Many proteins exhibit an equilibrium between multiple conformations, some of them being characterized only by low-resolution information. Visiting all conformations is a demanding task for computational techniques performing enhanced but unfocused exploration of collective variable (CV) space. Otherwise, pulling a structure toward a target condition biases the exploration in a way difficult to assess. To address this problem, we introduce here the soft-ratcheting temperature-accelerated molecular dynamics (sr-TAMD), where the exploration of CV space by TAMD is coupled to a soft-ratcheting algorithm that filters the evolving CV values according to a predefined criterion. Any low resolution or even qualitative information can be used to orien...
An atomic resolution description of protein flexibility is essential for understanding the role that...
Methods for investigating conformational motions are developed and applied to a range of protein sys...
Accelerated molecular dynamics (aMD) is a promising sampling method to generate an ensemble of confo...
Many proteins exhibit an equilibrium between multiple conformations, some of them being characterize...
Many proteins exhibit an equilibrium between multiple conformations, some of them being characterize...
International audienceMany proteins exhibit an equilibrium between multiple conformations, some of t...
Many proteins exhibit an equilibrium between multiple conformations, some of them being characterize...
International audienceThe catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussi...
International audienceThe catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussi...
International audienceThe catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussi...
The catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussis is activated by inte...
The catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussis is activated by inte...
We have studied large-scale conformational transitions in the maltose-binding protein and the nucleo...
AbstractAll-atom molecular dynamics simulations are widely used to study the flexibility of protein ...
Molecular dynamics simulations can provide valuable atomistic insights into biomolecular function. H...
An atomic resolution description of protein flexibility is essential for understanding the role that...
Methods for investigating conformational motions are developed and applied to a range of protein sys...
Accelerated molecular dynamics (aMD) is a promising sampling method to generate an ensemble of confo...
Many proteins exhibit an equilibrium between multiple conformations, some of them being characterize...
Many proteins exhibit an equilibrium between multiple conformations, some of them being characterize...
International audienceMany proteins exhibit an equilibrium between multiple conformations, some of t...
Many proteins exhibit an equilibrium between multiple conformations, some of them being characterize...
International audienceThe catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussi...
International audienceThe catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussi...
International audienceThe catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussi...
The catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussis is activated by inte...
The catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussis is activated by inte...
We have studied large-scale conformational transitions in the maltose-binding protein and the nucleo...
AbstractAll-atom molecular dynamics simulations are widely used to study the flexibility of protein ...
Molecular dynamics simulations can provide valuable atomistic insights into biomolecular function. H...
An atomic resolution description of protein flexibility is essential for understanding the role that...
Methods for investigating conformational motions are developed and applied to a range of protein sys...
Accelerated molecular dynamics (aMD) is a promising sampling method to generate an ensemble of confo...