Back to Search Start Over

Innate Immune Signaling Contributes to Tubular Cell Senescence in the Glis2 Knockout Mouse Model of Nephronophthisis

Authors :
Madison Purvis
Heng Jin
Chongyu Ren
Massimo Attanasio
Yanfen Chai
Chao Cao
Prerna Rastogi
Anton M. Jetten
Qiong Ding
Dongmei Lu
Shan Shanshan Wang
Sarah Elhadi
Yan Zhang
Dingxiao Liu
Angela Wang
Peter Igarashi
Source :
Am J Pathol
Publication Year :
2020
Publisher :
Elsevier BV, 2020.

Abstract

Nephronophthisis (NPHP), the leading genetic cause of end-stage renal failure in children and young adults, is a group of autosomal recessive diseases characterized by kidney-cyst degeneration and fibrosis for which no therapy is currently available. To date, mutations in >25 genes have been identified as causes of this disease that, in several cases, result in chronic DNA damage in kidney tubular cells. Among such mutations, those in the transcription factor–encoding GLIS2 cause NPHP type 7. Loss of function of mouse Glis2 causes senescence of kidney tubular cells. Senescent cells secrete proinflammatory molecules that induce progressive organ damage through several pathways, among which NF-κB signaling is prevalent. Herein, we show that the NF-κB signaling is active in Glis2 knockout kidney epithelial cells and that genetic inactivation of the toll-like receptor (TLR)/IL-1 receptor or pharmacologic elimination of senescent cells (senolytic therapy) reduces tubule damage, fibrosis, and apoptosis in the Glis2 mouse model of NPHP. Notably, in Glis2, Tlr2 double knockouts, senescence was also reduced and proliferation was increased, suggesting that loss of TLR2 activity improves the regenerative potential of tubular cells in Glis2 knockout kidneys. Our results further suggest that a combination of TLR/IL-1 receptor inhibition and senolytic therapy may delay the progression of kidney disease in NPHP type 7 and other forms of this disease.

Details

ISSN :
00029440
Volume :
190
Database :
OpenAIRE
Journal :
The American Journal of Pathology
Accession number :
edsair.doi.dedup.....e145b668f529d5189dfa50e4bb2cdeac
Full Text :
https://doi.org/10.1016/j.ajpath.2019.09.013