A simple effective method for calculation of EPR spectra from a single truncated dynamical trajectory of spin probe orientations is reported. It is shown that an accurate simulation can be achieved from the small initial fraction of a dynamical trajectory until the point when the autocorrelation function of re-orientational motion of spin label has relaxed. This substantially reduces the amount of time for spectra simulation compared to previous approaches, which require multiple full length trajectories (normally of several microseconds) to achieve the desired resolution of EPR spectra. Our method is applicable to trajectories generated from both Brownian dynamics and molecular dynamics (MD) calculations. Simulations of EPR spectra from Br...
Site-directed spin labeling (SDSL) combined with continuous wave electron paramagnetic resonance (cw...
In the companion paper (J. Phys. Chem. B 2006, 110, jp0629487), a study of the conformational dynami...
EPR studies combined with fully atomistic Molecular Dynamics (MD) simulations and an MD-EPR simulati...
A general approach for the prediction of EPR spectra directly and completely from single dynamical t...
We report the prediction of motional EPR spectra of the metalloprotein sperm whale myoglobin spin la...
AbstractA simulated continuous wave electron paramagnetic resonance spectrum of a nitroxide spin lab...
Using atomistic molecular dynamics (MD) simulations in the interpretation of mul-tifrequency electro...
Using atomistic molecular dynamics (MD) simulations in the interpretation of multifrequency electron...
We present a method to simulate electron paramagnetic resonance spectra of spin-labeled proteins tha...
AbstractElectron paramagnetic resonance (EPR) spectroscopy using site-directed spin-labeling is an a...
X- and W-band EPR spectra, at room and low temperatures, are reported for nitroxide spin labels atta...
X- and W-band EPR spectra, at room and low temperatures, are reported for nitroxide spin labels atta...
International audienceSite-directed spin labeling (SDSL) combined with continuous wave electron para...
The investigation of protein motions and related conformational changes is a prerequisite for the un...
We report simulation of EPR spectra directly and entirely from trajectories generated from molecular...
Site-directed spin labeling (SDSL) combined with continuous wave electron paramagnetic resonance (cw...
In the companion paper (J. Phys. Chem. B 2006, 110, jp0629487), a study of the conformational dynami...
EPR studies combined with fully atomistic Molecular Dynamics (MD) simulations and an MD-EPR simulati...
A general approach for the prediction of EPR spectra directly and completely from single dynamical t...
We report the prediction of motional EPR spectra of the metalloprotein sperm whale myoglobin spin la...
AbstractA simulated continuous wave electron paramagnetic resonance spectrum of a nitroxide spin lab...
Using atomistic molecular dynamics (MD) simulations in the interpretation of mul-tifrequency electro...
Using atomistic molecular dynamics (MD) simulations in the interpretation of multifrequency electron...
We present a method to simulate electron paramagnetic resonance spectra of spin-labeled proteins tha...
AbstractElectron paramagnetic resonance (EPR) spectroscopy using site-directed spin-labeling is an a...
X- and W-band EPR spectra, at room and low temperatures, are reported for nitroxide spin labels atta...
X- and W-band EPR spectra, at room and low temperatures, are reported for nitroxide spin labels atta...
International audienceSite-directed spin labeling (SDSL) combined with continuous wave electron para...
The investigation of protein motions and related conformational changes is a prerequisite for the un...
We report simulation of EPR spectra directly and entirely from trajectories generated from molecular...
Site-directed spin labeling (SDSL) combined with continuous wave electron paramagnetic resonance (cw...
In the companion paper (J. Phys. Chem. B 2006, 110, jp0629487), a study of the conformational dynami...
EPR studies combined with fully atomistic Molecular Dynamics (MD) simulations and an MD-EPR simulati...