Symmetry is a common feature in nature. Large biological macromolecules (> 100 kD) tend to assemble from multiple subunits and spatially arranged in symmetric ways. The topological symmetry not only results in coding efficiency and error control, but also characterizes the equilibrium dynamics of the biomolecular system. Coarse-grained normal mode analyses have been broadly used in recent years to elucidate the relation between structure, dynamics and function. Further insights into collective motions can be gained by considering continuum models with appropriate symmetry and boundary conditions to approximately represent the molecular structure. We solved the elastic wave equation analytically for the case of spherical symmetry, yielding a...
This dissertation addresses the applications of Elastic Network Model (ENM) and Finite Element Analy...
Abstract Background Single-mol...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
Symmetry is a common feature in nature. Large biological macromolecules (> 100 kD) tend to assemble ...
Symmetry is a common feature in nature. Large biological macromolecules (> 100 kD) tend to assemble ...
Identification of pathways involved in the structural transitions of biomolecular systems is often c...
Identification of pathways involved in the structural transitions of biomolecular systems is often c...
Identification of pathways involved in the structural transitions of biomolecular systems is often c...
Identification of pathways involved in the structural transitions of biomolecular systems is often c...
AbstractCoarse-grained elastic network models elucidate the fluctuation dynamics of proteins around ...
AbstractIn this article, we apply a coarse-grained elastic network model (ENM) to study conformation...
Biomacromolecules perform their functions by accessing conformations energetically favored by their ...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
Large macromolecules, including proteins and their complexes, very often adopt multiple conformation...
AbstractCoarse-grained elastic network models elucidate the fluctuation dynamics of proteins around ...
This dissertation addresses the applications of Elastic Network Model (ENM) and Finite Element Analy...
Abstract Background Single-mol...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
Symmetry is a common feature in nature. Large biological macromolecules (> 100 kD) tend to assemble ...
Symmetry is a common feature in nature. Large biological macromolecules (> 100 kD) tend to assemble ...
Identification of pathways involved in the structural transitions of biomolecular systems is often c...
Identification of pathways involved in the structural transitions of biomolecular systems is often c...
Identification of pathways involved in the structural transitions of biomolecular systems is often c...
Identification of pathways involved in the structural transitions of biomolecular systems is often c...
AbstractCoarse-grained elastic network models elucidate the fluctuation dynamics of proteins around ...
AbstractIn this article, we apply a coarse-grained elastic network model (ENM) to study conformation...
Biomacromolecules perform their functions by accessing conformations energetically favored by their ...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...
Large macromolecules, including proteins and their complexes, very often adopt multiple conformation...
AbstractCoarse-grained elastic network models elucidate the fluctuation dynamics of proteins around ...
This dissertation addresses the applications of Elastic Network Model (ENM) and Finite Element Analy...
Abstract Background Single-mol...
International audienceLarge macromolecules, including proteins and their complexes, very often adopt...