Membrane proteins travel along cellular membranes and reorient themselves to form functional oligomers and proteinlipid complexes. Following the Saffman-Delbruck model, protein-radius sets the rate of this diffusive motion. However, it is unclear how this model, derived for ideal and dilute membranes, performs under crowded conditions of cellular membranes. Here, we study the rotational motion of membrane proteins using molecular dynamics simulations of coarse-grained membranes and 2-dimensional Lennard-Jones fluids with varying levels of crowding. We find that the Saffman-Delbruck model captures the size-dependency of rotational diffusion under dilute conditions where protein-protein interactions are negligible, whereas stronger scaling la...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
There is no comprehensive model for the dynamics of cellular membranes. Even mechanisms of basic dyn...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...
The lateral diffusion of embedded proteins along lipid membranes in protein-poor conditions has been...
Integral membrane proteins are tiny factories with big responsibilities in signaling and transport. ...
We investigate system-size effects on the rotational diffusion of membrane proteins and other membra...
We investigate system-size effects on the rotational diffusion of membrane proteins and other membra...
Biomembranes are exceptionally crowded with proteins with typical protein-to-lipid ratios being arou...
Biomembranes are exceptionally crowded with proteins with typical protein-to-lipid ratios being arou...
Shear viscosity of lipid membranes dictates how fast lipids, proteins, and other membrane constituen...
Coarse-grained molecular dynamics simulations of the E. coli outer membrane proteins FhuA, LamB, Nan...
International audienceWe consider the hydrodynamics of lipid bilayers containing transmembrane prote...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
Atomistic simulations of three different proteins at different concentrations are performed to obtai...
In this article, we review our results on diffusion and phase separation in lipid membranes, as well...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
There is no comprehensive model for the dynamics of cellular membranes. Even mechanisms of basic dyn...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...
The lateral diffusion of embedded proteins along lipid membranes in protein-poor conditions has been...
Integral membrane proteins are tiny factories with big responsibilities in signaling and transport. ...
We investigate system-size effects on the rotational diffusion of membrane proteins and other membra...
We investigate system-size effects on the rotational diffusion of membrane proteins and other membra...
Biomembranes are exceptionally crowded with proteins with typical protein-to-lipid ratios being arou...
Biomembranes are exceptionally crowded with proteins with typical protein-to-lipid ratios being arou...
Shear viscosity of lipid membranes dictates how fast lipids, proteins, and other membrane constituen...
Coarse-grained molecular dynamics simulations of the E. coli outer membrane proteins FhuA, LamB, Nan...
International audienceWe consider the hydrodynamics of lipid bilayers containing transmembrane prote...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
Atomistic simulations of three different proteins at different concentrations are performed to obtai...
In this article, we review our results on diffusion and phase separation in lipid membranes, as well...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
There is no comprehensive model for the dynamics of cellular membranes. Even mechanisms of basic dyn...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...