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Please use this identifier to cite or link to this item: https://scholars.lib.ntu.edu.tw/handle/123456789/558203
Title: Analysis of heritability and shared heritability based on genome-wide association studies for thirteen cancer types
Authors: Sampson J.N.
Wheeler W.A.
Yeager M.
Panagiotou O.
Wang Z.
Berndt S.I.
Lan Q.
Abnet C.C.
Amundadottir L.T.
Figueroa J.D.
Landi M.T.
Mirabello L.
Savage S.A.
Taylor P.R.
De Vivo I.
McGlynn K.A.
Purdue M.P.
Rajaraman P.
Adami H.-O.
Ahlbom A.
Albanes D.
Amary M.F.
An S.-J.
Andersson U.
Andriole G.
Jr.
Andrulis I.L.
Angelucci E.
Ansell S.M.
Arici C.
Armstrong B.K.
Arslan A.A.
Austin M.A.
Baris D.
Barkauskas D.A.
Bassig B.A.
Becker N.
Benavente Y.
Benhamou S.
Berg C.
Van Den Berg D.
Bernstein L.
Bertrand K.A.
Birmann B.M.
Black A.
Boeing H.
Boffetta P.
Boutron-Ruault M.-C.
Bracci P.M.
Brinton L.
Brooks-Wilson A.R.
Bueno-De-Mesquita H.B.
Burdett L.
Buring J.
Butler M.A.
Cai Q.
Cancel-Tassin G.
Canzian F.
Carrato A.
Carreon T.
Carta A.
Chan J.K.C.
Chang E.T.
Chang G.-C.
Chang I.S.
Chang J.
Chang-Claude J.
Chen C.-J.
Chen C.-Y.
Chen C.
Chen C.-H.
Chen C.
Chen H.
Chen K.
KUAN-YU CHEN 
Chen K.-C.
Chen Y.
Chen Y.-H.
Chen Y.-S.
Chen Y.-M.
Chien L.-H.
Chirlaque M.-D.
Choi J.E.
Choi Y.Y.
Chow W.-H.
Chung C.C.
Clavel J.
Clavel-Chapelon F.
Cocco P.
Colt J.S.
Comperat E.
Conde L.
Connors J.M.
Conti D.
Cortessis V.K.
Cotterchio M.
Cozen W.
Crouch S.
Crous-Bou M.
Cussenot O.
Davis F.G.
Ding T.
Diver W.R.
Dorronsoro M.
Dossus L.
Duell E.J.
Ennas M.G.
Erickson R.L.
Feychting M.
Flanagan A.M.
Foretova L.
Fraumeni J.F.
Jr.
Freedman N.D.
Freeman L.E.B.
Fuchs C.
Gago-Dominguez M.
Gallinger S.
Gao Y.-T.
Gapstur S.M.
Garcia-Closas M.
García-Closas R.
Gascoyne R.D.
Gastier-Foster J.
Gaudet M.M.
Gaziano J.M.
Giffen C.
Giles G.G.
Giovannucci E.
Glimelius B.
Goggins M.
Gokgoz N.
Goldstein A.M.
Gorlick R.
Gross M.
Grubb R.
III, Gu J.
Guan P.
Gunter M.
Guo H.
Habermann T.M.
Haiman C.A.
Halai D.
Hallmans G.
Hassan M.
Hattinger C.
He Q.
He X.
Helzlsouer K.
Henderson B.
Henriksson R.
Hjalgrim H.
Hoffman-Bolton J.
Hohensee C.
Holford T.R.
Holly E.A.
Hong Y.-C.
Hoover R.N.
Horn-Ross P.L.
Hosain G.M.M.
Hosgood H.D.
III, Hsiao C.-F.
Hu N.
Hu W.
Hu Z.
Huang M.-S.
Huerta J.-M.
Hung J.-Y.
Hutchinson A.
Inskip P.D.
Jackson R.D.
Jacobs E.J.
Jenab M.
Jeon H.-S.
Ji B.-T.
Jin G.
Jin L.
Johansen C.
Johnson A.
Jung Y.J.
Kaaks R.
Kamineni A.
Kane E.
Kang C.H.
Karagas M.R.
Kelly R.S.
