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Genome-Wide Association Study of Diabetic Kidney Disease Highlights Biology Involved in Glomerular Basement Membrane Collagen

Authors :
Salem, Rany M.
Todd, Jennifer N.
Sandholm, Niina
Cole, Joanne B.
Chen, Wei-Min
Andrews, Darrell
Pezzolesi, Marcus G.
McKeigue, Paul M.
Hiraki, Linda T.
Qiu, Chengxiang
Nair, Viji
Di Liao, Chen
Cao, Jing Jing
Valo, Erkka
Onengut-Gumuscu, Suna
Smiles, Adam M.
McGurnaghan, Stuart J.
Haukka, Jani K.
Harjutsalo, Valma
Brennan, Eoin P.
van Zuydam, Natalie
Ahlqvist, Emma
Doyle, Ross
Ahluwalia, Tarunveer S.
Lajer, Maria
Hughes, Maria F.
Park, Jihwan
Skupien, Jan
Spiliopoulou, Athina
Liu, Andrew
Menon, Rajasree
Boustany-Kari, Carine M.
Kang, Hyun M.
Nelson, Robert G.
Klein, Ronald
Klein, Barbara E.
Lee, Kristine E.
Gao, Xiaoyu
Mauer, Michael
Maestroni, Silvia
Caramori, Maria Luiza
de Boer, Ian H.
Miller, Rachel G.
Guo, Jingchuan
Boright, Andrew P.
Tregouet, David
Gyorgy, Beata
Snell-Bergeon, Janet K.
Maahs, David M.
Bull, Shelley B.
Canty, Angelo J.
Palmer, Colin N. A.
Stechemesser, Lars
Paulweber, Bernhard
Weitgasser, Raimund
Sokolovska, Jelizaveta
Rovite, Vita
Pirags, Valdis
Prakapiene, Edita
Radzeviciene, Lina
Verkauskiene, Rasa
Panduru, Nicolae Mircea
Groop, Leif C.
McCarthy, Mark, I
Gu, Harvest F.
Möllsten, Anna
Falhammar, Henrik
Brismar, Kerstin
Martin, Finian
Rossing, Peter
Costacou, Tina
Zerbini, Gianpaolo
Marre, Michel
Hadjadj, Samy
McKnight, Amy J.
Forsblom, Carol
McKay, Gareth
Godson, Catherine
Maxwell, A. Peter
Kretzler, Matthias
Susztak, Katalin
Colhoun, Helen M.
Krolewski, Andrzej
Paterson, Andrew D.
Groop, Per-Henrik
Rich, Stephen S.
Hirschhorn, Joel N.
Florez, Jose C.
Salem, Rany M.
Todd, Jennifer N.
Sandholm, Niina
Cole, Joanne B.
Chen, Wei-Min
Andrews, Darrell
Pezzolesi, Marcus G.
McKeigue, Paul M.
Hiraki, Linda T.
Qiu, Chengxiang
Nair, Viji
Di Liao, Chen
Cao, Jing Jing
Valo, Erkka
Onengut-Gumuscu, Suna
Smiles, Adam M.
McGurnaghan, Stuart J.
Haukka, Jani K.
Harjutsalo, Valma
Brennan, Eoin P.
van Zuydam, Natalie
Ahlqvist, Emma
Doyle, Ross
Ahluwalia, Tarunveer S.
Lajer, Maria
Hughes, Maria F.
Park, Jihwan
Skupien, Jan
Spiliopoulou, Athina
Liu, Andrew
Menon, Rajasree
Boustany-Kari, Carine M.
Kang, Hyun M.
Nelson, Robert G.
Klein, Ronald
Klein, Barbara E.
Lee, Kristine E.
Gao, Xiaoyu
Mauer, Michael
Maestroni, Silvia
Caramori, Maria Luiza
de Boer, Ian H.
Miller, Rachel G.
Guo, Jingchuan
Boright, Andrew P.
Tregouet, David
Gyorgy, Beata
Snell-Bergeon, Janet K.
Maahs, David M.
Bull, Shelley B.
Canty, Angelo J.
Palmer, Colin N. A.
Stechemesser, Lars
Paulweber, Bernhard
Weitgasser, Raimund
Sokolovska, Jelizaveta
Rovite, Vita
Pirags, Valdis
Prakapiene, Edita
Radzeviciene, Lina
Verkauskiene, Rasa
Panduru, Nicolae Mircea
Groop, Leif C.
McCarthy, Mark, I
Gu, Harvest F.
Möllsten, Anna
Falhammar, Henrik
Brismar, Kerstin
Martin, Finian
Rossing, Peter
Costacou, Tina
Zerbini, Gianpaolo
Marre, Michel
Hadjadj, Samy
McKnight, Amy J.
Forsblom, Carol
McKay, Gareth
Godson, Catherine
Maxwell, A. Peter
Kretzler, Matthias
Susztak, Katalin
Colhoun, Helen M.
Krolewski, Andrzej
Paterson, Andrew D.
Groop, Per-Henrik
Rich, Stephen S.
Hirschhorn, Joel N.
Florez, Jose C.
Publication Year :
2019

Abstract

Background: Although diabetic kidney disease demonstrates both familial clustering and single nucleotide polymorphism heritability, the specific genetic factors influencing risk remain largely unknown. Methods: To identify genetic variants predisposing to diabetic kidney disease, we performed genome-wide association study (GWAS) analyses. Through collaboration with the Diabetes Nephropathy Collaborative Research Initiative, we assembled a large collection of type 1 diabetes cohorts with harmonized diabetic kidney disease phenotypes. We used a spectrum of ten diabetic kidney disease definitions based on albuminuria and renal function. Results: Our GWAS meta-analysis included association results for up to 19,406 individuals of European descent with type 1 diabetes. We identified 16 genome-wide significant risk loci. The variant with the strongest association (rs55703767) is a common missense mutation in the collagen type IV alpha 3 chain (COL4A3) gene, which encodes a major structural component of the glomerular basement membrane (GBM). Mutations in COL4A3 are implicated in heritable nephropathies, including the progressive inherited nephropathy Alport syndrome. The rs55703767 minor allele (Asp326Tyr) is protective against several definitions of diabetic kidney disease, including albuminuria and ESKD, and demonstrated a significant association with GBM width; protective allele carriers had thinner GBM before any signs of kidney disease, and its effect was dependent on glycemia. Three other loci are in or near genes with known or suggestive involvement in this condition (BMP7) or renal biology (COLEC11 and DDR1). Conclusions: The 16 diabetic kidney disease–associated loci may provide novel insights into the pathogenesis of this condition and help identify potential biologic targets for prevention and treatment.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1234641777
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1681.ASN.2019030218