The myosin head consists of a globular catalytic domain and a light chain binding domain (LCBD). The coupling efficiency between ATP hydrolysis and myosin−induced actin movement is known to decline as the LCBD is truncated or destabilized. However, it was not clear whether the observed alteration in the production of force and movement reflects only the mechanical changes to the length of the LCBD or whether these changes also affect the kinetic properties of the catalytic domain. Here we show that replacement of the LCBD with genetically engineered domains of similar rigidity and dimensions produces functional molecular motors with unchanged kinetic properties. The resulting single−chain, single−headed motors were produced in Dictyostelium...
Class I myosins are single−headed motor proteins, implicated in various motile processes including o...
Class I myosins are single−headed motor proteins, implicated in various motile processes including o...
ABSTRACT: Three conserved glycine residues in the reactive thiol region of Dictyostelium discoideum ...
The myosin head consists of a globular catalytic domain and a light chain binding domain (LCBD). The...
The myosin head consists of a globular motor or catalytic domain that contains both the catalytic an...
The myosin head consists of a globular motor or catalytic domain that contains both the catalytic an...
The myosin head consists of a globular motor or catalytic domain that contains both the catalytic an...
The transient kinetic properties of the recombinant myosin head fragments M761 and M781, which both ...
The transient kinetic properties of the recombinant myosin head fragments M761 and M781, which both ...
The transient kinetic properties of the recombinant myosin head fragments M761 and M781, which both ...
The transient kinetic properties of the recombinant myosin head fragments M761 and M781, which both ...
Molecular motors move unidirectionally along polymer tracks, producing movement and force in an ATP-...
Molecular motors move unidirectionally along polymer tracks, producing movement and force in an ATP-...
Molecular motors move unidirectionally along polymer tracks, producing movement and force in an ATP-...
Molecular motors move unidirectionally along polymer tracks, producing movement and force in an ATP-...
Class I myosins are single−headed motor proteins, implicated in various motile processes including o...
Class I myosins are single−headed motor proteins, implicated in various motile processes including o...
ABSTRACT: Three conserved glycine residues in the reactive thiol region of Dictyostelium discoideum ...
The myosin head consists of a globular catalytic domain and a light chain binding domain (LCBD). The...
The myosin head consists of a globular motor or catalytic domain that contains both the catalytic an...
The myosin head consists of a globular motor or catalytic domain that contains both the catalytic an...
The myosin head consists of a globular motor or catalytic domain that contains both the catalytic an...
The transient kinetic properties of the recombinant myosin head fragments M761 and M781, which both ...
The transient kinetic properties of the recombinant myosin head fragments M761 and M781, which both ...
The transient kinetic properties of the recombinant myosin head fragments M761 and M781, which both ...
The transient kinetic properties of the recombinant myosin head fragments M761 and M781, which both ...
Molecular motors move unidirectionally along polymer tracks, producing movement and force in an ATP-...
Molecular motors move unidirectionally along polymer tracks, producing movement and force in an ATP-...
Molecular motors move unidirectionally along polymer tracks, producing movement and force in an ATP-...
Molecular motors move unidirectionally along polymer tracks, producing movement and force in an ATP-...
Class I myosins are single−headed motor proteins, implicated in various motile processes including o...
Class I myosins are single−headed motor proteins, implicated in various motile processes including o...
ABSTRACT: Three conserved glycine residues in the reactive thiol region of Dictyostelium discoideum ...