首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Neuronal Per Arnt Sim (PAS) Domain Protein 4 (NPAS4) Regulates Neurite Outgrowth and Phosphorylation of Synapsin I
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Neuronal Per Arnt Sim (PAS) Domain Protein 4 (NPAS4) Regulates Neurite Outgrowth and Phosphorylation of Synapsin I

机译:Neuronal Per Arnt Sim(PAS)域蛋白4(NPAS4)调节突触素I的神经突生长和磷酸化。

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摘要

Neuronal Per Arnt Sim domain protein 4 (NPAS4), a brain-specific basic helix-loop-helix transcription factor, has recently been shown to regulate the development of the GABAergic inhibitory synapses and transcription program for contextual memory formation in the hippocampus. We previously reported that chronic social isolation or restriction stress in mice resulted in an impairment in memory and emotional behavior, which was associated with a decrease in Npas4 mRNA levels. In this study, we investigated the role of NPAS4 in neuronal function in vitro and in vivo. Differentiation medium-induced neurite outgrowth was inhibited in Npas4 knockdown Neuro2a cells, whereas overexpression of NPAS4 accelerated the neurite outgrowth in Neuro2a cells. Furthermore, depolarization-induced neurite outgrowth was abolished in Npas4 KO hippocampal neurons. NPAS4 overexpression increased cyclin-dependent kinase 5 (CDK5)-dependent synapsin I phosphorylation in Neuro2a cells and primary cultured hippocampal neurons. A CDK5 inhibitor, roscovitine, inhibited the neurite outgrowth and the increase in phosphorylated synapsin I (p-SYN I) levels in Npas4-overexpressed Neuro2a cells. Interaction of NPAS4 with promoters of Cdk5 and NeuN genes was demonstrated by a chromatin immunoprecipitation assay. In an in vivo study, pentylenetetrazole-induced convulsions in mice resulted in an increase in NPAS4 and p-SYN I levels in the prefrontal cortex of wild-type mice, although no changes in p-SYN I levels were observed in Npas4 knock-out mice. These results suggest that NPAS4 plays an important role in the structural and functional plasticity of neurons.
机译:最近发现,神经元Per Arnt Sim域蛋白4(NPAS4)是大脑特异性的基本螺旋-环-螺旋转录因子,可调节GABA抑制性突触和海马中上下文记忆形成的转录程序。我们以前曾报道过,小鼠的长期社交孤立或限制压力导致记忆力和情绪行为的损害,这与Npas4 mRNA水平的降低有关。在这项研究中,我们调查了NPAS4在体外和体内神经元功能中的作用。分化培养基诱导的神经突生长在Npas4敲除的Neuro2a细胞中被抑制,而NPAS4的过表达加速了Neuro2a细胞的神经突生长。此外,在Npas4 KO海马神经元中消除了去极化引起的神经突增生。 NPAS4过表达增加Neuro2a细胞和原代培养海马神经元中细胞周期蛋白依赖性激酶5(CDK5)依赖性突触蛋白I磷酸化。 CDK5抑制剂roscovitine抑制Npas4过表达的Neuro2a细胞中的神经突生长和磷酸化突触蛋白I(p-SYN I)水平的增加。 NPAS4与Cdk5和NeuN基因启动子的相互作用已通过染色质免疫沉淀试验证明。在一项体内研究中,戊四氮诱发的小鼠惊厥导致野生型小鼠前额叶皮层NPAS4和p-SYN I水平升高,尽管在Npas4基因敲除中未观察到p-SYN I水平变化老鼠。这些结果表明,NPAS4在神经元的结构和功能可塑性中起重要作用。

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