Time‐resolved resonance Raman study on ultrafast structural relaxation and vibrational cooling of photodissociated carbonmonoxy myoglobin
- 1 January 2002
- journal article
- Published by Wiley in Biopolymers
- Vol. 67 (4-5) , 207-213
- https://doi.org/10.1002/bip.10096
Abstract
A localized small structural change is converted to a higher order conformational change of protein and extends to a mesoscopic scale to induce a physiological function. To understand such features of protein, ultrafast dynamics of myoglobin (Mb) following photolysis of carbon monoxide were investigated. Recent results are summarized here with a stress on structural and vibrational energy relaxation. The core expansion of heme takes place within 2 ps but the out of plane displacement of the heme iron and the accompanying protein conformational change occur in 10 and 100 s of the picosecond regimes, respectively. Unexpectedly, it was found from UV resonance Raman spectra that Trp7 in the N‐terminal region and Tyr151 in the C‐terminal region undergo appreciable structural changes upon ligand binding–dissociation while Tyr104, Tyr146, and Trp14 do not. Because of the communication between the movements of these surface residues and the heme iron, the rate of spectral change of the iron‐histidine (Fe‐ His) stretching band after CO photodissociation is influenced by the viscosity of solvent. Temporal changes of the anti‐Stokes Raman intensity demonstrated immediate generation of vibrationally excited heme upon photodissociation and its decay with a time constant of 1–2 ps. © 2002 Wiley Periodicals, Inc. Biopolymers (Biospectroscopy) 67: 207–213, 2002Keywords
This publication has 17 references indexed in Scilit:
- Ultrafast Structural Relaxation of Myoglobin Following Photodissociation of Carbon Monoxide Probed by Time-Resolved Resonance Raman SpectroscopyThe Journal of Physical Chemistry B, 2001
- A New Measurement System for UV Resonance Raman Spectra of Large Proteins and Its Application to Cytochrome c OxidaseThe Journal of Physical Chemistry B, 2000
- Direct Observation of Cooling of Heme Upon Photodissociation of Carbonmonoxy MyoglobinScience, 1997
- Assignment of Protoheme Resonance Raman Spectrum by Heme Labeling in MyoglobinJournal of the American Chemical Society, 1996
- Complex nonexponential relaxation in myoglobin after photodissociation of MbCO: measurement and analysis from 2 ps to 56 υsChemical Physics, 1994
- Nonexponential relaxation after ligand dissociation from myoglobin: a molecular dynamics simulation.Proceedings of the National Academy of Sciences, 1993
- Protein conformational relaxation following photodissociation of carbon monoxide from carbonmonoxymyoglobin: picosecond circular dichroism and absorption studiesBiochemistry, 1991
- Photophysics and reactivity of heme proteins: a femtosecond absorption study of hemoglobin, myoglobin, and protohemeBiochemistry, 1988
- Picosecond time-resolved Raman studies of photodissociated carboxymyoglobinJournal of the American Chemical Society, 1985
- Assignment of the Fe—Nϵ (His F8) stretching band in the resonance Raman spectra of deoxy myoglobinFEBS Letters, 1979