paper

Active Curved Polymers form Vortex Patterns on Membranes

arXiv:1602.08976 · doi:10.1103/PhysRevLett.116.178301

Abstract

Recent in vitro experiments with FtsZ polymers show self-organization into different dynamic patterns, including structures reminiscent of the bacterial Z-ring. We model FtsZ polymers as active particles moving along chiral, circular paths by Brownian dynamics simulations and a Boltzmann approach. Our two conceptually different methods point to a generic phase behavior. At intermediate particle densities, we find self-organization into vortex structures including closed rings. Moreover, we show that the dynamics at the onset of pattern formation is described by a generalized complex Ginzburg-Landau equation.

3 figures in the main text, 4 figures in the supplemental material

Active Curved Polymers form Vortex Patterns on Membranes · wovepaper