Le Châtelier's principle is the cornerstone of our understanding of chemical equilibria. When a system at equilibrium undergoes a change in concentration or thermodynamic state (i.e., temperature, pressure, etc.), La Châtelier's principle states that an equilibrium shift will occur to offset the perturbation and a new equilibrium is established. We demonstrate that the effects of stabilizing mutations on the rigidity ⇔ flexibility equilibrium within the native state ensemble manifest themselves through enthalpy-entropy compensation as the protein structure adjusts to restore the global balance between the two. Specifically, we characterize the effects of mutation to single chain fragments of the anti-lymphotoxin-β receptor antibody using a ...
Protein structures are highly dynamic in nature contrary to their depiction in crystal structures. A...
Protein structures are highly dynamic in nature contrary to their depiction in crystal structures. A...
By balancing the average energy gap with its typical change due to mutations for proteinlike heterop...
<div><p>Le Châtelier’s principle is the cornerstone of our understanding of chemical equilibria. Whe...
Le Châtelier’s principle is the cornerstone of our understanding of chemical equilibria. When a sys...
<div><p>We investigate changes in human c-type lysozyme flexibility upon mutation via a Distance Con...
We investigate changes in human c-type lysozyme flexibility upon mutation via a Distance Constraint ...
The importance of flexibility and stability on protein function has been recognized for over five de...
Fitness effects of mutations fall on a continuum ranging from lethal to deleterious to beneficial. T...
Rational mutation of proteins based on their structural and dynamic characteristics is a useful stra...
Conceptually, the simplistic lock and key model has been superseded by more realistic views of molec...
<div><p>The modulation of fitness by single mutational substitutions during environmental change is ...
SummaryTo better understand the interplay between protein-protein binding and protein dynamics, we a...
<p>(<b>a</b>) Lysozyme backbone dynamics are characterized by a flexibility index (FI). Positive FI ...
Structural information of biological macromolecules is crucial and necessary to deliver predictions ...
Protein structures are highly dynamic in nature contrary to their depiction in crystal structures. A...
Protein structures are highly dynamic in nature contrary to their depiction in crystal structures. A...
By balancing the average energy gap with its typical change due to mutations for proteinlike heterop...
<div><p>Le Châtelier’s principle is the cornerstone of our understanding of chemical equilibria. Whe...
Le Châtelier’s principle is the cornerstone of our understanding of chemical equilibria. When a sys...
<div><p>We investigate changes in human c-type lysozyme flexibility upon mutation via a Distance Con...
We investigate changes in human c-type lysozyme flexibility upon mutation via a Distance Constraint ...
The importance of flexibility and stability on protein function has been recognized for over five de...
Fitness effects of mutations fall on a continuum ranging from lethal to deleterious to beneficial. T...
Rational mutation of proteins based on their structural and dynamic characteristics is a useful stra...
Conceptually, the simplistic lock and key model has been superseded by more realistic views of molec...
<div><p>The modulation of fitness by single mutational substitutions during environmental change is ...
SummaryTo better understand the interplay between protein-protein binding and protein dynamics, we a...
<p>(<b>a</b>) Lysozyme backbone dynamics are characterized by a flexibility index (FI). Positive FI ...
Structural information of biological macromolecules is crucial and necessary to deliver predictions ...
Protein structures are highly dynamic in nature contrary to their depiction in crystal structures. A...
Protein structures are highly dynamic in nature contrary to their depiction in crystal structures. A...
By balancing the average energy gap with its typical change due to mutations for proteinlike heterop...