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首页> 外文期刊>Journal of Cell Science >Two phases of signalling between mitochondria during apoptosis leading to early depolarisation and delayed cytochrome c release
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Two phases of signalling between mitochondria during apoptosis leading to early depolarisation and delayed cytochrome c release

机译:凋亡期间线粒体之间的信号传递的两个阶段导致早期去极化和细胞色素C释放延迟

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摘要

We investigated the mode of signalling between mitochondria during apoptosis by monitoring the behaviour of non-irradiated mitochondria following microscopic photosensitisation of half the mitochondria in single human osteosarcoma cells loaded with CMXRos. Following partial irradiation of cells, non-irradiated mitochondria underwent a rapid depolarisation (within 10 minutes). The depolarisation was not inhibited by the caspase inhibitor zVAD-fmk but was suppressed by the intracellular Ca2+ chelator BAPTA and overexpression of Bcl-2. Significantly, such depolarisation occurred even after prior conversion of extended filamentous mitochondria into individual punctate structures, indicating that lumenal continuity is not required for communication between the irradiated and non-irradiated mitochondria. Partial irradiation of cells expressing cytochrome c-GFP revealed cytochrome c-GFP release from non-irradiated mitochondria at a delayed but unpredictable time interval (between 30 minutes and more than 2.5 hours) following irradiation, which was unaffected by zVAD-fmk. Once activated, cytochrome c-GFP release occurred within a 10 minute period. Inummocytochemistry failed to reveal the recruitment of Bax to non-irradiated mitochondria, which suggests that Bax does not mediate the release of cytochrome c from mitochondria. We conclude that signals (mediated by Ca2+) emanating from irradiated mitochondria are processed by their nonirradiated counterparts and comprise two temporally distinct phases, both independent of caspase-mediated amplification, which generate an initial rapid depolarisation and subsequent delayed release of cytochrome c. [References: 39]
机译:我们通过监测在未装载CMXRos的单个人骨肉瘤细胞中一半线粒体的显微光敏作用后,通过监测未照射的线粒体的行为,研究了凋亡过程中线粒体之间的信号传导模式。细胞部分照射后,未照射的线粒体经历了快速去极化(在10分钟内)。脱极化不受胱天蛋白酶抑制剂zVAD-fmk的抑制,但被细胞内Ca 2+螯合剂BAPTA和Bcl-2的过表达抑制。显着地,这种去极化甚至在事先将延伸的丝状线粒体转化成单个点状结构之后也发生,表明在照射的和未照射的线粒体之间的连通不需要腔连续性。表达细胞色素c-GFP的细胞的部分辐照显示,细胞色素c-GFP在辐照后以延迟但不可预测的时间间隔(30分钟至2.5小时以上)从未辐照的线粒体释放,不受zVAD-fmk的影响。激活后,细胞色素c-GFP释放会在10分钟内发生。免疫细胞化学未能揭示Bax募集到未照射的线粒体,这表明Bax不会介导线粒体中细胞色素c的释放。我们得出的结论是,辐照过的线粒体发出的信号(由Ca2 +介导)由其未辐照的对应物处理,并包含两个时间上不同的阶段,这两个阶段均独立于caspase介导的扩增,这会产生初始快速去极化并随后延迟释放细胞色素c。 [参考:39]

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