Collision induced spatial organization of microtubules
Soft Condensed Matter
2010-09-29 v1
Abstract
The dynamic behavior of microtubules in solution can be strongly modified by interactions with walls or other structures. We examine here a microtubule growth model where the increase in size of the plus-end is perturbed by collisions with other microtubules. We show that such a simple mechanism of constrained growth can induce ordered structures and patterns from an initially isotropic and homogeneous suspension. First, microtubules self-organize locally in randomly oriented domains that grow and compete with each other. By imposing even a weak orientation bias, external forces like gravity or cellular boundaries may bias the domain distribution eventually leading to a macroscopic sample orientation.
Cite
@article{arxiv.cond-mat/0608717,
title = {Collision induced spatial organization of microtubules},
author = {Vladimir A. Baulin and Carlos M. Marques and Fabrice Thalmann},
journal= {arXiv preprint arXiv:cond-mat/0608717},
year = {2010}
}
Comments
Submitted to Biophysical Journal