Differential cross-bridge kinetics of FHC myosin mutations R403Q and R453C in heterozygous mouse myocardium
Open Access
- 1 July 2004
- journal article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 287 (1) , H91-H99
- https://doi.org/10.1152/ajpheart.01015.2003
Abstract
The kinetic effects of the cardiac myosin point mutations R403Q and R453C, which underlie lethal forms of familial hypertrophic cardiomyopathy (FHC), were assessed using isolated myosin and skinned strips taken from heterozygous (R403Q/+ and R453C/+) male mouse hearts. Compared with wild-type (WT) mice, actin-activated ATPase was increased by 38% in R403Q/+ and reduced by 45% in R453C/+, maximal velocity of regulated thin filament ( VRTF) in the in vitro motility assay was increased by 8% in R403Q/+ and was not different in R453C/+, myosin concentration at half-maximal VRTF was reduced by 30% in R403Q/+ and not different in R453C/+, and the characteristic frequency for oscillatory work production ( b frequency), determined by sinusoidal analysis in the skinned strip at maximal calcium activation, was 27% lower in R403Q/+ and 18% higher in R453C/+. The calcium sensitivity for isometric tension in the skinned strip was not different in R403Q/+ (pCa50 5.64 ± 0.02) and significantly enhanced in R453C/+ (5.82 ± 0.03) compared with WT (5.58 ± 0.02). We conclude that isolated myosin and skinned strips of R403Q/+ and R453C/+ myocardium show marked differences in cross-bridge kinetic parameters and in calcium sensitivity of force production that indicate different functional roles associated with the location of each point mutation at the molecular level.Keywords
This publication has 30 references indexed in Scilit:
- Consequences of Pressure Overload on Sarcomere Protein Mutation-Induced Hypertrophic CardiomyopathyCirculation, 2003
- The Molecular Genetic Basis for Hypertrophic CardiomyopathyJournal of Molecular and Cellular Cardiology, 2001
- The Genetic Basis for Cardiomyopathy: from Mutation Identification to Mechanistic ParadigmsPublished by Elsevier ,2001
- Altered Crossbridge Kinetics in the αMHC 403/+ Mouse Model of Familial Hypertrophic CardiomyopathyCirculation Research, 1999
- Diastolic dysfunction and altered energetics in the alphaMHC403/+ mouse model of familial hypertrophic cardiomyopathy.Journal of Clinical Investigation, 1998
- Functional analysis of the mutations in the human cardiac beta-myosin that are responsible for familial hypertrophic cardiomyopathy. Implication for the clinical outcome.Journal of Clinical Investigation, 1996
- Maximal Actomyosin ATPase Activity and In Vitro Myosin Motility Are Unaltered in Human Mitral Regurgitation Heart FailureCirculation Research, 1996
- A Mouse Model of Familial Hypertrophic CardiomyopathyScience, 1996
- Protection of human left ventricular myocardium from cutting injury with 2,3-butanedione monoxime.Circulation Research, 1989
- Influence of temperature upon contractile activation and isometric force production in mechanically skinned muscle fibers of the frog.The Journal of general physiology, 1982