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A Spectroscopic Method for Observing the Domain Movement of the Rieske Iron-sulfur Protein

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Specialty Science
Date 2000 Feb 19
PMID 10681446
Citations 19
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Abstract

The g-tensor orientation of the chemically reduced Rieske cluster in cytochrome bc(1) complex from Rhodovulum sulfidophilum with respect to the membrane was determined in the presence and absence of inhibitors and in the presence of oxidized and reduced quinone in the quinol-oxidizing-site (Q(o)-site) by EPR on two-dimensionally ordered samples. Almost identical orientations were observed when oxidized or reduced quinone, stigmatellin, or 5-(n-undecyl)-6-hydroxy-4,7-dioxobenzothiazole was present. Occupancy of the Q(o)-site by myxothiazole induced appearance of a minority population with a substantially differing conformation and presence of E-beta-methoxyacrylate-stilbene significantly reduced the contribution of the major conformation observed in the other cases. Furthermore, when the oxidized iron-sulfur cluster was reduced at cryogenic temperatures by the products of radiolysis, the orientation of its magnetic axes was found to differ significantly from that of the chemically reduced center. The "irradiation-induced" conformation converts to that of the chemically reduced center after thawing of the sample. These results confirm the effects of Q(o)-site inhibitors on the equilibrium conformation of the Rieske iron-sulfur protein and provide evidence for a reversible redox-influenced interconversion between conformational states. Moreover, the data obtained with the iron-sulfur protein demonstrate that the conformation of "EPR-inaccessible" reduction states of redox centers can be studied by inducing changes of redox state at cryogenic temperatures. This technique appears applicable to a wide range of comparable electron transfer systems performing redox-induced conformational changes.

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References
1.
Blasie J, Erecinska M, Samuels S, Leigh J . The structure of a cytochrome oxidase-lipid model membrane. Biochim Biophys Acta. 1978; 501(1):33-52. DOI: 10.1016/0005-2728(78)90093-2. View

2.
Crofts A, Hong S, Ugulava N, Barquera B, Gennis R, Berry E . Pathways for proton release during ubihydroquinone oxidation by the bc(1) complex. Proc Natl Acad Sci U S A. 1999; 96(18):10021-6. PMC: 17835. DOI: 10.1073/pnas.96.18.10021. View

3.
Trumpower B, Edwards C . Purification of a reconstitutively active iron-sulfur protein (oxidation factor) from succinate . cytochrome c reductase complex of bovine heart mitochondria. J Biol Chem. 1979; 254(17):8697-706. View

4.
Prince R, Crowder M, Bearden A . The orientation of the magnetic axes of the membrane-bound iron-sulfur clusters of spinach chloroplasts. Biochim Biophys Acta. 1980; 592(2):323-37. DOI: 10.1016/0005-2728(80)90193-0. View

5.
Matsuura K, Bowyer J, Ohnishi T, Dutton P . Inhibition of electron transfer by 3-alkyl-2-hydroxy-1,4-naphthoquinones in the ubiquinol-cytochrome c oxidoreductases of Rhodopseudomonas sphaeroides and mammalian mitochondria. Interaction with a ubiquinone-binding site and the Rieske iron-sulfur.... J Biol Chem. 1983; 258(3):1571-9. View