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MicroRNA-375 overexpression influences P19 cell proliferation apoptosis and differentiation through the Notch signaling pathway

机译:MicroRNA-375过表达通过Notch信号通路影响P19细胞增殖凋亡和分化

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摘要

Our previous study reported that microRNA-375 (miR-375) is significantly upregulated in ventricular septal myocardial tissues from 22-week-old fetuses with ventricular septal defect as compared with normal controls. In the present study, the specific effects of miR-375 on P19 cell differentiation into cardiomyocyte-like cells were investigated. Stable P19 cell lines overexpressing miR-375 or containing empty vector were established, which could be efficiently induced into cardiomyocyte-like cells in the presence of dimethyl sulfoxide in vitro. miR-375 overexpression was verified using reverse transcription-quantitative polymerase chain reaction (RT-qPCR). Cell proliferation was determined according to total cell counts; cell cycle distribution and apoptosis levels were examined using flow cytometry. Apoptosis-related morphological changes were observed using Hoechst staining and fluorescence microscopy. During P19 cell differentiation, the cardiomyogenesis-related mRNAs (cardiac troponin T, GATA binding protein 4, myocyte-specific enhancer factor 2C) and mRNAs involved in the Notch signaling pathway (Notch2, Delta-like 1 and hes family bHLH transcription factor 1) were detected at days 0, 4, 6 and 10. Their differential expression was examined using RT-qPCR; the apoptosis-related genes BAX and Bcl-2 were also detected using this method. The corresponding proteins were evaluated by western blotting. Compared with the control group, miR-375 overexpression inhibited proliferation but promoted apoptosis in P19 cells, and the associated mRNAs and proteins were decreased during differentiation. miR-375 has an important role in cardiomyocyte differentiation, and can disrupt this process via the Notch signaling pathway. The present findings contribute to the understanding of the mechanisms of congenital heart disease and facilitate the development of new gene therapies.
机译:我们以前的研究报告说,与正常对照组相比,患有室间隔缺损的22周龄胎儿的室间隔心肌组织中的microRNA-375(miR-375)明显上调。在本研究中,研究了miR-375对P19细胞分化为心肌样细胞的特异性作用。建立了稳定表达过表达miR-375或含有空载体的稳定的P19细胞系,在存在二甲基亚砜的情况下,可以有效地将其诱导为心肌样细胞。使用逆转录定量聚合酶链反应(RT-qPCR)验证了miR-375过表达。根据总细胞数确定细胞增殖。使用流式细胞仪检查细胞周期分布和凋亡水平。使用Hoechst染色和荧光显微镜观察凋亡相关的形态学变化。在P19细胞分化过程中,与心肌发生相关的mRNA(心肌肌钙蛋白T,GATA结合蛋白4,心肌细胞特异性增强因子2C)和参与Notch信号通路的mRNA(Notch2,Delta样1和hes家族bHLH转录因子1)。在第0、4、6和10天检测到它们。使用RT-qPCR检查它们的差异表达。该方法还检测了凋亡相关基因BAX和Bcl-2。通过蛋白质印迹评估相应的蛋白质。与对照组相比,miR-375的高表达抑制了P19细胞的增殖,但促进了其凋亡,并且在分化过程中其相关的mRNA和蛋白均降低了。 miR-375在心肌细胞分化中具有重要作用,并且可以通过Notch信号通路破坏这一过程。目前的发现有助于了解先天性心脏病的机制,并促进新基因疗法的发展。

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