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Point mutations in murine Nkx2-5 phenocopy human congenital heart disease and induce pathogenic Wnt signaling.
Furtado, Milena B; Wilmanns, Julia C; Chandran, Anjana; Perera, Joelle; Hon, Olivia; Biben, Christine; Willow, Taylor J; Nim, Hieu T; Kaur, Gurpreet; Simonds, Stephanie; Wu, Qizhu; Willians, David; Salimova, Ekaterina; Plachta, Nicolas; Denegre, James M; Murray, Stephen A; Fatkin, Diane; Cowley, Michael; Pearson, James T; Kaye, David; Ramialison, Mirana; Harvey, Richard P; Rosenthal, Nadia A; Costa, Mauro W.
Affiliation
  • Furtado MB; The Jackson Laboratory, Bar Harbor, Maine, USA.
  • Wilmanns JC; Australian Regenerative Medicine Institute, Monash University, Clayton, Australia.
  • Chandran A; Australian Regenerative Medicine Institute, Monash University, Clayton, Australia.
  • Perera J; Department of Cardiology and Angiology, Medical School Hannover, Hannover, Germany.
  • Hon O; Australian Regenerative Medicine Institute, Monash University, Clayton, Australia.
  • Biben C; Australian Regenerative Medicine Institute, Monash University, Clayton, Australia.
  • Willow TJ; The Jackson Laboratory, Bar Harbor, Maine, USA.
  • Nim HT; The Walter and Eliza Hall Institute of Medical Research, Parkville, Australia.
  • Kaur G; The Jackson Laboratory, Bar Harbor, Maine, USA.
  • Simonds S; Australian Regenerative Medicine Institute, Monash University, Clayton, Australia.
  • Wu Q; Australian Regenerative Medicine Institute, Monash University, Clayton, Australia.
  • Willians D; Department of Physiology.
  • Salimova E; Monash Biomedical Imaging, Monash University, Clayton, Australia.
  • Plachta N; Heart Failure Research Group, Baker IDI Heart and Diabetes Institute, Melbourne, Australia.
  • Denegre JM; Australian Regenerative Medicine Institute, Monash University, Clayton, Australia.
  • Murray SA; Institute of Molecular and Cell Biology, A*STAR, Singapore.
  • Fatkin D; The Jackson Laboratory, Bar Harbor, Maine, USA.
  • Cowley M; The Jackson Laboratory, Bar Harbor, Maine, USA.
  • Pearson JT; Molecular Cardiology, Victor Chang Cardiac Research Institute, Darlinghurst, Australia.
  • Kaye D; Faculty of Medicine and School of Biological and Biomolecular Sciences, University of New South Wales, Kensington, Australia.
  • Ramialison M; Cardiology Department, St. Vincent's Hospital, Darlinghurst, Australia.
  • Harvey RP; Department of Physiology.
  • Rosenthal NA; Department of Physiology.
  • Costa MW; Monash Biomedical Imaging, Monash University, Clayton, Australia.
JCI Insight ; 2(6): e88271, 2017 03 23.
Article in En | MEDLINE | ID: mdl-28352650
Mutations in the Nkx2-5 gene are a main cause of congenital heart disease. Several studies have addressed the phenotypic consequences of disrupting the Nkx2-5 gene locus, although animal models to date failed to recapitulate the full spectrum of the human disease. Here, we describe a new Nkx2-5 point mutation murine model, akin to its human counterpart disease-generating mutation. Our model fully reproduces the morphological and physiological clinical presentations of the disease and reveals an understudied aspect of Nkx2-5-driven pathology, a primary right ventricular dysfunction. We further describe the molecular consequences of disrupting the transcriptional network regulated by Nkx2-5 in the heart and show that Nkx2-5-dependent perturbation of the Wnt signaling pathway promotes heart dysfunction through alteration of cardiomyocyte metabolism. Our data provide mechanistic insights on how Nkx2-5 regulates heart function and metabolism, a link in the study of congenital heart disease, and confirms that our models are the first murine genetic models to our knowledge to present all spectra of clinically relevant adult congenital heart disease phenotypes generated by NKX2-5 mutations in patients.
Subject(s)

Full text: 1 Database: MEDLINE Main subject: Point Mutation / Disease Models, Animal / Wnt Signaling Pathway / Homeobox Protein Nkx-2.5 / Heart Defects, Congenital Type of study: Prognostic_studies Limits: Animals / Humans Language: En Journal: JCI Insight Year: 2017 Type: Article Affiliation country: United States

Full text: 1 Database: MEDLINE Main subject: Point Mutation / Disease Models, Animal / Wnt Signaling Pathway / Homeobox Protein Nkx-2.5 / Heart Defects, Congenital Type of study: Prognostic_studies Limits: Animals / Humans Language: En Journal: JCI Insight Year: 2017 Type: Article Affiliation country: United States