Elastin-like peptides are hydrophobic biopolymers that exhibit a reversible coacervation transition when the temperature is raised above a critical point. Here, we use a combination of linear infrared spectroscopy, two-dimensional infrared spectroscopy, and molecular dynamics simulations to study the structural dynamics of two elastin-like peptides. Specifically, we investigate the effect of the solvent environment and temperature on the structural dynamics of a short (5-residue) elastin-like peptide and of a long (450-residue) elastin-like peptide. We identify two vibrational energy transfer processes that take place within the amide I′ band of both peptides. We observe that the rate constant of one of the exchange processes is strongly de...
An understanding of protein folding and how it impacts the structure and function of proteins will h...
Elastin-like polypeptides (ELPs) with the repeat sequence of VPGVG are widely used as a model system...
AbstractA joint experimental/theoretical investigation of the elastin-like octapeptide GVG(VPGVG) wa...
Elastin-like peptides are hydrophobic biopolymers that exhibit a reversible coacervation transition ...
Elastin-like peptides are hydrophobic biopolymers that exhibit a reversible coacervation transition ...
Elastin-like peptides are hydrophobic biopolymers that exhibit a reversible coacervation transition...
AbstractThe infrared spectroscopy of elastin-like polypeptides and the relation to the inverse therm...
Elastin is the main protein to confer elasticity to biological tissues, through the formation of a h...
In this work we use polarization-resolved pump-probe and two-dimensional infrared (2DIR) spectroscop...
Elastin confers elasticity to various vertebrate tissues. Elastin and elastin-like peptides are diso...
Femtosecond two-dimensional infrared spectroscopy in combination with isotope labeling and molecular...
The two-dimensional infrared spectrum of an octameric helical peptide in chloroform was measured as ...
Elastin is a disordered structural protein that imparts extensibility and elastic recoil to major ar...
We used electronic circular dichroism (CD) and UV resonance Raman (UVRR) spectroscopy at 204 nm exci...
An understanding of protein folding and how it impacts the structure and function of proteins will h...
Elastin-like polypeptides (ELPs) with the repeat sequence of VPGVG are widely used as a model system...
AbstractA joint experimental/theoretical investigation of the elastin-like octapeptide GVG(VPGVG) wa...
Elastin-like peptides are hydrophobic biopolymers that exhibit a reversible coacervation transition ...
Elastin-like peptides are hydrophobic biopolymers that exhibit a reversible coacervation transition ...
Elastin-like peptides are hydrophobic biopolymers that exhibit a reversible coacervation transition...
AbstractThe infrared spectroscopy of elastin-like polypeptides and the relation to the inverse therm...
Elastin is the main protein to confer elasticity to biological tissues, through the formation of a h...
In this work we use polarization-resolved pump-probe and two-dimensional infrared (2DIR) spectroscop...
Elastin confers elasticity to various vertebrate tissues. Elastin and elastin-like peptides are diso...
Femtosecond two-dimensional infrared spectroscopy in combination with isotope labeling and molecular...
The two-dimensional infrared spectrum of an octameric helical peptide in chloroform was measured as ...
Elastin is a disordered structural protein that imparts extensibility and elastic recoil to major ar...
We used electronic circular dichroism (CD) and UV resonance Raman (UVRR) spectroscopy at 204 nm exci...
An understanding of protein folding and how it impacts the structure and function of proteins will h...
Elastin-like polypeptides (ELPs) with the repeat sequence of VPGVG are widely used as a model system...
AbstractA joint experimental/theoretical investigation of the elastin-like octapeptide GVG(VPGVG) wa...