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Long non-coding RNA H19 contributes to apoptosis of hippocampal neurons by inhibiting let-7b in a rat model of temporal lobe epilepsy

机译:长非编码RNA H19通过抑制大鼠颞叶癫痫模型let-7b促进海马神经元凋亡

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Temporal lobe epilepsy (TLE) is one of the most common types of intractable epilepsy, characterized by hippocampal neuron damage and hippocampal sclerosis. Long noncoding RNAs (lncRNAs) have been increasingly recognized as posttranscriptional regulators. However, their expression levels and functions in TLE remain largely unknown. In the present study, TLE rat model is used to explore the expression profiles of lncRNAs in the hippocampus of epileptic rats using microarray analysis. Our results demonstrate that H19 is the most pronouncedly differentiated lncRNA, significantly upregulated in the latent period of TLE. Moreover, the in vivo studies using gain- and loss-of-function approaches reveal that the overexpression of H19 aggravates SE-induced neuron apoptosis in the hippocampus, while inhibition of H19 protects the rats from SE-induced cellular injury. Finally, we show that H19 might function as a competing endogenous RNA to sponge microRNA let-7b in the regulation of cellular apoptosis. Overall, our study reveals a novel lncRNA H19-mediated mechanism in seizure-induced neural damage and provides a new target in developing lncRNA-based strategies to reduce seizure-induced brain injury.
机译:颞叶癫痫(TLE)是顽固性癫痫的最常见类型之一,其特征是海马神经元损伤和海马硬化。长非编码RNA(lncRNA)已被越来越多地认为是转录后调控因子。但是,它们在TLE中的表达水平和功能仍然未知。在本研究中,使用TLE大鼠模型,通过微阵列分析来探索lncRNA在癫痫大鼠海马中的表达谱。我们的结果表明,H19是最显着分化的lncRNA,在TLE的潜伏期显着上调。此外,使用功能获得和丧失功能方法的体内研究表明,H19的过表达会加剧SE诱导的海马神经元凋亡,而H19的抑制则可以保护大鼠免受SE诱导的细胞损伤。最后,我们表明H19可能在海绵状微RNA let-7b的竞争性内源性RNA中调节细胞凋亡。总体而言,我们的研究揭示了癫痫发作诱发的神经损伤中由lncRNA H19介导的新型机制,并为开发基于lncRNA的减少癫痫发作所致脑损伤的策略提供了新的目标。

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