Issue 6, 2016

Confined semiflexible polymers suppress fluctuations of soft membrane tubes

Abstract

We use Monte Carlo computer simulations to investigate tubular membrane structures with and without semiflexible polymers confined inside. At small values of membrane bending rigidity, empty fluid and non-fluid membrane tubes exhibit markedly different behavior, with fluid membranes adopting irregular, highly fluctuating shapes and non-fluid membranes maintaining extended tube-like structures. Fluid membranes, unlike non-fluid membranes, exhibit a local maximum in specific heat as their bending rigidity increases. The peak is coincident with a transition to extended tube-like structures. We further find that confining a semiflexible polymer within a fluid membrane tube reduces the specific heat of the membrane, which is a consequence of suppressed membrane shape fluctuations. Polymers with a sufficiently large persistence length can significantly deform the membrane tube, with long polymers leading to localized bulges in the membrane that accommodate regions in which the polymer forms loops. Analytical calculations of the energies of idealized polymer-membrane configurations provide additional insight into the formation of polymer-induced membrane deformations.

Graphical abstract: Confined semiflexible polymers suppress fluctuations of soft membrane tubes

Article information

Article type
Paper
Submitted
15 Oct 2015
Accepted
17 Dec 2015
First published
18 Dec 2015

Soft Matter, 2016,12, 1783-1790

Author version available

Confined semiflexible polymers suppress fluctuations of soft membrane tubes

S. Mirzaeifard and S. M. Abel, Soft Matter, 2016, 12, 1783 DOI: 10.1039/C5SM02556G

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