The form of the amide I infrared absorption band provides a sensitive probe of the secondary structure and dynamics of proteins in the solution phase. However, the frequency coincidence of the amide I band with the bending vibrational mode of H2O has necessitated the widespread use of deuterated solvents. Recently, it has been demonstrated that ultrafast 2D-IR spectroscopy allows the detection of the protein amide I band in H2O-based fluids, meaning that IR methods can now be applied to study proteins in physiologically relevant solvents. In this perspective, we describe the basis of the 2D-IR method for observing the protein amide I band in H2O and show how this development has the potential to impact on areas ranging from our fundamental ...
We present a benchmark study of spectral simulation protocols for the amide I band of proteins. The ...
The ability to compute from first principles the infrared spectrum of a protein in solution phase re...
Two-dimensional infrared (2D-IR) spectroscopy is a powerful experimental method for probing the stru...
The form of the amide I infrared absorption band provides a sensitive probe of the secondary structu...
The amide I infrared band of proteins is highly sensitive to secondary structure, but studies under ...
The ability of two-dimensional infrared (2D-IR) spectroscopy to measure the amide I band of proteins...
The ability of two-dimensional infrared (2D-IR) spectroscopy to measure the amide I band of proteins...
Applications of ultrafast two-dimensional infrared (2D-IR) spectroscopy to study the structural dyna...
Following a survey of 2D IR principles, this article describes recent experiments on the hydrogen-bo...
The research presented in this thesis advances the applicability of two dimensional infrared spectro...
The application of infrared spectroscopy to biological samples has been made possible largely by the...
Recent advances in the methodology and application of ultrafast two-dimensional infrared (2D-IR) spe...
Ultrafast protein dynamics are of great interest for understanding the molecular basis of biochemica...
Protein structure-function relationship has been rethought over the past decades to account for conf...
We present a benchmark study of spectral simulation protocols for the amide I band of proteins. The ...
The ability to compute from first principles the infrared spectrum of a protein in solution phase re...
Two-dimensional infrared (2D-IR) spectroscopy is a powerful experimental method for probing the stru...
The form of the amide I infrared absorption band provides a sensitive probe of the secondary structu...
The amide I infrared band of proteins is highly sensitive to secondary structure, but studies under ...
The ability of two-dimensional infrared (2D-IR) spectroscopy to measure the amide I band of proteins...
The ability of two-dimensional infrared (2D-IR) spectroscopy to measure the amide I band of proteins...
Applications of ultrafast two-dimensional infrared (2D-IR) spectroscopy to study the structural dyna...
Following a survey of 2D IR principles, this article describes recent experiments on the hydrogen-bo...
The research presented in this thesis advances the applicability of two dimensional infrared spectro...
The application of infrared spectroscopy to biological samples has been made possible largely by the...
Recent advances in the methodology and application of ultrafast two-dimensional infrared (2D-IR) spe...
Ultrafast protein dynamics are of great interest for understanding the molecular basis of biochemica...
Protein structure-function relationship has been rethought over the past decades to account for conf...
We present a benchmark study of spectral simulation protocols for the amide I band of proteins. The ...
The ability to compute from first principles the infrared spectrum of a protein in solution phase re...
Two-dimensional infrared (2D-IR) spectroscopy is a powerful experimental method for probing the stru...