首页> 外文期刊>Apoptosis: An international journal on programmed cell death >Cytotoxic effects and apoptotic signalling mechanisms of the sesquiterpenoid euplotin C, a secondary metabolite of the marine ciliate Euplotes crassus, in tumour cells
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Cytotoxic effects and apoptotic signalling mechanisms of the sesquiterpenoid euplotin C, a secondary metabolite of the marine ciliate Euplotes crassus, in tumour cells

机译:海洋纤毛虫Eupplotes crass的次生代谢产物倍半萜Euplotin C的细胞毒作用及其凋亡信号传导机制在肿瘤细胞中

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摘要

Most antitumour agents with cytotoxic properties induce apoptosis. The lipophilic compound euplotin C, isolated from the ciliate Euplotes crassus, is toxic to a number of different opportunistic or pathogenic microorganisms, although its mechanism of action is currently unknown. We report here that euplotin C is a powerful cytotoxic and pro-apoptotic agent in mouse AtT-20 and rat PC12 tumour-derived cell lines. In addition, we provide evidence that euplotin C treatment results in rapid activation of ryanodine receptors, depletion of Ca2+ stores in the endoplasmic reticulum (ER), the release of cytochrome c from the mitochondria, activation of caspase-12, and activation of caspase-3, leading to apoptosis. Intracellular Ca2+ overload is an early event which induces apoptosis and is parallelled by ER stress and the release of cytochrome c, whereas caspase-12 may be activated by euplotin C at a later stage in the apoptosis pathway. These events, either independently or concomitantly, lead to the activation of the caspase-3 and its downstream effectors, triggering the cell to undergo apoptosis. These results demonstrate that euplotin C may be considered for the design of cytotoxic and pro-apoptotic new drugs.
机译:大多数具有细胞毒性的抗肿瘤药都会诱导细胞凋亡。从纤毛Euplotes crassus中分离出的亲脂性化合物euplotin C对许多不同的机会性或致病性微生物有毒,尽管目前尚不清楚其作用机理。我们在这里报告Euplotin C是小鼠AtT-20和大鼠PC12肿瘤来源的细胞系中强大的细胞毒性和促凋亡剂。此外,我们提供的证据表明,依泊洛汀C处理可导致ryanodine受体快速活化,内质网(ER)中的Ca2 +储存耗尽,线粒体中细胞色素c的释放,caspase-12的活化以及caspase-的活化。 3,导致细胞凋亡。细胞内Ca2 +超负荷是一个早期事件,它诱导凋亡,并与内质网应激和细胞色素c的释放平行,而胱天蛋白酶12可能在凋亡途径的后期被尤普罗汀C激活。这些事件独立地或同时地导致caspase-3及其下游效应子的活化,从而触发细胞凋亡。这些结果表明,可以将依泊洛汀C用于细胞毒性和促凋亡新药的设计。

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