AbstractIn vitro, single-molecule motility assays allow for the direct characterization of molecular motor properties including stepping velocity and characteristic run length. Although application of these techniques in vivo is feasible, the challenges involved in sample preparation, as well as the added complexity of the cell and its systems, result in a reduced ability to collect large datasets, as well as difficulty in simultaneous observation of the components of the motility system, namely motor and track. To address these challenges, we have developed simulations to characterize motility datasets as a function of sample size, processive run length of the motor, and distribution of track lengths. We introduce the use of a simple boots...
AbstractProcessive molecular motors, such as kinesin, myosin, or dynein, convert chemical energy int...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
textMolecular motor proteins are responsible for the long range transport of vesicles and organelles...
AbstractIn vitro, single-molecule motility assays allow for the direct characterization of molecular...
Cytoskeletal motor proteins are essential to the function of a wide range of intra-cellular mechano-...
Cytoskeletal motor proteins are essential to the function of a wide range of intracellular mechano-s...
Molecular motors convert chemical or electrical energy into mechanical displacement, either linear o...
AbstractKinesin is a two-headed motor protein that transports cargo inside cells by moving stepwise ...
AbstractThe molecular motor protein Kinesin-1 drives intracellular transport of vesicles, by binding...
A molecular motor is the nano-scale combustion engine of the cell: it uses a chemical reaction to dr...
<p>(<b>a</b>) Schematic representation of the experimental setup for single-motor stepping assays. S...
AbstractLinear molecular motors translocate along polymeric tracks using discrete steps. The step le...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
AbstractMany biological machines function in discrete steps, and detection of such steps can provide...
AbstractThe processive movement of single-headed kinesins is studied by using a ratchet model of non...
AbstractProcessive molecular motors, such as kinesin, myosin, or dynein, convert chemical energy int...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
textMolecular motor proteins are responsible for the long range transport of vesicles and organelles...
AbstractIn vitro, single-molecule motility assays allow for the direct characterization of molecular...
Cytoskeletal motor proteins are essential to the function of a wide range of intra-cellular mechano-...
Cytoskeletal motor proteins are essential to the function of a wide range of intracellular mechano-s...
Molecular motors convert chemical or electrical energy into mechanical displacement, either linear o...
AbstractKinesin is a two-headed motor protein that transports cargo inside cells by moving stepwise ...
AbstractThe molecular motor protein Kinesin-1 drives intracellular transport of vesicles, by binding...
A molecular motor is the nano-scale combustion engine of the cell: it uses a chemical reaction to dr...
<p>(<b>a</b>) Schematic representation of the experimental setup for single-motor stepping assays. S...
AbstractLinear molecular motors translocate along polymeric tracks using discrete steps. The step le...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
AbstractMany biological machines function in discrete steps, and detection of such steps can provide...
AbstractThe processive movement of single-headed kinesins is studied by using a ratchet model of non...
AbstractProcessive molecular motors, such as kinesin, myosin, or dynein, convert chemical energy int...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
textMolecular motor proteins are responsible for the long range transport of vesicles and organelles...