Back to Search Start Over

Line Tension Controls Liquid-Disordered + Liquid-Ordered Domain Size Transition in Lipid Bilayers

Authors :
Michael D. Weiner
Thais A. Enoki
Frederick A. Heberle
Mary B. Kim
Wen-Chyan Tsai
Gerald W. Feigenson
Sanjula P. Wickramasinghe
David G. Ackerman
Rebecca D. Usery
Shu Wang
John Katsaras
Thomas Torng
Publication Year :
2017
Publisher :
The Biophysical Society, 2017.

Abstract

To better understand animal cell plasma membranes, we studied simplified models, namely four-component lipid bilayer mixtures. Here we describe the domain size transition in the region of coexisting liquid-disordered (Ld) + liquid-ordered (Lo) phases. This transition occurs abruptly in composition space with domains increasing in size by two orders of magnitude, from tens of nanometers to microns. We measured the line tension between coexisting Ld and Lo domains close to the domain size transition for a variety of lipid mixtures, finding that in every case the transition occurs at a line tension of ∼0.3 pN. A computational model incorporating line tension and dipole repulsion indicated that even small changes in line tension can result in domains growing in size by several orders of magnitude, consistent with experimental observations. We find that other properties of the coexisting Ld and Lo phases do not change significantly in the vicinity of the abrupt domain size transition.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....3859f040511ce8ddd348a33a78e657e7