AbstractMyosin X is a molecular motor that is adapted to select bundled actin filaments over single actin filaments for processive motility. Its unique form of motility suggests that myosin X's stepping mechanism takes advantage of the arrangement of actin filaments and the additional target binding sites found within a bundle. Here we use fluorescence imaging with one-nanometer accuracy to show that myosin X takes steps of ∼18 nm along a fascin-actin bundle. This step-size is well short of the 36-nm step-size observed in myosin V and myosin VI that corresponds to the actin pseudohelical repeat distance. Myosin X is able to walk along bundles with this step-size if it straddles two actin filaments, but would be quickly forced to spiral into...
SummaryAlthough many proteins, receptors, and viruses are transported rearward along filopodia by re...
AbstractMyosin VI is a two-headed molecular motor that moves along an actin filament in the directio...
AbstractWe present a model study of gliding assays in which actin filaments are moved by nonprocessi...
AbstractMyosin X is a molecular motor that is adapted to select bundled actin filaments over single ...
Myosin X is an unconventional myosin with puzzling motility properties. We studied the motility of d...
How myosin 10, an unconventional myosin, walks processively along actin is still controversial. Here...
<div><p>How myosin 10, an unconventional myosin, walks processively along actin is still controversi...
International audienceMyosin X has features not found in other myosins. Its structure must underlie ...
SummaryUnlike a static and immobile skeleton, the actin cytoskeleton is a highly dynamic network of ...
Movement of single myosin filaments, synthesized by copolymerization of intact myosin and fluorescen...
AbstractMyosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indica...
AbstractMyosin V is a homodimeric motor protein involved in trafficking of vesicles in the cell. It ...
Although many proteins, receptors, and viruses are transported rearward along filopodia by retrograd...
SummaryUnlike a static and immobile skeleton, the actin cytoskeleton is a highly dynamic network of ...
Although many proteins, receptors, and viruses are transported rearward along filopodia by retrograd...
SummaryAlthough many proteins, receptors, and viruses are transported rearward along filopodia by re...
AbstractMyosin VI is a two-headed molecular motor that moves along an actin filament in the directio...
AbstractWe present a model study of gliding assays in which actin filaments are moved by nonprocessi...
AbstractMyosin X is a molecular motor that is adapted to select bundled actin filaments over single ...
Myosin X is an unconventional myosin with puzzling motility properties. We studied the motility of d...
How myosin 10, an unconventional myosin, walks processively along actin is still controversial. Here...
<div><p>How myosin 10, an unconventional myosin, walks processively along actin is still controversi...
International audienceMyosin X has features not found in other myosins. Its structure must underlie ...
SummaryUnlike a static and immobile skeleton, the actin cytoskeleton is a highly dynamic network of ...
Movement of single myosin filaments, synthesized by copolymerization of intact myosin and fluorescen...
AbstractMyosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indica...
AbstractMyosin V is a homodimeric motor protein involved in trafficking of vesicles in the cell. It ...
Although many proteins, receptors, and viruses are transported rearward along filopodia by retrograd...
SummaryUnlike a static and immobile skeleton, the actin cytoskeleton is a highly dynamic network of ...
Although many proteins, receptors, and viruses are transported rearward along filopodia by retrograd...
SummaryAlthough many proteins, receptors, and viruses are transported rearward along filopodia by re...
AbstractMyosin VI is a two-headed molecular motor that moves along an actin filament in the directio...
AbstractWe present a model study of gliding assays in which actin filaments are moved by nonprocessi...