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zVAD-induced autophagic cell death requires c-Src-dependent ERK and JNK activation and reactive oxygen species generation

机译:zVAD诱导的自噬细胞死亡需要c-Src依赖的ERK和JNK活化以及活性氧的产生

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摘要

The treatment of L929 fibrosarcoma cells with zVAD has been shown to induce necroptosis. However, whether autophagy is involved or not in this event remains controversial. In this study, we re-examined the role of autophagy in zVAD-induced cell death in L929 cells and further elucidated the signaling pathways triggered by caspase inhibition and contributing to autophagic death. First, we found that zVAD can stimulate LC3-II formation, autophagosome and autolysosome formation and ROS accumulation. Antioxidants, beclin 1 or Atg5 silencing and class III PtdIns3K inhibitors all effectively blocked ROS production and cell death, suggesting ROS accumulation downstream of autophagy contributes to cell necrosis. zVAD also stimulated PARP activation, and the PARP inhibitor DPQ can reduce zVAD-induced cell death, but did not affect ROS production, suggesting the increased ROS leads to PARP activation and cell death. Notably, our data also indicated the involvement of Src-dependent JNK and ERK in zVAD-induced ROS production and autophagic death. We found caspase 8 is associated with c-Src at the resting state, and upon zVAD treatment this association was decreased and accompanied by c-Src activation. In conclusion, we confirmed the autophagic death in zVAD-treated L929 cells, and defined a new molecular pathway in which Src-dependent ERK and JNK activation can link a signal from caspase inhibition to autophagy, which in turn induce ROS production and PARP activation, eventually leading to necroptosis. Thus, in addition to initiating proteolytic activity for cell apoptosis, inactivated caspase 8 also functions as a signaling molecule for autophagic death.
机译:用zVAD治疗L929纤维肉瘤细胞已显示出可引起坏死性坏死。但是,在这种情况下是否涉及自噬仍存在争议。在这项研究中,我们重新检查了自噬在zVAD诱导的L929细胞中细胞死亡中的作用,并进一步阐明了由半胱天冬酶抑制触发的信号通路,并导致自噬死亡。首先,我们发现zVAD可以刺激LC3-II的形成,自噬体和自溶酶体的形成以及ROS的积累。抗氧化剂,beclin 1或Atg5沉默和III类PtdIns3K抑制剂均能有效阻断ROS的产生和细胞死亡,这表明自噬下游的ROS积累会导致细胞坏死。 zVAD还刺激PARP活化,并且PARP抑制剂DPQ可以减少zVAD诱导的细胞死亡,但不影响ROS的产生,这表明ROS升高导致PARP活化和细胞死亡。值得注意的是,我们的数据还表明Src依赖性JNK和ERK参与zVAD诱导的ROS产生和自噬死亡。我们发现半胱天冬酶8与处于静止状态的c-Src相关,并且在zVAD治疗后,这种相关性降低并伴有c-Src激活。总之,我们确认了经zVAD处理的L929细胞的自噬死亡,并定义了一条新的分子途径,其中Src依赖性ERK和JNK激活可以将caspase抑制信号与自噬联系起来,进而诱导ROS产生和PARP激活,最终导致尸检。因此,除了启动用于细胞凋亡的蛋白水解活性外,失活的胱天蛋白酶8还充当自噬死亡的信号分子。

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