English

A lipid bound actin meshwork organizes liquid phase separation in model membranes

Soft Condensed Matter 2018-10-17 v1

Abstract

The eukaryotic cell membrane is connected to a dense actin rich cortex. We present FCS and STED experiments showing that dense membrane bound actin networks have severe influence on lipid phase separation. A minimal actin cortex was bound to a supported lipid bilayer via biotinylated lipid streptavidin complexes (pinning sites). In general, actin binding to ternary membranes prevented macroscopic liquid-ordered and liquid-disordered domain formation, even at low temperature. Instead, depending on the type of pinning lipid, an actin correlated multi-domain pattern was observed. FCS measurements revealed hindered diffusion of lipids in the presence of an actin network. To explain our experimental findings, a new simulation model is proposed, in which the membrane composition, the membrane curvature, and the actin pinning sites are all coupled. Our results reveal a mechanism how cells may prevent macroscopic demixing of their membrane components, while at the same time regulate the local membrane composition.

Keywords

Cite

@article{arxiv.1402.4608,
  title  = {A lipid bound actin meshwork organizes liquid phase separation in model membranes},
  author = {Alf Honigmann and Sina Sadeghi and Jan Keller and Stefan W. Hell and Christian Eggeling and Richard Vink},
  journal= {arXiv preprint arXiv:1402.4608},
  year   = {2018}
}

Comments

Accepted for publication in E-LIFE (2014)