In our recent work [Phys. Chem. Chem. Phys. 11, 9149 (2009)], a molecular-mechanics force field-based amide-I vibration frequency map (MM-map) for peptides and proteins was constructed. In this work, the temperature dependence of the MM-map is examined based on high-temperature molecular dynamics simulations and infrared (IR) experiments. It is shown that the 298-K map works for up to 500-K molecular dynamics trajectories, which reasonably reproduces the 88 degrees C experimental IR results. Linear IR, spectra are also simulated for two tripeptides containing natural and unnatural amino acid residues, and the results are in reasonable agreement with experiment. The results suggest the MM-map can be used to obtain the temperature-dependent a...
A new simulation protocol for the prediction of the infrared absorption of the amide I vibration of ...
We present a mixed quantum-classical model for studying the amide I vibrational dynamics (predominan...
Population transfer between vibrational eigenstates is important for many phenomena in chemistry. In...
A molecular mechanics (MM) force field-based empirical electrostatic potential map (MM map) for amid...
Infrared (IR) spectroscopy is a valuable tool to obtain information about protein secondary structur...
Infrared (IR) spectroscopy is a valuable tool to obtain information about protein secondary structur...
ABSTRACT: New sets of parameters (maps) for calculating amide I vibrational spectra for proteins thr...
In this paper, we present a novel benchmarking method for validating the modelling of vibrational sp...
We present a benchmark study of spectral simulation protocols for the amide I band of proteins. The ...
Far-infrared spectroscopy was used to study the dynamics of three aqueous peptides having varied hel...
Far-infrared spectroscopy was used to study the dynamics of three aqueous peptides having varied hel...
International audienceThe calculation of infrared spectra by molecular dynamics simulations based on...
We herein review our studies on simulating the thermal unfolding Fourier transform infrared and two-...
We have combined infrared (IR) experiments with molecular dynamics (MD) simulations in solution at ...
New sets of parameters (maps) for calculating amide I vibrational spectra for proteins through a vib...
A new simulation protocol for the prediction of the infrared absorption of the amide I vibration of ...
We present a mixed quantum-classical model for studying the amide I vibrational dynamics (predominan...
Population transfer between vibrational eigenstates is important for many phenomena in chemistry. In...
A molecular mechanics (MM) force field-based empirical electrostatic potential map (MM map) for amid...
Infrared (IR) spectroscopy is a valuable tool to obtain information about protein secondary structur...
Infrared (IR) spectroscopy is a valuable tool to obtain information about protein secondary structur...
ABSTRACT: New sets of parameters (maps) for calculating amide I vibrational spectra for proteins thr...
In this paper, we present a novel benchmarking method for validating the modelling of vibrational sp...
We present a benchmark study of spectral simulation protocols for the amide I band of proteins. The ...
Far-infrared spectroscopy was used to study the dynamics of three aqueous peptides having varied hel...
Far-infrared spectroscopy was used to study the dynamics of three aqueous peptides having varied hel...
International audienceThe calculation of infrared spectra by molecular dynamics simulations based on...
We herein review our studies on simulating the thermal unfolding Fourier transform infrared and two-...
We have combined infrared (IR) experiments with molecular dynamics (MD) simulations in solution at ...
New sets of parameters (maps) for calculating amide I vibrational spectra for proteins through a vib...
A new simulation protocol for the prediction of the infrared absorption of the amide I vibration of ...
We present a mixed quantum-classical model for studying the amide I vibrational dynamics (predominan...
Population transfer between vibrational eigenstates is important for many phenomena in chemistry. In...