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首页> 外文期刊>American Journal of Physiology >Effect of pH, ionic charge, and osmolality on cytochrome c-mediated caspase-3 activity.
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Effect of pH, ionic charge, and osmolality on cytochrome c-mediated caspase-3 activity.

机译:pH,离子电荷和重量摩尔渗透压浓度对细胞色素c介导的caspase-3活性的影响。

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摘要

Cytochrome c-mediated activation of caspase-3 is the final common pathway for most signals that induce apoptosis. Before release of cytochrome c from mitochondria, K(+) and Cl(-) efflux and intracellular acidification must occur. We have utilized an in vitro assay to examine the role of pH, cations, anions, and uncharged molecules on the process of cytochrome c-mediated activation of procaspase-3. In this cell-free system, a pH above 7.4 severely suppressed the activation of procaspase-3 but not the activity of caspase-3. KCl, NaCl, and other salts all inhibited caspase activation, but uncharged molecules did not. Comparison of the inhibitory capacity of various salts suggests that the crucial element in causing suppression is the cation. The inhibition of alkaline pH could be overcome by increasing concentrations of cytochrome c, whereas the inhibition of ionic charge could not, suggesting that pH and salts affect the activation of caspase-3 by different mechanisms.
机译:细胞色素c介导的caspase-3激活是大多数诱导凋亡的信号的最终通用途径。从线粒体释放细胞色素c之前,必须发生K(+)和Cl(-)外排以及细胞内酸化。我们已经利用体外试验来检查pH,阳离子,阴离子和不带电荷分子在细胞色素c介导的procaspase-3活化过程中的作用。在该无细胞系统中,pH值高于7.4会严重抑制procaspase-3的激活,但不能抑制caspase-3的活性。 KCl,NaCl和其他盐均抑制caspase活化,但不带电荷的分子则不。各种盐的抑制能力的比较表明,引起抑制的关键元素是阳离子。碱性pH的抑制可以通过增加细胞色素c的浓度来克服,而离子电荷的抑制则不能,这表明pH和盐通过不同的机制影响caspase-3的激活。

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