The Reduction by Dithionite of Fe(III) Myoglobin Derivatives with Different Ligands Attached to the Iron Atom
Open Access
- 1 April 1977
- journal article
- research article
- Published by Wiley in European Journal of Biochemistry
- Vol. 74 (3) , 575-587
- https://doi.org/10.1111/j.1432-1033.1977.tb11427.x
Abstract
1 The reductions of a number of sperm whale Fe(III) myoglobin-ligand complexes by sodium dithionite in a phosphate buffer pH 6.4, were investigated by using rapid-wavelength-scanning stopped-flow spectrophotometry. The ligands were azide, cyanide, fluoride, imidazole, thiocyanate and water. 2 The reduction of Fe(III) myoglobin cyanide led to the transient formation of Fe(II) myoglobin cyanide but no intermediate species were observable during the reductions of the other derivatives. The final product of the reaction in all cases was unliganded Fe(II) myoglobin. 3 Investigation of the effect of dithionite concentration on the rate of reduction indicated that the SO2 radical ion was the active species in reducing the azide, cyanide, fluoride and thiocyanate derivatives. 4 Comparison of the observed rates of reduction at different ligand concentrations with those predicted for a pathway of reduction involving prior dissociation of the ligand, allowed us to estimate the rate of reduction with the ligand in position (outer-sphere reduction). There was a large variation in the relative rates of outer-sphere reduction in the order imidazole ≫ CN− > SCN−≫ N3−≫ F−. The fluoride derivative was so resistant to outer-sphere reduction that the reaction with SO2− proceeded only by a pathway involving dissociation of F− before reduction. It was calculated that any direct reduction of this complex was at least 100 times slower than that of the azide derivative. 5 The results are discussed in terms of the possible rôle of the axial ligands in haem proteins and it is suggested that the pathway of the electron to the Fe(III) centre may be via the pπ orbitals of these ligands.This publication has 23 references indexed in Scilit:
- Kinetic and equilibrium studies of the ligand binding reactions of eight electrophoretic components of sperm whale ferrimyoglobinBiochemistry, 1975
- Optically Detected Conformational Changes in Haemoglobin Single CrystalsNature, 1974
- Kinetics of carbon monoxide and oxygen binding for eight electrophoretic components of sperm-whale myoglobinBiochemistry, 1972
- Redox equilibrium of sperm-whale myoglobin, Aplysia myoglobin, and Chironomus thummi hemoglobinBiochemistry, 1971
- Structure of Deoxymyoglobin : A Crystallographic StudyNature, 1966
- Kinetics of the ferrimyoglobin-azide-systemBiochemical and Biophysical Research Communications, 1965
- The mode of attachment of the azide ion to sperm whale metmyoglobinJournal of Molecular Biology, 1964
- The Nephelauxetic SeriesPublished by Wiley ,1962
- Structure of Myoglobin: A Three-Dimensional Fourier Synthesis at 2 Å. ResolutionNature, 1960
- The Magnetic Study of the Equilibrium between Ferrohemoglobin, Cyanide Ion, and Cyanide FerrohemoglobinJournal of the American Chemical Society, 1939