Title of article :
A Familial Hypertrophic Cardiomyopathy α -Tropomyosin Mutation Causes Severe Cardiac Hypertrophy and Death in Mice
Author/Authors :
Rethinasamy Prabhakar، نويسنده , , Greg P. Boivin، نويسنده , , Ingrid L. Grupp، نويسنده , , Brian Hoit، نويسنده , , Grace Arteaga، نويسنده , , John R. Solaro، نويسنده , , David F. Wieczorek، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Abstract :
Tropomyosin, an essential component of the sarcomere, regulates muscle contraction through Ca2+-mediated activation. Familial hypertrophic cardiomyopathy (FHC) is caused by mutations in numerous cardiac sarcomeric proteins, including myosin heavy and light chains, actin, troponin T and I, myosin binding protein C, and α -tropomyosin. This study developed transgenic mouse lines that encode an FHC mutation in α -tropomyosin; this mutation is an amino acid substitution at codon 180 (Glu180Gly) which occurs in a troponin T binding region. Non-transgenic and control mice expressing wild-type α -tropomyosin demonstrate no morphological or physiological changes. Expression of exogenous mutant tropomyosin leads to a concomitant decrease in endogenous α -tropomyosin without altering the expression of other contractile proteins. Histological analysis shows that initial pathological changes, which include ventricular concentric hypertrophy, fibrosis and atrial enlargement, are detected within 1 month. The disease-associated changes progressively increase and result in death between 4 and 5 months. Physiological analyses of the FHC mice using echocardiography, work-performing heart analyses, and force measurements of cardiac myofibers, demonstrate dramatic functional differences in diastolic performance and increased sensitivity to calcium. This report demonstrates that mutations in α -tropomyosin can be severely disruptive of sarcomeric function, which consequently triggers a dramatic hypertrophic response that culminates in lethality.
Keywords :
transgenic mice , tropomyosin , Cardiac hypertrophy , familial hypertrophic cardiomyopathy , Sarcomeric function.
Journal title :
Journal of Molecular and Cellular Cardiology
Journal title :
Journal of Molecular and Cellular Cardiology