TY - JOUR
T1 - Genome-wide association analyses identify 143 risk variants and putative regulatory mechanisms for type 2 diabetes
AU - eQTLGen Consortium
AU - Xue, Angli
AU - Wu, Yang
AU - Zhu, Zhihong
AU - Zhang, Futao
AU - Kemper, Kathryn E.
AU - Zheng, Zhili
AU - Yengo, Loic
AU - Lloyd-Jones, Luke R.
AU - Sidorenko, Julia
AU - Wu, Yeda
AU - Agbessi, Mawussé
AU - Ahsan, Habibul
AU - Alves, Isabel
AU - Andiappan, Anand
AU - Awadalla, Philip
AU - Battle, Alexis
AU - Beutner, Frank
AU - Bonder, Marc Jan J.
AU - Boomsma, Dorret
AU - Christiansen, Mark
AU - Claringbould, Annique
AU - Deelen, Patrick
AU - Esko, Tõnu
AU - Favé, Marie Julie
AU - Franke, Lude
AU - Frayling, Timothy
AU - Gharib, Sina
AU - Gibson, Gregory
AU - Hemani, Gibran
AU - Jansen, Rick
AU - Kähönen, Mika
AU - Kalnapenkis, Anette
AU - Kasela, Silva
AU - Kettunen, Johannes
AU - Kim, Yungil
AU - Kirsten, Holger
AU - Kovacs, Peter
AU - Krohn, Knut
AU - Kronberg-Guzman, Jaanika
AU - Kukushkina, Viktorija
AU - Kutalik, Zoltan
AU - Lee, Bernett
AU - Lehtimäki, Terho
AU - Loeffler, Markus
AU - Marigorta, Urko M.
AU - Metspalu, Andres
AU - Milani, Lili
AU - Müller-Nurasyid, Martina
AU - Nauck, Matthias
AU - Ring, Susan
PY - 2018/7/27
Y1 - 2018/7/27
N2 - Type 2 diabetes (T2D) is a very common disease in humans. Here we conduct a meta-analysis of genome-wide association studies (GWAS) with ~16 million genetic variants in 62,892 T2D cases and 596,424 controls of European ancestry. We identify 139 common and 4 rare variants associated with T2D, 42 of which (39 common and 3 rare variants) are independent of the known variants. Integration of the gene expression data from blood (n = 14,115 and 2765) with the GWAS results identifies 33 putative functional genes for T2D, 3 of which were targeted by approved drugs. A further integration of DNA methylation (n = 1980) and epigenomic annotation data highlight 3 genes (CAMK1D, TP53INP1, and ATP5G1) with plausible regulatory mechanisms, whereby a genetic variant exerts an effect on T2D through epigenetic regulation of gene expression. Our study uncovers additional loci, proposes putative genetic regulatory mechanisms for T2D, and provides evidence of purifying selection for T2D-associated variants.
AB - Type 2 diabetes (T2D) is a very common disease in humans. Here we conduct a meta-analysis of genome-wide association studies (GWAS) with ~16 million genetic variants in 62,892 T2D cases and 596,424 controls of European ancestry. We identify 139 common and 4 rare variants associated with T2D, 42 of which (39 common and 3 rare variants) are independent of the known variants. Integration of the gene expression data from blood (n = 14,115 and 2765) with the GWAS results identifies 33 putative functional genes for T2D, 3 of which were targeted by approved drugs. A further integration of DNA methylation (n = 1980) and epigenomic annotation data highlight 3 genes (CAMK1D, TP53INP1, and ATP5G1) with plausible regulatory mechanisms, whereby a genetic variant exerts an effect on T2D through epigenetic regulation of gene expression. Our study uncovers additional loci, proposes putative genetic regulatory mechanisms for T2D, and provides evidence of purifying selection for T2D-associated variants.
UR - http://www.scopus.com/inward/record.url?scp=85050718439&partnerID=8YFLogxK
U2 - 10.1038/s41467-018-04951-w
DO - 10.1038/s41467-018-04951-w
M3 - Article (Academic Journal)
C2 - 30054458
AN - SCOPUS:85050718439
SN - 2041-1723
VL - 9
JO - Nature Communications
JF - Nature Communications
M1 - 2941
ER -