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Comparative transcriptomic analysis reveals adriamycin-induced apoptosis via p53 signaling pathway in retinal pigment epithelial cells

机译:比较转录组学分析显示阿霉素通过p53信号通路在视网膜色素上皮细胞中诱导凋亡

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摘要

Objective: This paper applied a transcriptomic approach to investigate the mechanisms of adriamycin (ADR) in treating proliferative vitreoretinopathy (PVR) using ARPE-19 cells. Methods: The growth inhibitory effects of ADR on ARPE-19 cells were assessed by sulforhodamine B (SRB) assay and propidium iodide (PI) staining using flow cytometry. The differentially expressed genes between ADR-treated ARPE-19 cells and normal ARPE-19 cells and the signaling pathways involved were investigated by microarray analysis. Mitochondrial function was detected by JC-1 staining using flow cytometry and the Bcl-2/Bax protein family. The phosphorylated histone H2AX (γ-H2AX), phosphorylated checkpoint kinase 1 (p-CHK1), and phosphorylated checkpoint kinase 2 (p-CHK2) were assessed to detect DNA damage and repair. Results: ADR could significantly inhibit ARPE-19 cell proliferation and induce caspase-dependent apoptosis in vitro. In total, 4479 differentially expressed genes were found, and gene ontology items and the p53 signaling pathway were enriched. A protein–protein interaction analysis indicated that the TP53 protein molecules regulated by ADR were related to DNA damage and oxidative stress. ADR reduced mitochondrial membrane potential and the Bcl-2/Bax ratio. p53-knockdown restored the activation of c-caspase-3 activity induced by ADR by regulating Bax expression, and it inhibited ADR-induced ARPE-19 cell apoptosis. Finally, the levels of the γ-H2AX, p-CHK1, and p-CHK2 proteins were up-regulated after ADR exposure. Conclusions: The mechanism of ARPE-19 cell death induced by ADR may be caspase-dependent apoptosis, and it may be regulated by the p53-dependent mitochondrial dysfunction, activating the p53 signaling pathway through DNA damage.
机译:目的:采用转录组学的方法研究阿霉素(ARPR-19)细胞治疗增生性玻璃体视网膜病变(PVR)的机制。方法:采用流式细胞术,通过磺基罗丹明B(SRB)和碘化丙啶(PI)染色评价ADR对ARPE-19细胞的生长抑制作用。通过微阵列分析研究了用ADR处理的ARPE-19细胞和正常ARPE-19细胞之间差异表达的基因以及涉及的信号通路。使用流式细胞仪和Bcl-2 / Bax蛋白家族通过JC-1染色检测线粒体功能。评估磷酸化的组蛋白H2AX(γ-H2AX),磷酸化的检查点激酶1(p-CHK1)和磷酸化的检查点激酶2(p-CHK2),以检测DNA损伤和修复。结果:ADR可以显着抑制ARPE-19细胞的增殖并诱导caspase依赖性凋亡。共发现4479个差异表达基因,丰富了基因本体和p53信号通路。蛋白质-蛋白质相互作用分析表明,ADR调节的TP53蛋白质分子与DNA损伤和氧化应激有关。 ADR降低了线粒体膜电位和Bcl-2 / Bax比。 p53基因敲低通过调节Bax表达恢复了ADR诱导的c-caspase-3活性的激活,并抑制ADR诱导的ARPE-19细胞凋亡。最后,ADR暴露后,γ-H2AX,p-CHK1和p-CHK2蛋白的水平上调。结论:ADR诱导的ARPE-19细胞死亡的机制可能是依赖半胱天冬酶的凋亡,可能是受p53依赖的线粒体功能障碍调节,通过DNA损伤激活了p53信号通路。

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