AbstractRecently, two independent 15N NMR relaxation studies indicated that in contrast to the decreased flexibility expected for induced-fit interactions, the backbone flexibility of major urinary protein isoform I (MUP-I) slightly increased upon complex formation with its natural pheromone 2-sec-butyl-4,5-dihydrothiazol. We have investigated the subtle details of molecular interactions by molecular dynamics simulations in explicit solvent. The calculated order parameters S2 for a free- and ligand-bound protein supply evidence that mobility in various regions of MUP-I can be directly related to small conformational changes of the free- and complexed protein resulting from modifications of the hydrogen bonding network
Partner recognition in protein binding is critical for all biological functions, and yet, delineatin...
Targeted protein-ligand binding interactions drive the metabolic processes essential for life and bi...
Complex networks of protein-ligand interactions underpin cellular function and communication. Diseas...
AbstractRecently, two independent 15N NMR relaxation studies indicated that in contrast to the decre...
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...
Major urinary protein (MUP) is a pheromone-carrying protein of the lipocalin family. Previous studie...
The slowly relaxing local structure (SRLS) approach is applied to <sup>15</sup>N–H relaxation from t...
The internal dynamics of recombinant Major Urinary Protein (rMUP) have been investigated by monitori...
Structure-based drug design relies on static protein structures despite significant evidence for the...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
Computational methods gained a widespread use in drug discovery. Understanding conformational dynami...
Knowledge of dynamics in protein is very important in the description of protein function and molecu...
Les effets associés à la liaison du 2-(sec)-butyl-4,S-dihydrothiazole à la cavité hydrophobe de MUP-...
Protein-ligand interactions form the molecular basis of many biological processes. The study of the...
Partner recognition in protein binding is critical for all biological functions, and yet, delineatin...
Targeted protein-ligand binding interactions drive the metabolic processes essential for life and bi...
Complex networks of protein-ligand interactions underpin cellular function and communication. Diseas...
AbstractRecently, two independent 15N NMR relaxation studies indicated that in contrast to the decre...
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...
Major urinary protein (MUP) is a pheromone-carrying protein of the lipocalin family. Previous studie...
The slowly relaxing local structure (SRLS) approach is applied to <sup>15</sup>N–H relaxation from t...
The internal dynamics of recombinant Major Urinary Protein (rMUP) have been investigated by monitori...
Structure-based drug design relies on static protein structures despite significant evidence for the...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
Computational methods gained a widespread use in drug discovery. Understanding conformational dynami...
Knowledge of dynamics in protein is very important in the description of protein function and molecu...
Les effets associés à la liaison du 2-(sec)-butyl-4,S-dihydrothiazole à la cavité hydrophobe de MUP-...
Protein-ligand interactions form the molecular basis of many biological processes. The study of the...
Partner recognition in protein binding is critical for all biological functions, and yet, delineatin...
Targeted protein-ligand binding interactions drive the metabolic processes essential for life and bi...
Complex networks of protein-ligand interactions underpin cellular function and communication. Diseas...