Borutaite V, Morkuniene R, Budriunaite A, Krasauskaite D, Ryselis S, Toleikis A, Brown G C
Institute for Biomedical Research, Kaunas Medical Academy, Lithuania.
J Mol Cell Cardiol. 1996 Oct;28(10):2195-201. doi: 10.1006/jmcc.1996.0211.
The authors have previously shown that ischemia causes inhibition of the respiratory chain and phosphorylation system, and stimulation of the proton leak of mitochondria isolated from rat heart. It is shown here that the activity of the mitochondrial respiratory chain (after 30 min ischemia, but not after 45 min) and the phosphorylation system are completely restored to the normal level by the addition of exogenous cytochrome c when succinate is used as substrate. Moreover, cytochrome c causes apparent activation of the respiratory chain, the phosphorylation system and the proton leak in normal mitochondria. This can be explained by a fraction of the mitochondrial population lacking cytochrome c and this fraction may increase with ischemia. Experiments on skinned cardiac fibers showed that cytochrome c has no effect on mitochondrial respiration after 15 min ischemia, but the stimulation of respiration by cytochrome c progressively increases when ischemia was prolonged up to 30 min and 45 min, suggesting that the loss of cytochrome c may occur in vivo during the early reversible phase of ischemia. Mitochondria isolated from hearts after 45 min ischemia have a defect in the respiratory chain unrelated to the loss of cytochrome c. These mitochondria have an increased level of Ca2+: 10.05 nmol/mg protein compared to 4.64 nmol/mg in control mitochondria and 4.32 nmol/mg in 30 min ischemic mitochondria. The increase in the proton leak in ischemic mitochondria is mostly reversible by albumin and thus, may be related to an increased level of free fatty acids in ischemic mitochondria.
作者先前已表明,缺血会导致呼吸链和磷酸化系统受到抑制,并刺激从大鼠心脏分离出的线粒体的质子泄漏。本文表明,当以琥珀酸为底物时,添加外源性细胞色素c可使线粒体呼吸链的活性(缺血30分钟后,而非45分钟后)和磷酸化系统完全恢复至正常水平。此外,细胞色素c会使正常线粒体中的呼吸链、磷酸化系统和质子泄漏明显激活。这可以用一部分线粒体群体缺乏细胞色素c来解释,并且这部分可能会随着缺血而增加。对去表皮心脏纤维的实验表明,缺血15分钟后细胞色素c对线粒体呼吸没有影响,但当缺血延长至30分钟和45分钟时,细胞色素c对呼吸的刺激作用逐渐增强,这表明细胞色素c的丧失可能发生在缺血早期可逆阶段的体内。从缺血45分钟后的心脏分离出的线粒体在呼吸链上存在与细胞色素c丧失无关的缺陷。这些线粒体的Ca2+水平升高:为10.05 nmol/mg蛋白质,而对照线粒体中为4.64 nmol/mg,30分钟缺血线粒体中为4.32 nmol/mg。缺血线粒体中质子泄漏的增加大多可被白蛋白逆转,因此,可能与缺血线粒体中游离脂肪酸水平的升高有关。