Khaw K.-T.
Kim C.
Kim H.N.
Kim J.H.
Kim J.S.
Kim Y.H.
Kim Y.T.
Kim Y.-C.
Kitahara C.M.
Klein A.P.
Klein R.J.
Kogevinas M.
Kohno T.
Kolonel L.N.
Kooperberg C.
Kricker A.
Krogh V.
Kunitoh H.
Kurtz R.C.
Kweon S.-S.
La Croix A.
Lawrence C.
Lecanda F.
Lee V.H.F.
Li D.
Li H.
Li J.
Li Y.-J.
Li Y.
Liao L.M.
Liebow M.
Lightfoot T.
Lim W.-Y.
Lin C.-C.
Lin D.
Lindstrom S.
Linet M.S.
Link B.K.
Liu C.
Liu J.
Liu L.
Ljungberg B.
Lloreta J.
Di Lollo S.
Lu D.
Lund E.
Malats N.
Mannisto S.
Marchand L.L.
Marina N.
Masala G.
Mastrangelo G.
Matsuo K.
Maynadie M.
McKay J.
McKean-Cowdin R.
Melbye M.
Melin B.S.
Michaud D.S.
Mitsudomi T.
Monnereau A.
Montalvan R.
Moore L.E.
Mortensen L.M.
Nieters A.
North K.E.
Novak A.J.
Oberg A.L.
Offit K.
Oh I.-J.
Olson S.H.
Palli D.
Pao W.
Park I.K.
Park J.Y.
Park K.H.
Patiño-Garcia A.
Pavanello S.
Peeters P.H.M.
Perng R.-P.
Peters U.
Petersen G.M.
Picci P.
Pike M.C.
Porru S.
Prescott J.
Prokunina-Olsson L.
Qian B.
Qiao Y.-L.
Rais M.
Riboli E.
Riby J.
Risch H.A.
Rizzato C.
Rodabough R.
Roman E.
Roupret M.
Ruder A.M.
De Sanjose S.
Scelo G.
Schned A.
Schumacher F.
Schwartz K.
Schwenn M.
Scotlandi K.
Seow A.
Serra C.
Serra M.
Sesso H.D.
Setiawan V.W.
Severi G.
Severson R.K.
Shanafelt T.D.
Shen H.
Shen W.
Shin M.-H.
Shiraishi K.
Shu X.-O.
Siddiq A.
Sierrasesúmaga L.
Sihoe A.D.L.
Skibola C.F.
Smith A.
Smith M.T.
Southey M.C.
Spinelli J.J.
Staines A.
Stampfer M.
Stern M.C.
Stevens V.L.
Stolzenberg-Solomon R.S.
Su J.
Su W.-C.
Sund M.
Sung J.S.
Sung S.W.
Tan W.
Tang W.
Tardón A.
Thomas D.
Thompson C.A.
Tinker L.F.
Tirabosco R.
Tjønneland A.
Travis R.C.
Trichopoulos D.
Tsai F.-Y.
Tsai Y.-H.
Tucker M.
Turner J.
Vajdic C.M.
Vermeulen R.C.H.
Villano D.J.
Vineis P.
Virtamo J.
Visvanathan K.
Wactawski-Wende J.
Wang C.
Wang C.-L.
Wang J.-C.
Wang J.
Wei F.
Weiderpass E.
Weiner G.J.
Weinstein S.
Wentzensen N.
White E.
Witzig T.E.
Wolpin B.M.
Wong M.P.
Wu C.
Wu G.
Wu J.
Wu T.
Wu W.
Wu X.
Wu Y.-L.
Wunder J.S.
Xiang Y.-B.
Xu J.
Xu P.
PAN-CHYR YANG 
Yang T.-Y.
Ye Y.
Yin Z.
Yokota J.
Yoon H.-I.
CHONG-JEN YU 
Yu H.
Yu K.
Yuan J.-M.
Zelenetz A.
Zeleniuch-Jacquotte A.
Zhang X.-C.
Zhang Y.
Zhao X.
Zhao Z.
Zheng H.
Zheng T.
Zheng W.
Zhou B.
Zhu M.
Zucca M.
Boca S.M.
Cerhan J.R.
Ferri G.M.
