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Dentate gyrus neurogenesis, integration and microRNAs

机译:齿状回神经发生,整合和microRNA

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Neurons are born and become a functional part of the synaptic circuitry in adult brains. The proliferative phase of neurogenesis has been extensively reviewed. We therefore focus this review on a few topics addressing the functional role of adult-generated newborn neurons in the dentate gyrus. We discuss the evidence for a link between neurogenesis and behavior. We then describe the steps in the integration of newborn neurons into a functioning mature synaptic circuit. Given the profound effects of neural activity on the differentiation and integration of newborn neurons, we discuss the role of activity-dependent gene expression in the birth and maturation of newborn neurons. The differentiation and maturation of newborn neurons likely involves the concerted action of many genes. Thus we focus on transcription factors that can direct large changes to the transcriptome, and microRNAs, a newly-discovered class of molecules that can effect the expression of hundreds of genes. How microRNAs affect the generation and integration of newborn neurons is just being explored, but there are compelling clues hinting at their involvement.
机译:神经元诞生并成为成人大脑中突触回路的功能部分。神经发生的增生阶段已被广泛审查。因此,我们将本综述的重点放在解决成年新生新生神经元在齿状回中的功能作用的几个主题上。我们讨论了神经发生与行为之间联系的证据。然后,我们描述了将新生神经元整合到功能成熟的突触回路中的步骤。鉴于神经活动对新生神经元的分化和整合的深远影响,我们讨论了活动依赖基因表达在新生神经元的出生和成熟中的作用。新生神经元的分化和成熟可能涉及许多基因的协同作用。因此,我们专注于可以直接导致转录组发生重大变化的转录因子,以及microRNA(一种新发现的可以影响数百个基因表达的分子)。刚刚探讨了microRNA如何影响新生神经元的生成和整合,但是有令人信服的线索暗示了它们的参与。

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