Stochastic force generation by small ensembles of myosin II motors
arXiv:1202.3038 · doi:10.1103/PhysRevLett.108.188101
Abstract
Forces in the actin cytoskeleton are generated by small groups of non-processive myosin II motors for which stochastic effects are highly relevant. Using a crossbridge model with the assumptions of fast powerstroke kinetics and equal load sharing between equivalent states, we derive a one-step master equation for the activity of a finite-sized ensemble of mechanically coupled myosin II motors. For constant external load, this approach yields analytical results for duty ratio and force-velocity relation as a function of ensemble size. We find that stochastic effects cannot be neglected for ensemble sizes below 15. The one-step master equation can be used also for efficient computer simulations with linear elastic external load and reveals the sequence of build-up of force and ensemble rupture that is characteristic for reconstituted actomyosin contractility.
revtex, 5 pages, 4 figures
Cited by in corpus (15)
- Physics of adherent cells
- A versatile framework for simulating the dynamic mechanical structure of cytoskeletal networks
- Muscle as a meta-material operating near a critical point
- Physics of muscle contraction
- Stochastic dynamics of small ensembles of non-processive molecular motors: the parallel cluster model
- Mechanics of collective unfolding
- Mechanosensitive Self-Assembly of Myosin II Minifilaments
- Sensitivity of small myosin II ensembles from different isoforms to mechanical load and ATP concentration
- Stochastic dynamics and mechanosensitivity of myosin II minifilaments
- A Python based automated tracking routine for myosin II filaments
- First-passage times in complex energy landscapes: a case study with nonmuscle myosin II assembly
- Molecular force spectroscopy of kinetochore-microtubule attachment {\it in silico}: Mechanical signatures of an unusual catch bond and collective effects
- Pressure sensing using vertically aligned carbon nanotubes on a flexible substrate
- Force generation by Myosin II Filaments in Compliant Networks
- Predicting the Directional Transport of Multivalent Cargo from Position Dependent Binding and Unbinding Rates