Literature DB >> 32475988

Phenotype expansion of heterozygous FOXC1 pathogenic variants toward involvement of congenital anomalies of the kidneys and urinary tract (CAKUT).

Chen-Han Wilfred Wu1, Nina Mann1, Makiko Nakayama1, Dervla M Connaughton1, Rufeng Dai1, Caroline M Kolvenbach1, Franziska Kause1, Isabel Ottlewski1, Chunyan Wang1, Verena Klämbt1, Steve Seltzsam1, Ethan W Lai1, Aravind Selvin2, Prabha Senguttuva3, Olaf Bodamer1, Deborah R Stein1, Sherif El Desoky4, Jameela A Kari4, Velibor Tasic5, Stuart B Bauer6, Shirlee Shril1, Friedhelm Hildebrandt7.   

Abstract

PURPOSE: Congenital anomalies of the kidney and urinary tract (CAKUT) are the most common cause of chronic kidney disease in childhood and adolescence. We aim to identify novel monogenic causes of CAKUT.
METHODS: Exome sequencing was performed in 550 CAKUT-affected families.
RESULTS: We discovered seven FOXC1 heterozygous likely pathogenic variants within eight CAKUT families. These variants are either never reported, or present in <5 alleles in the gnomAD database with ~141,456 controls. FOXC1 is a causal gene for Axenfeld-Rieger syndrome type 3 and anterior segment dysgenesis 3. Pathogenic variants in FOXC1 have not been detected in patients with CAKUT yet. Interestingly, mouse models for Foxc1 show severe CAKUT phenotypes with incomplete penetrance and variable expressivity. The FOXC1 variants are enriched in the CAKUT cohort compared with the control. Genotype-phenotype correlations showed that Axenfeld-Rieger syndrome or anterior segment dysgenesis can be caused by both truncating and missense pathogenic variants, and the missense variants are located at the forkhead domain. In contrast, for CAKUT, there is no truncating pathogenic variant, and all variants except one are located outside the forkhead domain.
CONCLUSION: We thereby expanded the phenotype of FOXC1 pathogenic variants toward involvement of CAKUT, which can potentially be explained by allelism.

Entities:  

Keywords:  congenital anomalies of the kidneys and urinary tract; exome sequencing

Mesh:

Substances:

Year:  2020        PMID: 32475988      PMCID: PMC8220407          DOI: 10.1038/s41436-020-0844-z

Source DB:  PubMed          Journal:  Genet Med        ISSN: 1098-3600            Impact factor:   8.822


  36 in total

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Journal:  Pediatr Nephrol       Date:  2014-01-08       Impact factor: 3.714

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5.  Whole-Exome Sequencing Identifies Causative Mutations in Families with Congenital Anomalies of the Kidney and Urinary Tract.

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Journal:  Pediatr Nephrol       Date:  2014-07-21       Impact factor: 3.714

Review 9.  Novel Insights into the Pathogenesis of Monogenic Congenital Anomalies of the Kidney and Urinary Tract.

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