首页> 美国卫生研究院文献>Aging (Albany NY) >Suppression of mTORC1 activity in senescent Ras-transformed cells neither restores autophagy nor abrogates apoptotic death caused by inhibition of MEK/ERK kinases
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Suppression of mTORC1 activity in senescent Ras-transformed cells neither restores autophagy nor abrogates apoptotic death caused by inhibition of MEK/ERK kinases

机译:抑制衰老的Ras转化细胞中的mTORC1活性既不能恢复自噬也不能消除由MEK / ERK激酶抑制引起的凋亡死亡

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摘要

Autophagy is conservative catabolic process that degrades organelles, in particular, mitochondria, and misfolded proteins within the lysosomes, thus maintaining cellular viability. Despite the close relationship between mitochondrial dysfunction and cellular senescence, it is unclear how mitochondria damage can induce autophagy in senescent cells. We show that MEK/ERK suppression induces mitochondria damage followed by apoptosis of senescent Ras-expressing cells. To understand the role of persistent mTORC1 signaling in breaking the cAMPK-induced autophagy caused by mitochondrial damage, we inhibited mTORС1 with low concentrations of pp242. mTORC1 suppression neither restores the AMPK-induced autophagy nor decreases the level of apoptosis upon MEK/ERK inhibition. We discovered the existence of an alternative autophagy-like way that partially increases the viability of senescent cells under suppressed mTORC1. The pp242-treated cells survive due to formation of the non-autophagous LC3-negative vacuoles, which contain the damaged mitochondria and lysosomes with the following excretion the content from the cell. MEK/ERK activity is required to implement this process in senescent cells. Senescent cells exhibit distinctive spatial distribution of organelles and proteins that provides uncoupling of final participants of autophagy. We show that this feature stops the process of cytoprotective autophagy in response to MEK/ERK suppression, thus allowing selective elimination of senescent Ras-expressing cells.
机译:自噬是一种保守的分解代谢过程,可降解细胞器(特别是线粒体)和溶酶体内的错误折叠蛋白质,从而维持细胞活力。尽管线粒体功能障碍与细胞衰老之间有着密切的关系,但不清楚线粒体损伤如何在衰老细胞中诱导自噬。我们表明,MEK / ERK抑制诱导线粒体损伤,然后衰老的表达Ras的细胞凋亡。为了了解持续的mTORC1信号在打破由线粒体损伤引起的cAMPK诱导的自噬中的作用,我们以低浓度的pp242抑制了mTORС1。抑制mTORC1既不能恢复AMPK诱导的自噬,也不能降低MEK / ERK抑制后的凋亡水平。我们发现存在一种替代的自噬样方式,可以部分抑制衰老细胞在mTORC1下的活力。经pp242处理的细胞由于形成非自噬LC3阴性液泡而得以存活,液泡中包含受损的线粒体和溶酶体,并随后从细胞中排出内容物。需要MEK / ERK活性才能在衰老细胞中实施此过程。衰老细胞显示出细胞器和蛋白质的独特空间分布,从而使自噬的最终参与者解耦。我们显示该功能停止响应MEK / ERK抑制的细胞保护性自噬过程,从而允许选择性消除衰老的表达Ras的细胞。

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