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首页> 外文期刊>World Journal of Surgical Oncology >Tumor suppressor gene RBM5 delivered by attenuated Salmonella inhibits lung adenocarcinoma through diverse apoptotic signaling pathways
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Tumor suppressor gene RBM5 delivered by attenuated Salmonella inhibits lung adenocarcinoma through diverse apoptotic signaling pathways

机译:减毒沙门氏菌传递的抑癌基因RBM5通过多种凋亡信号通路抑制肺腺癌

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Background RBM5 (RNA-binding motif protein 5, also named H37/LUCA-15) gene from chromosome 3p21.3 has been demonstrated to be a tumor suppressor. Current researches in vitro confirm that RBM5 can suppress the growth of lung adenocarcinoma cells by inducing apoptosis. There is still no effective model in vivo , however, that thoroughly investigates the effect and molecular mechanism of RBM5 on lung adenocarcinoma. Method We established the transplanted tumor model on BALB/c nude mice using the A549 cell line. The mice were treated with the recombinant plasmids carried by attenuated Salmonella to induce the overexpression of RBM5 in tumor tissues. RBM5 overexpression was confirmed by immunohistochemistry staining. H&E staining was performed to observe the histological performance on plasmids-treated A549 xenografts. Apoptosis was assessed by TUNEL staining with a TUNEL detection kit. Apoptosis-regulated genes were detected by Western blot. Results We successful established the lung adenocarcinoma animal model in vivo . The growth of tumor xenografts was significantly retarded on the mice treated with pcDNA3.1-RBM5 carried by attenuated Salmonella compared to that on mice treated with pcDNA3.1. Overexpression of RBM5 enhanced the apoptosis in tumor xenografts. Furthermore, the expression of Bcl-2 protein was decreased significantly, while the expression of BAX, TNF-α, cleaved caspase-3, cleaved caspase-8, cleaved caspase-9 and cleaved PARP proteins was significantly increased in the pcDNA3.1-RBM5-treated mice as compared to that in the control mice. Conclusions In this study, we established a novel animal model to determine RBM5 function in vivo, and concluded that RBM5 inhibited tumor growth in mice by inducing apoptosis. The study suggests that although RBM5’s involvement in the death receptor-mediated apoptotic pathway is still to be investigated, RBM5-mediated growth suppression, at least in part, employs regulation of the mitochondrial apoptotic pathways.
机译:来自染色体3p21.3的背景RBM5(RNA结合基序蛋白5,也称为H37 / LUCA-15)基因已被证明是抑癌基因。目前的体外研究证实,RBM5可以通过诱导细胞凋亡来抑制肺腺癌细胞的生长。然而,体内仍没有有效的模型来彻底研究RBM5对肺腺癌的作用和分子机制。方法我们使用A549细胞系建立了BALB / c裸鼠移植瘤模型。用减毒沙门氏菌携带的重组质粒处理小鼠,以诱导RBM5在肿瘤组织中的过表达。通过免疫组织化学染色证实了RBM5的过表达。进行H&E染色以观察在质粒处理的A549异种移植物上的组织学性能。用TUNEL检测试剂盒通过TUNEL染色评估细胞凋亡。通过Western印迹检测凋亡调节基因。结果成功建立了肺腺癌动物模型。与用pcDNA3.1处理的小鼠相比,用减毒沙门氏菌携带的pcDNA3.1-RBM5处理的小鼠的肿瘤异种移植物的生长明显受阻。 RBM5的过表达增强了肿瘤异种移植物中的细胞凋亡。此外,在pcDNA3.1-中,Bcl-2蛋白的表达显着降低,而BAX,TNF-α,裂解的caspase-3,裂解的caspase-8,裂解的caspase-9和裂解的PARP蛋白的表达显着增加。与对照小鼠相比,RBM5处理的小鼠。结论在这项研究中,我们建立了一种新颖的动物模型来确定RBM5在体内的功能,并得出结论认为RBM5通过诱导细胞凋亡来抑制小鼠肿瘤的生长。研究表明,尽管RBM5是否参与死亡受体介导的凋亡途径尚待研究,但RBM5介导的生长抑制至少部分地利用了线粒体凋亡途径的调控。

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