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Deletion of ETS-1, a gene in the Jacobsen syndrome critical region, causes ventricular septal defects and abnormal ventricular morphology in mice

  • Maoqing Ye
  • , Chris Coldren
  • , Xingqun Liang
  • , Teresa Mattina
  • , Elizabeth Goldmuntz
  • , D. Woodrow Benson
  • , Dunbar Ivy
  • , M. B. Perryman
  • , Lee Ann Garrett-Sinha
  • , Paul Grossfeld
  • Rady Children's Hospital
  • UCHSC
  • University of California at San Diego
  • University of Catania
  • Children's Hospital of Philadelphia
  • Cincinnati Children's Hospital Medical Center
  • Children's Hospital Denver
  • University of South Dakota

Research output: Contribution to journalArticlepeer-review

121 Scopus citations

Abstract

Congenital heart defects comprise the most common form of major birth defects, affecting 0.7% of all newborn infants. Jacobsen syndrome (11q-) is a rare chromosomal disorder caused by deletions in distal 11q. We have previously determined that a wide spectrum of the most common congenital heart defects occur in 11q-, including an unprecedented high frequency of hypoplastic left heart syndrome (HLHS). We identified an ~7 Mb 'cardiac critical region' in distal 11q that contains a putative causative gene(s) for congenital heart disease. In this study, we utilized chromosomal microarray mapping to characterize three patients with 11q-and congenital heart defects that carry interstitial deletions overlapping the 7 Mb cardiac critical region. We propose that this 1.2 Mb region of overlap harbors a gene(s) that causes at least a subset of the congenital heart defects that occur in 11q-. We demonstrate that one gene in this region, ETS-1 (a member of the ETS family of transcription factors), is expressed in the endocardium and neural crest during early mouse heart development. Gene-targeted deletion of ETS-1 in mice in a C57/B6 background causes, with high penetrance, large membranous ventricular septal defects and a bifid cardiac apex, and less frequently a non-apex-forming left ventricle (one of the hallmarks of HLHS). Our results implicate an important role for the ETS-1 transcription factor in mammalian heart development and should provide important insights into some of the most common forms of congenital heart disease.

Original languageEnglish
Article numberddp532
Pages (from-to)648-656
Number of pages9
JournalHuman Molecular Genetics
Volume19
Issue number4
DOIs
StatePublished - Nov 26 2009

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