Lipid and protein lateral mobility is essential for biological function. Our theoretical understanding of this mobility can be traced to the seminal work of Saffman and Delbruck, who predicted a logarithmic dependence of the protein diffusion coefficient (i) on the inverse of the size of the protein and (ii) on the "membrane size" for membranes of finite size [Saffman P, Delbruck M (1975) Proc Natl Acad Sci USA 72:3111-3113]. Although the experimental proof of the first prediction is a matter of debate, the second has not previously been thought to be experimentally accessible. Here, we construct just such a geometrically confined membrane by forming lipid bilayer nanotubes of controlled radii connected to giant liposomes. We followed the d...
By performing molecular dynamics simulations with up to 132 million coarse-grained particles in half...
AbstractRecent experiments (Gambin, Y., R. Lopez-Esparza, M. Reffay, E. Sierecki, N. S. Gov, M. Gene...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...
Lipid and protein lateral mobility is essential for biological function. Our theoretical understandi...
We measured the lateral mobility of integral membrane proteins reconstituted in giant unilamellar ve...
The diffusion behavior of biological components in cellular membranes is vital to the function of ce...
We measured the lateral mobility of integral membrane proteins reconstituted in giant unilamellar ve...
The efficient transport of membrane proteins is vital in maintaining life. In this work, we investig...
The lateral diffusion of embedded proteins along lipid membranes in protein-poor conditions has been...
Biological membranes are composed of a large number lipid species differing in hydrophobic length, d...
Biological membranes are composed of a large number lipid species differing in hydrophobic length, d...
The exploration of hindered diffusion is crucial to understanding membrane organization and dynamics...
Lateral diffusion of lipids and transmembrane proteins is essential for biological functions. In the...
Integral membrane proteins are tiny factories with big responsibilities in signaling and transport. ...
AbstractBiological membranes are composed of a large number lipid species differing in hydrophobic l...
By performing molecular dynamics simulations with up to 132 million coarse-grained particles in half...
AbstractRecent experiments (Gambin, Y., R. Lopez-Esparza, M. Reffay, E. Sierecki, N. S. Gov, M. Gene...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...
Lipid and protein lateral mobility is essential for biological function. Our theoretical understandi...
We measured the lateral mobility of integral membrane proteins reconstituted in giant unilamellar ve...
The diffusion behavior of biological components in cellular membranes is vital to the function of ce...
We measured the lateral mobility of integral membrane proteins reconstituted in giant unilamellar ve...
The efficient transport of membrane proteins is vital in maintaining life. In this work, we investig...
The lateral diffusion of embedded proteins along lipid membranes in protein-poor conditions has been...
Biological membranes are composed of a large number lipid species differing in hydrophobic length, d...
Biological membranes are composed of a large number lipid species differing in hydrophobic length, d...
The exploration of hindered diffusion is crucial to understanding membrane organization and dynamics...
Lateral diffusion of lipids and transmembrane proteins is essential for biological functions. In the...
Integral membrane proteins are tiny factories with big responsibilities in signaling and transport. ...
AbstractBiological membranes are composed of a large number lipid species differing in hydrophobic l...
By performing molecular dynamics simulations with up to 132 million coarse-grained particles in half...
AbstractRecent experiments (Gambin, Y., R. Lopez-Esparza, M. Reffay, E. Sierecki, N. S. Gov, M. Gene...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...