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首页> 外文期刊>Cell death & disease. >PTEN-regulated AKT/FoxO3a/Bim signaling contributes to reactive oxygen species-mediated apoptosis in selenite-treated colorectal cancer cells
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PTEN-regulated AKT/FoxO3a/Bim signaling contributes to reactive oxygen species-mediated apoptosis in selenite-treated colorectal cancer cells

机译:PTEN调节的AKT / FoxO3a / Bim信号传导促进亚硒酸盐处理的结直肠癌细胞中活性氧介导的细胞凋亡

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摘要

Mounting evidence shows that selenium possesses chemotherapeutic potential against tumor cells, including leukemia, prostate cancer and colorectal cancer (CRC) cells. However, the detailed mechanism by which sodium selenite specifically kills tumor cells remains unclear. Herein, we demonstrated that supranutritional doses of selenite-induced apoptosis in CRC cells through reactive oxygen species (ROS)-dependent modulation of the PI3K/AKT/FoxO3a signaling pathway. First, we found that selenite treatment in HCT116 and SW480 CRC cells caused inhibition of AKT and the nuclear accumulation of FoxO3a by western blot and immunofluorescence analyses, respectively, thereby facilitating transcription of the target genes bim and PTEN. Modulation of the AKT/FoxO3a/Bim signaling pathway by chemical inhibitors or RNA interference revealed that these events were critical for selenite-induced apoptosis in CRC cells. Additionally, we discovered that FoxO3a-mediated upregulation of PTEN exerted a further inhibitory effect on the AKT survival pathway. We also corroborated our findings in vivo by performing immunohistochemistry experiments. In summary, our results show that selenite could induce ROS-dependent FoxO3a-mediated apoptosis in CRC cells and xenograft tumors through PTEN-mediated inhibition of the PI3K/AKT survival axis. These results help to elucidate the molecular mechanisms underlying selenite-induced cell death in tumor cells and provide a theoretical basis for translational applications of selenium.
机译:越来越多的证据表明,硒具有针对肿瘤细胞(包括白血病,前列腺癌和结直肠癌(CRC)细胞)的化学治疗潜力。然而,亚硒酸钠特异性杀死肿瘤细胞的详细机制仍不清楚。在本文中,我们证明了超剂量的亚硒酸盐通过PI3K / AKT / FoxO3a信号传导途径的活性氧(ROS)依赖性调节在CRC细胞中诱导凋亡。首先,我们发现分别通过蛋白质印迹和免疫荧光分析,HCT116和SW480 CRC细胞中的亚硒酸盐处理可抑制AKT和FoxO3a的核蓄积,从而促进目标基因bim和PTEN的转录。化学抑制剂或RNA干扰对AKT / FoxO3a / Bim信号通路的调节表明,这些事件对于硒诱导的CRC细胞凋亡至关重要。此外,我们发现FoxO3a介导的PTEN上调对AKT生存途径产生了进一步的抑制作用。我们还通过进行免疫组织化学实验证实了我们在体内的发现。总之,我们的结果表明,亚硒酸盐可以通过PTEN介导的PI3K / AKT存活轴抑制作用,诱导CRC依赖的FoxO3a介导的CRC细胞和异种移植肿瘤的凋亡。这些结果有助于阐明亚硒酸盐诱导的肿瘤细胞死亡的分子机制,并为硒的翻译应用提供理论依据。

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