Membrane adhesion via competing receptor/ligand bonds
Abstract
The adhesion of biological membranes is controlled by various types of receptor and ligand molecules. In this letter, we present a statistical-mechanical model for membranes that interact via receptor/ligand bonds of two different lengths. We show that the equilibrium phase behavior of the membranes is governed by an effective double-well potential. The depths of the two potential wells depend on the concentrations and binding energies of the receptors and ligands. The membranes are unbound for small, and bound for larger potential depths. In the bound state, the length mismatch of the receptor/ligand bonds can lead to lateral phase separation. We derive explicit scaling laws for the critical points of unbinding and phase separation, and determine the prefactors by comparison with Monte Carlo results.
Keywords
Cite
@article{arxiv.cond-mat/0610020,
title = {Membrane adhesion via competing receptor/ligand bonds},
author = {Mesfin Asfaw and Bartosz Rozycki and Reinhard Lipowsky and Thomas R. Weikl},
journal= {arXiv preprint arXiv:cond-mat/0610020},
year = {2009}
}
Comments
7 pages, 3 figures; to appear in Europhys. Lett