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miR-34a regulates cell proliferation morphology and function of newborn neurons resulting in improved behavioural outcomes

机译:miR-34a调节新生神经元的细胞增殖形态和功能从而改善行为结果

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摘要

miR-34a is involved in the regulation of the fate of different cell types. However, the mechanism by which it controls the differentiation programme of neural cells remains largely unknown. Here, we investigated the role of miR-34a in neurogenesis and maturation of developing neurons and identified Doublecortin as a new miR-34a target. We found that the overexpression of miR-34a in vitro significantly increases precursor proliferation and influences morphology and function of developing neurons. Indeed, miR-34a overexpressing neurons showed a decreased expression of several synaptic proteins and receptor subunits, a decrement of NMDA-evoked current density and, interestingly, a more efficient response to synaptic stimulus. In vivo, miR-34a overexpression showed stage-specific effects. In neural progenitors, miR-34a overexpression promoted cell proliferation, in migratory neuroblasts reduced the migration and in differentiating newborn neurons modulated process outgrowth and complexity. Importantly, we found that rats overexpressing miR-34a in the brain have better learning abilities and reduced emotionality.
机译:miR-34a参与不同细胞类型命运的调控。但是,其控制神经细胞分化程序的机制仍然未知。在这里,我们研究了miR-34a在发育神经元的神经发生和成熟中的作用,并将Doublecortin确定为新的miR-34a靶标。我们发现,miR-34a在体外的过表达显着增加了前体增殖,并影响了发育中的神经元的形态和功能。确实,miR-34a过表达的神经元显示出几种突触蛋白和受体亚基的表达降低,NMDA诱发的电流密度降低,并且有趣的是,对突触刺激的反应更加有效。在体内,miR-34a过表达表现出阶段特异性作用。在神经祖细胞中,miR-34a的过表达促进细胞增殖,在迁徙的神经母细胞中则减少了迁移,在分化新生神经元的过程中调节了过程的生长和复杂性。重要的是,我们发现大鼠大脑中过表达miR-34a的大鼠具有更好的学习能力并降低了情绪。

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