Journal of Biological Chemistry · 1979 · 55 citations · 14 references
Bioorganic ChemistryIron MetabolismMagnetic ResonanceMolecular BiologyChemistryChemical BiologyRedox BiologyMagnetic State CorrespondingRedox ChemistryBiological Inorganic ChemistryCluster ScienceBiochemistryIron-sulfur ContentSolution Nmr SpectroscopyNatural SciencesMetalloproteinBinuclear Iron-sulfur ClusterCluster ChemistryCore ExtrusionMedicine
It has been reported (Ruzicka, F.J., and Beinert, H. (1978) J. Biol. Chem. 253, 2514-2517) that aconitase in the oxidized state, as isolated, shows an electron paramagnetic resonance signal centered at g = 2.01, typical of high potential iron-sulfur proteins. Since the magnetic state corresponding to this signal has thus far only been found in tetranuclear iron-sulfur clusters in model compounds and proteins, it could be expected that aconitase also contains a [4Fe-4S] cluster. We show here that core extrusion, in the presence of hexamethylphosphoramide and o-xylyl-alpha,alpha'-dithiol and subsequent ligand exchange with p-trifluoromethylbenzenethiol yield absorption spectra typical of binuclear iron-sulfur clusters. According to the absorbance measured, the concentration of the extruded [2Fe-2S] cluster quantitatively accounts for the iron-sulfur content of the preparations examined. Preliminary studies of the 19F nuclear magnetic resonance spectrum obtained on extrusion with p-trifluoromethylbenzenethiol confirm the presence of a binuclear cluster in aconitase.
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J. J. Mayerle, Scott E. Denmark, B. V. DEPAMPHILIS et al. · Journal of the American Chemical Society · 1975 · 192 citations
Inorganic Chemistry, Biological Inorganic Chemistry, Synthetic Analogs +15
W. O. Gillum, Leonard E. Mortenson, J. S. Chen et al. · Journal of the American Chemical Society · 1977 · 136 citations
T Ohnishi, Jun Wei Lim, Daryl B. Winter et al. · Journal of Biological Chemistry · 1976 · 123 citations · Full text
Succinate Dehydrogenase, Aldo-keto Reductase, Epr Characteristics +16