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首页> 外文期刊>American Journal of Physiology >Fragmented mitochondria are sensitized to Bax insertion and activation during apoptosis.
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Fragmented mitochondria are sensitized to Bax insertion and activation during apoptosis.

机译:片段化的线粒体致敏于凋亡期间的Bax插入和活化。

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摘要

Recent studies have shown mitochondrial fragmentation during cell stress and have suggested a role for the morphological change in mitochondrial injury and ensuing apoptosis. However, the underlying mechanism remains elusive. Here we demonstrate that mitochondrial fragmentation facilitates Bax insertion and activation in mitochondria, resulting in the release of apoptogenic factors. In HeLa cells, overexpression of mitofusins attenuated mitochondrial fragmentation during cisplatin- and azide-induced cell injury, which was accompanied by less apoptosis and less cytochrome c release from mitochondria. Similar effects were shown by inhibiting the mitochondrial fission protein Drp1 with a dominant negative mutant (dn-Drp1). Mitofusins and dn-Drp1 did not seem to significantly affect Bax translocation/accumulation to mitochondria; however, they blocked Bax insertion and activation in mitochondrial membrane. Consistently, in rat kidney proximal tubular cells, small interfering RNA knockdown of Drp1 prevented mitochondrial fragmentation during azide-induced ATP depletion, which was accompanied by less Bax activation, insertion, and oligomerization in mitochondria. These cells released less cytochrome c and AIF from mitochondria and showed significantly lower apoptosis. Finally, mitofusin-null mouse embryonic fibroblasts (MEF) had fragmented mitochondria. These MEFs were more sensitive to cisplatin-induced Bax activation, release of cytochrome c, and apoptosis. Together, this study provides further support for a role of mitochondrial fragmentation in mitochondrial injury and apoptosis. Mechanistically, mitochondrial fragmentation may sensitize the cells to Bax insertion and activation in mitochondria, facilitating the release of apoptogenic factors and consequent apoptosis.
机译:最近的研究表明了细胞应激期间的线粒体破碎化,并提出了线粒体损伤和随后的细胞凋亡的形态变化的作用。然而,潜在机制仍然难以捉摸。在这里,我们证明线粒体破碎促进了线粒体中的Bax插入和活化,导致凋亡因子的释放。在HeLa细胞中,在顺铂和叠氮化物诱导的细胞损伤期间,Mitofusins的过表达减毒了线粒体碎片,其伴随着从线粒体的细胞凋亡和更少的细胞色素C释放。通过用显性负突变体(DN-DRP1)抑制线粒体裂变蛋白DRP1来显示类似的效果。 Mitofusins和DN-DRP1似乎没有显着影响BAX易位/积累到线粒体;然而,它们阻断了线粒体膜中的Bax插入和活化。始终如一地,在大鼠肾近端管状细胞中,DRP1的小干扰RNA敲低在叠氮化物诱导的ATP耗尽过程中防止线粒体破碎,其伴随着线粒体中的较少的Bax活化,插入和低聚。这些细胞从线粒体释放了较少的细胞色素C和AIF,并显示出显着降低的细胞凋亡。最后,Mitofusin-null鼠标胚胎成纤维细胞(MEF)具有碎片化的线粒体。这些MEF对顺铂诱导的BAX活化,细胞色素C和细胞凋亡更敏感。在一起,本研究提供了对线粒体损伤和凋亡中线粒体破碎化的作用进一步支持。机械地,线粒体碎裂可以使细胞敏感到线粒体中的Bax插入和活化,促进凋亡因子的释放和随之而来的细胞凋亡。

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