Cystin is required for maintaining fibrocystin (FPC) levels and safeguarding proteome integrity in mouse renal epithelial cells

Author:

Zhang Yiming J.1ORCID,Yang Chaozhe2ORCID,Wang Wei3ORCID,Harafuji Naoe2ORCID,Stasiak Piotr1,Bell P. Darwin4,Caldovic Ljubica2ORCID,Sztul Elizabeth1,Guay‐Woodford Lisa M.25ORCID,Bebok Zsuzsanna1ORCID

Affiliation:

1. Department of Cell Developmental and Integrative Biology (CDIB) University of Alabama at Birmingham, School of Medicine Birmingham Alabama USA

2. Center for Translational Research Children's National Hospital Washington District of Columbia USA

3. Cystic Fibrosis Research Center University of Alabama at Birmingham, School of Medicine Birmingham Alabama USA

4. Department of Medicine, Division of Nephrology University of Alabama at Birmingham Birmingham Alabama USA

5. Center for Genetic Medicine Research Children's National Hospital Washington District of Columbia USA

Abstract

AbstractAutosomal recessive polycystic kidney disease (ARPKD) is caused primarily by mutations in PKHD1, encoding fibrocystin (FPC), but Pkhd1 mutant mice failed to reproduce the human phenotype. In contrast, the renal lesion in congenital polycystic kidney (cpk) mice, with a mutation in Cys1 and cystin protein loss, closely phenocopies ARPKD. Although the nonhomologous mutation diminished the translational relevance of the cpk model, recent identification of patients with CYS1 mutations and ARPKD prompted the investigations described herein. We examined cystin and FPC expression in mouse models (cpk, rescued‐cpk (r‐cpk), Pkhd1 mutants) and mouse cortical collecting duct (CCD) cell lines (wild type (wt), cpk). We found that cystin deficiency caused FPC loss in both cpk kidneys and CCD cells. FPC levels increased in r‐cpk kidneys and siRNA of Cys1 in wt cells reduced FPC. However, FPC deficiency in Pkhd1 mutants did not affect cystin levels. Cystin deficiency and associated FPC loss impacted the architecture of the primary cilium, but not ciliogenesis. No reduction in Pkhd1 mRNA levels in cpk kidneys and CCD cells suggested posttranslational FPC loss. Studies of cellular protein degradation systems suggested selective autophagy as a mechanism. In support of the previously described function of FPC in E3 ubiquitin ligase complexes, we demonstrated reduced polyubiquitination and elevated levels of functional epithelial sodium channel in cpk cells. Therefore, our studies expand the function of cystin in mice to include inhibition of Myc expression via interaction with necdin and maintenance of FPC as functional component of the NEDD4 E3 ligase complexes. Loss of FPC from E3 ligases may alter the cellular proteome, contributing to cystogenesis through multiple, yet to be defined, mechanisms.

Funder

Cystic Fibrosis Foundation

National Institute of Diabetes and Digestive and Kidney Diseases

National Institute of General Medical Sciences

Publisher

Wiley

Subject

Genetics,Molecular Biology,Biochemistry,Biotechnology

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