<div><p>How myosin 10, an unconventional myosin, walks processively along actin is still controversial. Here, we used single molecule fluorescence techniques, TIRF and FIONA, to study the motility and the stepping mechanism of dimerized myosin 10 heavy-meromyosin-like fragment on both single actin filaments and two-dimensional F-actin rafts cross-linked by fascin or α-actinin. As a control, we also tracked and analyzed the stepping behavior of the well characterized processive motor myosin 5a. We have shown that myosin 10 moves processively along both single actin filaments and F-actin rafts with a step size of 31 nm. Moreover, myosin 10 moves more processively on fascin-F-actin rafts than on α-actinin-F-actin rafts, whereas myosin 5a shows...
SummaryAlthough many proteins, receptors, and viruses are transported rearward along filopodia by re...
AbstractMyosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indica...
International audienceMyosin X has features not found in other myosins. Its structure must underlie ...
How myosin 10, an unconventional myosin, walks processively along actin is still controversial. Here...
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...
AbstractMyosin X is a molecular motor that is adapted to select bundled actin filaments over single ...
SummaryUnlike a static and immobile skeleton, the actin cytoskeleton is a highly dynamic network of ...
Class V myosin (myosin-V) was first found as a processive motor that moves along an actin filament w...
SummaryAlthough many proteins, receptors, and viruses are transported rearward along filopodia by re...
ABSTRACT Myosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indic...
AbstractMyosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indica...
Although many proteins, receptors, and viruses are transported rearward along filopodia by retrograd...
Although many proteins, receptors, and viruses are transported rearward along filopodia by retrograd...
Movement of single myosin filaments, synthesized by copolymerization of intact myosin and fluorescen...
SummaryAlthough many proteins, receptors, and viruses are transported rearward along filopodia by re...
AbstractMyosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indica...
International audienceMyosin X has features not found in other myosins. Its structure must underlie ...
How myosin 10, an unconventional myosin, walks processively along actin is still controversial. Here...
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...
AbstractMyosin X is a molecular motor that is adapted to select bundled actin filaments over single ...
SummaryUnlike a static and immobile skeleton, the actin cytoskeleton is a highly dynamic network of ...
Class V myosin (myosin-V) was first found as a processive motor that moves along an actin filament w...
SummaryAlthough many proteins, receptors, and viruses are transported rearward along filopodia by re...
ABSTRACT Myosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indic...
AbstractMyosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indica...
Although many proteins, receptors, and viruses are transported rearward along filopodia by retrograd...
Although many proteins, receptors, and viruses are transported rearward along filopodia by retrograd...
Movement of single myosin filaments, synthesized by copolymerization of intact myosin and fluorescen...
SummaryAlthough many proteins, receptors, and viruses are transported rearward along filopodia by re...
AbstractMyosin-VI is a dimeric isoform of unconventional myosins. Single molecule experiments indica...
International audienceMyosin X has features not found in other myosins. Its structure must underlie ...