Stochastic single-molecule dynamics of synaptic membrane protein domains
Abstract
Motivated by single-molecule experiments on synaptic membrane protein domains, we use a stochastic lattice model to study protein reaction and diffusion processes in crowded membranes. We find that the stochastic reaction-diffusion dynamics of synaptic proteins provide a simple physical mechanism for collective fluctuations in synaptic domains, the molecular turnover observed at synaptic domains, key features of the single-molecule trajectories observed for synaptic proteins, and spatially inhomogeneous protein lifetimes at the cell membrane. Our results suggest that central aspects of the single-molecule and collective dynamics observed for membrane protein domains can be understood in terms of stochastic reaction-diffusion processes at the cell membrane.
Keywords
Cite
@article{arxiv.1610.09536,
title = {Stochastic single-molecule dynamics of synaptic membrane protein domains},
author = {Osman Kahraman and Yiwei Li and Christoph A. Haselwandter},
journal= {arXiv preprint arXiv:1610.09536},
year = {2016}
}
Comments
Main text (7 pages, 4 figures, 1 table) and supplementary material (3 pages, 3 figures)