Department of Neurology, Daqing Oilfield General Hospital, Daqing, China.
Department of Neurology, Hainan General Hospital, Haikou, China.
Artif Cells Nanomed Biotechnol. 2020 Dec;48(1):610-619. doi: 10.1080/21691401.2020.1725533.
Increasing number of literatures highlighted lncRNA maternally expressed gene 3 (MEG3) as an emerging target for hypoxic-ischaemic brain damage (HIBD). This study attempted to assess the role of MEG3 in a cell model of HIBD. Expression of MEG3 in PC12 cells was suppressed by siRNA-mediated transfection, after which the cells were subjected to hypoxia. Cell viability, apoptosis, migration and the expression of related proteins were assessed. Furthermore, the downstream gene of MEG3 and its downstream signalling pathways were explored. We found that, down-regulation of MEG3 prevented hypoxic injury in PC12 cells, as hypoxia induced viability loss, apoptosis and migration repression were attenuated by transfection with MEG3 siRNA. Meanwhile, MEG3 acted as a miR-21 sponge. The neuroprotective functions of MEG3 silence were flattened when miR-21 was suppressed. Moreover, the deactivation of PI3K/AKT pathway and the activation of NF-κB pathway induced by hypoxia were attenuated by MEG3 silence. As expected, the effects of MEG3 silence on these two signalling were miR-21. In conclusion, the neuroprotective effects of MEG3 silence on PC12 cells injured by hypoxia were observed in this study. Mechanistically, the neuroprotective effects of MEG3 silence on PC12 cells were sponging miR-21 and thus regulating PI3K/AKT and NF-κB pathways.HIGHLIGHTSMEG3 is highly expressed in PC12 cells following hypoxic injury;Silence of MEG3 prevents hypoxia-induced cell damage in PC12 cells;MEG3 acts as a miR-21 sponge;MEG3 sponges miR-21 to regulate PI3K/AKT and NF-κB pathways.
越来越多的文献强调长链非编码 RNA 母源表达基因 3(MEG3)是缺氧缺血性脑损伤(HIBD)的一个新靶点。本研究试图评估 MEG3 在 HIBD 细胞模型中的作用。用 siRNA 转染抑制 PC12 细胞中 MEG3 的表达,然后将细胞置于缺氧环境中。评估细胞活力、凋亡、迁移和相关蛋白的表达。此外,还探讨了 MEG3 的下游基因及其下游信号通路。我们发现,下调 MEG3 可防止 PC12 细胞缺氧损伤,因为转染 MEG3 siRNA 可减弱缺氧诱导的细胞活力丧失、凋亡和迁移抑制。同时,MEG3 作为 miR-21 的海绵。抑制 miR-21 可使 MEG3 沉默的神经保护作用减弱。此外,MEG3 沉默可减弱缺氧诱导的 PI3K/AKT 通路失活和 NF-κB 通路激活。正如预期的那样,MEG3 沉默对这两条信号通路的影响是 miR-21。总之,本研究观察到 MEG3 沉默对缺氧损伤的 PC12 细胞具有神经保护作用。机制上,MEG3 沉默对 PC12 细胞的神经保护作用是通过海绵吸附 miR-21 从而调节 PI3K/AKT 和 NF-κB 通路。