The effects of tropomyosin on muscle mechanics and kinetics were examined in skeletal myofibrils using a novel method to remove tropomyosin (Tm) and troponin (Tn) and then replace these proteins with altered versions. Extraction employed a low ionic strength rigor solution, followed by sequential reconstitution at physiological ionic strength with Tm then Tn. SDS-PAGE analysis was consistent with full reconstitution, and fluorescence imaging after reconstitution using Oregon-green-labeled Tm indicated the expected localization. Myofibrils remained mechanically viable: maximum isometric forces of myofibrils after sTm/sTn reconstitution (control) were comparable (~84%) to the forces generated by non-reconstituted preparations, and the reconst...
Ca2+ dissociation from the regulatory domain of troponin C may influence the rate of striated muscle...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
The movement of tropomyosin from actin\u27s outer to its inner domain plays a key role in sterically...
Conformational changes in the skeletal troponin complex (sTn) induced by rapidly increasing or decre...
AbstractConformational changes in the skeletal troponin complex (sTn) induced by rapidly increasing ...
Contraction of skeletal and cardiac muscle is controlled by Ca2+ ions via regulatory proteins, tropo...
It is generally believed that calcium binding to Troponin C (TnC) in striated muscle acts as a simp...
The effects of the removal of fast skeletal troponin C (fsTnC) and its replacement by cardiac tropon...
The effects of the removal of fast skeletal troponin C (fsTnC) and its replacement by cardiac tropon...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
AbstractUnderstanding the effects of thin and thick filament proteins on the kinetics of Ca2+ exchan...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
The influence of Ca2+ on isometric force kinetics was studied in skinned rat ventricular trabeculae ...
Skeletal muscle contraction is regulated by the binding of Ca$\sp{2+}$ to the troponin C subunit of ...
Ca2+ dissociation from the regulatory domain of troponin C may influence the rate of striated muscle...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
The movement of tropomyosin from actin\u27s outer to its inner domain plays a key role in sterically...
Conformational changes in the skeletal troponin complex (sTn) induced by rapidly increasing or decre...
AbstractConformational changes in the skeletal troponin complex (sTn) induced by rapidly increasing ...
Contraction of skeletal and cardiac muscle is controlled by Ca2+ ions via regulatory proteins, tropo...
It is generally believed that calcium binding to Troponin C (TnC) in striated muscle acts as a simp...
The effects of the removal of fast skeletal troponin C (fsTnC) and its replacement by cardiac tropon...
The effects of the removal of fast skeletal troponin C (fsTnC) and its replacement by cardiac tropon...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
AbstractUnderstanding the effects of thin and thick filament proteins on the kinetics of Ca2+ exchan...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
The influence of Ca2+ on isometric force kinetics was studied in skinned rat ventricular trabeculae ...
Skeletal muscle contraction is regulated by the binding of Ca$\sp{2+}$ to the troponin C subunit of ...
Ca2+ dissociation from the regulatory domain of troponin C may influence the rate of striated muscle...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
The movement of tropomyosin from actin\u27s outer to its inner domain plays a key role in sterically...