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首页> 外文期刊>Cell death & disease. >Downregulation of G2/mitotic-specific cyclinB1 triggers autophagy via AMPK-ULK1-dependent signal pathway in nasopharyngeal carcinoma cells
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Downregulation of G2/mitotic-specific cyclinB1 triggers autophagy via AMPK-ULK1-dependent signal pathway in nasopharyngeal carcinoma cells

机译:G2 /有丝分裂特异性cyclinB1的下调通过AMPK-ULK1依赖性信号通路在鼻咽癌细胞中触发自噬。

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CyclinB1 is a regulatory protein involved in mitosis. Multiple lines of evidence indicate that cyclinB1 depletion constrains proliferation and induces apoptosis in human tumor cells. The cells become susceptible to suffer a critical situation when cyclinB1 is downregulated. Autophagy is a major intracellular degradation system that recycles nutrients, removes damaged organelles, and promotes cell survival under stressful conditions, whereas the role of autophagy in cyclinB1-deprived neoplastic cell as well as the underlying molecular mechanism remains obscure. Here we pioneeringly elaborated that specific knockdown of cyclinB1 triggered autophagy via AMPK-ULK1-dependent signal pathway through the elevation of ROS, rather than ATP in the cell lines of CNE-1 and CNE-2. Moreover, ROS scavengers demonstrated that the observed effect of cyclinB1 silencing on AMPK phosphorylation was ROS dependent. Additionally, double knockdown of AMPK and cyclinB1 evidently abrogated cyclinB1 silencing-induced autophagy. Summarily, this study first revealed that downregulation of cyclinB1 induced autophagy via AMPK-ULK1-dependent signal pathway, which represents a key step toward unveiling the mechanism how cell cycle checkpoint proteins regulate autophagy.
机译:CyclinB1是一种参与有丝分裂的调节蛋白。多条证据表明,cyclinB1耗竭会抑制人肿瘤细胞的增殖并诱导其凋亡。当细胞周期蛋白B1被下调时,细胞容易遭受危急情况。自噬是一种主要的细胞内降解系统,可在压力条件下回收营养,去除受损的细胞器并促进细胞存活,而自噬在cyclinB1缺失的肿瘤细胞中的作用以及潜在的分子机制仍然不清楚。在这里,我们开创性地阐述了cyclinB1的特异性敲低通过AMPK-ULK1依赖性信号途径通过ROS升高而不是CNE-1和CNE-2细胞系中的ATP触发自噬。此外,ROS清除剂表明,cyclinB1沉默对AMPK磷酸化的影响是ROS依赖性的。此外,AMPK和cyclinB1的双重敲除显然消除了cyclinB1沉默诱导的自噬。总的来说,这项研究首先揭示了通过依赖AMPK-ULK1的信号通路下调cyclinB1诱导的自噬,这是揭示细胞周期检查点蛋白调节自噬机制的关键一步。

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