AbstractThe force-extension curve of single myosin subfragment-1 molecules, interacting in the rigor state with an actin filament, has been investigated at low [ATP] by applying a slow triangle-wave movement to the optical traps holding a bead-actin-bead dumbbell. In combination with a measurement of the overall stiffness of the dumbbell, this allowed characterization of the three extensible elements, the actin-bead links and the myosin. Simultaneously, another method, based on an analysis of bead position covariance, gave satisfactory agreement. The mean covariance-based estimate for the myosin stiffness was 1.79pN/nm (SD=0.7pN/nm; SE=0.06pN/nm (n=166 myosin molecules)), consistent with a recent report (1.7pN/nm) from rabbit muscle fibers....
AbstractThe mechanical load borne by a molecular motor affects its force, sliding distance, and its ...
We describe a dual-trap force-clamp configuration that applies constant loads between a binding prot...
AbstractSkeletal muscle’s ability to shorten and lengthen against a load is a fundamental property, ...
AbstractThe force-extension curve of single myosin subfragment-1 molecules, interacting in the rigor...
AbstractTo characterize elastic properties and geometrical parameters of individual, whole myosin mo...
ABSTRACT Load dependence of the lifetime of the rigor bonds formed between a single myosin molecule ...
AbstractLoad dependence of the lifetime of the rigor bonds formed between a single myosin molecule (...
AbstractMuscle contraction is brought about by the cyclical interaction of myosin with actin coupled...
ABSTRACT To elucidate the mechanism of force generation by actomyosin motor, a measuring system was ...
We have used an optical tweezers-based apparatus to perform single molecule mechanical experiments u...
We have developed a new technique for measurements of piconewton forces and nanometer displacements ...
AbstractCalculation of the size of the power stroke of the myosin motor in contracting muscle requir...
AbstractThe stiffness of the single myosin motor (ɛ) is determined in skinned fibers from rabbit pso...
The micrometer-scale length of some protein polymers allows them to be mechanically manipulated in s...
Ultrafast force-clamp spectroscopy is a single molecule technique based on laser tweezers with sub-m...
AbstractThe mechanical load borne by a molecular motor affects its force, sliding distance, and its ...
We describe a dual-trap force-clamp configuration that applies constant loads between a binding prot...
AbstractSkeletal muscle’s ability to shorten and lengthen against a load is a fundamental property, ...
AbstractThe force-extension curve of single myosin subfragment-1 molecules, interacting in the rigor...
AbstractTo characterize elastic properties and geometrical parameters of individual, whole myosin mo...
ABSTRACT Load dependence of the lifetime of the rigor bonds formed between a single myosin molecule ...
AbstractLoad dependence of the lifetime of the rigor bonds formed between a single myosin molecule (...
AbstractMuscle contraction is brought about by the cyclical interaction of myosin with actin coupled...
ABSTRACT To elucidate the mechanism of force generation by actomyosin motor, a measuring system was ...
We have used an optical tweezers-based apparatus to perform single molecule mechanical experiments u...
We have developed a new technique for measurements of piconewton forces and nanometer displacements ...
AbstractCalculation of the size of the power stroke of the myosin motor in contracting muscle requir...
AbstractThe stiffness of the single myosin motor (ɛ) is determined in skinned fibers from rabbit pso...
The micrometer-scale length of some protein polymers allows them to be mechanically manipulated in s...
Ultrafast force-clamp spectroscopy is a single molecule technique based on laser tweezers with sub-m...
AbstractThe mechanical load borne by a molecular motor affects its force, sliding distance, and its ...
We describe a dual-trap force-clamp configuration that applies constant loads between a binding prot...
AbstractSkeletal muscle’s ability to shorten and lengthen against a load is a fundamental property, ...