AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are expected to compete for binding to a limited number of binding sites available on microtubules. Little is known about how competition for binding sites affects the processivity of molecular motors and, therefore, cargo transport, organelle positioning, and microtubule organization, processes that all depend on the activity of more or less processive motors. Very few studies have been performed in the past to address this question directly. Most studies reported only minor effects of crowding on the velocity of motors. However, a controversy appears to exist regarding the effect of crowding on motor processivity. Here, we use single-molecule i...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
A single kinesin molecule can move for hun-dreds of steps along a microtubule without dissociating. ...
AbstractKinesin and cytoplasmic dynein are microtubule-based motor proteins that actively transport ...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
AbstractObstacles on the surface of microtubules can lead to defective cargo transport, proposed to ...
Obstacles on the surface of microtubules can lead to defective cargo transport, proposed to play a r...
Molecular motors such as kinesin-1 work in small teams to actively shuttle cargos in cells, for exam...
AbstractObstacles on the surface of microtubules can lead to defective cargo transport, proposed to ...
Evidence is presented that the kinesin-related ncd protein is not as processive as kinesin. In low s...
Eukaryotic cells are intricately organized on many length and time scales, from molecules to organel...
Despite the crowdedness of the interior of cells, microtubule-based motor proteins are able to deliv...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
Despite the crowdedness of the interior of cells, microtubule-based motor proteins are able to deliv...
AbstractThe processive movement of single-headed kinesins is studied by using a ratchet model of non...
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...
A single kinesin molecule can move for hun-dreds of steps along a microtubule without dissociating. ...
AbstractKinesin and cytoplasmic dynein are microtubule-based motor proteins that actively transport ...
AbstractInside cells, a multitude of molecular motors and other microtubule-associated proteins are ...
AbstractObstacles on the surface of microtubules can lead to defective cargo transport, proposed to ...
Obstacles on the surface of microtubules can lead to defective cargo transport, proposed to play a r...
Molecular motors such as kinesin-1 work in small teams to actively shuttle cargos in cells, for exam...
AbstractObstacles on the surface of microtubules can lead to defective cargo transport, proposed to ...
Evidence is presented that the kinesin-related ncd protein is not as processive as kinesin. In low s...
Eukaryotic cells are intricately organized on many length and time scales, from molecules to organel...
Despite the crowdedness of the interior of cells, microtubule-based motor proteins are able to deliv...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
Despite the crowdedness of the interior of cells, microtubule-based motor proteins are able to deliv...
AbstractThe processive movement of single-headed kinesins is studied by using a ratchet model of non...
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...
A single kinesin molecule can move for hun-dreds of steps along a microtubule without dissociating. ...
AbstractKinesin and cytoplasmic dynein are microtubule-based motor proteins that actively transport ...