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首页> 外文期刊>American Journal of Translational Research >RNA binding motif protein 3 (RBM3) drives radioresistance in nasopharyngeal carcinoma by reducing apoptosis via the PI3K/AKT/Bcl-2 signaling pathway
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RNA binding motif protein 3 (RBM3) drives radioresistance in nasopharyngeal carcinoma by reducing apoptosis via the PI3K/AKT/Bcl-2 signaling pathway

机译:RNA结合基序蛋白3(RBM3)通过减少PI3K / AKT / Bcl-2信号通路的凋亡来驱动鼻咽癌的放射抵抗

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摘要

Radioresistance is an important obstacle to nasopharyngeal carcinoma (NPC) therapy. In this study, we explored the role of RNA-binding motif protein 3 (RBM3) in the radioresistance of NPC and its underlying mechanism. We measured the expression of RBM3 in 20 clinical NPC tissues and in NPC cell lines. We found that RBM3 was upregulated in radioresistant NPC tissues and cells. Radioresistant NPC cells (CNE1/IR) and parental NPC cells (CNE1) were subjected to RBM3-shRNA knockdown and RBM3 overexpression, respectively. RBM3 depletion in CNE1/IR cells sensitized cells to radiotherapy, increased DNA damage, and accelerated the rate of apoptosis. In contrast, RBM3 overexpression in CNE1 cells significantly enhanced radioresistance and reduced the rate of apoptosis. Additionally, radioresistance conferred by RBM3 was attributed to the activation of the AKT/Bcl-2 signaling pathway and reduction of caspase 3. Inhibition of AKT signaling attenuated RBM3-mediated radioresistance. Furthermore, RBM3 directly interacted with PI3K subunit p85 in NPC cell lines. Altogether, our data demonstrate that RBM3 enhances radioresistance by inhibiting the apoptotic response to radiotherapy through the PI3K/AKT/Bcl-2 signaling pathway. RBM3 may serve as a novel factor for predicting radioresistance and as a molecular target in the treatment of NPC.
机译:放射抵抗是鼻咽癌(NPC)治疗的重要障碍。在这项研究中,我们探讨了RNA结合基序蛋白3(RBM3)在NPC的放射抗性中的作用及其潜在机制。我们测量了RBM3在20个临床NPC组织和NPC细胞系中的表达。我们发现RBM3在耐辐射的NPC组织和细胞中上调。耐辐射NPC细胞(CNE1 / IR)和亲代NPC细胞(CNE1)分别进行RBM3-shRNA敲低和RBM3过表达。 CNE1 / IR细胞中的RBM3耗尽使细胞对放射疗法敏感,增加了DNA损伤,并加快了细胞凋亡的速度。相反,CNE1细胞中的RBM3过表达显着增强了放射抗性并降低了凋亡率。此外,RBM3赋予的抗放射性归因于AKT / Bcl-2信号通路的激活和胱天蛋白酶3的减少。抑制AKT信号减弱了RBM3介导的放射抗性。此外,RBM3在NPC细胞系中直接与PI3K亚基p85相互作用。总之,我们的数据表明,RBM3通过抑制通过PI3K / AKT / Bcl-2信号通路对放疗的凋亡反应来增强放射抵抗。 RBM3可以作为预测抗辐射性的新因素,并且可以作为治疗NPC的分子靶标。

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