Single molecule properties of the cargo transporting processive molecular motors myosin-V, kinesin-1 and cytoplasmic dynein have been reported. These different classes of motors are known to cooperate during intracellular transport, and multiple motors (of same or different types) are simultaneously present on a given cellular cargo. However, differences in function are observed between these classes of motors—they have different force production ability, have a different average run length and step along their respective filaments using different size steps. Overall, the robustness of the motion they generate could be different. Is this apparent heterogeneity important for intracellular transport? Here we present a brief discussion of how ...
Molecular motors do not work in isolation in-vivo. We highlight some of the coordinations, cooperati...
AbstractSubcellular cargos are often transported by teams of processive molecular motors, which rais...
ii We have reconstituted a simple in vitro system using only mammalian dynein and mammalian kinesin ...
The majority of active transport in the cell is driven by three classes of molecular motors: the kin...
AbstractThe majority of active transport in the cell is driven by three classes of molecular motors:...
AbstractThe number of microtubule motors attached to vesicles, organelles, and other subcellular com...
Eukaryotic cells are divided into a complex system of compartments, with their spatial organization ...
textabstractThree types of motors, myosins, kinesins, and cytoplasmic dynein, cooperate to transport...
Molecular motor proteins are crucial for the proper distribution of organelles and vesicles in cells...
All cells of animals and plants contain complex transport systems based on molecular motors which wa...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
The spatial organization of the cell depends upon intracellular trafficking of cargos hauled along m...
Dynamical spatial organization in living cells provides the framework underlying the fundamental gen...
SummaryBackgroundIntracellular transport via processive kinesin, dynein, and myosin molecular motors...
Diverse cellular processes are driven by the collective force from multiple motor proteins. Disease-...
Molecular motors do not work in isolation in-vivo. We highlight some of the coordinations, cooperati...
AbstractSubcellular cargos are often transported by teams of processive molecular motors, which rais...
ii We have reconstituted a simple in vitro system using only mammalian dynein and mammalian kinesin ...
The majority of active transport in the cell is driven by three classes of molecular motors: the kin...
AbstractThe majority of active transport in the cell is driven by three classes of molecular motors:...
AbstractThe number of microtubule motors attached to vesicles, organelles, and other subcellular com...
Eukaryotic cells are divided into a complex system of compartments, with their spatial organization ...
textabstractThree types of motors, myosins, kinesins, and cytoplasmic dynein, cooperate to transport...
Molecular motor proteins are crucial for the proper distribution of organelles and vesicles in cells...
All cells of animals and plants contain complex transport systems based on molecular motors which wa...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
The spatial organization of the cell depends upon intracellular trafficking of cargos hauled along m...
Dynamical spatial organization in living cells provides the framework underlying the fundamental gen...
SummaryBackgroundIntracellular transport via processive kinesin, dynein, and myosin molecular motors...
Diverse cellular processes are driven by the collective force from multiple motor proteins. Disease-...
Molecular motors do not work in isolation in-vivo. We highlight some of the coordinations, cooperati...
AbstractSubcellular cargos are often transported by teams of processive molecular motors, which rais...
ii We have reconstituted a simple in vitro system using only mammalian dynein and mammalian kinesin ...