Title:
Protein conformational changes and protonation dynamics probed by a single shot using quantum-cascade-laser-based IR spectroscopy
Author(s):
Schubert, Luiz; Langner, Pit; Ehrenberg, David; Lorenz-Fonfria, Victor A.; Heberle, Joachim
Year of publication:
2022
Available Date:
2023-03-09T08:43:03Z
Abstract:
Mid-IR spectroscopy is a powerful and label-free technique to investigate protein reactions. In this study, we use quantum-cascade-laser-based dual-comb spectroscopy to probe protein conformational changes and protonation events by a single-shot experiment. By using a well-characterized membrane protein, bacteriorhodopsin, we provide a comparison between dual-comb spectroscopy and our homebuilt tunable quantum cascade laser (QCL)-based scanning spectrometer as tools to monitor irreversible reactions with high time resolution. In conclusion, QCL-based infrared spectroscopy is demonstrated to be feasible for tracing functionally relevant protein structural changes and proton translocations by single-shot experiments. Thus, we envisage a bright future for applications of this technology for monitoring the kinetics of irreversible reactions as in (bio-)chemical transformations.
Part of Identifier:
ISSN (print): 0021-9606
e-ISSN (online): 1089-7690
Keywords:
Signal-to-noise ratio
Interferometry
Kinetic isotope effects
Proteins
Frequency combs
Lasers
Fourier transform spectroscopy
Infrared spectroscopy
Amino acid
Macromolecules
DDC-Classification:
539 Moderne Physik
Publication Type:
Wissenschaftlicher Artikel
URL of the Original Publication:
DOI of the Original Publication:
Journal Volume:
156 (2022)
Journaltitle:
The Journal of Chemical Physics
Publisher:
American Institute of Physics
Publisher Place:
Melville, NY
Department/institution:
Physik
Institut für Experimentalphysik