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PGC-1? Protects from Notch-Induced Kidney Fibrosis Development.


ABSTRACT: Kidney fibrosis is the histologic manifestation of CKD. Sustained activation of developmental pathways, such as Notch, in tubule epithelial cells has been shown to have a key role in fibrosis development. The molecular mechanism of Notch-induced fibrosis, however, remains poorly understood. Here, we show that, that expression of peroxisomal proliferation g-coactivator (PGC-1?) and fatty acid oxidation-related genes are lower in mice expressing active Notch1 in tubular epithelial cells (Pax8-rtTA/ICN1) compared to littermate controls. Chromatin immunoprecipitation assays revealed that the Notch target gene Hes1 directly binds to the regulatory region of PGC-1? Compared with Pax8-rtTA/ICN1 transgenic animals, Pax8-rtTA/ICN1/Ppargc1a transgenic mice showed improvement of renal structural alterations (on histology) and molecular defect (expression of profibrotic genes). Overexpression of PGC-1? restored mitochondrial content and reversed the fatty acid oxidation defect induced by Notch overexpression in vitro in tubule cells. Furthermore, compared with Pax8-rtTA/ICN1 mice, Pax8-rtTA/ICN1/Ppargc1a mice exhibited improvement in renal fatty acid oxidation gene expression and apoptosis. Our results show that metabolic dysregulation has a key role in kidney fibrosis induced by sustained activation of the Notch developmental pathway and can be ameliorated by PGC-1?.

SUBMITTER: Han SH 

PROVIDER: S-EPMC5661291 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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PGC-1<i>α</i> Protects from Notch-Induced Kidney Fibrosis Development.

Han Seung Hyeok SH   Wu Mei-Yan MY   Nam Bo Young BY   Park Jung Tak JT   Yoo Tae-Hyun TH   Kang Shin-Wook SW   Park Jihwan J   Chinga Frank F   Li Szu-Yuan SY   Susztak Katalin K  

Journal of the American Society of Nephrology : JASN 20170727 11


Kidney fibrosis is the histologic manifestation of CKD. Sustained activation of developmental pathways, such as Notch, in tubule epithelial cells has been shown to have a key role in fibrosis development. The molecular mechanism of Notch-induced fibrosis, however, remains poorly understood. Here, we show that, that expression of peroxisomal proliferation g-coactivator (PGC-1<i>α</i>) and fatty acid oxidation-related genes are lower in mice expressing active Notch1 in tubular epithelial cells (Pa  ...[more]

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