An Expanded Genome-Wide Association Study of Type 2 Diabetes in Europeans.
Authors
Scott, Robert A
Scott, Laura J
Mägi, Reedik
Marullo, Letizia
Gaulton, Kyle J
Kaakinen, Marika
Pervjakova, Natalia
Pers, Tune H
Johnson, Andrew D
Eicher, John D
Jackson, Anne U
Ferreira, Teresa
Lee, Yeji
Ma, Clement
Steinthorsdottir, Valgerdur
Thorleifsson, Gudmar
Qi, Lu
Van Zuydam, Natalie R
Mahajan, Anubha
Chen, Han
Almgren, Peter
Voight, Ben F
Grallert, Harald
Müller-Nurasyid, Martina
Ried, Janina S
Rayner, Nigel W
Robertson, Neil
Karssen, Lennart C
van Leeuwen, Elisabeth M
Willems, Sara M
Fuchsberger, Christian
Kwan, Phoenix
Teslovich, Tanya M
Chanda, Pritam
Li, Man
Lu, Yingchang
Dina, Christian
Thuillier, Dorothee
Yengo, Loic
Jiang, Longda
Sparso, Thomas
Kestler, Hans A
Chheda, Himanshu
Eisele, Lewin
Gustafsson, Stefan
Frånberg, Mattias
Strawbridge, Rona J
Benediktsson, Rafn
Hreidarsson, Astradur B
Kong, Augustine
Sigurðsson, Gunnar
Kerrison, Nicola D
Liang, Liming
Meitinger, Thomas
Roden, Michael
Thorand, Barbara
Esko, Tõnu
Mihailov, Evelin
Fox, Caroline
Liu, Ching-Ti
Rybin, Denis
Isomaa, Bo
Lyssenko, Valeriya
Tuomi, Tiinamaija
Couper, David J
Pankow, James S
Grarup, Niels
Have, Christian T
Jørgensen, Marit E
Jørgensen, Torben
Linneberg, Allan
Cornelis, Marilyn C
van Dam, Rob M
Hunter, David J
Kraft, Peter
Sun, Qi
Edkins, Sarah
Owen, Katharine R
Wood, Andrew R
Zeggini, Eleftheria
Tajes-Fernandes, Juan
Abecasis, Goncalo R
Bonnycastle, Lori L
Chines, Peter S
Stringham, Heather M
Koistinen, Heikki A
Kinnunen, Leena
Sennblad, Bengt
Mühleisen, Thomas W
Nöthen, Markus M
Pechlivanis, Sonali
Baldassarre, Damiano
Gertow, Karl
Humphries, Steve E
Tremoli, Elena
Klopp, Norman
Meyer, Julia
Steinbach, Gerald
Wennauer, Roman
Eriksson, Johan G
Mӓnnistö, Satu
Peltonen, Leena
Tikkanen, Emmi
Charpentier, Guillaume
Eury, Elodie
Lobbens, Stéphane
Gigante, Bruna
Leander, Karin
McLeod, Olga
Bottinger, Erwin P
Gottesman, Omri
Ruderfer, Douglas
Blüher, Matthias
Kovacs, Peter
Tonjes, Anke
Maruthur, Nisa M
Scapoli, Chiara
Erbel, Raimund
Jöckel, Karl-Heinz
Moebus, Susanne
de Faire, Ulf
Hamsten, Anders
Stumvoll, Michael
Deloukas, Panagiotis
Donnelly, Peter J
Frayling, Timothy M
Hattersley, Andrew T
Ripatti, Samuli
Salomaa, Veikko
Pedersen, Nancy L
Boehm, Bernhard O
Bergman, Richard N
Collins, Francis S
Mohlke, Karen L
Tuomilehto, Jaakko
Hansen, Torben
Pedersen, Oluf
Lannfelt, Lars
Ingelsson, Erik
Lind, Lars
Lindgren, Cecilia M
Cauchi, Stephane
Froguel, Philippe
Loos, Ruth JF
Balkau, Beverley
Boeing, Heiner
Franks, Paul W
Barricarte Gurrea, Aurelio
Palli, Domenico
van der Schouw, Yvonne T
Altshuler, David
Groop, Leif C
Sijbrands, Eric
van Duijn, Cornelia M
Florez, Jose C
Meigs, James B
Boerwinkle, Eric
Gieger, Christian
Strauch, Konstantin
Metspalu, Andres
Morris, Andrew D
Palmer, Colin NA
Hu, Frank B
Thorsteinsdottir, Unnur
Stefansson, Kari
Dupuis, Josée
Morris, Andrew P
Boehnke, Michael
McCarthy, Mark I
Prokopenko, Inga
DIAbetes Genetics Replication And Meta-analysis (DIAGRAM) Consortium,
Publication Date
2017-11-01Journal Title
Diabetes
ISSN
0012-1797
Publisher
American Diabetes Association
Volume
66
Issue
11
Pages
2888-2902
Language
eng
Type
Article
This Version
AM
Metadata
Show full item recordCitation
Scott, R. A., Scott, L. J., Mägi, R., Marullo, L., Gaulton, K. J., Kaakinen, M., Pervjakova, N., et al. (2017). An Expanded Genome-Wide Association Study of Type 2 Diabetes in Europeans.. Diabetes, 66 (11), 2888-2902. https://doi.org/10.2337/db16-1253
Abstract
To characterize type 2 diabetes (T2D)-associated variation across the allele frequency spectrum, we conducted a meta-analysis of genome-wide association data from 26,676 T2D case and 132,532 control subjects of European ancestry after imputation using the 1000 Genomes multiethnic reference panel. Promising association signals were followed up in additional data sets (of 14,545 or 7,397 T2D case and 38,994 or 71,604 control subjects). We identified 13 novel T2D-associated loci (P < 5 × 10(-8)), including variants near the GLP2R, GIP, and HLA-DQA1 genes. Our analysis brought the total number of independent T2D associations to 128 distinct signals at 113 loci. Despite substantially increased sample size and more complete coverage of low-frequency variation, all novel associations were driven by common single nucleotide variants. Credible sets of potentially causal variants were generally larger than those based on imputation with earlier reference panels, consistent with resolution of causal signals to common risk haplotypes. Stratification of T2D-associated loci based on T2D-related quantitative trait associations revealed tissue-specific enrichment of regulatory annotations in pancreatic islet enhancers for loci influencing insulin secretion and in adipocytes, monocytes, and hepatocytes for insulin action-associated loci. These findings highlight the predominant role played by common variants of modest effect and the diversity of biological mechanisms influencing T2D pathophysiology.
Sponsorship
Please refer to the manuscript or visit the publisher's website for funding infomation.
Funder references
MRC (MC_UU_12015/1)
MRC (MC_UU_12015/2)
Department of Health (via National Institute for Health Research (NIHR)) (NF-SI-0512-10135)
MRC (MC_PC_13046)
MRC (MC_PC_13048)
MRC (unknown)
Identifiers
External DOI: https://doi.org/10.2337/db16-1253
This record's URL: https://www.repository.cam.ac.uk/handle/1810/269682
Rights
Licence:
http://www.rioxx.net/licenses/all-rights-reserved

