학술논문

Meta-analysis uncovers genome-wide significant variants for rapid kidney function decline
Document Type
article
Author
Gorski, MathiasJung, BettinaLi, YongMatias-Garcia, Pamela RWuttke, MatthiasCoassin, StefanThio, Chris HLKleber, Marcus EWinkler, Thomas WWanner, VeronikaChai, Jin-FangChu, Audrey YCocca, MassimilianoFeitosa, Mary FGhasemi, SaharHoppmann, AnselmHorn, KatrinLi, ManNutile, TeresaScholz, MarkusSieber, Karsten BTeumer, AlexanderTin, AdrienneWang, JudyTayo, Bamidele OAhluwalia, Tarunveer SAlmgren, PeterBakker, Stephan JLBanas, BernhardBansal, NishaBiggs, Mary LBoerwinkle, EricBottinger, Erwin PBrenner, HermannCarroll, Robert JChalmers, JohnChee, Miao-LiChee, Miao-LingCheng, Ching-YuCoresh, Josefde Borst, Martin HDegenhardt, FraukeEckardt, Kai-UweEndlich, KarlhansFranke, AndreFreitag-Wolf, SandraGampawar, PiyushGansevoort, Ron TGhanbari, MohsenGieger, ChristianHamet, PavelHo, KevinHofer, EdithHolleczek, BerndFoo, Valencia Hui XianHutri-Kähönen, NinaHwang, Shih-JenIkram, M ArfanJosyula, Navya ShilpaKähönen, MikaKhor, Chiea-ChuenKoenig, WolfgangKramer, HollyKrämer, Bernhard KKühnel, BrigitteLange, Leslie ALehtimäki, TerhoLieb, WolfgangLoos, Ruth JFLukas, Mary AnnLyytikäinen, Leo-PekkaMeisinger, ChristaMeitinger, ThomasMelander, OlleMilaneschi, YuriMishra, Pashupati PMononen, NinaMychaleckyj, Josyf CNadkarni, Girish NNauck, MatthiasNikus, KjellNing, BotingNolte, Ilja MO’Donoghue, Michelle LOrho-Melander, MarjuPendergrass, Sarah APenninx, Brenda WJHPreuss, Michael HPsaty, Bruce MRaffield, Laura MRaitakari, Olli TRettig, RainerRheinberger, MyriamRice, Kenneth MRosenkranz, Alexander RRossing, PeterRotter, Jerome ISabanayagam, CharumathiSchmidt, HelenaSchmidt, Reinhold
Source
Kidney International. 99(4)
Subject
Biomedical and Clinical Sciences
Clinical Sciences
Prevention
Human Genome
Kidney Disease
Rare Diseases
Genetics
Aetiology
2.1 Biological and endogenous factors
Renal and urogenital
AMP-Activated Protein Kinases
Creatinine
Genome-Wide Association Study
Glomerular Filtration Rate
Humans
Kidney
Protein Disulfide-Isomerases
United Kingdom
acute kidney injury
end-stage kidney disease
genome-wide association study
rapid eGFRcrea decline
Lifelines Cohort Study
Regeneron Genetics Center
Urology & Nephrology
Clinical sciences
Language
Abstract
Rapid decline of glomerular filtration rate estimated from creatinine (eGFRcrea) is associated with severe clinical endpoints. In contrast to cross-sectionally assessed eGFRcrea, the genetic basis for rapid eGFRcrea decline is largely unknown. To help define this, we meta-analyzed 42 genome-wide association studies from the Chronic Kidney Diseases Genetics Consortium and United Kingdom Biobank to identify genetic loci for rapid eGFRcrea decline. Two definitions of eGFRcrea decline were used: 3 mL/min/1.73m2/year or more ("Rapid3"; encompassing 34,874 cases, 107,090 controls) and eGFRcrea decline 25% or more and eGFRcrea under 60 mL/min/1.73m2 at follow-up among those with eGFRcrea 60 mL/min/1.73m2 or more at baseline ("CKDi25"; encompassing 19,901 cases, 175,244 controls). Seven independent variants were identified across six loci for Rapid3 and/or CKDi25: consisting of five variants at four loci with genome-wide significance (near UMOD-PDILT (2), PRKAG2, WDR72, OR2S2) and two variants among 265 known eGFRcrea variants (near GATM, LARP4B). All these loci were novel for Rapid3 and/or CKDi25 and our bioinformatic follow-up prioritized variants and genes underneath these loci. The OR2S2 locus is novel for any eGFRcrea trait including interesting candidates. For the five genome-wide significant lead variants, we found supporting effects for annual change in blood urea nitrogen or cystatin-based eGFR, but not for GATM or LARP4B. Individuals at high compared to those at low genetic risk (8-14 vs. 0-5 adverse alleles) had a 1.20-fold increased risk of acute kidney injury (95% confidence interval 1.08-1.33). Thus, our identified loci for rapid kidney function decline may help prioritize therapeutic targets and identify mechanisms and individuals at risk for sustained deterioration of kidney function.