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Long-chain noncoding RNA GAS5 mediates oxidative stress in cardiac microvascular endothelial cells injury

机译:长链非编码RNA GAS5介导氧化压力在心脏微血管内皮细胞受伤

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This study is performed to figure out the role of long-chain noncoding RNA growth-arrest specific transcript 5 (GAS5) in homocysteine (HCY)-induced cardiac microvascular endothelial cells (CMECs) injury. CMECs were cultured and the model of CMECs injury was established by coincubation with HCY. To construct stable overexpression of GAS5 cells, the expression of GAS5, microRNA-33a-5p (miR-33a-5p) and ATP-binding cassette transporter A1 (ABCA1), and biological characteristics of cells were determined. The messenger RNA (mRNA) level and secretion of vascular endothelial growth factor (VEGF), activity of reactive oxygen species (ROS) and superoxide dismutase (SOD), and the content of malondialdehyde (MDA) were measured. The binding site between GAS5 and miR-33a-5p and between miR-33a-5p and ABCA1 was verified. CMECs were successfully cultured. Reduction of GAS5 expression and ABCA1 expression together with increased expression of miR-33a-5p was found in CMECs induced by HCY. After overexpression of GAS5, there showed increased proliferative activity, decreased cell apoptosis rate and apoptosis index, enhanced cell migration ability, increased number of lumen formation, increased mRNA expression of VEGF in cells and the secretion in the supernatant, decreased activity of ROS and SOD in cells, and decreased content of ROS in cells. miR-33a-5p could promote the enrichment of GAS5 and ABCA1 was the direct target gene of miR-33a-5p. Our study suggests that the low expression of GAS5 was observed in HCY-induced CMECs injury, and the upregulation of GAS5 could attenuate HCY-induced CMECs injury by mediating oxidative stress, and its mechanism is related to the upregulation of ABCA1 expression by competitively binding with miR-33a-5p.
机译:进行这项研究的作用长链非编码RNA growth-arrest具体记录5 (GAS5)在全身的同型半胱氨酸(HCY)心脏微血管内皮细胞(CMECs)受伤。CMECs损伤通过coincubation成立HCY。细胞的表达GAS5 microRNA-33a-5p(miR-33a-5p)和腺苷结合盒转运体A1 (ABCA1)和生物学特性细胞被确定。水平和血管内皮分泌生长因子(VEGF)、活性氧的活动物种(ROS)和超氧化物歧化酶(SOD)和丙二醛(MDA)的含量测量。miR-33a-5p miR-33a-5p和ABCA1之间验证。减少GAS5表达式和ABCA1表达一起增加miR-33a-5p的表达式被发现在HCY CMECs诱导。GAS5超表达,显示增加增殖活性,减少细胞凋亡率和细胞凋亡指数,增强细胞迁移腔形成的能力,增加数量,信使rna在细胞VEGF的表达,增加在上层清液分泌,降低了在细胞ROS和SOD活性,降低了细胞内ROS的内容。GAS5和ABCA1是直接的浓缩miR-33a-5p的目标基因。观察GAS5的低表达HCY-induced CMECs受伤,upregulationGAS5可以减弱HCY-induced CMECs伤调节氧化应激及其机制与upregulation ABCA1的表达有关通过竞争与miR-33a-5p绑定。

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