Genome-wide association meta-analyses and fine-mapping elucidate pathways influencing albuminuria

Author:

Teumer AlexanderORCID,Li YongORCID,Ghasemi Sahar,Prins Bram P.,Wuttke MatthiasORCID,Hermle Tobias,Giri AyushORCID,Sieber Karsten B.,Qiu ChengxiangORCID,Kirsten HolgerORCID,Tin AdrienneORCID,Chu Audrey Y.,Bansal Nisha,Feitosa Mary F.ORCID,Wang Lihua,Chai Jin-FangORCID,Cocca MassimilianoORCID,Fuchsberger Christian,Gorski MathiasORCID,Hoppmann Anselm,Horn KatrinORCID,Li ManORCID,Marten JonathanORCID,Noce Damia,Nutile Teresa,Sedaghat Sanaz,Sveinbjornsson Gardar,Tayo Bamidele O.,van der Most Peter J.ORCID,Xu Yizhe,Yu Zhi,Gerstner Lea,Ärnlöv Johan,Bakker Stephan J. L.,Baptista Daniela,Biggs Mary L.,Boerwinkle Eric,Brenner Hermann,Burkhardt RalphORCID,Carroll Robert J.,Chee Miao-Li,Chee Miao-Ling,Chen Mengmeng,Cheng Ching-Yu,Cook James P.,Coresh JosefORCID,Corre Tanguy,Danesh John,de Borst Martin H.ORCID,De Grandi Alessandro,de Mutsert Renée,de Vries Aiko P. J.,Degenhardt Frauke,Dittrich Katalin,Divers Jasmin,Eckardt Kai-Uwe,Ehret GeorgORCID,Endlich KarlhansORCID,Felix Janine F.ORCID,Franco Oscar H.,Franke AndreORCID,Freedman Barry I.ORCID,Freitag-Wolf SandraORCID,Gansevoort Ron T.,Giedraitis VilmantasORCID,Gögele Martin,Grundner-Culemann FranziskaORCID,Gudbjartsson Daniel F.,Gudnason VilmundurORCID,Hamet Pavel,Harris Tamara B.,Hicks Andrew A.ORCID,Holm Hilma,Foo Valencia Hui Xian,Hwang Shih-Jen,Ikram M. ArfanORCID,Ingelsson ErikORCID,Jaddoe Vincent W. V.ORCID,Jakobsdottir Johanna,Josyula Navya ShilpaORCID,Jung Bettina,Kähönen Mika,Khor Chiea-ChuenORCID,Kiess Wieland,Koenig WolfgangORCID,Körner Antje,Kovacs PeterORCID,Kramer Holly,Krämer Bernhard K.,Kronenberg FlorianORCID,Lange Leslie A.,Langefeld Carl D.,Lee Jeannette Jen-Mai,Lehtimäki Terho,Lieb Wolfgang,Lim Su-Chi,Lind Lars,Lindgren Cecilia M.ORCID,Liu JianjunORCID,Loeffler Markus,Lyytikäinen Leo-PekkaORCID,Mahajan AnubhaORCID,Maranville Joseph C.,Mascalzoni DeborahORCID,McMullen Barbara,Meisinger Christa,Meitinger Thomas,Miliku KozetaORCID,Mook-Kanamori Dennis O.,Müller-Nurasyid MartinaORCID,Mychaleckyj Josyf C.ORCID,Nauck Matthias,Nikus Kjell,Ning Boting,Noordam Raymond,Connell Jeffrey O’,Olafsson Isleifur,Palmer Nicholette D.ORCID,Peters Annette,Podgornaia Anna I.,Ponte Belen,Poulain TanjaORCID,Pramstaller Peter P.,Rabelink Ton J.,Raffield Laura M.ORCID,Reilly Dermot F.,Rettig Rainer,Rheinberger Myriam,Rice Kenneth M.ORCID,Rivadeneira FernandoORCID,Runz Heiko,Ryan Kathleen A.,Sabanayagam CharumathiORCID,Saum Kai-Uwe,Schöttker Ben,Shaffer Christian M.,Shi Yuan,Smith Albert V.ORCID,Strauch Konstantin,Stumvoll Michael,Sun Benjamin B.ORCID,Szymczak SilkeORCID,Tai E-Shyong,Tan Nicholas Y. Q.,Taylor Kent D.ORCID,Teren Andrej,Tham Yih-Chung,Thiery Joachim,Thio Chris H. L.ORCID,Thomsen Hauke,Thorsteinsdottir Unnur,Tönjes Anke,Tremblay Johanne,Uitterlinden André G.ORCID,van der Harst PimORCID,Verweij NiekORCID,Vogelezang Suzanne,Völker UweORCID,Waldenberger Melanie,Wang ChaolongORCID,Wilson Otis D.,Wong Charlene,Wong Tien-Yin,Yang QiongORCID,Yasuda Masayuki,Akilesh Shreeram,Bochud Murielle,Böger Carsten A.,Devuyst OlivierORCID,Edwards Todd L.ORCID,Ho KevinORCID,Morris Andrew P.ORCID,Parsa Afshin,Pendergrass Sarah A.ORCID,Psaty Bruce M.,Rotter Jerome I.ORCID,Stefansson KariORCID,Wilson James G.,Susztak KatalinORCID,Snieder Harold,Heid Iris M.,Scholz MarkusORCID,Butterworth Adam S.ORCID,Hung Adriana M.ORCID,Pattaro CristianORCID,Köttgen AnnaORCID

Abstract

Abstract Increased levels of the urinary albumin-to-creatinine ratio (UACR) are associated with higher risk of kidney disease progression and cardiovascular events, but underlying mechanisms are incompletely understood. Here, we conduct trans-ethnic (n = 564,257) and European-ancestry specific meta-analyses of genome-wide association studies of UACR, including ancestry- and diabetes-specific analyses, and identify 68 UACR-associated loci. Genetic correlation analyses and risk score associations in an independent electronic medical records database (n = 192,868) reveal connections with proteinuria, hyperlipidemia, gout, and hypertension. Fine-mapping and trans-Omics analyses with gene expression in 47 tissues and plasma protein levels implicate genes potentially operating through differential expression in kidney (including TGFB1, MUC1, PRKCI, and OAF), and allow coupling of UACR associations to altered plasma OAF concentrations. Knockdown of OAF and PRKCI orthologs in Drosophila nephrocytes reduces albumin endocytosis. Silencing fly PRKCI further impairs slit diaphragm formation. These results generate a priority list of genes and pathways for translational research to reduce albuminuria.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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