International audienceLarge macromolecules, including proteins and their complexes, very often adopt multiple conformations. Some of them can be seen experimentally, for example with X-ray crystallography or cryo-electron microscopy. This structural heterogeneity is not occasional and is frequently linked with specific biological function. Thus, the accurate description of macromolecular conformational transitions is crucial for understanding fundamental mechanisms of life's machinery. We report on a real-time method to predict such transitions by extrapolating from instantaneous eigen-motions, computed using the normal mode analysis, to a series of twists. We demonstrate the applicability of our approach to the prediction of a wide range o...
SummaryThe fast and accurate prediction of protein flexibility is one of the major challenges in pro...
A method is presented to mathematically extract concerted structural transitions in proteins from co...
AbstractBased on the elastic network model, we develop a novel method that predicts the conformation...
Large macromolecules, including proteins and their complexes, very often adopt multiple conformation...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
AbstractIn this article, we apply a coarse-grained elastic network model (ENM) to study conformation...
International audienceBackground:Obtaining atomic-scale information about large-amplitude conformati...
International audienceBackground:Obtaining atomic-scale information about large-amplitude conformati...
SummaryNormal mode analysis offers an efficient way of modeling the conformational flexibility of pr...
International audienceIn light of the recent very rapid progress in protein structure prediction, ac...
Background: Internal motions enable proteins to explore a range of conformations, even in the vicini...
International audienceThis paper presents a method, inspired by robot motion planning algorithms, to...
International audienceThis paper presents a method, inspired by robot motion planning algorithms, to...
AbstractWe present a novel sampling approach to explore large protein conformational transitions by ...
We present here a new approach for the systematic identification of functionally relevant conformati...
SummaryThe fast and accurate prediction of protein flexibility is one of the major challenges in pro...
A method is presented to mathematically extract concerted structural transitions in proteins from co...
AbstractBased on the elastic network model, we develop a novel method that predicts the conformation...
Large macromolecules, including proteins and their complexes, very often adopt multiple conformation...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
AbstractIn this article, we apply a coarse-grained elastic network model (ENM) to study conformation...
International audienceBackground:Obtaining atomic-scale information about large-amplitude conformati...
International audienceBackground:Obtaining atomic-scale information about large-amplitude conformati...
SummaryNormal mode analysis offers an efficient way of modeling the conformational flexibility of pr...
International audienceIn light of the recent very rapid progress in protein structure prediction, ac...
Background: Internal motions enable proteins to explore a range of conformations, even in the vicini...
International audienceThis paper presents a method, inspired by robot motion planning algorithms, to...
International audienceThis paper presents a method, inspired by robot motion planning algorithms, to...
AbstractWe present a novel sampling approach to explore large protein conformational transitions by ...
We present here a new approach for the systematic identification of functionally relevant conformati...
SummaryThe fast and accurate prediction of protein flexibility is one of the major challenges in pro...
A method is presented to mathematically extract concerted structural transitions in proteins from co...
AbstractBased on the elastic network model, we develop a novel method that predicts the conformation...