This review discusses the use of molecular modeling tools, together with existing experimental findings, to provide a complete atomic-level description of enzyme dynamics and function. We focus on functionally relevant conformational dynamics of enzymes and the protonation states of substrates. The conformational fluctuations of enzymes usually play a crucial role in substrate recognition and catalysis. Protein dynamics can be altered by a tiny change in a molecular system such as different protonation states of various intermediates or by a significant perturbation such as a ligand association. Here we review recent advances in applying atomistic molecular dynamics (MD) simulations to investigate allosteric and network regulation of trypto...
International audienceIt is now common knowledge that enzymes are mobile entities relying on complex...
The emergence of compensatory drug-resistant mutations in HIV-1 protease challenges the common view ...
With increasing computational power, biomolecular simulations have become an invaluable tool for und...
This review discusses the use of molecular modeling tools, together with existing experimental findi...
This review discusses the use of molecular modeling tools, together with existing experimental findi...
This review discusses the use of molecular modeling tools, together with existing experimental findi...
The importance of protonation states and proton transfer in pyridoxal 5'-phosphate (PLP)-chemistry c...
The broad objectives of this work are to provide and apply computational tools to reveal how structu...
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Proteins and enzymes are large and complex biological molecules, characterized by unique three-dimen...
A combination of classical and quantum mechanical approaches are described in Chapter 1 and utilized...
It is now common knowledge that enzymes are mobile entities relying on complex atomic-scale dynamics...
It is now common knowledge that enzymes are mobile entities relying on complex atomic-scale dynamics...
AbstractThe mechanism of the first steps of the reaction catalyzed by HIV-1 protease was studied thr...
International audienceIt is now common knowledge that enzymes are mobile entities relying on complex...
The emergence of compensatory drug-resistant mutations in HIV-1 protease challenges the common view ...
With increasing computational power, biomolecular simulations have become an invaluable tool for und...
This review discusses the use of molecular modeling tools, together with existing experimental findi...
This review discusses the use of molecular modeling tools, together with existing experimental findi...
This review discusses the use of molecular modeling tools, together with existing experimental findi...
The importance of protonation states and proton transfer in pyridoxal 5'-phosphate (PLP)-chemistry c...
The broad objectives of this work are to provide and apply computational tools to reveal how structu...
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Small molecules, such as solvent, substrate, and cofactor molecules, are key players in enzyme catal...
Proteins and enzymes are large and complex biological molecules, characterized by unique three-dimen...
A combination of classical and quantum mechanical approaches are described in Chapter 1 and utilized...
It is now common knowledge that enzymes are mobile entities relying on complex atomic-scale dynamics...
It is now common knowledge that enzymes are mobile entities relying on complex atomic-scale dynamics...
AbstractThe mechanism of the first steps of the reaction catalyzed by HIV-1 protease was studied thr...
International audienceIt is now common knowledge that enzymes are mobile entities relying on complex...
The emergence of compensatory drug-resistant mutations in HIV-1 protease challenges the common view ...
With increasing computational power, biomolecular simulations have become an invaluable tool for und...