Cystin genetic variants cause autosomal recessive polycystic kidney disease associated with altered Myc expression

Author:

Yang Chaozhe,Harafuji Naoe,O’Connor Amber K.,Kesterson Robert A.,Watts Jacob A.,Majmundar Amar J.,Braun Daniela A.,Lek Monkol,Laricchia Kristen M.,Fathy Hanan M.,Mane Shrikant,Shril Shirlee,Hildebrandt Friedhelm,Guay-Woodford Lisa M.

Abstract

AbstractMutation of the Cys1 gene underlies the renal cystic disease in the Cys1cpk/cpk (cpk) mouse that phenocopies human autosomal recessive polycystic kidney disease (ARPKD). Cystin, the protein product of Cys1, is expressed in the primary apical cilia of renal ductal epithelial cells. In previous studies, we showed that cystin regulates Myc expression via interaction with the tumor suppressor, necdin. Here, we demonstrate rescue of the cpk renal phenotype by kidney-specific expression of a cystin-GFP fusion protein encoded by a transgene integrated into the Rosa26 locus. In addition, we show that expression of the cystin-GFP fusion protein in collecting duct cells down-regulates expression of Myc in cpk kidneys. Finally, we report the first human patient with an ARPKD phenotype due to homozygosity for a deleterious splicing variant in CYS1. These findings suggest that mutations in Cys1/CYS1 cause an ARPKD phenotype in mouse and human, respectively, and that the renal cystic phenotype in the mouse is driven by overexpression of the Myc proto-oncogene.

Funder

National Institute of Diabetes and Digestive and Kidney Diseases

National Cancer Institute

National Institute of Arthritis and Musculoskeletal and Skin Diseases

Harvard Stem Cell Institute

American Society of Nephrology

German Research Foundation

National Institutes of Health

National Human Genome Research Institute

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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