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miRNAs: from neurogeneration to neurodegeneration

机译:miRNA:从神经发生到神经变性

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miRNAs are reported to sequence-specifically control the translation of target mRNAs by binding to 3' UTRs. The abundant expression of miRNAs in the brain highlights their biological significance in neurodevelopment. Many studies have shown that miRNAs are involved in a variety of functions, including developmental transitions and neuronal patterning, apoptosis, fat metabolism and regulation of hematopoietic lineage differentiation in different organisms. miRNAs act as regulatory switches in the determination of developmental fate through their distinct patterns of expression. The tissue-specific expression of miRNAs during brain development could possibly direct the development of cells in different subtypes. Several miRNAs are localized to neuronal subtypes and exhibit a more diverse or specific expression pattern within various neuronal cell types such as glial cells and neuronal progenitor cells. Perturbations in the expression pattern of miRNAs could lead to defects in human brain development and neurological disorders. The bioinformatic prediction tools suggest that some genes involved in synaptic formations and mental retardation are putative targets for miRNAs. miRNAs have been shown to specify cell fates in the nervous system of worms and brain morphogenesis in fish, and their distinct expression patterns during mammalian brain development. This suggests a potential role of miRNAs in neurodevelopment of mammals and other organisms. In this review, I have focused on the role of miRNAs in brain development and possible neurological disorders.
机译:据报道,miRNA通过与3'UTR结合来序列特异性地控制目标mRNA的翻译。 miRNA在大脑中的大量表达突出了它们在神经发育中的生物学意义。许多研究表明,miRNA参与多种功能,包括发育转变和神经元模式,凋亡,脂肪代谢以及不同生物体中造血谱系分化的调控。 miRNA通过其独特的表达方式,在决定发育命运时充当调节开关。在大脑发育过程中,miRNA的组织特异性表达可能会指导不同亚型的细胞发育。几种miRNA定位于神经元亚型,并在各种神经元细胞类型(例如神经胶质细胞和神经元祖细胞)中表现出更加多样化或特异性的表达模式。 miRNA表达模式的扰动可能导致人脑发育和神经系统疾病的缺陷。生物信息学预测工具表明,一些与突触形成和智力低下有关的基因是miRNA的假定靶标。已显示miRNA可以确定蠕虫神经系统中的细胞命运和鱼类的脑形态发生,以及它们在哺乳动物大脑发育过程中的独特表达方式。这表明miRNA在哺乳动物和其他生物体神经发育中的潜在作用。在这篇综述中,我集中于miRNA在大脑发育和可能的神经系统疾病中的作用。

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