AbstractElectron paramagnetic resonance (EPR) spectroscopy using site-directed spin-labeling is an appropriate technique to analyze the structure and dynamics of flexible protein regions as well as protein-protein interactions under native conditions. The analysis of a set of protein mutants with consecutive spin-label positions leads to the identification of secondary and tertiary structure elements. In the first place, continuous-wave EPR spectra reflect the motional freedom of the spin-label specifically linked to a desired site within the protein. EPR spectra calculations based on molecular dynamics (MD) and stochastic dynamics simulations facilitate verification or refinement of predicted computer-aided models of local protein conforma...
We report simulation of EPR spectra directly and entirely from trajectories generated from molecular...
We report simulation of EPR spectra directly and entirely from trajectories generated from molecular...
AbstractA simulated continuous wave electron paramagnetic resonance spectrum of a nitroxide spin lab...
AbstractElectron paramagnetic resonance (EPR) spectroscopy using site-directed spin-labeling is an a...
University of Minnesota Ph.D. dissertation.April 2019. Major: Physics. Advisor: David Thomas. 1 comp...
The investigation of protein motions and related conformational changes is a prerequisite for the un...
We present a method to simulate electron paramagnetic resonance spectra of spin-labeled proteins tha...
We present a method to simulate electron paramagnetic resonance spectra of spin-labeled proteins tha...
A general approach for the prediction of EPR spectra directly and completely from single dynamical t...
A general approach for the prediction of EPR spectra directly and completely from single dynamical t...
Using atomistic molecular dynamics (MD) simulations in the interpretation of multifrequency electron...
A simple effective method for calculation of EPR spectra from a single truncated dynamical trajector...
Using atomistic molecular dynamics (MD) simulations in the interpretation of mul-tifrequency electro...
As many key proteins evade crystallization and remain too large for nuclear magnetic resonance spect...
As many key proteins evade crystallization and remain too large for nuclear magnetic resonance spect...
We report simulation of EPR spectra directly and entirely from trajectories generated from molecular...
We report simulation of EPR spectra directly and entirely from trajectories generated from molecular...
AbstractA simulated continuous wave electron paramagnetic resonance spectrum of a nitroxide spin lab...
AbstractElectron paramagnetic resonance (EPR) spectroscopy using site-directed spin-labeling is an a...
University of Minnesota Ph.D. dissertation.April 2019. Major: Physics. Advisor: David Thomas. 1 comp...
The investigation of protein motions and related conformational changes is a prerequisite for the un...
We present a method to simulate electron paramagnetic resonance spectra of spin-labeled proteins tha...
We present a method to simulate electron paramagnetic resonance spectra of spin-labeled proteins tha...
A general approach for the prediction of EPR spectra directly and completely from single dynamical t...
A general approach for the prediction of EPR spectra directly and completely from single dynamical t...
Using atomistic molecular dynamics (MD) simulations in the interpretation of multifrequency electron...
A simple effective method for calculation of EPR spectra from a single truncated dynamical trajector...
Using atomistic molecular dynamics (MD) simulations in the interpretation of mul-tifrequency electro...
As many key proteins evade crystallization and remain too large for nuclear magnetic resonance spect...
As many key proteins evade crystallization and remain too large for nuclear magnetic resonance spect...
We report simulation of EPR spectra directly and entirely from trajectories generated from molecular...
We report simulation of EPR spectra directly and entirely from trajectories generated from molecular...
AbstractA simulated continuous wave electron paramagnetic resonance spectrum of a nitroxide spin lab...