Ultrafast Chemical Exchange Dynamics of Hydrogen Bonds Observed via Isonitrile Infrared Sensors: Implications for Biomolecular Studies

  • Kubel, Joachim; 
  • Lee, Giseong; 
  • Ooi, Saik Ann; 
  • Westenhoff, Sebastian; 
  • Han, Hogyu; 
  • 외 2명
Citations

WEB OF SCIENCE

13
Citations

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14

초록

Local probes are indispensable to study protein structure and dynamics with site-specificity. The isonitrile functional group is a highly sensitive and H-bonding interaction-specific probe. Isonitriles exhibit large spectral shifts and transition dipole moment changes upon H-bonding while being weakly affected by solvent polarity. These unique properties allow a clear separation of distinct subpopulations of interacting species and an elucidation of their ultrafast dynamics with two-dimensional infrared (2D-IR) spectroscopy. Here, we apply 2D-IR to quantify the picosecond chemical exchange dynamics of solute solvent complexes forming between isonitrile-derivatized alanine and fluorinated ethanol, where the degree of fluorination controls their H-bond-donating ability. We show that the molecules undergo faster exchange in the presence of more acidic H-bond donors, indicating that the exchange process is primarily dependent on the nature of solvent-solvent interactions. We foresee isonitrile as a highly promising probe for studying of H-bonds dynamics in the active site of enzymes.

키워드

2D IR SPECTROSCOPY; 2D-IR SPECTROSCOPY; JUMP MECHANISM; PROBES; SOLVATOCHROMISM; SURFACE
제목
Ultrafast Chemical Exchange Dynamics of Hydrogen Bonds Observed via Isonitrile Infrared Sensors: Implications for Biomolecular Studies
저자
Kubel, Joachim; Lee, Giseong; Ooi, Saik Ann; Westenhoff, Sebastian; Han, Hogyu; Cho, Minhaeng; Maj, Michal
DOI
10.1021/acs.jpclett.9b03144
발행일
2019-12-19
유형
Article
저널명
The Journal of Physical Chemistry Letters
권
10
호
24
페이지
7878 ~ 7883