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Genomic integration of ERRγ-HNF1β regulates renal bioenergetics and prevents chronic kidney disease.

Citation
Zhao, J., et al. “Genomic Integration Of Errγ-Hnf1Β Regulates Renal Bioenergetics And Prevents Chronic Kidney Disease.”. Proceedings Of The National Academy Of Sciences Of The United States Of America, pp. E4910-E4919.
Center University of Pennsylvania
Author Juanjuan Zhao, Katherine Lupino, Benjamin J Wilkins, Chengxiang Qiu, Jian Liu, Yasuhiro Omura, Amanda L Allred, Caitlin McDonald, Katalin Susztak, Grant D Barish, Liming Pei
Keywords ERRγ, Kidney, mitochondria, nuclear receptor, renal reabsorption
Abstract

Mitochondrial dysfunction is increasingly recognized as a critical determinant of both hereditary and acquired kidney diseases. However, it remains poorly understood how mitochondrial metabolism is regulated to support normal kidney function and how its dysregulation contributes to kidney disease. Here, we show that the nuclear receptor estrogen-related receptor gamma (ERRγ) and hepatocyte nuclear factor 1 beta (HNF1β) link renal mitochondrial and reabsorptive functions through coordinated epigenomic programs. ERRγ directly regulates mitochondrial metabolism but cooperatively controls renal reabsorption via convergent binding with HNF1β. Deletion of ERRγ in renal epithelial cells (RECs), in which it is highly and specifically expressed, results in severe renal energetic and reabsorptive dysfunction and progressive renal failure that recapitulates phenotypes of animals and patients with HNF1β loss-of-function gene mutations. Moreover, ERRγ expression positively correlates with renal function and is decreased in patients with chronic kidney disease (CKD). REC-ERRγ KO mice share highly overlapping renal transcriptional signatures with human patients with CKD. Together these findings reveal a role for ERRγ in directing independent and HNF1β-integrated programs for energy production and use essential for normal renal function and the prevention of kidney disease.

Year of Publication
2018
Journal
Proceedings of the National Academy of Sciences of the United States of America
Volume
115
Issue
21
Number of Pages
E4910-E4919
Date Published
12/2018
ISSN Number
1091-6490
DOI
10.1073/pnas.1804965115
Alternate Journal
Proc. Natl. Acad. Sci. U.S.A.
PMID
29735694
PMCID
PMC6003475
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