Interplay between Hydrogen Bonding and Vibrational Coupling in Liquid N-Methylacetamide

Open Access
Authors
Publication date 01-06-2017
Journal The Journal of Physical Chemistry Letters
Volume | Issue number 8 | 11
Pages (from-to) 2438-2444
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract
Intrinsically disordered proteins play an important role in biology, and unraveling their labile structure presents a vital challenge. However, the dynamical structure of such proteins thwarts their study by standard techniques such as X-ray diffraction and NMR spectroscopy. Here, we use a neat liquid composed of N-methylacetamide molecules as a model system to elucidate dynamical and structural properties similar to those one can expect to see in intrinsically disordered proteins. To examine the structural dynamics in the neat liquid, we combine molecular dynamics, response-function-based spectral simulations, and two-dimensional polarization-resolved infrared spectroscopy in the amide I (CO stretch) region. The two-dimensional spectra reveal a delicate interplay between hydrogen bonding and intermolecular vibrational coupling effects, observed through a fast anisotropy decay. The present study constitutes a general platform for understanding the structure and dynamics of highly disordered proteins.
Document type Article
Note With supplementary file
Language English
Published at https://doi.org/10.1021/acs.jpclett.7b00731
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acs.jpclett (Final published version)
Supplementary materials
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