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Paper Title

Genetic associations at 53 loci highlight cell types and biological pathways relevant for kidney function

Authors

Emelia J. Benjamin
Emelia J. Benjamin
Caroline S Fox
Caroline S Fox
Cristian Pattaro
Cristian Pattaro
Andrew D Johnson
Andrew D Johnson
David Ellinghaus
David Ellinghaus
Erika Salvi
Erika Salvi
Niek Verweij
Niek Verweij
Robert J Carroll
Robert J Carroll

Article Type

Research Article

Research Impact Tools

Issue

Volume : 7 | Issue : 1 | Page No : 10023

Published On

January, 2016

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Abstract

Reduced glomerular filtration rate defines chronic kidney disease and is associated with cardiovascular and all-cause mortality. We conducted a meta-analysis of genome-wide association studies for estimated glomerular filtration rate (eGFR), combining data across 133,413 individuals with replication in up to 42,166 individuals. We identify 24 new and confirm 29 previously identified loci. Of these 53 loci, 19 associate with eGFR among individuals with diabetes. Using bioinformatics, we show that identified genes at eGFR loci are enriched for expression in kidney tissues and in pathways relevant for kidney development and transmembrane transporter activity, kidney structure, and regulation of glucose metabolism. Chromatin state mapping and DNase I hypersensitivity analyses across adult tissues demonstrate preferential mapping of associated variants to regulatory regions in kidney but not extra-renal tissues. These findings suggest that genetic determinants of eGFR are mediated largely through direct effects within the kidney and highlight important cell types and biological pathways.

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