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Steroidogenic electron transport in adrenal cortex mitochondria
Authors:J. David Lambeth  David W. Seybert  Jack R. Lancaster Jr.  John C. Salerno  Henry Kamin
Affiliation:(1) Dept. of Biochemistry, Emory University School of Medicine, 30322 Atlanta, GA;(2) Present address: Dept. of Chemistry, Duquesne University, 15219 Pittsburgh, PA;(3) Present address: Dept. of Chemistry and Biochemistry, Utah State University, 84322 Logan, Utah;(4) Present address: Dept. of Biology, Rensselaer Polytechnic Inst., 12181 Troy, New York;(5) Dept. of Biochemistry, Duke University Medical Center, 27705 Durham, N.C.
Abstract:Summary The flavoprotein NADPH-adrenodoxin reductase and the iron sulfur protein adrenodoxin function as a short electron transport chain which donates electrons one-at-a-time to adrenal cortex mitochondrial cytochromes P-450. The soluble adrenodoxin acts as a mobile one-electron shuttle, forming a complex first with NADPH-reduced adrenodoxin reductase from which it accepts an electron, then dissociating, and finally reassociating with and donating an electron to the membrane-bound cytochrome P-450 (Fig. 9). Dissociation and reassociation with flavoprotein then allows a second cycle of electron transfers. A complex set of factors govern the sequential protein-protein interactions which comprise this adrenodoxin shuttle mechanism; among these factors, reduction of the iron sulfur center by the flavin weakens the adrenodoxinadrenodoxin reductase interaction, thus promoting dissociation of this complex to yield free reduced adrenodoxin. Substrate (cholesterol) binding to cytochrome P-450scc both promotes the binding of the free adrenodoxin to the cytochrome, and alters the oxidation-reduction potential of the heme so as to favor reduction by adrenodoxin. The cholesterol binding site on cytochrome P-450scc appears to be in direct communication with the hydrophobic phospholipid milieu in which this substrate is dissolved. Specific effects of both phospholipid headgroups and fatty acyl side-chains regulate the interaction of cholesterol with its binding side. Cardiolipin is an extremely potent positive effector for cholesterol binding, and evidence supports the existence of a specific effector lipid binding site on cytochrome P.450scc to which this phospho-lipid binds.
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