The vibrational spectrum of the Ala-Leu-Ala-Leu peptide in solution, computed from first-principles simulations, shows a prominent band in the amide I region that is assigned to stretching of carbonyl groups. Close inspection reveals combined but slightly different contributions by the three carbonyl groups of the peptide. The shift in their exact vibrational signature is in agreement with the different probabilities of these groups to form hydrogen bonds with the solvent. The central carbonyl group has a hydrogen bond probability intermediate to the other two groups due to interchanges between different hydrogen-bonded states. Analysis of the interaction energies of individual water molecules with that group shows that shifts in its freque...
Author Institution: CEA, IRAMIS, SPAM, Lab. Francis Perrin, URA 2453, F-91191, Gif-sur-Yvette, Franc...
The spectroscopy of amide I vibrations has become a powerful tool for exploring protein structure an...
Many classical antimicrobial peptides adopt an amphipathic helical structure at a water-membrane int...
We have combined infrared (IR) experiments with molecular dynamics (MD) simulations in solution at ...
The amide I vibrational properties of a peptide–water complex in various intermolecular configuratio...
The function of biological molecules is closely related to their spatial structure and conformationa...
In this work we have utilized recent density functional theory Born-Oppenheimer molecular dynamics s...
The difference in the affinity for water of peptide groups embedded in different molecular environme...
The effect of hydrogen bonding on the amide group vibrational spectra has traditionally been rationa...
Author Institution: Department of Chemistry, Purdue University, West Lafayette, IN 47907; School of ...
The sensitivity of some infrared bands to the local environment can be exploited to shed light on th...
Raman and specifically Raman optical activity (ROA) spectroscopy are very sensitive to the solution ...
The effect of hydrogen bonding on the amide group vibrational spectra has traditionally been rationa...
In this work we have utilised recent density functional theory Born-oppenheimer molecular dynamics s...
We present a mixed quantum-classical model for studying the amide I vibrational dynamics (predominan...
Author Institution: CEA, IRAMIS, SPAM, Lab. Francis Perrin, URA 2453, F-91191, Gif-sur-Yvette, Franc...
The spectroscopy of amide I vibrations has become a powerful tool for exploring protein structure an...
Many classical antimicrobial peptides adopt an amphipathic helical structure at a water-membrane int...
We have combined infrared (IR) experiments with molecular dynamics (MD) simulations in solution at ...
The amide I vibrational properties of a peptide–water complex in various intermolecular configuratio...
The function of biological molecules is closely related to their spatial structure and conformationa...
In this work we have utilized recent density functional theory Born-Oppenheimer molecular dynamics s...
The difference in the affinity for water of peptide groups embedded in different molecular environme...
The effect of hydrogen bonding on the amide group vibrational spectra has traditionally been rationa...
Author Institution: Department of Chemistry, Purdue University, West Lafayette, IN 47907; School of ...
The sensitivity of some infrared bands to the local environment can be exploited to shed light on th...
Raman and specifically Raman optical activity (ROA) spectroscopy are very sensitive to the solution ...
The effect of hydrogen bonding on the amide group vibrational spectra has traditionally been rationa...
In this work we have utilised recent density functional theory Born-oppenheimer molecular dynamics s...
We present a mixed quantum-classical model for studying the amide I vibrational dynamics (predominan...
Author Institution: CEA, IRAMIS, SPAM, Lab. Francis Perrin, URA 2453, F-91191, Gif-sur-Yvette, Franc...
The spectroscopy of amide I vibrations has become a powerful tool for exploring protein structure an...
Many classical antimicrobial peptides adopt an amphipathic helical structure at a water-membrane int...