global strategy for the diagnosis, management, and prevention of chronic obstructive pulmonary disease: GOLD executive summary. Am J Respir Crit Care Med. 2013;187(4):347β65. 10.1164/rccm.201204-0596PP .22878278 | β | β | β |
| VinkJM, SmitAB, de GeusEJ, SullivanP, WillemsenG, HottengaJJ, et al Genome-wide association study of smoking initiation and current smoking. Am J Hum Genet. 2009;84(3):367β79. 10.1016/j.ajhg.2009.02.001 19268276PMC2667987 | β | β | β |
| WanES, CastaldiPJ, ChoMH, HokansonJE, ReganEA, MakeBJ, et al Epidemiology, genetics, and subtyping of preserved ratio impaired spirometry (PRISm) in COPDGene. Respir Res. 2014;15:89 10.1186/s12931-014-0089-y 25096860PMC4256936 | β | β | β |
| WangK, LiM, HadleyD, LiuR, GlessnerJ, GrantSF, et al PennCNV: an integrated hidden Markov model designed for high-resolution copy number variation detection in whole-genome SNP genotyping data. Genome research. 2007;17(11):1665β74. Epub 2007/10/09. 10.1101/gr.6861907 17921354PMC2045149 | β | β | β |
| WangS, YangZ, MaJZ, PayneTJ, LiMD. Introduction to deep sequencing and its application to drug addiction research with a focus on rare variants. Mol Neurobiol. 2014;49(1):601β14. 10.1007/s12035-013-8541-4 23990377PMC3948219 | β | β | β |
| YoonD, KimYJ, CuiWY, Van der VaartA, ChoYS, LeeJY, et al Large-scale genome-wide association study of Asian population reveals genetic factors in FRMD4A and other loci influencing smoking initiation and nicotine dependence. Hum Genet. 2012;131(6):1009β21. 10.1007/s00439-011-1102-x 22006218PMC4275569 | β | β | β |
| YounkinSG, ScharpfRB, SchwenderH, ParkerMM, ScottAF, MarazitaML, et al A genome-wide study of de novo deletions identifies a candidate locus for non-syndromic isolated cleft lip/palate risk. BMC Genet. 2014;15:24 Epub 2014/02/18. 10.1186/1471-2156-15-24 24528994PMC3929298 | β | β | β |
| ZhuG, WarrenL, AponteJ, GulsvikA, BakkeP, AndersonWH, et al The SERPINE2 gene is associated with chronic obstructive pulmonary disease in two large populations. Am J Respir Crit Care Med. 2007;176(2):167β73. Epub 2007/04/21. 10.1164/rccm.200611-1723OC .17446335 | β | β | β |
In this knowledge base
| Title | Year | PMID |
|---|---|---|
| Human Genetics of Addiction: New Insights and Future Directions. | 2018 | 29504045 |
| The genetic epidemiology of substance use disorder: A review. | 2017 | 28938182 |
External
| Title | Authors | Journal | Year | Link |
|---|---|---|---|---|
| GRM7 deficiency, from excitotoxicity and neuroinflammation to neurodegeneration: Systematic review of GRM7 deficient patients. | Zaki-Dizaji M et al. | β | 2024 | β |
| Genetic Advances in Chronic Obstructive Pulmonary Disease. Insights from COPDGene. | Ragland MF et al. | β | 2019 | β |
| Human Genetics of Addiction: New Insights and Future Directions. | Hancock DB et al. | β | 2018 | β |
| Identification of susceptibility pathways for the role of chromosome 15q25.1 in modifying lung cancer risk. | Ji X et al. | β | 2018 | β |
| The genetic epidemiology of substance use disorder: A review. | Prom-Wormley EC et al. | β | 2017 | β |