International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps molecular dynamics simulation of deoxymyoglobin is examined. Two types of rigid-body motions are considered: one in which the helices are rigid units and one in which the side-chains are rigid units. Using a quaternion-based algorithm, fits of the rigid reference structures are made to each time frame of the simulation to derive trajectories of the rigid-body motions. The fitted trajectories are analysed in terms of atomic position fluctuations, mean-square displacements as a function of time, velocity autocorrelation functions and densities of states. The results are compared with the corresponding quantities calculated from the full traject...
We have recently been investigating the dynamical fine structure of DNA oligonucleotides and protein...
Molecular dynamics simulations of 2-ns duration were performed on carbonmonoxymyoglobin and deoxymyo...
A deep understanding of the role of motions in the functional mechanisms of biomolecules can potenti...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
We propose a new approach to split up the velocities of atoms of flexible molecules into translation...
We have carried out a very long (300 ps) molecular dynamics simulation of the protein myoglobin. Thi...
To gain insight into crystalline protein dynamics, we performed molecular-dynamics (MD) simulations ...
To gain insight into crystalline protein dynamics, we performed molecular-dynamics (MD) simulations ...
Atomic motions in protein molecules have been studied by molecular dynamics (MD) simulations; dynami...
We have recently been investigating the dynamical fine structure of DNA oligonucleotides and protein...
We have recently been investigating the dynamical fine structure of DNA oligonucleotides and protein...
We have recently been investigating the dynamical fine structure of DNA oligonucleotides and protein...
Molecular dynamics simulations of 2-ns duration were performed on carbonmonoxymyoglobin and deoxymyo...
A deep understanding of the role of motions in the functional mechanisms of biomolecules can potenti...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
International audienceThe contribution of rigid-body motions to the atomic trajectories in a 100 ps ...
We propose a new approach to split up the velocities of atoms of flexible molecules into translation...
We have carried out a very long (300 ps) molecular dynamics simulation of the protein myoglobin. Thi...
To gain insight into crystalline protein dynamics, we performed molecular-dynamics (MD) simulations ...
To gain insight into crystalline protein dynamics, we performed molecular-dynamics (MD) simulations ...
Atomic motions in protein molecules have been studied by molecular dynamics (MD) simulations; dynami...
We have recently been investigating the dynamical fine structure of DNA oligonucleotides and protein...
We have recently been investigating the dynamical fine structure of DNA oligonucleotides and protein...
We have recently been investigating the dynamical fine structure of DNA oligonucleotides and protein...
Molecular dynamics simulations of 2-ns duration were performed on carbonmonoxymyoglobin and deoxymyo...
A deep understanding of the role of motions in the functional mechanisms of biomolecules can potenti...