AbstractThe mouse major urinary protein (MUP) has proved to be an intriguing test bed for detailed studies on protein-ligand recognition. NMR, calorimetric, and modeling investigations have revealed that the thermodynamics of ligand binding involve a complex interplay between competing enthalpic and entropic terms. We performed six independent, 1.2 μs molecular-dynamics simulations on MUP—three replicates on the apo-protein, and three on the complex with the pheromone isobutylmethoxypyrazine. Our findings provide the most comprehensive picture to date of the structure and dynamics of MUP, and how they are modulated by ligand binding. The mechanical pathways by which amino acid side chains can transmit information regarding ligand binding to...
Protein-ligand interactions are of paramount importance to the field of biochemistry. They are ubiqu...
Although water is undoubtedly an essential mediator of protein-ligand interactions, whether or not s...
Protein-ligand binding is a puzzling process. Many theories have been devised since the pioneering k...
AbstractThe mouse major urinary protein (MUP) has proved to be an intriguing test bed for detailed s...
Molecular Dynamics (MD) and Quartz Crystal Microbalance (QCM) techniques can provide unique insights...
In the present study we examine the enthalpy of binding of 2-methoxy-3-isobutylpyrazine (IBMP) to th...
Complex networks of protein-ligand interactions underpin cellular function and communication. Diseas...
In the present study we examine the thermodynamics of binding of two related pyrazine-derived ligand...
AbstractRecently, two independent 15N NMR relaxation studies indicated that in contrast to the decre...
Major urinary protein (MUP) is a pheromone-carrying protein of the lipocalin family. Previous studie...
Abstract: 15N and 1HN chemical shift data and 15N relaxation studies have been used to characterise ...
(15)N and (1)HN chemical shift data and (15)N relaxation studies have been used to characterise the ...
The mouse Major Urinary Proteins (MUPs), known also as Mus m 1 urinary allergen complex , are lipoca...
Molecular recognition is determined by the structure and dynamics of both a protein and its ligand, ...
Proteins are complex molecules, present in all of the vital functions of life. The function of a pro...
Protein-ligand interactions are of paramount importance to the field of biochemistry. They are ubiqu...
Although water is undoubtedly an essential mediator of protein-ligand interactions, whether or not s...
Protein-ligand binding is a puzzling process. Many theories have been devised since the pioneering k...
AbstractThe mouse major urinary protein (MUP) has proved to be an intriguing test bed for detailed s...
Molecular Dynamics (MD) and Quartz Crystal Microbalance (QCM) techniques can provide unique insights...
In the present study we examine the enthalpy of binding of 2-methoxy-3-isobutylpyrazine (IBMP) to th...
Complex networks of protein-ligand interactions underpin cellular function and communication. Diseas...
In the present study we examine the thermodynamics of binding of two related pyrazine-derived ligand...
AbstractRecently, two independent 15N NMR relaxation studies indicated that in contrast to the decre...
Major urinary protein (MUP) is a pheromone-carrying protein of the lipocalin family. Previous studie...
Abstract: 15N and 1HN chemical shift data and 15N relaxation studies have been used to characterise ...
(15)N and (1)HN chemical shift data and (15)N relaxation studies have been used to characterise the ...
The mouse Major Urinary Proteins (MUPs), known also as Mus m 1 urinary allergen complex , are lipoca...
Molecular recognition is determined by the structure and dynamics of both a protein and its ligand, ...
Proteins are complex molecules, present in all of the vital functions of life. The function of a pro...
Protein-ligand interactions are of paramount importance to the field of biochemistry. They are ubiqu...
Although water is undoubtedly an essential mediator of protein-ligand interactions, whether or not s...
Protein-ligand binding is a puzzling process. Many theories have been devised since the pioneering k...