Please use this identifier to cite or link to this item: http://repository.kln.ac.lk/handle/123456789/18874
Title: Novel genetic associations for blood pressure identified via gene-alcohol interaction in up to 570K individuals across multiple ancestries
Authors: Feitosa, M.F.
Kraja, A.T.
Chasman, D.I.
Sung, Y.J.
Winkler, T.W.
Ntalla, I.
Guo, X.
Franceschini, N.
Cheng, C.Y.
Sim, X.
Vojinovic, D.
Marten, J.
Musani, S.K.
Li, C.
Bentley, A.R.
Brown, M.R.
Scwander, K.
Richard, M.A.
Noordam, R.
Aschard, H.
Bartz, T.M.
Bielak, L.F.
Dorajoo, R.
Fishaer, V.
Hartwig, F.P.
Horimoto, A.R.V.R.
Lohman, K.K.
Manning, A.K.
Rankinen, T.
Smith, A.V.
Tajiddin, S.M.
Wojczynski, M.K.
Alver, M.
Boissel, M.
Cai, Q.
Campbell, A.
Chai, J.F.
Chen, X.
Divers, J.
Gao, C.
Goel, A.
Hagemeijer, Y.
Harris, S.E.
He, M.
Hsu, F.C.
Jackson, A.U.
Kahonen, M.
Kasturiratne, A.
Komulainen, P.
Kuhnel, B.
Laguzzi, F.
Luan, J.
Matoba, N.
Nolte, I.M.
Padmanabhan, S.
Riaz, M.
Rueedi, R.
Robino, A.
Said, M.A.
Scott, R.A.
Soffer, T.
Stancakova, A.
Takeuchi, F.
Tayo, B.O.
van de Most, P.J.
Varga, T.V.
Vitart, V.
Wang, Y.
Ware, E.B.
Warren, H.R.
Weiss, S.
Wen, W.
Yanek, L.R.
Zhang, W.
Zhao, J.H.
Afaq, S.
Amin, N.
Amini, M.
Arking, D.E.
Aung, T.
Boerwinkle, E.
Borecki, I.
Broecki, I.
Broeckel, U.
Brown, M.
Brumat, M.
Burke, G.L.
Canouil, M.
Chakravarthi, A.
Charumathi, S.
Ida Chen, Y.D.
Connel, J.M.
Correa, A.
de Las Fuentes, L.
de Mutsert, R.
de Silva, H.J.
Deng, X.
Ding, J.
Duan, Q.
Eaton, C.B.
Ehret, G.
Eppinga, R.N.
Evangelou, E.
Faul, J.D.
Felix, S.B.
Forouhi, N.G.
Forrester, T.
Franco, O.H.
Friedlander, Y.
Gandin, I.
Gao, H.
Ghanbari, M.
Gigante, B.
Gu, C.C.
Gu, D.
Hagenaars, S.P.
Halmans, G.
Harris, T.B.
He, J.
Heikkinen, S.
Heng, C.K.
Hirata, M.
Howard, B.V.
Ikram, M.A.
InterAct Consortium
John, U.
Katsuya, T.
Lakka, T.A.
Langefeld, C.D.
Langenberg, C.
Launer, L.J.
Lehne, B.
Lewis, C.E.
Li, Y.
Lin, S.
Lin, U.
Liu, J.
Liu, J.
Loh, M.
Louie, T.
Magi, R.
McKenzie, C.A.
Meitinger, T.
Metspalu, A.
Milaneschi, Y.
Milani, L.
mohlke, K.L.
Momozawa, Y.
Nalls, M.A.
Nelson, C.P.
Sotoodehnia, N.
Norris, J.M.
O'Connel, J.R.
Palmer, N.D.
Perls, T.
Pedersen, N.L.
Peters, A.
Peyser, P.A.
Poulter, N.
Raffel, L.J.
Raitakari, O.T.
Roll, K.
Rose, L.M.
Rosendaal, F.R.
Rotter, J.I.
Schimidit, C.O.
Schreiner, P.J.
Schupf, N.
Scott, W.R.
Sever, P.S.
Shi, Y.
Sidney, S.
Sims, M.
Sitlani, C.M.
Smith, J.A.
Snieder, H.
Starr, J.M.
Strauch, K.
Stringham, H.M.
