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A genome-wide association study reveals variants in ARL15 that influence adiponectin levels

Authors :
Richards, J.B. (Brent)
Waterworth, D. (Dawn)
O'Rahilly, S. (Stephen)
Hivert, M.-F. (Marie-France)
Loos, R.J.F. (Ruth)
Perry, J.R.B. (John)
Tanaka, T. (Toshiko)
Timpson, N.J. (Nicholas)
Semple, R.K. (Robert)
Soranzo, N. (Nicole)
Song, K. (Kijoung)
Rocha, N. (Nuno)
Grundberg, E. (Elin)
Dupuis, J. (Josée)
Florez, J.C. (Jose)
Langenberg, C. (Claudia)
Prokopenko, I. (Inga)
Saxena, R. (Richa)
Sladek, R. (Rob)
Aulchenko, Y.S. (Yurii)
Evans, D.M. (David)
Waeber, G. (Gérard)
Burnett, M.S.
Sattar, N. (Naveed)
Devaney, J. (Joseph)
Willenborg, C. (Christina)
Hingorani, A. (Aroon)
Witteman, J.C.M. (Jacqueline)
Vollenweider, P. (Peter)
Glaser, B. (Beate)
Hengstenberg, C. (Christian)
Ferrucci, L. (Luigi)
Melzer, D. (David)
Stark, K. (Klaus)
Deanfield, J. (John)
Winogradow, J. (Janina)
Grassl, M. (Martina)
Hall, A.S. (Alistair)
Egan, J.M. (Josephine)
Thompson, J.R. (John)
Ricketts, S.L. (Sally)
König, I.R. (Inke)
Reinhard, W. (Wibke)
Grundy, S.M. (Scott)
Wichmann, H.E. (Heinz Erich)
Barter, P. (Phil)
Mahley, R. (Robert)
Kesaniemi, Y.A. (Antero)
Rader, D.J. (Daniel)
Reilly, M.P. (Muredach)
Epstein, S.E. (Stephen)
Stewart, A.F.R. (Alexandre)
Tikka-Kleemola, P. (Päivi)
Schunkert, H. (Heribert)
Burling, K.A. (Keith)
Erdmann, J. (Jeanette)
Deloukas, P. (Panagiotis)
Pastinen, T. (Tomi)
Samani, N.J. (Nilesh)
McPherson, R. (Ruth)
Smith, A.V. (Davey)
Frayling, T.M. (Timothy)
Wareham, N.J. (Nick)
Meigs, J.B. (James)
Mooser, V. (Vincent)
Spector, T.D. (Timothy)
Richards, J.B. (Brent)
Waterworth, D. (Dawn)
O'Rahilly, S. (Stephen)
Hivert, M.-F. (Marie-France)
Loos, R.J.F. (Ruth)
Perry, J.R.B. (John)
Tanaka, T. (Toshiko)
Timpson, N.J. (Nicholas)
Semple, R.K. (Robert)
Soranzo, N. (Nicole)
Song, K. (Kijoung)
Rocha, N. (Nuno)
Grundberg, E. (Elin)
Dupuis, J. (Josée)
Florez, J.C. (Jose)
Langenberg, C. (Claudia)
Prokopenko, I. (Inga)
Saxena, R. (Richa)
Sladek, R. (Rob)
Aulchenko, Y.S. (Yurii)
Evans, D.M. (David)
Waeber, G. (Gérard)
Burnett, M.S.
Sattar, N. (Naveed)
Devaney, J. (Joseph)
Willenborg, C. (Christina)
Hingorani, A. (Aroon)
Witteman, J.C.M. (Jacqueline)
Vollenweider, P. (Peter)
Glaser, B. (Beate)
Hengstenberg, C. (Christian)
Ferrucci, L. (Luigi)
Melzer, D. (David)
Stark, K. (Klaus)
Deanfield, J. (John)
Winogradow, J. (Janina)
Grassl, M. (Martina)
Hall, A.S. (Alistair)
Egan, J.M. (Josephine)
Thompson, J.R. (John)
Ricketts, S.L. (Sally)
König, I.R. (Inke)
Reinhard, W. (Wibke)
Grundy, S.M. (Scott)
Wichmann, H.E. (Heinz Erich)
Barter, P. (Phil)
Mahley, R. (Robert)
Kesaniemi, Y.A. (Antero)
Rader, D.J. (Daniel)
Reilly, M.P. (Muredach)
Epstein, S.E. (Stephen)
Stewart, A.F.R. (Alexandre)
Tikka-Kleemola, P. (Päivi)
Schunkert, H. (Heribert)
Burling, K.A. (Keith)
Erdmann, J. (Jeanette)
Deloukas, P. (Panagiotis)
Pastinen, T. (Tomi)
Samani, N.J. (Nilesh)
McPherson, R. (Ruth)
Smith, A.V. (Davey)
Frayling, T.M. (Timothy)
Wareham, N.J. (Nick)
Meigs, J.B. (James)
Mooser, V. (Vincent)
Spector, T.D. (Timothy)
Publication Year :
2009

Abstract

The adipocyte-derived protein adiponectin is highly heritable and inversely associated with risk of type 2 diabetes mellitus (T2D) and coronary heart disease (CHD). We meta-analyzed 3 genome-wide association studies for circulating adiponectin levels (n = 8,531) and sought validation of the lead single nucleotide polymorphisms (SNPs) in 5 additional cohorts (n = 6,202). Five SNPs were genome-wide significant in their relationship with adiponectin (P≤5×10-8). We then tested whether these 5 SNPs were associated with risk of T2D and CHD using a Bonferroni-corrected threshold of P≤0.011 to declare statistical significance for these disease associations. SNPs at the adiponectin-encoding ADIPOQ locus demonstrated the strongest associations with adiponectin levels (P-combined = 9.2×10-19for lead SNP, rs266717, n = 14,733). A novel variant in the ARL15 (ADP-ribosylation factor-like 15) gene was associated with lower circulating levels of adiponectin (rs4311394-G, P-combined = 2.9×10-8, n = 14,733). This same risk allele at ARL15 was also associated with a higher risk of CHD (odds ratio [OR] = 1.12, P = 8.5×10-6, n = 22,421) more nominally, an increased risk of T2D (OR = 1.11, P = 3.2×10-3, n = 10,128), and several metabolic traits. Expression studies in humans indicated that ARL15 is well-expressed in skeletal

Details

Database :
OAIster
Notes :
application/pdf, P L o S Genetics (Print) vol. 5 no. 12, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn929963820
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1371.journal.pgen.1000768