Hartge P.
Hsiung C.A.
Magnani C.
Miligi L.
Morton L.M.
Smedby K.E.
Teras L.R.
Vijai J.
Wang S.S.
Brennan P.
Caporaso N.E.
Hunter D.J.
Kraft P.
Rothman N.
Silverman D.T.
Slager S.L.
Chanock S.J.
Chatterjee N.
Issue Date: 2015
Publisher: Oxford University Press
Journal Volume: 107
Journal Issue: 12
Source: Journal of the National Cancer Institute
Abstract: 
Background: Studies of related individuals have consistently demonstrated notable familial aggregation of cancer. We aim to estimate the heritability and genetic correlation attributable to the additive effects of common single-nucleotide polymorphisms (SNPs) for cancer at 13 anatomical sites. Methods: Between 2007 and 2014, the US National Cancer Institute has generated data from genome-wide association studies (GWAS) for 49 492 cancer case patients and 34 131 control patients. We apply novel mixed model methodology (GCTA) to this GWAS data to estimate the heritability of individual cancers, as well as the proportion of heritability attributable to cigarette smoking in smoking-related cancers, and the genetic correlation between pairs of cancers. Results: GWAS heritability was statistically significant at nearly all sites, with the estimates of array-based heritability, hl 2, on the liability threshold (LT) scale ranging from 0.05 to 0.38. Estimating the combined heritability of multiple smoking characteristics, we calculate that at least 24% (95% confidence interval [CI] = 14% to 37%) and 7% (95% CI = 4% to 11%) of the heritability for lung and bladder cancer, respectively, can be attributed to genetic determinants of smoking. Most pairs of cancers studied did not show evidence of strong genetic correlation. We found only four pairs of cancers with marginally statistically significant correlations, specifically kidney and testes (ρ = 0.73, SE = 0.28), diffuse large B-cell lymphoma (DLBCL) and pediatric osteosarcoma (ρ = 0.53, SE = 0.21), DLBCL and chronic lymphocytic leukemia (CLL) (ρ = 0.51, SE =0.18), and bladder and lung (ρ = 0.35, SE = 0.14). Correlation analysis also indicates that the genetic architecture of lung cancer differs between a smoking population of European ancestry and a nonsmoking Asian population, allowing for the possibility that the genetic etiology for the same disease can vary by population and environmental exposures. Conclusion: Our results provide important insights into the genetic architecture of cancers and suggest new avenues for investigation.
URI: https://www.scopus.com/inward/record.uri?eid=2-s2.0-84981719326&doi=10.1093%2fjnci%2fdjv279&partnerID=40&md5=dfd5a698a1a2ca77a5a97d7d72801d72
https://scholars.lib.ntu.edu.tw/handle/123456789/558203
ISSN: 0027-8874
DOI: 10.1093/jnci/djv279
SDG/Keyword: Article; Asian; bladder cancer; childhood cancer; chronic lymphatic leukemia; controlled study; environmental exposure; esophagus cancer; European; female; genetic correlation; genetic susceptibility; genome-wide association study; heritability; human; kidney cancer; large cell lymphoma; lung cancer; major clinical study; male; malignant neoplastic disease; osteosarcoma; population exposure; priority journal; prostate cancer; single nucleotide polymorphism; smoking; testis cancer; adult; adverse effects; aged; Asian continental ancestry group; bone tumor; Caucasian; diffuse large B cell lymphoma; genetic predisposition; genetics; kidney tumor; Lung Neoplasms; middle aged; Neoplasms; statistics and numerical data; testis tumor; tissue microarray; Urinary Bladder Neoplasms; Adult; Aged; Asian Continental Ancestry Group; Bone Neoplasms; European Continental Ancestry Group; Female; Genetic Predisposition to Disease; Genome-Wide Association Study; Humans; Kidney Neoplasms; Leukemia, Lymphocytic, Chronic, B-Cell; Lung Neoplasms; Lymphoma, Large B-Cell, Diffuse; Male; Middle Aged; Neoplasms; Osteosarcoma; Polymorphism, Single Nucleotide; Smoking; Testicular Neoplasms; Tissue Array Analysis; Urinary Bladder Neoplasms
[SDGs]SDG3
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