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Cellular and Molecular Life Sciences: CMLS logoLink to Cellular and Molecular Life Sciences: CMLS
. 2000 Sep;57(10):1482–1487. doi: 10.1007/PL00000631

The ratio between the fast and slow forms of bovine cytochrome c oxidase is changed by cholate or nucleotides bound to the cholate-binding site close to the cytochrome a3/CuB binuclear centre

K Shoji 1, A Giuffrè 2, E D’Itri 2, K Hagiwara 1, T Yamanaka 1, M Brunori* 2, P Sarti 2
PMCID: PMC11146927  PMID: 11078025

Abstract.

We determined the fraction of ‘slow’ and ‘fast’ conformations of bovine cytochrome c oxidase, following the kinetics of cyanide binding to the oxidized enzyme. We investigated whether treatment of heart mitochondrial particles with different commercially available types of cholate (standard and ultra-pure) can affect the fraction of cytochrome c oxidase in the two states. Compared to standard cholate, the use of ultra-pure cholate for solubilization of heart mitochondrial particles significantly increased the fraction of the fast enzyme. Complete homogeneity (∼100% fast) was observed when cytochrome c oxidase was solubilized with ultra-pure cholate from heart mitochondrial particles pre-equilibrated with AMP; equilibration with ADP yielded a much smaller fraction of fast enzyme (∼35%). These observations are discussed on the basis of the structural relationships between the known cholate-binding site and the binuclear cytochrome a3-CuB site: variation in the occupancy of this binding site with cholate or nucleotides may modify reactivity of the oxidized binuclear centre towards cyanide.

Keywords: Key words. Mitochondrial particles; cytochrome oxidase; fast and slow conformation; cyanide binding; nucleotides; cholate; structure.

Footnotes

Received 23 June 2000; received after revision 21 July 2000; accepted 31 July 2000


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