Enzymes are extremely efficient catalysts. Here, part of the mechanisms proposed to explain this catalytic power will be compared to quantitative experimental results and computer simulations. Influence of the enzymatic environment over species along the reaction coordinate will be analysed. Concepts of transition state stabilisation and reactant destabilisation will be confronted. Divided site model and near-attack conformation hypotheses will also be discussed. Molecular interactions such as covalent catalysis, general acid-base catalysis, electrostatics, entropic effects, steric hindrance, quantum and dynamical effects will also be analysed as sources of catalysis. Reaction mechanisms, in particular that catalysed by protein tyrosine pho...
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Abstract: Elucidating how enzymes enhance the rates of the reactions that they catalyze is a major g...
In the present study, we apply a computational approach, based on DFT calculations and molecular dyn...
Enzymes are extremely efficient catalysts. Here, part of the mechanisms proposed to explain this cat...
Elucidating the origin of enzymatic catalysis stands as one the great challenges of contemporary bio...
Techniques for modelling enzyme-catalyzed reaction mechanisms are making increasingly important cont...
Advances in transition state theory and computer simulations are providing new insights into the sou...
Advances in transition state theory and computer simulations are providing new insights into the sou...
Elucidating the origin of enzymatic catalysis stands as one the great challenges of contemporary bio...
Herein I present the computational study of four (bio)chemical systems. I employed classical atomist...
AbstractThe mechanism by which enzymes produce enormous rate enhancements in the reactions they cata...
Computations are increasingly powerful tools for studying reaction mechanisms and protein catalysis....
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Enzymes catalyze biochemical reactions with remarkable specificity and efficiency, usually under phy...
The physical basis for enzymatic rate accelerations is a subject of great fundamental interest and o...
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Abstract: Elucidating how enzymes enhance the rates of the reactions that they catalyze is a major g...
In the present study, we apply a computational approach, based on DFT calculations and molecular dyn...
Enzymes are extremely efficient catalysts. Here, part of the mechanisms proposed to explain this cat...
Elucidating the origin of enzymatic catalysis stands as one the great challenges of contemporary bio...
Techniques for modelling enzyme-catalyzed reaction mechanisms are making increasingly important cont...
Advances in transition state theory and computer simulations are providing new insights into the sou...
Advances in transition state theory and computer simulations are providing new insights into the sou...
Elucidating the origin of enzymatic catalysis stands as one the great challenges of contemporary bio...
Herein I present the computational study of four (bio)chemical systems. I employed classical atomist...
AbstractThe mechanism by which enzymes produce enormous rate enhancements in the reactions they cata...
Computations are increasingly powerful tools for studying reaction mechanisms and protein catalysis....
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Enzymes catalyze biochemical reactions with remarkable specificity and efficiency, usually under phy...
The physical basis for enzymatic rate accelerations is a subject of great fundamental interest and o...
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Abstract: Elucidating how enzymes enhance the rates of the reactions that they catalyze is a major g...
In the present study, we apply a computational approach, based on DFT calculations and molecular dyn...