Literature DB >> 30143558

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

Amelie T van der Ven1, Dervla M Connaughton1, Hadas Ityel1, Nina Mann1, Makiko Nakayama1, Jing Chen1, Asaf Vivante1, Daw-Yang Hwang1, Julian Schulz1, Daniela A Braun1, Johanna Magdalena Schmidt1, David Schapiro1, Ronen Schneider1, Jillian K Warejko1, Ankana Daga1, Amar J Majmundar1, Weizhen Tan1, Tilman Jobst-Schwan1, Tobias Hermle1, Eugen Widmeier1, Shazia Ashraf1, Ali Amar1, Charlotte A Hoogstraaten1, Hannah Hugo1, Thomas M Kitzler1, Franziska Kause1, Caroline M Kolvenbach1, Rufeng Dai1, Leslie Spaneas1, Kassaundra Amann1, Deborah R Stein1, Michelle A Baum1, Michael J G Somers1, Nancy M Rodig1, Michael A Ferguson1, Avram Z Traum1, Ghaleb H Daouk1, Radovan Bogdanović2, Natasa Stajić2, Neveen A Soliman3,4, Jameela A Kari5,6, Sherif El Desoky5,6, Hanan M Fathy7, Danko Milosevic8, Muna Al-Saffar1,9, Hazem S Awad10, Loai A Eid10, Aravind Selvin11, Prabha Senguttuvan12, Simone Sanna-Cherchi13, Heidi L Rehm14, Daniel G MacArthur14,15, Monkol Lek14,15, Kristen M Laricchia15, Michael W Wilson15, Shrikant M Mane16, Richard P Lifton16,17, Richard S Lee18, Stuart B Bauer18, Weining Lu19, Heiko M Reutter20,21, Velibor Tasic22, Shirlee Shril1, Friedhelm Hildebrandt23.   

Abstract

BACKGROUND: Congenital anomalies of the kidney and urinary tract (CAKUT) are the most prevalent cause of kidney disease in the first three decades of life. Previous gene panel studies showed monogenic causation in up to 12% of patients with CAKUT.
METHODS: We applied whole-exome sequencing to analyze the genotypes of individuals from 232 families with CAKUT, evaluating for mutations in single genes known to cause human CAKUT and genes known to cause CAKUT in mice. In consanguineous or multiplex families, we additionally performed a search for novel monogenic causes of CAKUT.
RESULTS: In 29 families (13%), we detected a causative mutation in a known gene for isolated or syndromic CAKUT that sufficiently explained the patient's CAKUT phenotype. In three families (1%), we detected a mutation in a gene reported to cause a phenocopy of CAKUT. In 15 of 155 families with isolated CAKUT, we detected deleterious mutations in syndromic CAKUT genes. Our additional search for novel monogenic causes of CAKUT in consanguineous and multiplex families revealed a potential single, novel monogenic CAKUT gene in 19 of 232 families (8%).
CONCLUSIONS: We identified monogenic mutations in a known human CAKUT gene or CAKUT phenocopy gene as the cause of disease in 14% of the CAKUT families in this study. Whole-exome sequencing provides an etiologic diagnosis in a high fraction of patients with CAKUT and will provide a new basis for the mechanistic understanding of CAKUT.
Copyright © 2018 by the American Society of Nephrology.

Entities:  

Keywords:  Congenital Anomalies of the Kidney and Urinary Tract (CAKUT); Vesico-ureteral Reflux (VUR); Whole Exome Sequencing (WES); monogenic disease causation; renal developmental gene

Mesh:

Year:  2018        PMID: 30143558      PMCID: PMC6115658          DOI: 10.1681/ASN.2017121265

Source DB:  PubMed          Journal:  J Am Soc Nephrol        ISSN: 1046-6673            Impact factor:   10.121


  65 in total

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  57 in total

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