Morphological and dynamical properties of semiflexible filaments driven by molecular motors
Abstract
We consider an explicit model of a semiflexible filament moving in two dimensions on a gliding assay of motor proteins, which attach to and detach from filament segments stochastically, with a detachment rate that depends on the local load experienced. Attached motor proteins move along the filament to one of its ends with a velocity that varies non-linearly with the motor protein extension. The resultant force on the filament drives it out of equilibrium. The distance from equilibrium is reflected in the end-to-end distribution, modified bending stiffness, and a transition to spiral morphology of the polymer. The local stress dependence of activity results in correlated fluctuations in the speed and direction of the center of mass leading to a series of ballistic-diffusive crossovers in its dynamics.
Keywords
Cite
@article{arxiv.1807.10152,
title = {Morphological and dynamical properties of semiflexible filaments driven by molecular motors},
author = {Nisha Gupta and Abhishek Chaudhuri and Debasish Chaudhuri},
journal= {arXiv preprint arXiv:1807.10152},
year = {2019}
}
Comments
11 pages, 11 figures; version accepted for publication in Physical Review E