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SCN as a Local Probe of Protein Structural Dynamics

Chemical Physics 2024-04-30 v1

Abstract

The dynamics of lysozyme is probed by attaching -SCN to all alanine-residues. The 1-dimensional infrared spectra exhibit frequency shifts in the position of the maximum absorption by 4 cm1^{-1} which is consistent with experiments in different solvents and indicates moderately strong interactions of the vibrational probe with its environment. Isotopic substitution 12^{12}C 13\rightarrow ^{13}C leads to a red-shift by 47-47 cm1^{-1} which is consistent with experiments with results on CN-substituted copper complexes in solution. The low-frequency, far-infrared part of the protein spectra contain label-specific information in the difference spectra when compared with the wild type protein. Depending on the positioning of the labels, local structural changes are observed. For example, introducing the -SCN label at Ala129 leads to breaking of the α\alpha-helical structure with concomitant change in the far-infrared spectrum. Finally, changes in the local hydration of SCN-labelled Alanine residues as a function of time can be related to angular reorientation of the label. It is concluded that -SCN is potentially useful for probing protein dynamics, both in the high-frequency (CN-stretch) and far-infrared part of the spectrum.

Keywords

Cite

@article{arxiv.2404.18879,
  title  = {SCN as a Local Probe of Protein Structural Dynamics},
  author = {Sena Aydin and Seyedeh Maryam Salehi and Kai Töpfer and Markus Meuwly},
  journal= {arXiv preprint arXiv:2404.18879},
  year   = {2024}
}
R2 v1 2026-06-28T16:10:05.830Z