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Time-dependent modulation of FoxO activity by HDAC inhibitor in oncogene-transformed E1A+Ras cells

机译:HDAC抑制剂在致癌基因转化的E1A + Ras细胞中对FoxO活性的时间依赖性调节

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摘要

HDAC inhibitors (HDACIs) induce irreversible cell cycle arrest and senescence in mouse embryonic fibroblasts transformed with E1A and c-Ha-Ras oncogenes (E1A+Ras cell line). The aging rate has been associated with the production of high levels of Reactive Oxygen Species (ROS). Specific increases of ROS level have been demonstrated as potentially critical for induction and maintenance of cell senescence process. It's known that HDACs regulate the ROS-dependent FoxO factors, which are responsible for cell growth, proliferation, and longevity. The characteristic ROS increase during aging may be responsible for the decreased HDAC activity, which facilitates the senescent-like phenotype. The objective of this study was to investigate the impact of FoxO transcription factors on HDACIs-induced senescence of E1A+Ras oncogenes transformed cells. This study shows the specific time-dependent effect of HDACI sodium butyrate treatment on FoxO proteins in E1A+Ras cells. Indeed, short-term treatment with NaB results in FoxO activation, which takes place through nuclear translocation, and accompanied by accumulation of such ROS scavengers as MnSOD and SOD2. However, prolonged treatment leads to extensive FoxO degradation and increased intracellular levels of ROS. This degradation is connected with NaB-induced activation of Akt kinase. All of these findings establish that one of the possible mechanism involved in NaB-induced senescence of transformed cells is mediated through down-regulation of FoxO transcription factors and ROS accumulation.
机译:HDAC抑制剂(HDACIs)在用E1A和c-Ha-Ras癌基因(E1A + Ras细胞系)转化的小鼠胚胎成纤维细胞中诱导不可逆的细胞周期停滞和衰老。老化率与高水平的活性氧(ROS)的产生有关。已经证明ROS水平的特定增加对于诱导和维持细胞衰老过程潜在地至关重要。众所周知,HDAC调节ROS依赖性FoxO因子,这些因子负责细胞的生长,增殖和寿命。在衰老过程中,ROS的特征性增加可能是HDAC活性降低的原因,这有助于衰老样表型。这项研究的目的是调查FoxO转录因子对HDACIs诱导的E1A + Ras癌基因转化细胞衰老的影响。这项研究显示了HDACI丁酸钠对E1A + Ras细胞中FoxO蛋白的特定时间依赖性作用。的确,用NaB短期治疗会导致FoxO活化,这是通过核易位而发生的,并伴随着ROS清除剂如MnSOD和SOD2的积累。但是,延长治疗时间会导致FoxO大量降解,并增加细胞内ROS水平。这种降解与NaB诱导的Akt激酶激活有关。所有这些发现证实,NaB诱导的转化细胞衰老涉及的可能机制之一是通过下调FoxO转录因子和ROS积累来介导的。

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