Many experiments in recent years have reported that, when exposed to their corresponding substrate, catalytic enzymes undergo enhanced diffusion as well as chemotaxis (biased motion in the direction of a substrate gradient). Among other possible mechanisms, in a number of recent works we have explored several passive mechanisms for enhanced diffusion and chemotaxis, in the sense that they require only binding and unbinding of the enzyme to the substrate rather than the catalytic reaction itself. These mechanisms rely on conformational changes of the enzyme due to binding, as well as on phoresis due to non-contact interactions between enzyme and substrate. Here, after reviewing and generalizing our previous findings, we extend them in two di...
Recent experiments have revealed that the diffusivity of exothermic and fast enzymes is enhanced whe...
Molecular agitation more rapid than thermal Brownian motion is reported for cellular environments, m...
The effect of conformational fluctuations of modular macromolecules, such as enzymes, on their diffu...
Chemotaxis of enzymes in response to gradients in the concentration of their substrate has been wide...
Chemotaxis of enzymes in response to gradients in the concentration of their substrate has been wide...
Chemotaxis of enzymes in response to gradients in the concentration of their substrate has been wide...
Chemotaxis of enzymes in response to gradients in the concentration of their substrate has been wide...
Enzymes have been recently proposed to have mechanical activity associated with their chemical activ...
Enzymes show two distinct transport behaviors in the presence of their substrates in solution. First...
In several experiments, enzymes have shown an in increase in diffusivity in the presence of their su...
Molecular agitation more rapid than thermal Brownian motion is reported for cellular environments, m...
Using a microscopic theory to analyze experiments, we demonstrate that enzymes are active matter. Su...
Using a microscopic theory to analyze experiments, we demonstrate that enzymes are active matter. Su...
Recent experiments have revealed that the diffusivity of exothermic and fast enzymes is enhanced whe...
Recent experiments have revealed that the diffusivity of exothermic and fast enzymes is enhanced whe...
Recent experiments have revealed that the diffusivity of exothermic and fast enzymes is enhanced whe...
Molecular agitation more rapid than thermal Brownian motion is reported for cellular environments, m...
The effect of conformational fluctuations of modular macromolecules, such as enzymes, on their diffu...
Chemotaxis of enzymes in response to gradients in the concentration of their substrate has been wide...
Chemotaxis of enzymes in response to gradients in the concentration of their substrate has been wide...
Chemotaxis of enzymes in response to gradients in the concentration of their substrate has been wide...
Chemotaxis of enzymes in response to gradients in the concentration of their substrate has been wide...
Enzymes have been recently proposed to have mechanical activity associated with their chemical activ...
Enzymes show two distinct transport behaviors in the presence of their substrates in solution. First...
In several experiments, enzymes have shown an in increase in diffusivity in the presence of their su...
Molecular agitation more rapid than thermal Brownian motion is reported for cellular environments, m...
Using a microscopic theory to analyze experiments, we demonstrate that enzymes are active matter. Su...
Using a microscopic theory to analyze experiments, we demonstrate that enzymes are active matter. Su...
Recent experiments have revealed that the diffusivity of exothermic and fast enzymes is enhanced whe...
Recent experiments have revealed that the diffusivity of exothermic and fast enzymes is enhanced whe...
Recent experiments have revealed that the diffusivity of exothermic and fast enzymes is enhanced whe...
Molecular agitation more rapid than thermal Brownian motion is reported for cellular environments, m...
The effect of conformational fluctuations of modular macromolecules, such as enzymes, on their diffu...