A) Simulations of the WPGAP model for various diffusion rates. The diffusion coefficient for cytosolic species is taken to be 100Du. B) Relationship between the membrane diffusion coefficient and spot size. C) Relationship between the membrane diffusion coefficient and spot eccentricity. D) Radial distributions for the spatial distributions of parameters modulated by an intermediary species M in Fig 2D. E) Active GAP concentrations for the results shown in Fig 2D. (TIF)</p
AbstractMost of the important types of interactions that occur in cells can be characterized as bind...
We asymptotically calculate the spatially averaged mean first passage time (MFPT) of a diffusing cha...
AbstractThe intricate geometry of cytoskeletal networks and internal membranes causes the space avai...
T = total amount of GTPase, σ = GTPase production rate. All simulation domains have periodic boundar...
A) Mean boundary layer size as a function of the diffusion constant D ≡ DD = DE. Red lines represent...
Many crucial cellular processes take place at the plasma membrane. The latter is a complex, two-dime...
[[abstract]]©2004 AIP - The normalized overall rate constant kp/kf for diffuse-and-incorporate proce...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...
Lateral diffusion of mobile proteins and lipids (tracers) in a membrane is hindered by the presence ...
A model for the effect of protein concentration on the rate of lateral diffusion of integral membran...
We present an atomistic level computational investigation of the dynamics of a signaling protein, mo...
AbstractThe diffusion of proteins in the cell membrane is investigated using computer simulations of...
AbstractThe diffusion of receptors within the two-dimensional environment of the plasma membrane is ...
We asymptotically calculate the spatially averaged mean first passage time (MFPT) of a diffusing cha...
<p>A. Model for lumped variables and rates. The term in the dotted box includes effector bound GTPas...
AbstractMost of the important types of interactions that occur in cells can be characterized as bind...
We asymptotically calculate the spatially averaged mean first passage time (MFPT) of a diffusing cha...
AbstractThe intricate geometry of cytoskeletal networks and internal membranes causes the space avai...
T = total amount of GTPase, σ = GTPase production rate. All simulation domains have periodic boundar...
A) Mean boundary layer size as a function of the diffusion constant D ≡ DD = DE. Red lines represent...
Many crucial cellular processes take place at the plasma membrane. The latter is a complex, two-dime...
[[abstract]]©2004 AIP - The normalized overall rate constant kp/kf for diffuse-and-incorporate proce...
AbstractProteins in plasma membranes diffuse more slowly than proteins inserted into artificial lipi...
Lateral diffusion of mobile proteins and lipids (tracers) in a membrane is hindered by the presence ...
A model for the effect of protein concentration on the rate of lateral diffusion of integral membran...
We present an atomistic level computational investigation of the dynamics of a signaling protein, mo...
AbstractThe diffusion of proteins in the cell membrane is investigated using computer simulations of...
AbstractThe diffusion of receptors within the two-dimensional environment of the plasma membrane is ...
We asymptotically calculate the spatially averaged mean first passage time (MFPT) of a diffusing cha...
<p>A. Model for lumped variables and rates. The term in the dotted box includes effector bound GTPas...
AbstractMost of the important types of interactions that occur in cells can be characterized as bind...
We asymptotically calculate the spatially averaged mean first passage time (MFPT) of a diffusing cha...
AbstractThe intricate geometry of cytoskeletal networks and internal membranes causes the space avai...