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Inhibitory Effects of Adenine Nucleotides on Brain Mitochondrial Permeability Transition

机译:腺嘌呤核苷酸对脑线粒体通透性转变的抑制作用

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摘要

The adenine nucleotides ADP and ATP are probably the most important endogenous inhibitors of the mitochondrial permeability transition (MPT). We studied the inhibitory effects of adenine nucleotides on brain MPT by measuring mitochondrial swelling and Ca2+ and cytochrome c release. We observed that in the presence of either ADP or ATP, at 250 μM, brain mitochondria accumulated more than 1 μmol Ca2+ × mg protein−1. ADP or ATP also prevented Ca2+-induced mitochondrial swelling and cytochrome c release. Interestingly, ATP lost most of its inhibitory effects on MPT when the experiments were carried out in the presence of ATP-regenerating systems. These results indicate that MPT inhibition observed in the presence of added ATP could be mainly due to hydrolysis of ATP to ADP. From mitochondrial swelling measurements, half-maximal inhibitory values (K i) of 4.5 and 98 μM were obtained for ADP and ATP, respectively. In addition, a delayed mitochondrial swelling sensitive to higher ADP concentrations was observed. Mitochondrial anoxia/reoxygenation did not interfere with the inhibitory effect of ADP on Ca2+-induced MPT, but oxidative phosphorylation markedly decreased this effect. We conclude that ADP is a potent inhibitor of brain MPT whereas ATP is a weaker inhibitor of this phenomenon. Our results suggest that ADP can have an important protective role against MPT-mediated tissue damage under conditions of brain ischemia and hypoglycemia.
机译:腺嘌呤核苷酸ADP和ATP可能是线粒体通透性转变(MPT)的最重要内源性抑制剂。我们通过测量线粒体肿胀,Ca 2 + 和细胞色素c的释放来研究腺嘌呤核苷酸对脑MPT的抑制作用。我们观察到在存在ADP或ATP的情况下,在250μM的情况下,脑线粒体累积的Ca 2 + ×mg蛋白 -1 大于1μmol。 ADP或ATP还可以阻止Ca 2 + 诱导的线粒体肿胀和细胞色素c的释放。有趣的是,当在存在ATP再生系统的情况下进行实验时,ATP失去了对MPT的大部分抑制作用。这些结果表明,在添加ATP的情况下观察到的MPT抑制作用可能主要是由于ATP水解成ADP。通过线粒体肿胀测量,ADP和ATP的半数最大抑制值(K i )分别为4.5和98μM。另外,观察到对较高的ADP浓度敏感的延迟的线粒体肿胀。线粒体缺氧/复氧并没有干扰ADP对Ca 2 + 诱导的MPT的抑制作用,但氧化磷酸化显着降低了该作用。我们得出结论,ADP是脑MPT的有效抑制剂,而ATP是这种现象的较弱抑制剂。我们的结果表明,在脑缺血和低血糖的情况下,ADP对MPT介导的组织损伤具有重要的保护作用。

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