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Citations to this article

Neonatal cardiomyopathy in mice homozygous for the Arg403Gln mutation in the α cardiac myosin heavy chain gene
Diane Fatkin, … , Daniel H. Turnbull, J.G. Seidman
Diane Fatkin, … , Daniel H. Turnbull, J.G. Seidman
Published January 1, 1999
Citation Information: J Clin Invest. 1999;103(1):147-153. https://doi.org/10.1172/JCI4631.
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Article

Neonatal cardiomyopathy in mice homozygous for the Arg403Gln mutation in the α cardiac myosin heavy chain gene

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Abstract

Heterozygous mice bearing an Arg403Gln missense mutation in the α cardiac myosin heavy chain gene (α-MHC403/+) exhibit the histopathologic features of human familial hypertrophic cardiomyopathy. Surprisingly, homozygous α-MHC403/403 mice die by postnatal day 8. Here we report that neonatal lethality is caused by a fulminant dilated cardiomyopathy characterized by myocyte dysfunction and loss. Heart tissues from neonatal wild-type and α-MHC403/403 mice demonstrate equivalent switching of MHC isoforms; α isoforms in each increase from 30% at birth to 70% by day 6. Cardiac dimensions and function, studied for the first time in neonatal mice by high frequency (45 MHz) echocardiography, were normal at birth. Between days 4 and 6, α-MHC403/403 mice developed a rapidly progressive cardiomyopathy with left ventricular dilation, wall thinning, and reduced systolic contraction. Histopathology revealed myocardial necrosis with dystrophic calcification. Electron microscopy showed normal architecture intermixed with focal myofibrillar disarray. We conclude that 45-MHz echocardiography is an excellent tool for assessing cardiac physiology in neonatal mice and that the concentration of Gln403 α cardiac MHC in myocytes influences both cell function and cell viability. We speculate that variable incorporation of mutant and normal MHC into sarcomeres of heterozygotes may account for focal myocyte death in familial hypertrophic cardiomyopathy.

Authors

Diane Fatkin, Michael E. Christe, Orlando Aristizabal, Bradley K. McConnell, Shardha Srinivasan, Frederick J. Schoen, Christine E. Seidman, Daniel H. Turnbull, J.G. Seidman

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Year: 2025 2024 2023 2022 2020 2019 2018 2015 2014 2013 2012 2010 2009 2008 2007 2006 2005 2004 2003 2002 2001 2000 1999 1996 1977 Total
Citations: 2 1 2 1 1 2 1 2 2 4 3 5 3 3 2 6 7 4 2 11 10 6 3 1 1 85
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Citations to this article in year 2012 (3)

Title and authors Publication Year
Mitofusins 1 and 2 Are Essential for Postnatal Metabolic Remodeling in Heart
KN Papanicolaou, R Kikuchi, GA Ngoh, KA Coughlan, I Dominguez, WC Stanley, K Walsh
Circulation research 2012
Mutations in MYH7 cause Multi-minicore Disease (MmD) with variable cardiac involvement
T Cullup, PJ Lamont, S Cirak, MS Damian, W Wallefeld, R Gooding, SV Tan, J Sheehan, F Muntoni, S Abbs, CA Sewry, V Dubowitz, NG Laing, H Jungbluth
Neuromuscular Disorders 2012
The cardiac L-type calcium channel distal carboxy terminus autoinhibition is regulated by calcium
SM Crump, DA Andres, G Sievert, J Satin
American journal of physiology. Heart and circulatory physiology 2012

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