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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Peroxidative permeabilization of liposomes induced by cytochrome c/cardiolipin complex
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Peroxidative permeabilization of liposomes induced by cytochrome c/cardiolipin complex

机译:细胞色素c /心磷脂复合物诱导脂质体的过氧化通透性

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摘要

Interaction of cytochrome c with mitochondrial cardiolipin converting this electron transfer protein into peroxidase is accepted to play an essential role in apoptosis. Cytochrome c/cardiolipin peroxidase activity was found here to cause leakage of carboxyfluorescein, sulforhodamine B and 3-kDa (but not 10-kDa) fluorescent dextran from liposomes. A marked decrease in the amplitude of the autocorrelation function was detected with a fluorescence correlation spectroscopy setup upon incubation of dye-loaded cardiolipin-containing liposomes with cytochrome c and H2O2, thereby showing release of fluorescent markers from liposomes. The cytochrome c/H(2)O(2-)induced liposome leakage was suppressed upon increasing the ionic strength, in contrast to the leakage provoked by Fe/ascorbate, suggesting that the binding of cyt c to negatively-charged membranes was required for the permeabilization process. The cyt c/H2O2-induced liposome leakage was abolished by cyanide presumably competing with H2O2 for coordination with the central iron atom of the heme in cyt c. The cytochrome c/H2O2 permeabilization activity was substantially diminished by antioxidants (trolox, butylhydroxytoluene and quercetin) and was precluded if fully saturated tetramyristoyl-cardiolipin was substituted for bovine heart cardiolipin. These data favor the involvement of oxidized cardiolipin molecules in membrane permeabilization resulting from cytochrome c/cardiolipin peroxidase activity. In agreement with previous observations, high concentrations of cyt c induced liposome leakage in the absence of H2O2, however this process was not sensitive to antioxidants and cyanide suggesting direct membrane poration by the protein without the involvement of lipid peroxidation. (C) 2014 Elsevier B.V. All rights reserved.
机译:细胞色素c与线粒体心磷脂的相互作用将这种电子转移蛋白转化为过氧化物酶,在细胞凋亡中起着至关重要的作用。此处发现细胞色素c /心磷脂过氧化物酶活性导致脂质体中的羧基荧光素,磺基若丹明B和3-kDa(但不是10-kDa)荧光右旋糖酐泄漏。在将染料负载的含心磷脂脂质体与细胞色素c和H2O2孵育后,通过荧光相关光谱仪检测到自相关函数幅度的显着降低,从而显示出荧光标记物从脂质体中释放出来。细胞色素c / H(2)O(2-)诱导的脂质体泄漏在增加离子强度后得到抑制,这与铁/抗坏血酸引起的泄漏相反,这表明需要将Cyt c与带负电的膜结合增透过程。 cyt c / H2O2诱导的脂质体渗漏被氰化物消除,氰化物可能与H2O2竞争与cyt c中血红素的中心铁原子配位。抗氧化剂(trolox,丁基羟基甲苯和槲皮素)可大大降低细胞色素c / H2O2的透化活性,如果用完全饱和的四肉豆蔻酰心磷脂取代牛心心磷脂,则可排除细胞色素c / H2O2的透化活性。这些数据支持氧化的心磷脂分子参与由细胞色素c /心磷脂过氧化物酶活性导致的膜通透性。与以前的观察结果一致,在不存在H2O2的情况下,高浓度的cyt c引起脂质体渗漏,但是该过程对抗氧化剂和氰化物不敏感,表明该蛋白可直接进行膜渗透而不涉及脂质过氧化作用。 (C)2014 Elsevier B.V.保留所有权利。

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