Biological membranes typically contain a large number of different components dispersed in small concentrations in the main membrane phase, including proteins, sugars, and lipids of varying geometrical properties. Most of these components do not bind the cargo. Here, we show that such "inert" components can be crucial for the precise control of cross-membrane trafficking. Using a statistical mechanics model and molecular dynamics simulations, we demonstrate that the presence of inert membrane components of small isotropic curvatures dramatically influences cargo endocytosis, even if the total spontaneous curvature of such a membrane remains unchanged. Curved lipids, such as cholesterol, as well as asymmetrically included proteins and tether...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
AbstractSynthetic membrane systems, such as giant unilamellar vesicles and solid supported lipid bil...
Phase and shape heterogeneities in biomembranes are of functional importance. However, it is difficu...
Biological membranes typically contain a large number of different components dispersed in small con...
International audienceSorting of lipids and proteins is a key process allowing eukaryotic cells to e...
Lipid membranes are versatile structures that interact with various kinds of proteins to maintain th...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
Membrane curvature controls the spatial organization and activity of cells. Lipid sorting in cell me...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
AbstractThe sculpting of membranes into dynamic, curved shapes is central to intracellular cargo tra...
Lipid segregation occurs in biological membranes, but how this plays into cellular processes like en...
AbstractThe sorting of lipids and proteins in cellular trafficking pathways is a process of central ...
During the vesicular trafficking process, cellular membranes undergo dynamic morphological changes, ...
AbstractThe curvature of biological membranes is controlled by membrane-bound proteins. For example,...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
AbstractSynthetic membrane systems, such as giant unilamellar vesicles and solid supported lipid bil...
Phase and shape heterogeneities in biomembranes are of functional importance. However, it is difficu...
Biological membranes typically contain a large number of different components dispersed in small con...
International audienceSorting of lipids and proteins is a key process allowing eukaryotic cells to e...
Lipid membranes are versatile structures that interact with various kinds of proteins to maintain th...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
Membrane curvature controls the spatial organization and activity of cells. Lipid sorting in cell me...
The composition and morphology of cellular membranes are highly dynamic. Potential parameters modula...
AbstractThe sculpting of membranes into dynamic, curved shapes is central to intracellular cargo tra...
Lipid segregation occurs in biological membranes, but how this plays into cellular processes like en...
AbstractThe sorting of lipids and proteins in cellular trafficking pathways is a process of central ...
During the vesicular trafficking process, cellular membranes undergo dynamic morphological changes, ...
AbstractThe curvature of biological membranes is controlled by membrane-bound proteins. For example,...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
AbstractSynthetic membrane systems, such as giant unilamellar vesicles and solid supported lipid bil...
Phase and shape heterogeneities in biomembranes are of functional importance. However, it is difficu...