Investigations into molecular motor dynamics are increasingly focused on small-scale features of the motor's motion. We define performance measures of a common type of single-molecule motility assay, the bead assay, for its ability to detect such features. Using numerical models, we explore the dependence of assay performance on a number of experimentally controllable parameters, including bead size, optical force, and the method of attaching the bead to the motor. We find that the best parameter choice depends on the objective of the experiments, and give a guide to parameter selection. Comparison of the models against experimental data from a recent bead assay of myosin V exemplifies how our methods can also be used to extract additional ...
AbstractIn vitro, single-molecule motility assays allow for the direct characterization of molecular...
Myosin-V is a molecular motor that moves processively along its actin track. We have used a feedback...
AbstractThe directional movement on a microtubule of a plastic bead connected elastically to a singl...
Investigations into molecular motor dynamics are increasingly focused on small-scale features of the...
<p>(A) A gliding motor moves a bead along the cell axis. Past a preset threshold movement, the shutt...
With their longest dimension typically being less than 100 nm, molecular motors are significantly be...
With their longest dimension typically being less than 100 nm, molecular motors are significant...
AbstractThe motility assay of K. Visscher, M. J. Schnitzer, and S. M. Block (Nature, 400:184–189, 19...
AbstractLinear molecular motors translocate along polymeric tracks using discrete steps. The step le...
Linear molecular motors translocate along polymeric tracks using discrete steps. The step length is ...
Recent developments in optical microscopy and nanometer tracking have greatly improved our understan...
We model analytically the dynamics of a cytoskeletal filament in a motility assay. The filament is d...
Recent developments in optical microscopy and nanometer tracking have greatly improved our under-sta...
xii, 112 p. : ill. (some col.)Biological molecular motors exist in an interesting regime of physics ...
To elucidate the physical properties of the force generation mechanism in molecular motors, we have ...
AbstractIn vitro, single-molecule motility assays allow for the direct characterization of molecular...
Myosin-V is a molecular motor that moves processively along its actin track. We have used a feedback...
AbstractThe directional movement on a microtubule of a plastic bead connected elastically to a singl...
Investigations into molecular motor dynamics are increasingly focused on small-scale features of the...
<p>(A) A gliding motor moves a bead along the cell axis. Past a preset threshold movement, the shutt...
With their longest dimension typically being less than 100 nm, molecular motors are significantly be...
With their longest dimension typically being less than 100 nm, molecular motors are significant...
AbstractThe motility assay of K. Visscher, M. J. Schnitzer, and S. M. Block (Nature, 400:184–189, 19...
AbstractLinear molecular motors translocate along polymeric tracks using discrete steps. The step le...
Linear molecular motors translocate along polymeric tracks using discrete steps. The step length is ...
Recent developments in optical microscopy and nanometer tracking have greatly improved our understan...
We model analytically the dynamics of a cytoskeletal filament in a motility assay. The filament is d...
Recent developments in optical microscopy and nanometer tracking have greatly improved our under-sta...
xii, 112 p. : ill. (some col.)Biological molecular motors exist in an interesting regime of physics ...
To elucidate the physical properties of the force generation mechanism in molecular motors, we have ...
AbstractIn vitro, single-molecule motility assays allow for the direct characterization of molecular...
Myosin-V is a molecular motor that moves processively along its actin track. We have used a feedback...
AbstractThe directional movement on a microtubule of a plastic bead connected elastically to a singl...