Molecular recognition is determined by the structure and dynamics of both a protein and its ligand, but it is difficult to directly assess the role of each of these players. In this study, we use Markov State Models (MSMs) built from atomistic simulations to elucidate the mechanism by which the Lysine-, Arginine-, Ornithine-binding (LAO) protein binds to its ligand. We show that our model can predict the bound state, binding free energy, and association rate with reasonable accuracy and then use the model to dissect the binding mechanism. In the past, this binding event has often been assumed to occur via an induced fit mechanism because the protein's binding site is completely closed in the bound state, making it impossible for the ligand ...
<p>(A) Lock and key. No conformational changes occur upon binding. The ligand (white) and the target...
The broad objectives of this work are to provide and apply computational tools to reveal how structu...
Conformational selection is an established mechanism in molecular recognition. Despite its power to ...
Molecular recognition is determined by the structure and dynamics of both a protein and its ligand, ...
Protein-ligand recognition plays key roles in many biological processes. One of the most fascinating...
<div><p>Protein-ligand recognition plays key roles in many biological processes. One of the most fas...
Protein-ligand binding is a puzzling process. Many theories have been devised since the pioneering k...
The periplasmic lysine-, arginine-, ornithine-binding protein (LAOBP) traps its ligands by a large h...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
Protein-ligand interactions are a necessary prerequisite for signal transduction, immunoreaction, an...
We review insights from computational studies of affinities of ligands binding to proteins. The powe...
AbstractThe mouse major urinary protein (MUP) has proved to be an intriguing test bed for detailed s...
<div><p>Many protein-protein interactions (PPIs) are compelling targets for drug discovery, and in a...
Starting from the lock-and-key model [1], models of ligand–target binding have been extended to ackn...
Partner recognition in protein binding is critical for all biological functions, and yet, delineatin...
<p>(A) Lock and key. No conformational changes occur upon binding. The ligand (white) and the target...
The broad objectives of this work are to provide and apply computational tools to reveal how structu...
Conformational selection is an established mechanism in molecular recognition. Despite its power to ...
Molecular recognition is determined by the structure and dynamics of both a protein and its ligand, ...
Protein-ligand recognition plays key roles in many biological processes. One of the most fascinating...
<div><p>Protein-ligand recognition plays key roles in many biological processes. One of the most fas...
Protein-ligand binding is a puzzling process. Many theories have been devised since the pioneering k...
The periplasmic lysine-, arginine-, ornithine-binding protein (LAOBP) traps its ligands by a large h...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
Protein-ligand interactions are a necessary prerequisite for signal transduction, immunoreaction, an...
We review insights from computational studies of affinities of ligands binding to proteins. The powe...
AbstractThe mouse major urinary protein (MUP) has proved to be an intriguing test bed for detailed s...
<div><p>Many protein-protein interactions (PPIs) are compelling targets for drug discovery, and in a...
Starting from the lock-and-key model [1], models of ligand–target binding have been extended to ackn...
Partner recognition in protein binding is critical for all biological functions, and yet, delineatin...
<p>(A) Lock and key. No conformational changes occur upon binding. The ligand (white) and the target...
The broad objectives of this work are to provide and apply computational tools to reveal how structu...
Conformational selection is an established mechanism in molecular recognition. Despite its power to ...