首页> 外文期刊>Medical science monitor : >Down-Regulation of MicroRNA-133b Suppresses Apoptosis of Lens Epithelial Cell by Up-Regulating BCL2L2 in Age-Related Cataracts
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Down-Regulation of MicroRNA-133b Suppresses Apoptosis of Lens Epithelial Cell by Up-Regulating BCL2L2 in Age-Related Cataracts

机译:MicroRNA-133b的下调通过与年龄相关的白内障上调BCL2L2抑制晶状体上皮细胞凋亡。

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BACKGROUND MicroRNA-133b (miR-133b) has been reported to be involved in many diseases, including ovarian cancer and osteosarcoma. Accumulating evidence suggests that miR-133b plays important roles in human disease. In this study, we aimed to investigate the molecular mechanism, including the potential regulator and signaling pathways, of BCL2L2. MATERIAL AND METHODS We first searched the online miRNA database ([i]www.mirdb.org[/i]) using the “seed sequence” located within the 3’-UTR of the target gene, and then performed luciferase assay to test the regulatory relationship between miR-133b and BCL2L2. Western blot and real-time PCR were used to determine the expression of BCL2L2 in human samples or cells treated with miRNA mimics or inhibitors. Flow cytometry was conducted to evaluate the apoptosis status of the cells. RESULTS We validated BCL2L2 to be the direct gene using a luciferase reporter assay. We also conducted real-time PCR and Western blot analyses to study the mRNA and protein expression level of BCL2L2 among different groups (control: n=29, cataract: n=33) or cells treated with scramble control, miR-133b mimics, BCL2L2 siRNA, and miR-133b inhibitors, and identified the negative regulatory relationship between miR-133b and BCL2L2. We also conducted experiments to investigate the influence of miR-133b and BCL2L2 on the viability and apoptosis of cells. The results showed that miR-133b positively interfered with the viability of cells, while BCL2L2 negatively interfered with the viability of cells, and that miR-133b inhibited apoptosis while BCL2L2 accelerated apoptosis. CONCLUSIONS BCL2L2 was the virtual target of miR-133b, and we found a negative regulatory relationship between miR-133b and BCL2L2. MiR-133b and BCL2L2 interfered with the viability and apoptosis of cells.
机译:背景技术据报道,MicroRNA-133b(miR-133b)涉及许多疾病,包括卵巢癌和骨肉瘤。越来越多的证据表明,miR-133b在人类疾病中起重要作用。在这项研究中,我们旨在研究BCL2L2的分子机制,包括潜在的调节子和信号通路。材料和方法我们首先使用位于靶基因3'-UTR内的“种子序列”搜索在线miRNA数据库([i] www.mirdb.org [/ i]),然后进行萤光素酶测定以测试miR-133b与BCL2L2之间的调控关系。 Western印迹和实时PCR用于确定BCL2L2在人样品或经miRNA模拟物或抑制剂处理的细胞中的表达。进行流式细胞术以评估细胞的凋亡状态。结果我们通过荧光素酶报告基因分析证实了BCL2L2是直接基因。我们还进行了实时PCR和Western印迹分析,以研究BCL2L2在不同组(对照组:n = 29,白内障:n = 33)或经加扰对照,miR-133b模拟物,BCL2L2处理的细胞之间的mRNA和蛋白质表达水平siRNA和miR-133b抑制剂,并确定了miR-133b和BCL2L2之间的负调控关系。我们还进行了实验,以研究miR-133b和BCL2L2对细胞活力和凋亡的影响。结果表明,miR-133b积极干扰细胞活力,而BCL2L2消极干扰细胞活力,miR-133b抑制细胞凋亡,而BCL2L2加速细胞凋亡。结论BCL2L2是miR-133b的虚拟靶标,我们发现miR-133b与BCL2L2之间存在负调控关系。 MiR-133b和BCL2L2干扰细胞的活力和凋亡。

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