Cardiomyopathy in Irx4 -Deficient Mice Is Preceded by Abnormal Ventricular Gene Expression

Author:

Bruneau Benoit G.1,Bao Zheng-Zheng1,Fatkin Diane2,Xavier-Neto Jose34,Georgakopoulos Dimitrios5,Maguire Colin T.6,Berul Charles I.6,Kass David A.5,Kuroski-de Bold Mercedes L.7,de Bold Adolfo J.7,Conner David A.18,Rosenthal Nadia3,Cepko Constance L.18,Seidman Christine E.129,Seidman J. G.18

Affiliation:

1. Department of Genetics 1 and

2. Department of Medicine, 2 and

3. Cardiovascular Research Center, Massachusetts General Hospital, Charlestown, 3 Massachusetts;

4. Laboratório de Genética e Cardiologia Molecular, Instituto do Coração (InCor) HC-FMUSP, São Paulo 05403-000, Brazil 4 ;

5. Johns Hopkins University, Baltimore, Maryland 5 ; and

6. Brigham and Women's Hospital, and Children's Hospital and Harvard Medical School, 6 Boston, and

7. University of Ottawa Heart Institute at the Ottawa Hospital, Ottawa, Ontario K1Y 4H9, Canada7

8. Howard Hughes Medical Institute, 8 Harvard Medical School, Cardiovascular Division,

9. Howard Hughes Medical Institute,9

Abstract

ABSTRACT To define the role of Irx4, a member of the Iroquois family of homeobox transcription factors in mammalian heart development and function, we disrupted the murine Irx4 gene. Cardiac morphology in Irx4-deficient mice (designated Irx4 Δex2/Δex2 ) was normal during embryogenesis and in early postnatal life. Adult Irx4 Δex2/Δex2 mice developed a cardiomyopathy characterized by cardiac hypertrophy and impaired contractile function. Prior to the development of cardiomyopathy, Irx4 Δex2/Δex2 hearts had abnormal ventricular gene expression: Irx4-deficient embryos exhibited reduced ventricular expression of the basic helix-loop-helix transcription factor eHand ( Hand1 ), increased Irx2 expression, and ventricular induction of an atrial chamber-specific transgene. In neonatal hearts, ventricular expression of atrial natriuretic factor and α-skeletal actin was markedly increased. Several weeks subsequent to these changes in embryonic and neonatal gene expression, increased expression of hypertrophic markers BNP and β-myosin heavy chain accompanied adult-onset cardiac hypertrophy. Cardiac expression of Irx1, Irx2 , and Irx5 may partially compensate for loss of Irx4 function. We conclude that Irx4 is not sufficient for ventricular chamber formation but is required for the establishment of some components of a ventricle-specific gene expression program. In the absence of genes under the control of Irx4, ventricular function deteriorates and cardiomyopathy ensues.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference57 articles.

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