Congenital Anomalies of the Kidney and the Urinary Tract (CAKUT) account for 40-50% of pediatric end-stage kidney failure worldwide. Among CAKUT categories, congenital obstructive uropathy represents a common and severe form of malformation. Congenital hydronephrosis is the most frequent anomaly of the urinary tract detected by prenatal ultrasound, occurring in up to 2% of normal pregnancies. Congenital obstructive uropathy can occur as familial or sporadic disease with highly variable phenotypic expression. Due to paucity of fundamental insight about primary pathogenesis, diagnostic and therapeutic options are severely limited. We recently implemented whole exome sequencing combined to functional modeling in zebrafish to identify dominant mutations in DSTYK in up to 2.3% of patients with congenital obstructive uropathy and associated urinary tract malformations (Sanna-Cherchi et al, New Engl J Med 2013). The protein encoded by DSTYK acts as a positive regulator of fibroblast growth factor (FGF) signaling during nephrogenesis. This study illustrates the power of combining whole exome sequencing with functional modeling in animal models to identify novel disease causing mutations in traits characterized by high genetic heterogeneity, incomplete penetrance, variable phenotypic expression, and small/medium pedigree size. Here we propose to characterize the function of DSTYK during embryonic development and nephrogenesis in cell cultures and in mouse models harboring Dstyk mutations, to extend our gene identification effort to 50 additional families with autosomal dominant congenital obstructive uropathy and to perform functional modeling in zebrafish to identify novel susceptibility genes. This study will provide insight into the pathogenesis of congenital obstructive uropathy in humans and animal models and will help develop new diagnostic and therapeutic strategies.

Public Health Relevance

Congenital obstructive uropathy is the most frequent anomaly of the urinary tract detected by prenatal ultrasound, occurring in up to 2% of normal pregnancies. Here we propose to study the genetics of congenital obstructive uropathy using an innovative approach based on large-scale genetic screenings in humans and functional studies in mouse and zebrafish. This study will provide insight into the pathogenesis of congenital obstructive uropathy and will help develop new diagnostic and therapeutic strategies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK103184-05
Application #
9545751
Study Section
Special Emphasis Panel (ZRG1)
Program Officer
Parsa, Afshin
Project Start
2014-09-12
Project End
2019-06-30
Budget Start
2018-07-01
Budget End
2019-06-30
Support Year
5
Fiscal Year
2018
Total Cost
Indirect Cost
Name
Columbia University (N.Y.)
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
621889815
City
New York
State
NY
Country
United States
Zip Code
10032
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Lata, Sneh; Marasa, Maddalena; Li, Yifu et al. (2018) Whole-Exome Sequencing in Adults With Chronic Kidney Disease: A Pilot Study. Ann Intern Med 168:100-109
Sanna-Cherchi, Simone; Khan, Kamal; Westland, Rik et al. (2017) Exome-wide Association Study Identifies GREB1L Mutations in Congenital Kidney Malformations. Am J Hum Genet 101:789-802
Lopez-Rivera, Esther; Liu, Yangfan P; Verbitsky, Miguel et al. (2017) Genetic Drivers of Kidney Defects in the DiGeorge Syndrome. N Engl J Med 376:742-754
Westland, Rik; Verbitsky, Miguel; Vukojevic, Katarina et al. (2015) Copy number variation analysis identifies novel CAKUT candidate genes in children with a solitary functioning kidney. Kidney Int 88:1402-1410
Verbitsky, Miguel; Sanna-Cherchi, Simone; Fasel, David A et al. (2015) Genomic imbalances in pediatric patients with chronic kidney disease. J Clin Invest 125:2171-8
Westland, Rik; Schreuder, Michiel F; van Goudoever, Johannes B et al. (2014) Clinical implications of the solitary functioning kidney. Clin J Am Soc Nephrol 9:978-86
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