Cooper Chris E, Sharpe Martyn A, Mason Maria G, Nicholls Peter
Department of Biological Sciences, University of Essex, Wivenhoe Park, Colchester Essex, CO4 3SQ, UK.
Adv Exp Med Biol. 2009;645:123-8. doi: 10.1007/978-0-387-85998-9_19.
In the visible/NIR (600-900 nm) three different redox centres are potentially detectable in vivo in mitochondrial cytochrome c oxidase: haem a (605nm), the binuclear haem a3/CuB centre (655 nm) and CuA (830 nm). In this paper we report changes in the steady state reduction of these centres following increases in the rate of electron entry into the purified enzyme complex under conditions of saturating oxygen tension. As turnover is increased all three centres becomes progressively reduced. Analysis of the steady states indicated that all three centres remained in apparent equilibrium with cytochrome c throughout the titration. The calculated redox potentials of CuA (+224 mV) and haem a (+267 mV) were consistent with previous equilibrium data. The 655 nm band was also found to be oxygen and flux sensitive. It may be a useful additional in vivo detectable chromophore. However, it titrated with an apparent redox potential of +230 mV, far from its equilibrium value (+400 mV). The implications of these results for the interpretation of non invasive measurements of mitochondrial function are discussed.
在可见光/近红外光(600 - 900纳米)范围内,线粒体细胞色素c氧化酶中的三种不同氧化还原中心在体内可能被检测到:血红素a(605纳米)、双核血红素a3/CuB中心(655纳米)和CuA(830纳米)。在本文中,我们报告了在饱和氧张力条件下,当电子进入纯化酶复合物的速率增加时,这些中心稳态还原情况的变化。随着周转率的增加,所有三个中心逐渐被还原。稳态分析表明,在整个滴定过程中,所有三个中心与细胞色素c保持明显的平衡。计算得出的CuA(+224毫伏)和血红素a(+267毫伏)的氧化还原电位与先前的平衡数据一致。还发现655纳米波段对氧气和通量敏感。它可能是一种有用的额外的体内可检测发色团。然而,其滴定的表观氧化还原电位为+230毫伏,远非其平衡值(+400毫伏)。讨论了这些结果对线粒体功能无创测量解释的意义。