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Whole exome sequencing identifies causative mutations in the majority of consanguineous or familial cases with childhood-onset increased renal echogenicity

  • Daniela A. Braun
  • , Markus Schueler
  • , Jan Halbritter
  • , Heon Yung Gee
  • , Jonathan D. Porath
  • , Jennifer A. Lawson
  • , Rannar Airik
  • , Shirlee Shril
  • , Susan J. Allen
  • , Deborah Stein
  • , Adila Al Kindy
  • , Bodo B. Beck
  • , Nurcan Cengiz
  • , Khemchand N. Moorani
  • , Fatih Ozaltin
  • , Seema Hashmi
  • , John A. Sayer
  • , Detlef Bockenhauer
  • , Neveen A. Soliman
  • , Edgar A. Otto
  • Richard P. Lifton, Friedhelm Hildebrandt
  • Boston Children's Hospital
  • Leipzig University
  • University of Michigan, Ann Arbor
  • Sultan Qaboos University
  • University of Cologne
  • Baskent University
  • National Institute of Child Health Pakistan
  • Sindh Institute of Urology and Transplantation
  • Newcastle University
  • University College London
  • Cairo University
  • Egyptian Group for Orphan Renal Diseases (EGORD)
  • Yale University
  • Howard Hughes Medical Institute

Research output: Contribution to journalArticlepeer-review

93 Citations (Scopus)

Abstract

Chronically increased echogenicity on renal ultrasound is a sensitive early finding of chronic kidney disease that can be detected before manifestation of other symptoms. Increased echogenicity, however, is not specific for a certain etiology of chronic kidney disease. Here, we performed whole exome sequencing in 79 consanguineous or familial cases of suspected nephronophthisis in order to determine the underlying molecular disease cause. In 50 cases, there was a causative mutation in a known monogenic disease gene. In 32 of these cases whole exome sequencing confirmed the diagnosis of a nephronophthisis-related ciliopathy. In 8 cases it revealed the diagnosis of a renal tubulopathy. The remaining 10 cases were identified as Alport syndrome (4), autosomal-recessive polycystic kidney disease (2), congenital anomalies of the kidney and urinary tract (3), and APECED syndrome (1). In 5 families, in whom mutations in known monogenic genes were excluded, we applied homozygosity mapping for variant filtering and identified 5 novel candidate genes (RBM48, FAM186B, PIAS1, INCENP, and RCOR1) for renal ciliopathies. Thus, whole exome sequencing allows the detection of the causative mutation in 2/3 of affected individuals, thereby presenting the etiologic diagnosis, and allows identification of novel candidate genes.

Original languageEnglish
Pages (from-to)468-475
Number of pages8
JournalKidney International
Volume89
Issue number2
DOIs
Publication statusPublished - 1 Feb 2016

Keywords

  • chronic kidney disease
  • genetic kidney disease
  • pediatric nephrology

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