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Modulation of Cytochrome c-Membrane Interaction by the Physical State of the Membrane and the Redox State of Cytochrome c

机译:膜的物理状态和细胞色素c的氧化还原状态对细胞色素c膜相互作用的调节

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Association of cytochrome c with anionic membranes involved both electrostatic and hydrophobic interactions and their relative contributions depended on the physical state of the membrane and the redox state of cyto-chromec.Hydrophobic interaction was favored by the membranes in gel phase, by the membranes with a large curvature, and by the membranes with a high surface charge density. Ferrocytochrome c was less dissociable by NaCl than ferricytochrome c suggesting that a lower protein stability is beneficial for hydrophobic interac-tion.Hydrophobic interaction induced larger structural perturbations on cytochrome c as monitored by the loss of the Fe-Met bond and by the increase in the distance between heme and Trp-59. When bound to anionic mem-branes,spin-labeled cytochrome c showed an electron paramagnetic resonance spectrum with two or more components, providing a direct evidence for multiple conformations of bound cytochrome c.
机译:细胞色素c与阴离子膜的缔合涉及静电和疏水相互作用,它们的相对作用取决于膜的物理状态和细胞色素c的氧化还原状态。曲率大,并通过具有高表面电荷密度的膜。氯化铁比铬铁C难分解,提示较低的蛋白质稳定性对疏水相互作用有利。血红素与Trp-59之间的距离。当与阴离子膜结合时,自旋标记的细胞色素c表现出具有两个或多个成分的电子顺磁共振谱,为结合的细胞色素c的多种构象提供了直接证据。

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