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首页> 外文期刊>Journal of Cell Science >Outer mitochondrial membrane permeabilization during apoptosis triggers caspase-independent mitochondrial and caspase-dependent plasma membrane potential depolarization: a single-cell analysis.
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Outer mitochondrial membrane permeabilization during apoptosis triggers caspase-independent mitochondrial and caspase-dependent plasma membrane potential depolarization: a single-cell analysis.

机译:凋亡过程中线粒体外膜通透性可触发caspase依赖性线粒体和caspase依赖性质膜电位去极化:单细胞分析。

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摘要

Little is known about the temporal relationship between mitochondrial and plasma membrane potential changes and outer mitochondrial membrane permeabilization during apoptosis. Confocal imaging of breast carcinoma and HeLa cells stably transfected with cytochrome-C-GFP demonstrated that mitochondria rapidly depolarized after the release of the fusion protein into the cytosol. Of note, mitochondria did not completely depolarize but established a new steady-state level that could be further dissipated by treatment with the protonophore carbonyl cyanide p-trifluoromethoxy-phenylhydrazone. Treatment with the F(O)F(1)-ATP-synthase inhibitor oligomycin likewise induced a collapse of this steady-state level, suggesting that F(O)F(1)-ATP-synthase reversal maintained mitochondrial potential after outer mitochondrial membrane permeabilization. Treatment with a broad spectrum caspase inhibitor failed to inhibit the partial depolarization of mitochondria during apoptosis, yet potently abolished the activation of effector caspases detected by fluorescence resonance energy transfer analysis in the same experiment. Interestingly, the onset of mitochondrial depolarization was always coupled with a depolarization of the plasma membrane potential. This was associated with the degradation of the regulatory Na(+)/K(+)-ATPase beta-subunit, and both events were blocked by caspase inhibition. Our results demonstrate that outer mitochondrial membrane permeabilization coordinates the depolarization of both membrane potentials during apoptosis.
机译:关于细胞凋亡期间线粒体和质膜电位变化与线粒体外膜通透性之间的时间关系知之甚少。用细胞色素-C-GFP稳定转染的乳腺癌和HeLa细胞的共聚焦成像表明,融合蛋白释放到细胞质中后,线粒体迅速去极化。值得注意的是,线粒体并没有完全去极化,而是建立了一个新的稳态水平,该水平可以通过用质子载体羰基氰化物对三氟甲氧基-苯基hydr处理来进一步消散。 F(O)F(1)-ATP合酶抑制剂寡霉素的治疗同样引起该稳态水平的崩溃,表明F(O)F(1)-ATP合酶逆转在外部线粒体膜后维持线粒体电位通透性。用广谱半胱天冬酶抑制剂治疗不能抑制细胞凋亡过程中线粒体的部分去极化,但是在同一实验中有效地消除了通过荧光共振能量转移分析检测到的效应半胱天冬酶的激活。有趣的是,线粒体去极化的开始总是伴随着质膜电位的去极化。这与调节性Na(+)/ K(+)-ATPaseβ-亚基的降解有关,并且两个事件都被caspase抑制作用所阻断。我们的结果表明线粒体外膜通透性协调凋亡过程中两个膜电位的去极化。

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