One of the most important biological processes at the molecular level is the formation of protein–ligand complexes. Therefore, determining their structure and underlying key interactions is of paramount relevance and has direct applications in drug development. Because of its low cost relative to its experimental sibling, molecular dynamics (MD) simulations in the presence of different solvent probes mimicking specific types of interactions have been increasingly used to analyze protein binding sites and reveal protein–ligand interaction hot spots. However, a systematic comparison of different probes and their real predictive power from a quantitative and thermodynamic point of view is still missing. In the present work, we have performed M...
Water is the most abundant molecule in biological systems and is ubiquitous in nature. Despite this...
Protein-protein interactions (PPIs) are essential, and modulating their function through PPI-targete...
Unquestionably water appears to be an active player in noncovalent protein-ligand association proces...
Simulations of molecular dynamics (MD) are playing an increasingly important role in structure-based...
Water is a crucial participant in virtually all cellular functions. Evidently, water molecules in th...
Binding sites present well-defined interaction patterns that putative ligands must meet. Knowing the...
Protein-ligand docking programs are widely used tools for computer-aided drug design. Many docking p...
Probe mapping is a common approach for identifying potential binding sites in structure-based drug d...
Although water is undoubtedly an essential mediator of protein-ligand interactions, whether or not s...
Recent years have witnessed rapid developments of computer-aided drug design methods, which have rea...
Predicting new ligands and their binding poses for a protein target relies on an understanding of th...
Most biomolecular interactions occur in aqueous environment. Therefore, one must consider the intera...
Targeted protein-ligand binding interactions drive the metabolic processes essential for life and bi...
Protein-protein binding is crucial to various processes in living organisms including signal transdu...
We present a statistical mechanical approach for quantifying thermodynamic properties of proteins in...
Water is the most abundant molecule in biological systems and is ubiquitous in nature. Despite this...
Protein-protein interactions (PPIs) are essential, and modulating their function through PPI-targete...
Unquestionably water appears to be an active player in noncovalent protein-ligand association proces...
Simulations of molecular dynamics (MD) are playing an increasingly important role in structure-based...
Water is a crucial participant in virtually all cellular functions. Evidently, water molecules in th...
Binding sites present well-defined interaction patterns that putative ligands must meet. Knowing the...
Protein-ligand docking programs are widely used tools for computer-aided drug design. Many docking p...
Probe mapping is a common approach for identifying potential binding sites in structure-based drug d...
Although water is undoubtedly an essential mediator of protein-ligand interactions, whether or not s...
Recent years have witnessed rapid developments of computer-aided drug design methods, which have rea...
Predicting new ligands and their binding poses for a protein target relies on an understanding of th...
Most biomolecular interactions occur in aqueous environment. Therefore, one must consider the intera...
Targeted protein-ligand binding interactions drive the metabolic processes essential for life and bi...
Protein-protein binding is crucial to various processes in living organisms including signal transdu...
We present a statistical mechanical approach for quantifying thermodynamic properties of proteins in...
Water is the most abundant molecule in biological systems and is ubiquitous in nature. Despite this...
Protein-protein interactions (PPIs) are essential, and modulating their function through PPI-targete...
Unquestionably water appears to be an active player in noncovalent protein-ligand association proces...