We investigate the interplay of domain formation and adhesion in mixed-lipid membranes. Giant unilamellar vesicles consisting of two- and three-component lipid mixtures are studied using confocal fluorescence microscopy. Upon driving the system towards the demixing transition, phase separation is invariably found to occur first in regions where membranes adhere to one another, despite identical lipid headgroups and negligible curvature effects. We propose a simple generic mechanism based on the suppression of thermal shape fluctuations to explain these observations. Our findings suggest novel possibilities by which biomembranes can create and utilize lateral lipid heterogeneities
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
V.D. Gordon (currently with UT Austin), C.M.J. Andrew, S.U. Egelhaaf, and W.C. K. Poon are with SUPA...
The University of Texas at Austin, Department of Physics and Center for Nonlinear Dynamics, 2515 Spe...
The University of Texas at Austin, Department of Physics and Center for Nonlinear Dynamics, 2515 Spe...
We present optical observations of phase separation in mixed model membranes in the form of giant un...
AbstractRegions of contact between cells are frequently enriched in or depleted of certain protein o...
Membrane adhesion is a vital component of many biological processes. Heterogeneities in lipid and pr...
Cell plasma membranes are a heterogeneous mixture of lipids and membrane proteins. The importance of...
Membrane adhesion is a vital component of many biological processes. Heterogeneities in lipid and pr...
Abstract: In this review, we report on the organization of lipid molecules forming biomembranes. Mor...
Phase and shape heterogeneities in biomembranes are of functional importance. However, it is difficu...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
Lipid membranes regulate the flow of materials and information between cells and their organelles. F...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
V.D. Gordon (currently with UT Austin), C.M.J. Andrew, S.U. Egelhaaf, and W.C. K. Poon are with SUPA...
The University of Texas at Austin, Department of Physics and Center for Nonlinear Dynamics, 2515 Spe...
The University of Texas at Austin, Department of Physics and Center for Nonlinear Dynamics, 2515 Spe...
We present optical observations of phase separation in mixed model membranes in the form of giant un...
AbstractRegions of contact between cells are frequently enriched in or depleted of certain protein o...
Membrane adhesion is a vital component of many biological processes. Heterogeneities in lipid and pr...
Cell plasma membranes are a heterogeneous mixture of lipids and membrane proteins. The importance of...
Membrane adhesion is a vital component of many biological processes. Heterogeneities in lipid and pr...
Abstract: In this review, we report on the organization of lipid molecules forming biomembranes. Mor...
Phase and shape heterogeneities in biomembranes are of functional importance. However, it is difficu...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
Lipid membranes regulate the flow of materials and information between cells and their organelles. F...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...
The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the fo...