Incorporating the dynamic nature of biomolecules in the modeling of their complexes is a challenge, especially when the extent and direction of the conformational changes taking place upon binding is unknown. Estimating whether the binding of a biomolecule to its partner(s) occurs in a conformational state accessible to its unbound form (“conformational selection”) and/or the binding process induces conformational changes (“induced-fit”) is another challenge. We propose here a method combining conformational sampling using ClustENM—an elastic network-based modeling procedure—with docking using HADDOCK, in a framework that incorporates conformational selection and induced-fit effects upon binding. The extent of the applied deformation is est...
International audienceModeling conformational changes in protein docking calculations is challenging...
Modeling protein-peptide interactions remains a significant challenge for docking programs due to th...
We consider the identification of interacting protein-nucleic acid partners using the rigid body doc...
Incorporating the dynamic nature of biomolecules in the modeling of their complexes is a challenge, ...
The intrinsic flexibility of DNA and the difficulty of identifying its interaction surface have long...
The ability to predict the three-dimensional structure of a protein complex starting from the isolat...
SummaryBinding-induced backbone and large-scale conformational changes represent one of the major ch...
Binding-induced backbone and large-scale conformational changes represent one of the major challenge...
Computational methods for docking ligands have been shown to be remarkably dependent on precise prot...
International audienceWe explored the Protein DataBank (PDB) to collect protein-ssDNA structures and...
Protein-peptide interactions are vital for the cell. They mediate, inhibit or serve as structural co...
To understand cellular processes at the molecular level we need to improve our knowledge of protein−...
<div><p>Protein-peptide interactions are vital for the cell. They mediate, inhibit or serve as struc...
We consider the identification of interacting protein-nucleic acid partners using the rigid body doc...
Abstract Background The problem of determining the physical conformation of a protein dimer, given t...
International audienceModeling conformational changes in protein docking calculations is challenging...
Modeling protein-peptide interactions remains a significant challenge for docking programs due to th...
We consider the identification of interacting protein-nucleic acid partners using the rigid body doc...
Incorporating the dynamic nature of biomolecules in the modeling of their complexes is a challenge, ...
The intrinsic flexibility of DNA and the difficulty of identifying its interaction surface have long...
The ability to predict the three-dimensional structure of a protein complex starting from the isolat...
SummaryBinding-induced backbone and large-scale conformational changes represent one of the major ch...
Binding-induced backbone and large-scale conformational changes represent one of the major challenge...
Computational methods for docking ligands have been shown to be remarkably dependent on precise prot...
International audienceWe explored the Protein DataBank (PDB) to collect protein-ssDNA structures and...
Protein-peptide interactions are vital for the cell. They mediate, inhibit or serve as structural co...
To understand cellular processes at the molecular level we need to improve our knowledge of protein−...
<div><p>Protein-peptide interactions are vital for the cell. They mediate, inhibit or serve as struc...
We consider the identification of interacting protein-nucleic acid partners using the rigid body doc...
Abstract Background The problem of determining the physical conformation of a protein dimer, given t...
International audienceModeling conformational changes in protein docking calculations is challenging...
Modeling protein-peptide interactions remains a significant challenge for docking programs due to th...
We consider the identification of interacting protein-nucleic acid partners using the rigid body doc...