The regulatory domain of scallop myosin is a three-chain protein complex that switches on this motor in response to Ca2+ binding. This domain has been crystallized and the structure solved to 2.8 Å resolution. Side-chain interactions link the two light chains in tandem to adjacent segments of the heavy chain bearing the IQ-sequence motif. The Ca2+-binding site is a novel EF-hand motif on the essential light chain and is stabilized by linkages involving the heavy chain and both light chains, accounting for the requirement of all three chains for Ca2+ binding and regulation in the intact myosin molecule
AbstractThe crystal structure of a proteolytic subfragment from scallop striated muscle myosin, comp...
Myosin filaments of muscle are regulated either by phosphorylation of their regulatory light chains ...
To examine the functional role of the essential light chain (ELC) in the phosphorylation-dependent r...
Article Nature 368, 306 − 312 (1994); doi:10.1038/368306a0 Structure of the regulatory domain of sc...
Article Nature 368, 306 − 312 (1994); doi:10.1038/368306a0 Structure of the regulatory domain of sc...
Article Nature 368, 306 − 312 (1994); doi:10.1038/368306a0 Structure of the regulatory domain of sc...
AbstractBackground: In contrast to the myosins of vertebrate skeletal muscle, molluscan myosins are ...
AbstractBackground: In contrast to the myosins of vertebrate skeletal muscle, molluscan myosins are ...
Myosin filaments of muscle are regulated either by phosphorylation of their regulatory light chains ...
AbstractBackground In contrast to conventional muscle myosins, where two different light chains (LCs...
Calcium binding was studied with two regulatory light chains (RLC-a and RLC-b) of smooth muscle myos...
AbstractWe have extended the X-ray structure determination of the complete scallop myosin head in th...
AbstractWe have determined the crystal structure of a phosphorylated smooth-muscle myosin light chai...
AbstractTo examine the role of two light chains (LCs) of the myosin II on Ca2+ regulation, we produc...
The myosin 2 family of molecular motors includes isoforms regulated n different ways. Vertebrate smo...
AbstractThe crystal structure of a proteolytic subfragment from scallop striated muscle myosin, comp...
Myosin filaments of muscle are regulated either by phosphorylation of their regulatory light chains ...
To examine the functional role of the essential light chain (ELC) in the phosphorylation-dependent r...
Article Nature 368, 306 − 312 (1994); doi:10.1038/368306a0 Structure of the regulatory domain of sc...
Article Nature 368, 306 − 312 (1994); doi:10.1038/368306a0 Structure of the regulatory domain of sc...
Article Nature 368, 306 − 312 (1994); doi:10.1038/368306a0 Structure of the regulatory domain of sc...
AbstractBackground: In contrast to the myosins of vertebrate skeletal muscle, molluscan myosins are ...
AbstractBackground: In contrast to the myosins of vertebrate skeletal muscle, molluscan myosins are ...
Myosin filaments of muscle are regulated either by phosphorylation of their regulatory light chains ...
AbstractBackground In contrast to conventional muscle myosins, where two different light chains (LCs...
Calcium binding was studied with two regulatory light chains (RLC-a and RLC-b) of smooth muscle myos...
AbstractWe have extended the X-ray structure determination of the complete scallop myosin head in th...
AbstractWe have determined the crystal structure of a phosphorylated smooth-muscle myosin light chai...
AbstractTo examine the role of two light chains (LCs) of the myosin II on Ca2+ regulation, we produc...
The myosin 2 family of molecular motors includes isoforms regulated n different ways. Vertebrate smo...
AbstractThe crystal structure of a proteolytic subfragment from scallop striated muscle myosin, comp...
Myosin filaments of muscle are regulated either by phosphorylation of their regulatory light chains ...
To examine the functional role of the essential light chain (ELC) in the phosphorylation-dependent r...