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Dysregulation of microRNA metabolism in motor neuron diseases: Novel biomarkers and potential therapeutics

机译:运动神经元疾病中microRNA代谢失调:新型生物标志物和潜在疗法

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摘要

In the last 15 years, several classes of small regulatory RNAs have been identified, uncovering the widespread impact of non-coding elements in the human genome on cell homeostasis and human diseases. MicroRNAs (miRNAs) are a family of small, non-coding RNAs, which exert silencing of mRNA targets in a sequence-dependent fashion. Many miRNAs are specifically expressed in the central nervous system, where they display roles in differentiation, neuronal survival, neuronal plasticity and learning. On the other hand, deregulated miRNA/mRNA expression networks are deeply involved in neurodegeneration.Recent findings suggest a role for miRNAs in the pathogenesis of motor neuron diseases. In particular, cell-specific changes in miRNA profile are involved in the motor neuron disease phenotype and might be implicated in their selective vulnerability. Exploitation of noncoding RNAs, in particular miRNAs, for therapeutic strategies is being assessed for implementing current therapies. In this regard, the neuroprotective potential of certain miRNAs could represent a promising potential tool to improve therapies for motor-neuron diseases. This review focuses on emerging roles of miRNAs in motor neuron diseases and on their impact on neuron life-span and integrity.
机译:在过去的15年中,已经发现了几类小型调节RNA,揭示了人类基因组中非编码元素对细胞稳态和人类疾病的广泛影响。微小RNA(miRNA)是小型非编码RNA家族,它们以序列依赖的方式沉默mRNA靶标。许多miRNA在中枢神经系统中特异性表达,它们在分化,神经元存活,神经元可塑性和学习中发挥作用。另一方面,失调的miRNA / mRNA表达网络与神经退行性疾病密切相关。最近的发现表明,miRNA在运动神经元疾病的发病机理中具有重要作用。特别是,miRNA谱中的细胞特异性改变与运动神经元疾病表型有关,可能与它们的选择性脆弱性有关。目前正在评估将非编码RNA,特别是miRNA用于治疗策略,以实施当前的治疗方法。在这方面,某些miRNA的神经保护潜力可能代表一种有前途的潜在工具,可以改善运动神经元疾病的治疗方法。这篇综述着重于miRNA在运动神经元疾病中的新兴作用及其对神经元寿命和完整性的影响。

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