International audienceIt is often assumed in biophysical studies that when multiple identical molecular motors interact with two parallel microtubules, the microtubules will be crosslinked and locked together. The aim of this study is to examine this assumption mathematically. We model the forces and movements generated by motors with a time-continuous Markov process and find that, counter-intuitively, a tug-of-war results from opposing actions of identical motors bound to different microtubules. The model shows that many motors bound to the same microtubule generate a great force applied to a smaller number of motors bound to another microtubule, which increases detachment rate for the motors in minority, stabilizing the directional slidin...
SummaryBackgroundIntracellular transport via processive kinesin, dynein, and myosin molecular motors...
Intracellular transport via the microtubule motors kinesin and dynein plays an important role in mai...
A two-dimensional stochastic model for the dynamics of microtubules in gliding-assay experiments is ...
It is often assumed in biophysical studies that when multiple identical molecular motors interact wi...
Molecular motors are natural nanomachines that use the free energy released from ATP hydrolysis to g...
In many subcellular force-generating systems, groups of motor proteins act antagonistically. Here, w...
Microtubule-crosslinking motor proteins, which slide antiparallel microtubules, are required for the...
Microtubule-crosslinking motor proteins, which slide antiparallel microtubules, are required for the...
Abstract. We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
We analyze experimental motility assays of microtubules undergoing small fluctuations about a "balan...
Most models designed to study the bidirectional movement of cargos as they are driven by molecular m...
We describe a system of stochastic differential equations (SDEs) which model the interaction between...
Intracellular transport is performed by molecular motors that pull cargos along cytoskeletal filamen...
ABSTRACT: Intracellular transport is supported by enzymes called motor proteins that are often coupl...
SummaryBackgroundIntracellular transport via processive kinesin, dynein, and myosin molecular motors...
Intracellular transport via the microtubule motors kinesin and dynein plays an important role in mai...
A two-dimensional stochastic model for the dynamics of microtubules in gliding-assay experiments is ...
It is often assumed in biophysical studies that when multiple identical molecular motors interact wi...
Molecular motors are natural nanomachines that use the free energy released from ATP hydrolysis to g...
In many subcellular force-generating systems, groups of motor proteins act antagonistically. Here, w...
Microtubule-crosslinking motor proteins, which slide antiparallel microtubules, are required for the...
Microtubule-crosslinking motor proteins, which slide antiparallel microtubules, are required for the...
Abstract. We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
We analyze experimental motility assays of microtubules undergoing small fluctuations about a "balan...
Most models designed to study the bidirectional movement of cargos as they are driven by molecular m...
We describe a system of stochastic differential equations (SDEs) which model the interaction between...
Intracellular transport is performed by molecular motors that pull cargos along cytoskeletal filamen...
ABSTRACT: Intracellular transport is supported by enzymes called motor proteins that are often coupl...
SummaryBackgroundIntracellular transport via processive kinesin, dynein, and myosin molecular motors...
Intracellular transport via the microtubule motors kinesin and dynein plays an important role in mai...
A two-dimensional stochastic model for the dynamics of microtubules in gliding-assay experiments is ...