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Endoplasmic reticulum-associated degradation is required for nephrin maturation and kidney glomerular filtration function

Authors :
Yoshida, Sei
Wei, Xiaoqiong
Zhang, Gensheng
O'Connor, Christopher L.
Torres, Mauricio
Zhou, Zhangsen
Lin, Liangguang
Menon, Rajasree
Xu, Xiaoxi
Zheng, Wenyue
Xiong, Yi
Otto, Edgar
Tang, Chih-Hang Anthony
Hua, Rui
Verma, Rakesh
Mori, Hiroyuki
Zhang, Yang
Hu, Chih-Chi Andrew
Liu, Ming
Garg, Puneet
Hodgin, Jeffrey B.
Sun, Shengyi
Bitzer, Markus
Qi, Ling
Source :
Journal of Clinical Investigation. April 1, 2021, Vol. 131 Issue 7
Publication Year :
2021

Abstract

Introduction The key function of the kidneys is the ultrafiltration of blood in the glomerulus, where podocytes, specialized differentiated epithelial cells, wrap around capillaries of the glomerulus via a unique [...]<br />Podocytes are key to the glomerular filtration barrier by forming a slit diaphragm between interdigitating foot processes; however, the molecular details and functional importance of protein folding and degradation in the ER remain unknown. Here, we show that the SEL1L-HRD1 protein complex of ER-associated degradation (ERAD) is required for slit diaphragm formation and glomerular filtration function. SEL1L-HRD1 ERAD is highly expressed in podocytes of both mouse and human kidneys. Mice with podocyte-specific Sel1L deficiency develop podocytopathy and severe congenital nephrotic syndrome with an impaired slit diaphragm shortly after weaning and die prematurely, with a median lifespan of approximately 3 months. We show mechanistically that nephrin, a type 1 membrane protein causally linked to congenital nephrotic syndrome, is an endogenous ERAD substrate. ERAD deficiency attenuated the maturation of nascent nephrin, leading to its retention in the ER. We also show that various autosomal-recessive nephrin disease mutants were highly unstable and broken down by SEL1L-HRD1 ERAD, which attenuated the pathogenicity of the mutants toward the WT allele. This study uncovers a critical role of SEL1L-HRD1 ERAD in glomerular filtration barrier function and provides insights into the pathogenesis associated with autosomal-recessive disease mutants.

Details

Language :
English
ISSN :
00219738
Volume :
131
Issue :
7
Database :
Gale General OneFile
Journal :
Journal of Clinical Investigation
Publication Type :
Academic Journal
Accession number :
edsgcl.657723641
Full Text :
https://doi.org/10.1172/JCI143988