Whole-exome sequencing identifies FOXL2, FOXA2 and FOXA3 as candidate genes for monogenic congenital anomalies of the kidneys and urinary tract

Author:

Zheng Bixia12,Seltzsam Steve1,Wang Chunyan1,Schierbaum Luca1,Schneider Sophia1,Wu Chen-Han Wilfred1,Dai Rufeng1,Connaughton Dervla M1,Nakayama Makiko1,Mann Nina1,Stajic Natasa3,Mane Shrikant4,Bauer Stuart B5,Tasic Velibor6,Nam Hyun Joo7,Shril Shirlee1,Hildebrandt Friedhelm1

Affiliation:

1. Department of Pediatrics, Boston Children’s Hospital, Harvard Medical School, Boston, MA, USA

2. Nanjing Key Laboratory of Pediatrics, Children's Hospital of Nanjing Medical University, Nanjing, China

3. Department of Pediatric Nephrology, Institute for Mother and Child Health Care, Belgrade, Serbia

4. Department of Genetics, Yale University School of Medicine, New Haven, CT, USA

5. Department of Urology, Boston Children’s Hospital, Harvard Medical School, Boston, MA, USA

6. Medical Faculty of Skopje, University Children's Hospital, Skopje, Macedonia

7. Department of Biological and Environmental Science, Texas A&M University at Commerce, Commerce, TX, USA

Abstract

Abstract Background Congenital anomalies of the kidneys and urinary tract (CAKUT) constitute the most common cause of chronic kidney disease in the first three decades of life. Variants in four Forkhead box (FOX) transcription factors have been associated with CAKUT. We hypothesized that other FOX genes, if highly expressed in developing kidneys, may also represent monogenic causes of CAKUT. Methods We here performed whole-exome sequencing (WES) in 541 families with CAKUT and generated four lists of CAKUT candidate genes: (A) 36 FOX genes showing high expression during renal development, (B) 4 FOX genes known to cause CAKUT to validate list A, (C) 80 genes that we identified as unique potential novel CAKUT candidate genes when performing WES in 541 CAKUT families and (D) 175 genes identified from WES as multiple potential novel CAKUT candidate genes. Results To prioritize potential novel CAKUT candidates in the FOX gene family, we overlapped 36 FOX genes (list A) with lists C and D of WES-derived CAKUT candidates. Intersection with list C identified a de novo FOXL2 in-frame deletion in a patient with eyelid abnormalities and ureteropelvic junction obstruction, and a homozygous FOXA2 missense variant in a patient with horseshoe kidney. Intersection with list D identified a heterozygous FOXA3 missense variant in a CAKUT family with multiple affected individuals. Conclusions We hereby identified FOXL2, FOXA2 and FOXA3 as novel monogenic candidate genes of CAKUT, supporting the utility of a paralog-based approach to discover mutated genes associated with human disease.

Funder

National Institutes of Health to F.H.

Publisher

Oxford University Press (OUP)

Subject

Transplantation,Nephrology

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