We report that the waiting time delay in 2D IR pulse sequences can be used to suppress signals from structurally disordered regions of amyloid fibrils. At a waiting time delay of 1.0 ps, the random coil vibrational modes of amylin fibrils are no longer detectable, leaving only the sharp excitonic vibrational features of the fibril β-sheets. Isotope labeling with <sup>13</sup>C<sup>18</sup>O reveals that structurally disordered residues decay faster than residues protected from solvent. Because structural disorder is usually accompanied by hydration, we conclude that the shorter lifetimes of random-coil residues are due to solvent exposure. These results indicate that 2D IR pulse sequences can utilize the waiting time to better resolve solve...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Amyloidogenic peptides and proteins play a crucial role in a variety of neurodegenerative disorders ...
The motion of water molecules close to amide groups causes their vibrational frequencies to vary rap...
The infrared optical response of amyloid fibrils A beta(1-40) is investigated. Simulations of two mo...
Infrared spectroscopy is playing an important role in the elucidation of amyloid fiber formation, bu...
Amyloid ?? peptides form fibrils that are commonly assumed to have a dry, homogeneous, and static in...
The capability of 2D IR spectroscopy to elucidate time-evolving structures is enhanced by a programm...
The 2D IR spectra of the amide-I vibrations of amyloid fibrils from A??40 were obtained. The matured...
Amyloid formation has been implicated in the pathology of over 20 human diseases, but the rational d...
While there are many studies on the subject of hydrogen-bonding dynamics in biological systems, few,...
Amyloid formation is implicated in more than 20 human diseases, yet the mechanism by which fibrils f...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Amyloidogenic peptides and proteins play a crucial role in a variety of neurodegenerative disorders ...
The motion of water molecules close to amide groups causes their vibrational frequencies to vary rap...
The infrared optical response of amyloid fibrils A beta(1-40) is investigated. Simulations of two mo...
Infrared spectroscopy is playing an important role in the elucidation of amyloid fiber formation, bu...
Amyloid ?? peptides form fibrils that are commonly assumed to have a dry, homogeneous, and static in...
The capability of 2D IR spectroscopy to elucidate time-evolving structures is enhanced by a programm...
The 2D IR spectra of the amide-I vibrations of amyloid fibrils from A??40 were obtained. The matured...
Amyloid formation has been implicated in the pathology of over 20 human diseases, but the rational d...
While there are many studies on the subject of hydrogen-bonding dynamics in biological systems, few,...
Amyloid formation is implicated in more than 20 human diseases, yet the mechanism by which fibrils f...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Molecular-level structural information on amyloid aggregates is of great importance for the understa...
Amyloidogenic peptides and proteins play a crucial role in a variety of neurodegenerative disorders ...