Despite the crowdedness of the interior of cells, microtubule-based motor proteins are able to deliver cargoes rapidly and reliably throughout the cytoplasm. We hypothesize that motor proteins may be adapted to operate in crowded environments by having molecular properties that prevent them from forming traffic jams. To test this hypothesis, we reconstituted high-density traffic of purified kinesin-8 motor protein, a highly processive motor with long end-residency time, along microtubules in a total internal-reflection fluorescence microscopy assay. We found that traffic jams, characterized by an abrupt increase in the density of motors with an associated abrupt decrease in motor speed, form even in the absence of other obstructing proteins...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
Despite the crowdedness of the interior of cells, microtubule-based motor proteins are able to deliv...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
Motor proteins in living cells, such as kinesin and dynein, can move processively along the microtub...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
AbstractThe assembly and disassembly dynamics of microtubules (MTs) is tightly controlled by MT-asso...
Obstacles on the surface of microtubules can lead to defective cargo transport, proposed to play a r...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
Much of a modern person\u27s day is spent trying to get from point A to point B. So, too, in the cel...
AbstractObstacles on the surface of microtubules can lead to defective cargo transport, proposed to ...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
noS cro f t l fin als the jam de Re and diffuses along MTs (14), Kip3p is a highly processive they d...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
Despite the crowdedness of the interior of cells, microtubule-based motor proteins are able to deliv...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
Motor proteins in living cells, such as kinesin and dynein, can move processively along the microtub...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
AbstractThe assembly and disassembly dynamics of microtubules (MTs) is tightly controlled by MT-asso...
Obstacles on the surface of microtubules can lead to defective cargo transport, proposed to play a r...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
Much of a modern person\u27s day is spent trying to get from point A to point B. So, too, in the cel...
AbstractObstacles on the surface of microtubules can lead to defective cargo transport, proposed to ...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
noS cro f t l fin als the jam de Re and diffuses along MTs (14), Kip3p is a highly processive they d...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...