4.5 Article

Ultrafast Hydrogen-Bonding Dynamics in the Electronic Excited State of Photoactive Yellow Protein Revealed by Femtosecond Stimulated Raman Spectroscopy

Journal

JOURNAL OF PHYSICAL CHEMISTRY B
Volume 116, Issue 51, Pages 14768-14775

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp308433a

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Funding

  1. JSPS KAKENHI [24540323]
  2. Grants-in-Aid for Scientific Research [24540435, 24540323] Funding Source: KAKEN

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The ultrafast structural dynamics in the electronic excited state of photoactive yellow protein (PYP) is studied by femtosecond stimulated Raman spectroscopy. Stimulated Raman spectra in the electronic excited state, S-1, can be obtained by using a Raman pump pulse in resonance with the S-1-S-0 transition. This is confirmed by comparing the experimental results with numerical calculations based on the density matrix treatment. We also investigate the hydrogen-bonding network surrounding the wildtype (WT)-PYP chromophore in the ground and excited states by comparing its stimulated Raman spectra with those of the E46Q-PYP mutant. We focus on the relative intensity of the Raman band at 1555 cm(-1), which includes both vinyl bond C=C stretching and ring vibrations and is sensitive to the hydrogen-bonding network around the phenolic oxygen of the chromophore. The relative intensity for the WT-PYP decreases after actinic excitation within the 150 is time resolution and reaches a similar intensity to that for E46Q-PYP. These observations indicate that the WT-PYP hydrogen-bonding network is immediately rearranged in the electronic excited state to form a structure similar to that of E46Q-PYP.

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