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首页> 外文期刊>Cellular Oncology: Analytical Cellular Pathology >Activation of MEK1/2/Nrf-2 Signaling Pathway by Epstein-Barr Virus-Latent Membrane Protein 1 Enhances Autophagy and Cisplatin Resistance in T-Cell Lymphoma
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Activation of MEK1/2/Nrf-2 Signaling Pathway by Epstein-Barr Virus-Latent Membrane Protein 1 Enhances Autophagy and Cisplatin Resistance in T-Cell Lymphoma

机译:Epstein-BARR病毒 - 潜膜蛋白1的MEK1 / 2 / NRF-2信号传导途径增强了T细胞淋巴瘤的自噬和顺铂抗性

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摘要

Epstein-Barr virus-latent membrane protein 1 (EBV-LMP1) was associated with lymphoma, but its specific mechanism is still controversial. The study is aimed at studying the regulation of lymphoma resistance by EBV-LMP1 through the MEK1/2/Nrf-2 signaling pathway. First, LMP1 was knocked down in EBV-positive SNK-6 cells and overexpressed in EBV-negative KHYG-1 cells. First, we found that overexpression of LMP1 significantly promoted the resistance of KHYG-1 cells to cisplatin (DDP), which was related to increased autophagy in the cells. In contrast, knockdown of LMP1 expression in SNK-6 cells promoted cellular sensitivity to DDP and reduced the autophagy of cells after DDP treatment. Moreover, specific inhibition of autophagy in KHYG-1 cells significantly attenuated the resistance to DDP caused by overexpression of LMP1, but treatment with rapamycin in SNK-6 cells significantly promoted the autophagy in the cells. Subsequently, overexpression of LMP1 promoted the activation of the MEK1/2-Nrf2 pathway in KYHG-1 cells, whereas knockdown of LMP1 in SNK-6 cells inhibited the activation of the MEK1/2-Nrf2 pathway. Inhibition of MEK1/2/Nrf-2 blocked the promoting effects of LMP1 on lymphoma cell resistance. In conclusion, EBV-LMP1 promotes cell autophagy after DDP treatment by activating the MEK1/2/Nrf-2 signaling pathway in lymphoma cells, thus, enhancing the resistance of lymphoma cells to DDP.
机译:Epstein-Barr病毒 - 潜伏膜蛋白1(EBV-LMP1)与淋巴瘤有关,但其特定机制仍存在争议。该研究旨在通过MEK1 / 2 / NRF-2信号通路来研究EBV-LMP1对淋巴瘤抗性的调节。首先,LMP1在EBV阳性SNK-6细胞中撞击并在EBV阴性KHYG-1细胞中过表达。首先,我们发现LMP1的过度表达显着促进了KhyG-1细胞对顺铂(DDP)的阻力,这与细胞中的增加有关。相比之下,SNK-6细胞中LMP1表达的敲低促进了对DDP的细胞敏感性,并在DDP处理后降低了细胞的自噬。此外,在KHYG-1细胞中对自噬的特异性抑制显着减弱了LMP1的过表达引起的抗DDP的抗性,但在SNK-6细胞中的雷帕霉素治疗显着促进了细胞中的自噬。随后,LMP1的过表达促进了kyHG-1细胞中MEK1 / 2-NRF2途径的活化,而SNK-6细胞中LMP1的敲低抑制MEK1 / 2-NRF2途径的活化。抑制MEK1 / 2 / NRF-2阻断LMP1对淋巴瘤细胞抗性的促进作用。总之,通过在淋巴瘤细胞中激活MEK1 / 2 / NRF-2信号传导途径,EBV-LMP1通过激活淋巴瘤细胞中的MEK1 / 2 / NRF-2信号传导途径来提高细胞自噬,从而提高淋巴瘤细胞对DDP的抗性。

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