Many enzyme reactions present instantaneous disorder. These dynamic fluctuations in the enzyme-substrate Michaelis complexes generate a wide range of energy barriers that cannot be experimentally observed, but that determine the measured kinetics of the reaction. These individual energy barriers can be calculated using QM/MM methods, but then the problem is how to deal with this dispersion of energy barriers to provide kinetic information. So far, the most usual procedure has implied the so-called exponential average of the energy barriers. In this paper, we discuss the foundations of this method, and we use the free energy perturbation theory to derive an alternative equation to get the Gibbs free energy barrier of the enzyme reaction. In ...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
We introduce a reaction-path statistical mechanics formalism based on the principle of large deviati...
<p>(A) Schematic representation of the bimolecular mechanisms considered for the analysis. (B) Subst...
Article publicat sota la llicència AuthorChoice de l'American Chemical Society: https://pubs.acs.org...
We discuss problems related to in silico studies of enzymes and show that accurate and converged fre...
We report potential-energy and free-energy data for three enzymatic reactions: carbon-halogen bond f...
We report potential-energy and free-energy data for three enzymatic reactions: carbon-halogen bond f...
In this study the question as to whether and to what extent horseradish peroxidase (HRP) enzyme stru...
In this study the question as to whether and to what extent horseradish peroxidase (HRP) enzyme stru...
In this study the question as to whether and to what extent horseradish peroxidase (HRP) enzyme stru...
In this study the question as to whether and to what extent horseradish peroxidase (HRP) enzyme stru...
The determination of a complete set of rate constants [free energy profiles (FEPs)] for a complex ki...
The application of the quasi-steady-state approximation (QSSA) in biochemical kinetics allows the re...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
The rate of product formation is an important measure of the speed of enzyme reactions. Classical st...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
We introduce a reaction-path statistical mechanics formalism based on the principle of large deviati...
<p>(A) Schematic representation of the bimolecular mechanisms considered for the analysis. (B) Subst...
Article publicat sota la llicència AuthorChoice de l'American Chemical Society: https://pubs.acs.org...
We discuss problems related to in silico studies of enzymes and show that accurate and converged fre...
We report potential-energy and free-energy data for three enzymatic reactions: carbon-halogen bond f...
We report potential-energy and free-energy data for three enzymatic reactions: carbon-halogen bond f...
In this study the question as to whether and to what extent horseradish peroxidase (HRP) enzyme stru...
In this study the question as to whether and to what extent horseradish peroxidase (HRP) enzyme stru...
In this study the question as to whether and to what extent horseradish peroxidase (HRP) enzyme stru...
In this study the question as to whether and to what extent horseradish peroxidase (HRP) enzyme stru...
The determination of a complete set of rate constants [free energy profiles (FEPs)] for a complex ki...
The application of the quasi-steady-state approximation (QSSA) in biochemical kinetics allows the re...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
The rate of product formation is an important measure of the speed of enzyme reactions. Classical st...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
We introduce a reaction-path statistical mechanics formalism based on the principle of large deviati...
<p>(A) Schematic representation of the bimolecular mechanisms considered for the analysis. (B) Subst...