AbstractThe effect of macromolecular crowding on the binding of ligands to a receptor near membranes is studied using Brownian dynamics simulations. The receptor is modeled as a reactive patch on a hard surface and the ligands and crowding agents are modeled as spheres that interact via a steep repulsive interaction potential. When a ligand collides with the patch, it reacts with probability prxn. The association rate constant (k∞) can be decomposed into contributions from diffusion-limited (kD) and reaction-limited (kR) rates, i.e., 1/k∞ = 1/kD + 1/kR. The simulations show that kD is a nonmonotonic function of the volume fraction of crowding agents for receptors of small sizes. kR is always an increasing function of the volume fraction of ...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
AbstractThe effect of macromolecular crowding on the rates of association reactions are investigated...
AbstractThe high total concentration of macromolecules, often referred to as macromolecular crowding...
AbstractThe effect of macromolecular crowding on the rates of association reactions are investigated...
The dynamics of formation of macromolecular structures in adherent membranes is a key to a number of...
AbstractThe dynamics of formation of macromolecular structures in adherent membranes is a key to a n...
AbstractThe high total concentration of macromolecules, often referred to as macromolecular crowding...
The intracellular environment imposes a variety of constraints on biochemical reaction systems that ...
International audienceCell membranes often contain domains with important physiological functions. A...
International audienceCell membranes often contain domains with important physiological functions. A...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
AbstractThe effect of macromolecular crowding on the rates of association reactions are investigated...
AbstractThe high total concentration of macromolecules, often referred to as macromolecular crowding...
AbstractThe effect of macromolecular crowding on the rates of association reactions are investigated...
The dynamics of formation of macromolecular structures in adherent membranes is a key to a number of...
AbstractThe dynamics of formation of macromolecular structures in adherent membranes is a key to a n...
AbstractThe high total concentration of macromolecules, often referred to as macromolecular crowding...
The intracellular environment imposes a variety of constraints on biochemical reaction systems that ...
International audienceCell membranes often contain domains with important physiological functions. A...
International audienceCell membranes often contain domains with important physiological functions. A...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...
International audienceBACKGROUND: Cellular response to changes in the concentration of different che...