With their longest dimension typically being less than 100 nm, molecular motors are significantly below the optical-resolution limit. Despite substantial advances in fluorescence-based imaging methodologies, labeling with beads remains critical for optical-trapping-based investigations of molecular motors. A key experimental challenge in bead-based assays is that the number of motors on a bead is not well defined. Particularly for single-molecule investigations, the probability of single- versus multiple-motor events has not been experimentally investigated. Here, we used bead travel distance as an indicator of multiple-motor transport and determined the lower-bound probability of bead transport by two or more motors. We limited the ATP con...
AbstractThe hand-over-hand stepping mechanism of kinesin at low loads is inadequately understood bec...
Molecular motors such as kinesin-1 work in small teams to actively shuttle cargos in cells, for exam...
AbstractProcessive cytoskeletal motors from the myosin, kinesin, and dynein families walk on actin f...
With their longest dimension typically being less than 100 nm, molecular motors are significant...
Investigations into molecular motor dynamics are increasingly focused on small-scale features of the...
AbstractThe molecular motor protein Kinesin-1 drives intracellular transport of vesicles, by binding...
Recent developments in optical microscopy and nanometer tracking have greatly improved our understan...
AbstractThe movements of beads pulled by several kinesin-1 (conventional kinesin) motors are studied...
A cargo encounters many obstacles during its transport by molecular motors as it moves throughout th...
Recent developments in optical microscopy and nanometer tracking have facilitated our understanding ...
Recent developments in optical microscopy and nanometer tracking have greatly improved our under-sta...
Recent developments in optical microscopy and nanometer tracking have facilitated our understanding ...
ABSTRACT The movements of beads pulled by several kinesin-1 (conventional kinesin) motors are studie...
Single molecule fluorescence imaging is a powerful tool for studying protein dynamics. I have levera...
Intracellular transport along microtubules is a process critical to cell health, andone whose breakd...
AbstractThe hand-over-hand stepping mechanism of kinesin at low loads is inadequately understood bec...
Molecular motors such as kinesin-1 work in small teams to actively shuttle cargos in cells, for exam...
AbstractProcessive cytoskeletal motors from the myosin, kinesin, and dynein families walk on actin f...
With their longest dimension typically being less than 100 nm, molecular motors are significant...
Investigations into molecular motor dynamics are increasingly focused on small-scale features of the...
AbstractThe molecular motor protein Kinesin-1 drives intracellular transport of vesicles, by binding...
Recent developments in optical microscopy and nanometer tracking have greatly improved our understan...
AbstractThe movements of beads pulled by several kinesin-1 (conventional kinesin) motors are studied...
A cargo encounters many obstacles during its transport by molecular motors as it moves throughout th...
Recent developments in optical microscopy and nanometer tracking have facilitated our understanding ...
Recent developments in optical microscopy and nanometer tracking have greatly improved our under-sta...
Recent developments in optical microscopy and nanometer tracking have facilitated our understanding ...
ABSTRACT The movements of beads pulled by several kinesin-1 (conventional kinesin) motors are studie...
Single molecule fluorescence imaging is a powerful tool for studying protein dynamics. I have levera...
Intracellular transport along microtubules is a process critical to cell health, andone whose breakd...
AbstractThe hand-over-hand stepping mechanism of kinesin at low loads is inadequately understood bec...
Molecular motors such as kinesin-1 work in small teams to actively shuttle cargos in cells, for exam...
AbstractProcessive cytoskeletal motors from the myosin, kinesin, and dynein families walk on actin f...