天津医药 ›› 2024, Vol. 52 ›› Issue (9): 900-906.doi: 10.11958/20231828

• 细胞与分子生物学 • 上一篇    下一篇

山萘酚逆转肝癌耐药细胞Bel-7402/5-Fu的作用机制研究

梁大敏(), 杨正久, 张子萍, 钱静, 毛朝坤   

  1. 遵义医药高等专科学校医学技术系(邮编563003)
  • 收稿日期:2023-12-22 修回日期:2024-04-18 出版日期:2024-09-15 发布日期:2024-09-06
  • 作者简介:梁大敏(1987),女,副教授,主要从事肝癌发生的分子机制和耐药方面研究。E-mail:171868775@qq.com
  • 基金资助:
    遵义市科技与大数据局基金资助项目[遵市科合HZ字(2022)151号];遵义市科技与大数据局基金资助项目[遵市科合社字(2018)41号]

Study on the effect and mechanism of kaempferol in reversing drug-resistant Bel-7402/5-Fu cells

LIANG Damin(), YANG Zhengjiu, ZHANG Ziping, QIAN Jing, MAO Chaokun   

  1. Department of Medical Technology, Zunyi Medical and Pharmaceutical College, Zunyi 563003, China
  • Received:2023-12-22 Revised:2024-04-18 Published:2024-09-15 Online:2024-09-06

摘要:

目的 探讨山萘酚(KAE)对肝癌耐药细胞Bel-7402/5-Fu功能的影响。方法 采用KAE处理Bel-7402/5-Fu细胞,将细胞分为对照组和药物组(0.064、0.320、1.600、8、40、200 μmol/L KAE);根据干扰DNA依赖性激酶催化亚基(DNA-PKcs)、加入蛋白酶体抑制剂MG132或加入自噬抑制剂CQ,将细胞分为si-NC组和DNA-PKcs干扰(siRNA-1664、siRNA-2142、siRNA-3785)组,对照组、KAE组和KAE+si-DNA-PKcs组,对照组、KAE+DMSO组、KAE+MG132组和KAE+CQ组。采用CCK-8检测细胞增殖,实时荧光定量PCR(RT-qPCR)和Western blot检测组蛋白H2AX磷酸化(γ-H2AX)、DNA-PKcs、DNA双链断裂修复/V(D)J重组蛋白(Artemis)和药泵基因(P-gp)mRNA和蛋白的表达,流式细胞术检测细胞周期和细胞凋亡,蛋白稳定性实验检测DNA-PKcs蛋白稳定性,免疫共沉淀检测DNA-PKcs蛋白泛素化。结果 与对照组相比,8 μmol/L KAE处理细胞24 h可抑制约50%的细胞增殖能力,选择此时间和浓度进行后续研究。与对照组相比,KAE组γ-H2AX mRNA和蛋白表达水平升高,DNA-PKcs、Artemis和P-gp mRNA和蛋白表达水平降低(P<0.05);与对照组相比,KAE促进Bel-7402/5-Fu细胞周期阻滞于G2/M期,增加细胞凋亡;与si-NC组相比,siRNA-1664能显著下调DNA-PKcs mRNA和蛋白表达水平(P<0.05);与KAE组相比,KAE+si-DNA-PKcs组进一步促进了KAE对细胞的效应;与对照组相比,KAE+DMSO组DNA-PKcs蛋白表达水平降低(P<0.05);与KAE+DMSO组相比,KAE+MG132组DNA-PKcs蛋白表达水平升高(P<0.05),而KAE+CQ组DNA-PKcs蛋白表达水平无明显变化(P>0.05);与对照组相比,KAE+DMSO组促进DNA-PKcs蛋白的泛素化,而KAE+MG132组则可抑制其泛素化(P<0.05)。结论 KAE能够诱导肝癌耐药细胞Bel-7402/5-Fu的细胞凋亡和细胞周期阻滞。

关键词: 癌,肝细胞, 山萘酚, 细胞凋亡, 细胞周期, Bel-7402/5-Fu, DNA-PKcs

Abstract:

Objective To investigate the effect of kaempferol (KAE) on the function of drug-resistant Bel-7402/5-Fu cells. Methods Bel-7402/5-Fu cells were treated with KAE, and cells were divided into the control group and the drug group (0.064, 0.320, 1.600, 8, 40, 200 μmol/L KAE). Cells were divided into the si-NC group and the DNA-PKcs interference group, or the control group, the KAE group, the KAE+si-DNA-PKcs group or the KAE+DMSO group, the KAE+MG132 group and the KAE+CQ group based on interfering DNA dependent kinase catalytic subunits (DNA-PKcs) or addition of proteasome inhibitor MG132 or autophagy inhibitor CQ. Cell proliferation was detected using CCK-8. The expression level of histone H2AX phosphorylation (γ-H2AX), DNA-PKcs, DNA double strand break repair/V(D)J recombinant protein (Artemis) and drug pump gene (P-gp) were analyzed using real-time fluorescence quantitative PCR (RT-qPCR) and Western blot assay. Cell cycle and apoptosis were detected by flow cytometry. The stability of DNA-PKcs proteins was analyzed by protein stability experiments. Ubiquitination of DNA-PKcs protein was evaluated by immunoprecipitation assay. Results Compared to the control group, treating cells with 8 μmol/L KAE for 24 h inhibited about 50% of cell proliferation ability. Therefore, this time and concentration were chosen for subsequent research. Compared to the control group, the expression level of γ-H2AX mRNA and protein significantly increased, while expression levels of DNA-PKcs, Artemis and P-gp mRNA and proteins significantly decreased in the KAE group (P<0.05). Compared to the control group, KAE promoted cell cycle arrest in the G2/M phase of Bel-7402/5-Fu cells and increased cell apoptosis. Compared to the si-NC group, siRNA-1664 significantly downregulated the mRNA and protein expression levels of DNA-PKcs (P<0.05). Compared with the KAE group, the effect of KAE was further promoted in the KAE+si-DNA-PKcs group of Bel-7402/5-Fu cells. Compared with the control group, the protein expression level of DNA-PKcs decreased in the KAE+DMSO group (P<0.05). Compared with the KAE+DMSO group, the protein expression level of DNA-PKcs increased in the KAE+MG132 group (P<0.05), while there was no significant change in the protein expression level of DNA-PKcs in the KAE+CQ group (P>0.05). Compared to the control group, there was promoted ubiquitination of DNA-PKcs in the KAE+DMSO group, and the inhibited ubiquitination in the KAE+MG132 group (P<0.05). Conclusion KAE may induce cell apoptosis and cell cycle arrest in drug-resistant Bel-7402/5-Fu cells.

Key words: carcinoma, hepatocellular, kaempferol, apoptosis, cell cycle, Bel-7402/5-Fu, DNA-PKcs

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