SummaryNormal mode analysis offers an efficient way of modeling the conformational flexibility of protein structures. We use anisotropic displacement parameters from crystallography to test the quality of prediction of both the magnitude and directionality of conformational flexibility. Normal modes from four simple elastic network model potentials and from the CHARMM force field are calculated for a data set of 83 diverse, ultrahigh-resolution crystal structures. While all five potentials provide good predictions of the magnitude of flexibility, all-atom potentials have a clear edge at prediction of directionality, and the CHARMM potential has the highest prediction quality. The low-frequency modes from different potentials are similar, bu...
AbstractIn this article, we apply a coarse-grained elastic network model (ENM) to study conformation...
All proteins sample a range of conformations at physiologic temperatures and this inherent flexibili...
Modelling protein flexibility and plasticity is computationally challenging but important for unders...
SummaryNormal mode analysis offers an efficient way of modeling the conformational flexibility of pr...
SummaryX-ray crystallography typically uses a single set of coordinates and B factors to describe ma...
AbstractNormal mode analysis using elastic network models has grown popular for probing the low-freq...
Molecular dynamics (MD) and normal mode analysis (NMA) are very useful methods for characterizing va...
A detailed understanding of protein dynamics remains elusive. Recent comparisons of computer simulat...
SummaryThe deformation patterns of a large set of representative proteins determined by essential dy...
AbstractBased on the elastic network model, we develop a novel method that predicts the conformation...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
Large macromolecules, including proteins and their complexes, very often adopt multiple conformation...
International audienceCoarse-grained normal mode analyses of protein dynamics rely on the idea that ...
International audienceCoarse-grained normal mode analyses of protein dynamics rely on the idea that ...
AbstractIn this article, we apply a coarse-grained elastic network model (ENM) to study conformation...
All proteins sample a range of conformations at physiologic temperatures and this inherent flexibili...
Modelling protein flexibility and plasticity is computationally challenging but important for unders...
SummaryNormal mode analysis offers an efficient way of modeling the conformational flexibility of pr...
SummaryX-ray crystallography typically uses a single set of coordinates and B factors to describe ma...
AbstractNormal mode analysis using elastic network models has grown popular for probing the low-freq...
Molecular dynamics (MD) and normal mode analysis (NMA) are very useful methods for characterizing va...
A detailed understanding of protein dynamics remains elusive. Recent comparisons of computer simulat...
SummaryThe deformation patterns of a large set of representative proteins determined by essential dy...
AbstractBased on the elastic network model, we develop a novel method that predicts the conformation...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
Large macromolecules, including proteins and their complexes, very often adopt multiple conformation...
International audienceCoarse-grained normal mode analyses of protein dynamics rely on the idea that ...
International audienceCoarse-grained normal mode analyses of protein dynamics rely on the idea that ...
AbstractIn this article, we apply a coarse-grained elastic network model (ENM) to study conformation...
All proteins sample a range of conformations at physiologic temperatures and this inherent flexibili...
Modelling protein flexibility and plasticity is computationally challenging but important for unders...