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An Expanded Genome-Wide Association Study of Type 2 Diabetes in Europeans

Authors
Robert Scott,Laura Scott
Reedik Mägi,Letizia Marullo,Kyle Gaulton,Marika Kaakinen,Natalia Pervjakova,Tune Pers,Andrew Johnson,John Eicher,Anne Jackson,Teresa Ferreira,Yeji Lee,Clement Ma,Valgerður Steinthórsdóttir,Guðmar Þorleifsson,Lu Qi,Natalie Zuydam,Anubha Mahajan,Han Chen,Peter Almgren,Benjamin Voight,Harald Grallert,Martina Müller‐Nurasyid,Harriëtte Riese,Nigel Rayner,Neil Robertson,Lennart Karssen,Elisabeth Leeuwen,Sara Willems,Christian Fuchsberger,Phoenix Kwan,Jan Staessen,Pritam Chanda,Man Li,Yingchang Lu,Christian Dina,Dorothée Thuillier,Loïc Yengo,Longda Jiang,Thomas Sparsø,Hans Kestler,Himanshu Chheda,Lewin Eisele,Stefan Gustafsson,Mattias Frånberg,Rona Strawbridge,Rafn Benediktsson,Ástráður Hreiðarsson,Augustine Kong,Gunnar Sigurðsson,Tomohiro Katsuya,Jian’an Luan,Ming‐Huei Chen,Thomas Meitinger,Michael Roden,Barbara Thorand,Tõnu Esko,Caroline Hayward,Yongmei Liu,Denis Rybin,Bo Isomaa,Valeriya Lyssenko,Jaakko Tuomilehto,David Couper,James Pankow,Niels Grarup,Christian Have,Marit Jørgensen,Torben Jørgensen,Allan Linneberg,Marilyn Cornelis,Rob Dam,David Hunter,Peter Kraft,Qi Sun,Sarah Edkins,Katharine Owen,John Perry,Andrew Wood,Eleftheria Zeggini,Juan Tajes-Fernandes,Gonçalo Abecasis,Lori Bonnycastle,Inês Barroso,Heather Stringham,Heikki Koistinen,Leena Kinnunen,Bengt Sennblad,Thomas Mühleisen,Markus Nöthen,Sonali Pechlivanis,Damiano Baldassarre,Karl Gertow,Steve Humphries,Elena Tremoli,Norman Klopp,Julia Meyer,Gerald Steinbach,Roman Wennauer,Johan Eriksson,Satu Männistö,Leena Peltonen,Emmi Tikkanen,G. Charpentier,Elodie Eury,Stéphane Lobbens,Bruna Gigante,Karin Leander,Olga McLeod,Erwin Böttinger,Omri Gottesman,Douglas Ruderfer,Matthias Blüher,Péter Kovács,Anke Tönjes,Nisa Maruthur,Chiara Scapoli,Raimund Erbel,Karl‐Heinz Jöckel,Susanne Moebus,Ulf Fairé,Anders Hamsten,Michael Stümvoll,Panos Deloukas,Peter Donnelly,Timothy Frayling,Andrew Hattersley,Samuli Ripatti,Veikko Salomaa,Nancy Pedersen,Bernhard Boehm,Richard Bergman,Francis Collins,Karen Mohlke,Torben Hansen,Oluf Pedersen,Patrik Magnusson,Erik Ingelsson,Lars Lind,Cecilia Lindgren,Stéphane Cauchi,Philippe Froguel,Ruth Loos,Giovanni Gambaro,Heiner Boeing,Paul Franks,Aurelio Gurrea,Domenico Palli,Yvonne Schouw,David Green,Leif Groop,Claudia Langenberg,Nicholas Wareham,Eric Sijbrands,Cornelia Duijn,José Florez,James Meigs,Eric Boerwinkle,Christian Gieger,Konstantin Strauch,Andres Metspalu,Andrew Morris,Colin Palmer,Frank Hu,Unnur Þorsteinsdóttir,Kāri Stefánsson,Josée Dupuis,Michael Boehnke,Mark McCarthy,Inga Prokopenko,Hannu Koistinen,Ming-Huei Chen,Evelin Mihailov
+172 authors
,Ching‐Ti Liu
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May 31, 2017
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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.

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