AbstractThe purpose of this paper is to deduce whether the maximum force, steplike movement, and rate of ATP consumption of kinesin, as measured in buffer, are sufficient for the task of fast transport of vesicles in cells. Our results show that moving a 200-nm vesicle in viscoelastic COS7 cytoplasm, with the same steps as observed for kinesin-driven beads in buffer, required a maximum force of 16 pN and work per step of 1±0.7 ATP, if the drag force was assumed to decrease to zero between steps. In buffer, kinesin can develop a force of 6–7 pN while consuming 1 ATP/step, comparable to the required values. As an alternative to assuming that the force vanishes between steps, the measured COS7 viscoelasticity was extrapolated to zero frequency...
We measured the force-velocity curves of single kinesin molecules attached to silica beads moving in...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
AbstractThe purpose of this paper is to deduce whether the maximum force, steplike movement, and rat...
Kinesin is a motor protein that uses the energy derived from the hydrolysis of ATP to power the tran...
Kinesins are molecular motors which transport various cargoes in the cytoplasm of cells and are invo...
ii Cytoskeletal motors like kinesin-1 and dynein are necessary for intracellular transport and a var...
Properties of the microtubule motor protein kinesin-1 have been well characterized in vitro but not ...
AbstractIntracellular transport along cytoskeletal filaments is often mediated by two teams of molec...
The stepping dynamics of cytoskeletal motor proteins determines the dynamics of cargo transport. In ...
Cytoplasmic dynein is a major microtubule motor for minus-end directed movements including retrograd...
In this thesis I study the influence of the cytosol on organelle transport in the eukaryotic cell. I...
Kinesin-1 (hereafter referred to as kinesin) is a major microtubule-based motor protein for plus-end...
AbstractMolecular motor proteins use the energy released from ATP hydrolysis to generate force and h...
A cargo encounters many obstacles during its transport by molecular motors as it moves throughout th...
We measured the force-velocity curves of single kinesin molecules attached to silica beads moving in...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
AbstractThe purpose of this paper is to deduce whether the maximum force, steplike movement, and rat...
Kinesin is a motor protein that uses the energy derived from the hydrolysis of ATP to power the tran...
Kinesins are molecular motors which transport various cargoes in the cytoplasm of cells and are invo...
ii Cytoskeletal motors like kinesin-1 and dynein are necessary for intracellular transport and a var...
Properties of the microtubule motor protein kinesin-1 have been well characterized in vitro but not ...
AbstractIntracellular transport along cytoskeletal filaments is often mediated by two teams of molec...
The stepping dynamics of cytoskeletal motor proteins determines the dynamics of cargo transport. In ...
Cytoplasmic dynein is a major microtubule motor for minus-end directed movements including retrograd...
In this thesis I study the influence of the cytosol on organelle transport in the eukaryotic cell. I...
Kinesin-1 (hereafter referred to as kinesin) is a major microtubule-based motor protein for plus-end...
AbstractMolecular motor proteins use the energy released from ATP hydrolysis to generate force and h...
A cargo encounters many obstacles during its transport by molecular motors as it moves throughout th...
We measured the force-velocity curves of single kinesin molecules attached to silica beads moving in...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...