The dwell times between two successive steps of the two-headed molecular motor myosin V are governed by non-exponential distributions. These distributions have been determined experimentally for various control parameters such as nucleotide concentrations and external load force. First, we use a simplified network representation to determine the dwell time distributions of myosin V, with the associated dynamics described by a Markov process on networks with absorbing boundaries. Our approach provides a direct relation between the motor's chemical kinetics and its stepping properties. In the absence of an external load, the theoretical distributions quantitatively agree with experimental findings for various nucleotide concentrations. Second...
ABSTRACT The statistics of steps and dwell times in reversible molecular motors differ from those of...
The mechanisms of molecular motors transport are important for understanding multiple biological pro...
The precise details of how myosin-V coordinates the biochemical reactions and mechanical motions of ...
The dwell times between two successive steps of the two-headed molecular motor myosin V are governed...
The mechanical steps of molecular motors that walk processively along filaments are governed by fou...
AbstractThe molecular motor myosin V has been studied extensively both in bulk and single molecule e...
A molecular motor is the nano-scale combustion engine of the cell: it uses a chemical reaction to dr...
<p>(a) In single-molecule experiments with a feedback loop, the data are monitored under constant ex...
AbstractProcessive molecular motors, such as kinesin, myosin, or dynein, convert chemical energy int...
KIF1A, a processive single-headed kinesin superfamily motor, hydrolyzes adenosine triphosphate (ATP)...
KIF1A, a processive single-headed kinesin superfamily motor, hydrolyzes adenosine triphosphate (ATP)...
AbstractMolecular motors, such as kinesin, myosin, or dynein, convert chemical energy into mechanica...
During the processive stepping of a molecular motor on its polar track, a step consists of a long dw...
ABSTRACT Myosin-V is an actin-associated processive molecular motor. Single molecule experiments rev...
AbstractMyosin-V is an actin-associated processive molecular motor. Single molecule experiments reve...
ABSTRACT The statistics of steps and dwell times in reversible molecular motors differ from those of...
The mechanisms of molecular motors transport are important for understanding multiple biological pro...
The precise details of how myosin-V coordinates the biochemical reactions and mechanical motions of ...
The dwell times between two successive steps of the two-headed molecular motor myosin V are governed...
The mechanical steps of molecular motors that walk processively along filaments are governed by fou...
AbstractThe molecular motor myosin V has been studied extensively both in bulk and single molecule e...
A molecular motor is the nano-scale combustion engine of the cell: it uses a chemical reaction to dr...
<p>(a) In single-molecule experiments with a feedback loop, the data are monitored under constant ex...
AbstractProcessive molecular motors, such as kinesin, myosin, or dynein, convert chemical energy int...
KIF1A, a processive single-headed kinesin superfamily motor, hydrolyzes adenosine triphosphate (ATP)...
KIF1A, a processive single-headed kinesin superfamily motor, hydrolyzes adenosine triphosphate (ATP)...
AbstractMolecular motors, such as kinesin, myosin, or dynein, convert chemical energy into mechanica...
During the processive stepping of a molecular motor on its polar track, a step consists of a long dw...
ABSTRACT Myosin-V is an actin-associated processive molecular motor. Single molecule experiments rev...
AbstractMyosin-V is an actin-associated processive molecular motor. Single molecule experiments reve...
ABSTRACT The statistics of steps and dwell times in reversible molecular motors differ from those of...
The mechanisms of molecular motors transport are important for understanding multiple biological pro...
The precise details of how myosin-V coordinates the biochemical reactions and mechanical motions of ...