A two-step subdiffusion behavior of lateral movement of transmembrane proteins in plasma membranes has been observed by using single-molecule experiments. A nested double-compartment model where large compartments are divided into several smaller ones has been proposed in order to explain this observation. These compartments are considered to be delimited by membrane-skeleton "fences" and membrane-protein "pickets" bound to the fences. We perform numerical simulations of a master equation using a simple two-dimensional lattice model to investigate the heterogeneous diffusion dynamics behavior of transmembrane proteins within plasma membranes. We show that the experimentally observed two-step subdiffusion process can be described using fence...
Integral membrane proteins are tiny factories with big responsibilities in signaling and transport. ...
We present a method describing the lateral movement of proteins in cell membranes as observed in FRA...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...
A two-step subdiffusion behavior of lateral movement of transmembrane proteins in plasma membranes h...
A two-step subdiffusion behavior of lateral movement of transmembrane proteins in plasma membranes h...
Many crucial cellular processes take place at the plasma membrane. The latter is a complex, two-dime...
AbstractThe diffusion of proteins in the cell membrane is investigated using computer simulations of...
AbstractThe diffusion of proteins in the cell membrane is investigated using computer simulations of...
We present a method describing the lateral movement of proteins in cell membranes as observed in FRA...
We present a method describing the lateral movement of proteins in cell membranes as observed in FRA...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
The lateral diffusion of embedded proteins along lipid membranes in protein-poor conditions has been...
The current understanding of how receptors diffuse and cluster in the plasma membrane is limited. Da...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
ABSTRACT Patches (lateral heterogeneities) of cell surface membrane proteins and lipids have been im...
Integral membrane proteins are tiny factories with big responsibilities in signaling and transport. ...
We present a method describing the lateral movement of proteins in cell membranes as observed in FRA...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...
A two-step subdiffusion behavior of lateral movement of transmembrane proteins in plasma membranes h...
A two-step subdiffusion behavior of lateral movement of transmembrane proteins in plasma membranes h...
Many crucial cellular processes take place at the plasma membrane. The latter is a complex, two-dime...
AbstractThe diffusion of proteins in the cell membrane is investigated using computer simulations of...
AbstractThe diffusion of proteins in the cell membrane is investigated using computer simulations of...
We present a method describing the lateral movement of proteins in cell membranes as observed in FRA...
We present a method describing the lateral movement of proteins in cell membranes as observed in FRA...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
The lateral diffusion of embedded proteins along lipid membranes in protein-poor conditions has been...
The current understanding of how receptors diffuse and cluster in the plasma membrane is limited. Da...
The cytoskeleton underlying cell membranes may influence the dynamic organization of proteins and li...
ABSTRACT Patches (lateral heterogeneities) of cell surface membrane proteins and lipids have been im...
Integral membrane proteins are tiny factories with big responsibilities in signaling and transport. ...
We present a method describing the lateral movement of proteins in cell membranes as observed in FRA...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...