<p>Molecular recognition is arguably the most elementary physical process essential for life that arises at the molecular scale. Molecular recognition drives events across virtually all length scales, from the folding of proteins and binding of ligands, to the organization of membranes and the function of muscles. Understanding such events at the molecular level is massively complicated by the unique medium in which life occurs: water. In contrast to recognition in non-aqueous solvents, which are driven largely by attractive interactions between binding partners, binding reactions in water are driven in large measure by the properties of the medium itself. Aqueous binding involves the loss of solute-solvent interactions (desolvation) and ...
The interaction between any two biological molecules must compete with their interaction with water ...
Most biomolecular interactions occur in aqueous environment. Therefore, one must consider the intera...
The aim of this work is to investigate the impact of desolvation effects on protein-ligand interacti...
Molecular recognition is arguably the most elementary physical process essential for life that arise...
Predicting new ligands and their binding poses for a protein target relies on an understanding of th...
DoctorThis thesis describes the host-guest chemistry between water soluble macrocycles and various t...
Molecular dynamics simulations and isothermal titration calorimetry (ITC) experiments with neutral g...
Methonium (N<sup>+</sup>Me<sub>3</sub>) is an organic cation widely distributed in biological system...
The design of high-affinity and analyte-selective receptors operating in aqueous solutions is an out...
Water is the most abundant molecule in biological systems and is ubiquitous in nature. Despite this...
Historical interpretations of the thermodynamics characterizing biomolecular recognition have margin...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
A fundamental understanding of biomolecular recognition is crucial to grasp complex processes in cel...
The interaction between any two biological molecules must compete with their interaction with water ...
Most biomolecular interactions occur in aqueous environment. Therefore, one must consider the intera...
The aim of this work is to investigate the impact of desolvation effects on protein-ligand interacti...
Molecular recognition is arguably the most elementary physical process essential for life that arise...
Predicting new ligands and their binding poses for a protein target relies on an understanding of th...
DoctorThis thesis describes the host-guest chemistry between water soluble macrocycles and various t...
Molecular dynamics simulations and isothermal titration calorimetry (ITC) experiments with neutral g...
Methonium (N<sup>+</sup>Me<sub>3</sub>) is an organic cation widely distributed in biological system...
The design of high-affinity and analyte-selective receptors operating in aqueous solutions is an out...
Water is the most abundant molecule in biological systems and is ubiquitous in nature. Despite this...
Historical interpretations of the thermodynamics characterizing biomolecular recognition have margin...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
A fundamental understanding of biomolecular recognition is crucial to grasp complex processes in cel...
The interaction between any two biological molecules must compete with their interaction with water ...
Most biomolecular interactions occur in aqueous environment. Therefore, one must consider the intera...
The aim of this work is to investigate the impact of desolvation effects on protein-ligand interacti...