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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >The Emerging Field of Epitranscriptomics in Neurodevelopmental and Neuronal Disorders
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The Emerging Field of Epitranscriptomics in Neurodevelopmental and Neuronal Disorders

机译:转录组学在神经发育和神经元疾病中的新兴领域

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Analogous to DNA methylation and histone modifications, RNA modifications represent a novel layer of regulation of gene expression. The dynamic nature and increasing number of RNA modifications offer new possibilities to rapidly alter gene expression upon specific environmental changes. Recent lines of evidence indicate that modified RNA molecules and associated complexes regulating and “reading” RNA modifications play key roles in the nervous system of several organisms, controlling both, its development and function. Mutations in several human genes that modify transfer RNA (tRNA) have been linked to neurological disorders, in particular to intellectual disability. Loss of RNA modifications alters the stability of tRNA, resulting in reduced translation efficiency and generation of tRNA fragments, which can interfere with neuronal functions. Modifications present on messenger RNAs (mRNAs) also play important roles during brain development. They contribute to neuronal growth and regeneration as well as to the local regulation of synaptic functions. Hence, potential combinatorial effects of RNA modifications on different classes of RNA may represent a novel code to dynamically fine tune gene expression during brain function. Here we discuss the recent findings demonstrating the impact of modified RNAs on neuronal processes and disorders.
机译:类似于DNA甲基化和组蛋白修饰,RNA修饰代表了基因表达调控的新层。 RNA修饰的动态性质和数量不断增加,为在特定环境变化后迅速改变基因表达提供了新的可能性。最近的证据表明,修饰的RNA分子和调控和“读取” RNA修饰的相关复合物在几种生物体的神经系统中起着关键作用,同时控制着其发育和功能。修饰转移RNA(tRNA)的几种人类基因中的突变与神经系统疾病有关,尤其是与智力障碍有关。 RNA修饰的丢失会改变tRNA的稳定性,导致翻译效率降低和tRNA片段生成,从而可能干扰神经元功能。信使RNA(mRNA)上存在的修饰在大脑发育过程中也起着重要作用。它们有助于神经元的生长和再生以及对突触功能的局部调节。因此,RNA修饰对不同类别的RNA的潜在组合作用可能代表了一种新颖的代码,可以在大脑功能过程中动态微调基因表达。在这里,我们讨论了最近的发现,这些发现证明了修饰的RNA对神经元过程和疾病的影响。

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