Proceedings of the National Academy of Sciences · 1980 · 141 citations · 17 references
Molecular BiologyChemistryIron DeficiencyElectronic Excited StateRedox BiologyHematologyGeminate RecombinationPhotosynthesisPhotophysical PropertyBiophysicsBiochemistryPhotochemistryMechanistic PhotochemistryVarious Electronic StatesPhysical ChemistryQuantum ChemistryHeme HomeostasisPhotochromismExcited State PropertyPeriodic Surface StructuresNatural SciencesSpectroscopyHeme DegradationHbo2 DissociationMedicineOrbital Correlation
The photolysis of HbO2 and HbCO has been studied by measuring transient absorption spectra in the Soret region after excitation with picosecond pulses at 530 nm. Dissociation occurred promptly in both cases, followed (for HbO2) by geminate recombination of ca. 40% of the photodissociated O2 with a lifetime of 200 +/- 70 psec (25 degrees C). No recombination of Hb + CO was observed up to 1200 psec after photolysis. The HbO2 and HbCO photoproduct spectra were broader, weaker, and red-shifted in comparison to the spectrum of stable Hb and Gibson's fast-reacting form, Hb. For HbO2 the spectrum was initially much broader to longer wavelengths but relaxed to a constant shape within 90 psec, whereas for HbCO there was no spectral evolution. The photophysics is analyzed by considering the effect of spin constraints as well as spin--orbit coupling and orbital correlation among the various electronic states of liganded and deoxy hemoglobins. The small quantum yield of HbO2 dissociation is not primarily due to rebinding but rather to electronic relaxation to nonreactive states.
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Dynamics of ligand binding to myoglobin
Robert H. Austin, K. W. Beeson, L. Eisenstein et al. · Biochemistry · 1975 · 1.6K citations
P T G Flynn · Optica Acta International Journal of Optics · 1978 · 161 citations
Binding of carbon monoxide to isolated hemoglobin chains
N. Alberding, Shirley S. Chan, L. Eisenstein et al. · Biochemistry · 1978 · 155 citations
Periodic Surface Structures, Biochemistry, Heme Homeostasis +13