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Renal compartment-specific genetic variation analyses identify new pathways in chronic kidney disease.

Citation
Qiu, C., et al. “Renal Compartment-Specific Genetic Variation Analyses Identify New Pathways In Chronic Kidney Disease.”. Nature Medicine, pp. 1721-1731.
Center University of Pennsylvania
Author Chengxiang Qiu, Shizheng Huang, Jihwan Park, YoSon Park, Yi-An Ko, Matthew J Seasock, Joshua S Bryer, Xiang-Xi Xu, Wen-Chao Song, Matthew Palmer, Jon Hill, Paolo Guarnieri, Julie Hawkins, Carine M Boustany-Kari, Steven S Pullen, Christopher D Brown, Katalin Susztak
Abstract

Chronic kidney disease (CKD), a condition in which the kidneys are unable to clear waste products, affects 700 million people globally. Genome-wide association studies (GWASs) have identified sequence variants for CKD; however, the biological basis of these GWAS results remains poorly understood. To address this issue, we created an expression quantitative trait loci (eQTL) atlas for the glomerular and tubular compartments of the human kidney. Through integrating the CKD GWAS with eQTL, single-cell RNA sequencing and regulatory region maps, we identified novel genes for CKD. Putative causal genes were enriched for proximal tubule expression and endolysosomal function, where DAB2, an adaptor protein in the TGF-β pathway, formed a central node. Functional experiments confirmed that reducing Dab2 expression in renal tubules protected mice from CKD. In conclusion, compartment-specific eQTL analysis is an important avenue for the identification of novel genes and cellular pathways involved in CKD development and thus potential new opportunities for its treatment.

Year of Publication
2018
Journal
Nature medicine
Volume
24
Issue
11
Number of Pages
1721-1731
Date Published
12/2018
ISSN Number
1546-170X
DOI
10.1038/s41591-018-0194-4
Alternate Journal
Nat. Med.
PMID
30275566
PMCID
PMC6301011
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