It has been recently shown that the coarse-graining of the structures of polypeptide chains as self-avoiding tubes can provide an effective representation of the conformational space of proteins. In order to fully exploit the opportunities offered by such a \u2018tube model\u2019 approach, we present here a strategy to combine it with molecular dynamics simulations. This strategy is based on the incorporation of the \u2018CamTube\u2019 force field into the Gromacs molecular dynamics package. By considering the case of a 60-residue polyvaline chain, we show that CamTube molecular dynamics simulations can comprehensively explore the conformational space of proteins. We obtain this result by a 20 \u3bcs metadynamics simulation of the polyvalin...
AbstractWe develop a coarse-grained protein model with a simplified amino acid interaction potential...
Theoretical prediction of protein structures and dynamics is essential for understanding the molecul...
Protein dynamics takes place on a rugged funnel-like energy landscape that is biased towards the nat...
It has been recently shown that the coarse-graining of the structures of polypeptide chains as self-...
AbstractMolecular dynamics simulations hold the promise of providing an atomic-level description of ...
We develop a coarse-grained protein model with a simplified amino acid interaction potential. Using ...
The ability of proteins to fold into well-defined structures forms the basis of a wide variety of bi...
Computer simulations of biological systems provide novel data while both supporting and challenging ...
Computer simulation provides an increasingly realistic picture of large-scale conformational change ...
We study a coarse-grained protein model whose primary characteristics are (i) a tubelike geometry to...
AbstractLong timescale (>1 μs) molecular dynamics simulations of protein folding offer a powerful to...
It is currently believed that the atlas of existing protein structures is faithfully represented in ...
Computer simulation is a powerful approach to study protein dynamics and functions. We employed mole...
Although protein folding has been studied for decades many open issues still resist, and we yet lack...
We report on atomistic simulation of the folding of a natively-knotted protein, MJ0366, based on a r...
AbstractWe develop a coarse-grained protein model with a simplified amino acid interaction potential...
Theoretical prediction of protein structures and dynamics is essential for understanding the molecul...
Protein dynamics takes place on a rugged funnel-like energy landscape that is biased towards the nat...
It has been recently shown that the coarse-graining of the structures of polypeptide chains as self-...
AbstractMolecular dynamics simulations hold the promise of providing an atomic-level description of ...
We develop a coarse-grained protein model with a simplified amino acid interaction potential. Using ...
The ability of proteins to fold into well-defined structures forms the basis of a wide variety of bi...
Computer simulations of biological systems provide novel data while both supporting and challenging ...
Computer simulation provides an increasingly realistic picture of large-scale conformational change ...
We study a coarse-grained protein model whose primary characteristics are (i) a tubelike geometry to...
AbstractLong timescale (>1 μs) molecular dynamics simulations of protein folding offer a powerful to...
It is currently believed that the atlas of existing protein structures is faithfully represented in ...
Computer simulation is a powerful approach to study protein dynamics and functions. We employed mole...
Although protein folding has been studied for decades many open issues still resist, and we yet lack...
We report on atomistic simulation of the folding of a natively-knotted protein, MJ0366, based on a r...
AbstractWe develop a coarse-grained protein model with a simplified amino acid interaction potential...
Theoretical prediction of protein structures and dynamics is essential for understanding the molecul...
Protein dynamics takes place on a rugged funnel-like energy landscape that is biased towards the nat...