Myosin binding-induced activation of the thin filament was examined in isolated cardiac myocytes and single slow and fast skeletal muscle fibers. The number of cross-bridge attachments was increased by stepwise lowering of the [MgATP] in the Ca(2+)-free solution bathing the preparations. The extent of thin filament activation was determined by monitoring steadystate isometric tension at each MgATP concentration. As pMgATP (where pMgATP is -log [MgATP]) was increased from 3.0 to 8.0, isometric tension increased to a peak value in the pMgATP range of 5.0–5.4. The steepness of the tension-pMgATP relationship, between the region of the curve where tension was zero and the peak tension, is hypothesized to be due to myosin-induced cooperative act...
International audienceWhen striated (skeletal and cardiac) muscle is in its relaxed state, myosin mo...
AbstractContraction of heart muscle is regulated by binding of Ca2+ ions to troponin in the muscle t...
Contraction of striated muscle is tightly regulated by the release and sequestration of calcium with...
Myosin binding-induced activation of the thin filament was examined in isolated cardiac myocytes and...
In striated muscle thin filament activation is initiated by Ca2+ binding to troponin C and augmented...
AbstractWe developed a Markov model of cardiac thin filament activation that accounts for interactio...
AbstractIn striated muscle thin filament activation is initiated by Ca2+ binding to troponin C and a...
Cardiac thin filaments contain many troponin C (TnC) molecules, each with one regulatory Ca2+ bindin...
Striated muscle thin filaments contain hundreds of actin monomers and scores of troponins and tropom...
AbstractUnderstanding the effects of thin and thick filament proteins on the kinetics of Ca2+ exchan...
AbstractBased on two criteria, the tightness of packing of myosin rods within the backbone of the fi...
AbstractLength-dependent activation (LDA) is a prominent feature of cardiac muscle characterized by ...
Rationale: Calcium (Ca2+) activation of the thin filament cannot solely explain force regulation in ...
International audienceWhen striated (skeletal and cardiac) muscle is in its relaxed state, myosin mo...
AbstractWe present a model of Ca-regulated thin filaments in cardiac muscle where tropomyosin is tre...
International audienceWhen striated (skeletal and cardiac) muscle is in its relaxed state, myosin mo...
AbstractContraction of heart muscle is regulated by binding of Ca2+ ions to troponin in the muscle t...
Contraction of striated muscle is tightly regulated by the release and sequestration of calcium with...
Myosin binding-induced activation of the thin filament was examined in isolated cardiac myocytes and...
In striated muscle thin filament activation is initiated by Ca2+ binding to troponin C and augmented...
AbstractWe developed a Markov model of cardiac thin filament activation that accounts for interactio...
AbstractIn striated muscle thin filament activation is initiated by Ca2+ binding to troponin C and a...
Cardiac thin filaments contain many troponin C (TnC) molecules, each with one regulatory Ca2+ bindin...
Striated muscle thin filaments contain hundreds of actin monomers and scores of troponins and tropom...
AbstractUnderstanding the effects of thin and thick filament proteins on the kinetics of Ca2+ exchan...
AbstractBased on two criteria, the tightness of packing of myosin rods within the backbone of the fi...
AbstractLength-dependent activation (LDA) is a prominent feature of cardiac muscle characterized by ...
Rationale: Calcium (Ca2+) activation of the thin filament cannot solely explain force regulation in ...
International audienceWhen striated (skeletal and cardiac) muscle is in its relaxed state, myosin mo...
AbstractWe present a model of Ca-regulated thin filaments in cardiac muscle where tropomyosin is tre...
International audienceWhen striated (skeletal and cardiac) muscle is in its relaxed state, myosin mo...
AbstractContraction of heart muscle is regulated by binding of Ca2+ ions to troponin in the muscle t...
Contraction of striated muscle is tightly regulated by the release and sequestration of calcium with...