AbstractActin filaments copolymerized with both intact and chemically modified actin monomers restored their sliding activity when they were supplemented with tropomyosin extracted from skeletal muscle. In contrast, the ATPase activation of the copolymers was decreased when supplemented with tropomyosin. The results indicate that tropomyosin along with actin monomers may facilitate sliding activity of the entire actin filament but suppress ATPase activation of intact actin monomers themselves. Accordingly, tropomyosin molecules could be viewed as playing a dual role of both mechanical and chemical regulation of actin monomers
AbstractThe sliding speed of unregulated thin filaments in motility assays is only about half that o...
The effects of tropomyosin on muscle mechanics and kinetics were examined in skeletal myofibrils usi...
AbstractStriated muscle contraction is regulated by the actin binding proteins tropomyosin and tropo...
AbstractActin filaments copolymerized with both intact and chemically modified actin monomers restor...
The molecular mechanisms by which troponin (TN)-tropomyosin (TM) regulates the myosin ATPase cycle w...
Tropomyosin is a rod-like coiled-coil protein that forms a continuous filament that is weakly associ...
New data on the molecular mechanism of the regulation of ATPase cycle by troponin-tropomyosin system...
We have chemically modified a fraction of the monomers in actin filaments, and then measured the eff...
AbstractInteractions of the components of reconstituted thin filaments were investigated using a tro...
AbstractTropomyosins, a family of actin-binding regulatory proteins, are present in muscle and non-m...
AbstractSkeletal and cardiac muscle contraction are inhibited by the actin-associated complex of tro...
The structures of muscle thin filaments reconstituted using skeletal actin and cardiac troponin and ...
The elementary steps of the cross-bridge cycle in which troponin C (TnC) was partially extracted wer...
In striated muscle the force generating acto-myosin interaction is sterically regulated by the thin ...
AbstractThe effect of troponin I and caldesmon on phalloidin-rhodamine- and 1,5-IAEDANS-labelled act...
AbstractThe sliding speed of unregulated thin filaments in motility assays is only about half that o...
The effects of tropomyosin on muscle mechanics and kinetics were examined in skeletal myofibrils usi...
AbstractStriated muscle contraction is regulated by the actin binding proteins tropomyosin and tropo...
AbstractActin filaments copolymerized with both intact and chemically modified actin monomers restor...
The molecular mechanisms by which troponin (TN)-tropomyosin (TM) regulates the myosin ATPase cycle w...
Tropomyosin is a rod-like coiled-coil protein that forms a continuous filament that is weakly associ...
New data on the molecular mechanism of the regulation of ATPase cycle by troponin-tropomyosin system...
We have chemically modified a fraction of the monomers in actin filaments, and then measured the eff...
AbstractInteractions of the components of reconstituted thin filaments were investigated using a tro...
AbstractTropomyosins, a family of actin-binding regulatory proteins, are present in muscle and non-m...
AbstractSkeletal and cardiac muscle contraction are inhibited by the actin-associated complex of tro...
The structures of muscle thin filaments reconstituted using skeletal actin and cardiac troponin and ...
The elementary steps of the cross-bridge cycle in which troponin C (TnC) was partially extracted wer...
In striated muscle the force generating acto-myosin interaction is sterically regulated by the thin ...
AbstractThe effect of troponin I and caldesmon on phalloidin-rhodamine- and 1,5-IAEDANS-labelled act...
AbstractThe sliding speed of unregulated thin filaments in motility assays is only about half that o...
The effects of tropomyosin on muscle mechanics and kinetics were examined in skeletal myofibrils usi...
AbstractStriated muscle contraction is regulated by the actin binding proteins tropomyosin and tropo...