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首页> 外文期刊>Cerebral cortex >Pea3 Transcription Factors, Etv4 and Etv5, Are Required for Proper Hippocampal Dendrite Development and Plasticity
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Pea3 Transcription Factors, Etv4 and Etv5, Are Required for Proper Hippocampal Dendrite Development and Plasticity

机译:PEA3转录因子,ETV4和ETV5是适当的海马枝晶开发和可塑性所必需的

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The proper formation and morphogenesis of dendrites is essential to the establishment of neuronal connectivity. We report that 2 members of the Pea3 family of transcription factors, Etv4 and Etv5, are expressed in hippocampal neurons during the main period of dendritogenesis, suggesting that they have a function in dendrite development. Here, we show that these transcription factors are physiological regulators of growth and arborization of pyramidal cell dendrites in the developing hippocampus. Gain and loss of function assays indicate that Etv4 and Etv5 are required for proper development of hippocampal dendritic arbors and spines. We have found that in vivo deletion of either Etv4 or Etv5 in hippocampal neurons causes deficits in dendrite size and complexity, which are associated with impaired cognitive function. Additionally, our data support the idea that Etv4 and Etv5 are part of a brain-derived neurotrophic factor-mediated transcriptional program required for proper hippocampal dendrite connectivity and plasticity.
机译:树突的适当形成和形态发生对于建立神经元连通性至关重要。我们报告说,在发生树突的主要时期,胚乳转录因子,ETV4和ETV5的2个成员在海马神经元中表达,表明它们在树突发型中具有功能。在这里,我们表明,这些转录因子是在发育海马中锥体细胞枝晶的生长和树脂植物的生理调节因子。功能测定的增益和丧失表明ETV4和ETV5是适当发展海马树突术术和刺。我们发现,在海马神经元中的ETV4或ETV5的体内缺失导致树枝状大小和复杂性的缺陷,这与认知功能受损相关。此外,我们的数据支持ETV4和ETV5是脑衍生的神经营养因子介导的转录程序的一部分所需的脑衍生的神经营养因子介导的转录程序的一部分。

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