Contraction in striated muscles is regulated by Ca2+-dependent movement of tropomyosin-troponin on thin filaments. Interactions of charged amino acid residues between the surfaces of tropomyosin and actin are believed to play an integral role in this steric mechanism by influencing the position of tropomyosin on the filaments. To investigate this possibility further, thin filaments were isolated from troponin-regulated, indirect flight muscles of Drosophila mutants that express actin with an amino acid charge reversal at residue 93 located at the interface between actin subdomains 1 and 2, in which a lysine residue is substituted for a glutamic acid. Electron microscopy and 3D helical reconstruction were employed to evaluate the structural ...
The regulation of striated muscle contraction involves changes in the interactions of troponin and t...
Substitution of Arg for Gly residue in 91th position in β-tropomyosin caused by a point mutation in ...
The cyclical interaction between the force-generating protein myosin and actin is the mechanism resp...
Elongated tropomyosin, associated with actin-subunits along the surface of thin filaments, makes ele...
AbstractWild-type and mutant thin filaments were isolated directly from “myosinless” Drosophila indi...
Contraction of striated muscles is regulated by tropomyosin strands that run continuously along acti...
Striated muscle contraction is regulated by the translocation of troponin-tropomyosin strands over t...
The molecular switching mechanism governing skeletal and cardiac muscle contraction couples the bind...
The troponin (Tn) complex regulates the thin filament of striated muscle by transducing [Ca2+] fluct...
Human point mutations in beta- and gamma-tropomyosin induce contractile deregulation, skeletal muscl...
Tropomyosin and troponin are key regulatory proteins associated with muscle thin filaments. Regulati...
The molecular regulation of striated muscle contraction couples the binding and dissociation of Ca(2...
AbstractInteractions of the components of reconstituted thin filaments were investigated using a tro...
ABSTRACT Alterations in the troponin complex can lead to increases or decreases in contractile activ...
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...
Substitution of Arg for Gly residue in 91th position in β-tropomyosin caused by a point mutation in ...
The cyclical interaction between the force-generating protein myosin and actin is the mechanism resp...
Elongated tropomyosin, associated with actin-subunits along the surface of thin filaments, makes ele...
AbstractWild-type and mutant thin filaments were isolated directly from “myosinless” Drosophila indi...
Contraction of striated muscles is regulated by tropomyosin strands that run continuously along acti...
Striated muscle contraction is regulated by the translocation of troponin-tropomyosin strands over t...
The molecular switching mechanism governing skeletal and cardiac muscle contraction couples the bind...
The troponin (Tn) complex regulates the thin filament of striated muscle by transducing [Ca2+] fluct...
Human point mutations in beta- and gamma-tropomyosin induce contractile deregulation, skeletal muscl...
Tropomyosin and troponin are key regulatory proteins associated with muscle thin filaments. Regulati...
The molecular regulation of striated muscle contraction couples the binding and dissociation of Ca(2...
AbstractInteractions of the components of reconstituted thin filaments were investigated using a tro...
ABSTRACT Alterations in the troponin complex can lead to increases or decreases in contractile activ...
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...
Substitution of Arg for Gly residue in 91th position in β-tropomyosin caused by a point mutation in ...
The cyclical interaction between the force-generating protein myosin and actin is the mechanism resp...