Basova Liana V, Kurnikov Igor V, Wang Lei, Ritov Vladimir B, Belikova Natalia A, Vlasova Irina I, Pacheco Andy A, Winnica Daniel E, Peterson Jim, Bayir Hülya, Waldeck David H, Kagan Valerian E
Center for Free Radical and Antioxidant Health, Department of Environmental and Occupational Health, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.
Biochemistry. 2007 Mar 20;46(11):3423-34. doi: 10.1021/bi061854k. Epub 2007 Feb 24.
Upon interaction with anionic phospholipids, particularly mitochondria-specific cardiolipin (CL), cytochrome c (cyt c) loses its tertiary structure and its peroxidase activity dramatically increases. CL-induced peroxidase activity of cyt c has been found to be important for selective CL oxidation in cells undergoing programmed death. During apoptosis, the peroxidase activity and the fraction of CL-bound cyt c markedly increase, suggesting that CL may act as a switch to regulate cyt c's mitochondrial functions. Using cyclic voltammetry and equilibrium redox titrations, we show that the redox potential of cyt c shifts negatively by 350-400 mV upon binding to CL-containing membranes. Consequently, functions of cyt c as an electron transporter and cyt c reduction by Complex III are strongly inhibited. Further, CL/cyt c complexes are not effective in scavenging superoxide anions and are not effectively reduced by ascorbate. Thus, both redox properties and functions of cyt c change upon interaction with CL in the mitochondrial membrane, diminishing cyt c's electron donor/acceptor role and stimulating its peroxidase activity.
与阴离子磷脂相互作用时,特别是与线粒体特异性的心磷脂(CL)相互作用时,细胞色素c(cyt c)会失去其三级结构,其过氧化物酶活性会显著增加。已发现CL诱导的cyt c过氧化物酶活性对于程序性死亡细胞中的选择性CL氧化很重要。在细胞凋亡期间,过氧化物酶活性和与CL结合的cyt c比例显著增加,这表明CL可能作为一种开关来调节cyt c的线粒体功能。使用循环伏安法和平衡氧化还原滴定法,我们表明cyt c与含CL的膜结合后,其氧化还原电位负移350 - 400 mV。因此,cyt c作为电子转运体的功能以及细胞色素c被复合物III还原的过程受到强烈抑制。此外,CL/cyt c复合物在清除超氧阴离子方面无效,并且不能被抗坏血酸有效还原。因此,cyt c与线粒体内膜中的CL相互作用时,其氧化还原特性和功能都会发生变化,从而削弱了cyt c的电子供体/受体作用并刺激了其过氧化物酶活性。