Tan, N.Y.Q.
Tang, H.
Taylor, K.D.
Teo, Y.Y.
Tham, Y.C.
Turner, S.C.
Uitterlinden, A.G.
Vollenweider, P.
Waldenberger, M.
Wang, L.
Wang, Y.X.
Wei, W.B.
Williams, C.
Yao, J.
Yuan, J.M.
Zhao, W.
Zonderman, A.B.
Becker, D.M.
Boehnke, M.
Bowden, D.W.
Chambers, J.C.
Deary, I.J.
Esco, T.
Farall, M.
Frankd, P.W.
Freedman, B.I.
Froguel, P.
Gasparini, P.
Gieger, C.
Jonas, J.B.
Kamatani, Y.
Kato, N.
Kooner, J.S.
Kutalik, Z.
Laakso, M.
Laurie, C.C.
Leander, K.
Lehtimaki, T.
Study, L.C.
Magnusson, P.K.E.
Olderhinkel, A.J.
Penninx, B.W.J.H.
Polasek, O.
Porteous, D.J.
Rauramaa, R.
Ssamani, N.J.
Scott, J.
Shu, X.O.
van der Harst, P.
Wagenknecht, L.E.
Wareham, N.J.
Watkins, H.
Weir, D.R.
Wickremasinghe, A.R.
Wu, T.
Zheng, W.
Bouchard, C.
Christensen, K.
Evans, M.K.
Gudnason, V.
Horta, B.L.
Kardia, S.L.R.
Liu, Y.
Pereira, A.C.
Psaty, B.M.
Ridker, P.M.
van Dam, R.M.
Gauderman, W.J.
Zhu, X.
Mook-Kanamori, D.O.
Fornage, M.
Rotimi, C.N.
Cupples, L.A.
Kelly, T.N.
Fox, E.R.
Hayward, C.
van Duijn, C.M.
Tai, E.S.
Wong, T.Y.
Kooperberg, C.
Palmas, W.
Rice, K.
Morrison, A.C.
Elliott, P.
Caulfield, M.J.
Munroe, P.B.
Rao, D.C.
Province, M.A.
Levy, D.
Keywords: Alcohol Drinking
Blood Pressure-genetics
Hypertension-epidemiology
Hypertension-genetics
Polymorphism, Single Nucleotide
Cohort Studies
Issue Date: 2018
Publisher: Public Library of Science
Citation: PLoS one.2018;13(6):e0198166
Abstract: Heavy alcohol consumption is an established risk factor for hypertension; the mechanism by which alcohol consumption impact blood pressure (BP) regulation remains unknown. We hypothesized that a genome-wide association study accounting for gene-alcohol consumption interaction for BP might identify additional BP loci and contribute to the understanding of alcohol-related BP regulation. We conducted a large two-stage investigation incorporating joint testing of main genetic effects and single nucleotide variant (SNV)-alcohol consumption interactions. In Stage 1, genome-wide discovery meta-analyses in ≈131K individuals across several ancestry groups yielded 3,514 SNVs (245 loci) with suggestive evidence of association (P < 1.0 x 10-5). In Stage 2, these SNVs were tested for independent external replication in ≈440K individuals across multiple ancestries. We identified and replicated (at Bonferroni correction threshold) five novel BP loci (380 SNVs in 21 genes) and 49 previously reported BP loci (2,159 SNVs in 109 genes) in European ancestry, and in multi-ancestry meta-analyses (P < 5.0 x 10-8). For African ancestry samples, we detected 18 potentially novel BP loci (P < 5.0 x 10-8) in Stage 1 that warrant further replication. Additionally, correlated meta-analysis identified eight novel BP loci (11 genes). Several genes in these loci (e.g., PINX1, GATA4, BLK, FTO and GABBR2) have been previously reported to be associated with alcohol consumption. These findings provide insights into the role of alcohol consumption in the genetic architecture of hypertension
Description: Indexed In MEDLINE
URI: http://repository.kln.ac.lk/handle/123456789/18874
ISSN: 1932-6203 (Electronic)
1932-6203 (Linking)
Appears in Collections:Journal/Magazine Articles

Files in This Item:
File Description SizeFormat 
pone.0198166.pdf3.1 MBAdobe PDFView/Open


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.