학술논문

A Genome-Wide Association Study of Diabetic Kidney Disease in Subjects With Type 2 Diabetes
Document Type
article
Author
van Zuydam, Natalie RAhlqvist, EmmaSandholm, NiinaDeshmukh, HarshalRayner, N WilliamAbdalla, MoustafaLadenvall, ClaesZiemek, DanielFauman, EricRobertson, Neil RMcKeigue, Paul MValo, ErkkaForsblom, CarolHarjutsalo, ValmaPerna, AnnalisaRurali, EricaMarcovecchio, M LoredanaIgo, Robert PSalem, Rany MPerico, NorbertoLajer, MariaKäräjämäki, AnnemariImamura, MinakoKubo, MichiakiTakahashi, AtsushiSim, XuelingLiu, Jianjunvan Dam, Rob MJiang, GuozhiTam, Claudia HTLuk, Andrea OYLee, Heung ManLim, Cadmon KPSzeto, Cheuk ChunSo, Wing YeeChan, Juliana CNAng, Su FenDorajoo, RajkumarWang, LingClara, Tan Si HuaMcKnight, Amy-JayneDuffy, SeamusPezzolesi, Marcus GMarre, MichelGyorgy, BeataHadjadj, SamyHiraki, Linda TAhluwalia, Tarunveer SAlmgren, PeterSchulz, Christina-AlexandraOrho-Melander, MarjuLinneberg, AllanChristensen, CramerWitte, Daniel RGrarup, NielsBrandslund, IvanMelander, OllePaterson, Andrew DTregouet, DavidMaxwell, Alexander PLim, Su ChiMa, Ronald CWTai, E ShyongMaeda, ShiroLyssenko, ValeriyaTuomi, TiinamaijaKrolewski, Andrzej SRich, Stephen SHirschhorn, Joel NFlorez, Jose CDunger, DavidPedersen, OlufHansen, TorbenRossing, PeterRemuzzi, GiuseppeBrosnan, Mary JuliaPalmer, Colin NAGroop, Per-HenrikColhoun, Helen MGroop, Leif CMcCarthy, Mark IKoivula, SUggeldahl, TForslund, THalonen, AKoistinen, AKoskiaho, PLaukkanen, MSaltevo, JTiihonen, MForsen, MGranlund, HJonsson, A-CNyroos, BKinnunen, POrvola, ASalonen, TVähänen, APaldanius, Kotka RRiihelä, M
Source
Diabetes. 67(7)
Subject
Diabetes
Genetics
Human Genome
Aetiology
2.1 Biological and endogenous factors
Metabolic and endocrine
Good Health and Well Being
Adult
Aged
Aged
80 and over
Case-Control Studies
Diabetes Mellitus
Type 2
Diabetic Nephropathies
Female
Genetic Predisposition to Disease
Genome-Wide Association Study
Humans
Kidney Failure
Chronic
Male
Middle Aged
Polymorphism
Single Nucleotide
Renal Insufficiency
Chronic
Finnish Diabetic Nephropathy Study
Hong Kong Diabetes Registry Theme-based Research Scheme Project Group
Warren 3 and Genetics of Kidneys in Diabetes (GoKinD) Study Group
GENIE (GEnetics of Nephropathy an International Effort) Consortium
Diabetes Control and Complications Trial (DCCT)/Epidemiology of Diabetes Interventions and Complications (EDIC) Research Group
SUrrogate markers for Micro- and Macrovascular hard endpoints for Innovative diabetes Tools (SUMMIT) Consortium
Medical and Health Sciences
Endocrinology & Metabolism
Language
Abstract
Identification of sequence variants robustly associated with predisposition to diabetic kidney disease (DKD) has the potential to provide insights into the pathophysiological mechanisms responsible. We conducted a genome-wide association study (GWAS) of DKD in type 2 diabetes (T2D) using eight complementary dichotomous and quantitative DKD phenotypes: the principal dichotomous analysis involved 5,717 T2D subjects, 3,345 with DKD. Promising association signals were evaluated in up to 26,827 subjects with T2D (12,710 with DKD). A combined T1D+T2D GWAS was performed using complementary data available for subjects with T1D, which, with replication samples, involved up to 40,340 subjects with diabetes (18,582 with DKD). Analysis of specific DKD phenotypes identified a novel signal near GABRR1 (rs9942471, P = 4.5 × 10-8) associated with microalbuminuria in European T2D case subjects. However, no replication of this signal was observed in Asian subjects with T2D or in the equivalent T1D analysis. There was only limited support, in this substantially enlarged analysis, for association at previously reported DKD signals, except for those at UMOD and PRKAG2, both associated with estimated glomerular filtration rate. We conclude that, despite challenges in addressing phenotypic heterogeneity, access to increased sample sizes will continue to provide more robust inference regarding risk variant discovery for DKD.