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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The E2F-Cdc2 cell-cycle pathway specifically mediates activity deprivation-induced apoptosis of postmitotic neurons.
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The E2F-Cdc2 cell-cycle pathway specifically mediates activity deprivation-induced apoptosis of postmitotic neurons.

机译:E2F-Cdc2细胞周期途径专门介导有丝分裂后神经元的活动剥夺诱导的细胞凋亡。

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Neuronal apoptosis plays a critical role in the normal development of the mammalian brain and is thought to contribute to the pathogenesis of several neurologic disorders. However, the intracellular mechanisms underlying apoptosis of neurons remain incompletely understood. In the present study, we characterized a cell-cycle-based mechanism by which neuronal activity deprivation induces apoptosis of postmitotic neurons. Activity deprivation, but not growth factor withdrawal, was found to induce Cdc2 expression and consequent Cdc2-mediated apoptosis in granule neurons of the developing rat cerebellum. We found that activity deprivation induces cdc2 transcription in neurons via an E2F-binding element (EBE) within the cdc2 promoter. The transcription factor E2F1 that is expressed in granule neurons was found in DNA binding assays to bind to the EBE of the cdc2 gene. In chromatin immunoprecipitation analysis, endogenous E2F1 forms a complex with the promoter of the endogenous cdc2 gene in granule neurons, indicating that endogenous E2F1 is poised to activate transcription of the endogenous cdc2 gene in neurons. Consistent with this conclusion, a dominant interfering form of E2F, when expressed in granule neurons, blocked activity deprivation-induced cdc2 transcription. In other experiments, we found that the expression of E2F1 in granule neurons induces Cdc2 expression and promotes neuronal apoptosis via the activation of Cdc2. Remarkably, in contrast to inducing the E2F-mediated expression and activation of Cdc2 in granule neurons, activity deprivation fails to stimulate the expression of E2F-target genes that trigger DNA synthesis and replication. Together, our findings define a novel apoptotic mechanism whereby E2F selectively couples an activity deprivation-induced signal to cdc2 transcription in the absence of stimulating DNA synthesis and thus culminating in Cdc2-mediated apoptosis of postmitotic neurons.
机译:神经元凋亡在哺乳动物脑的正常发育中起关键作用,并被认为是导致几种神经系统疾病的发病机理。但是,仍未完全了解神经元凋亡的细胞内机制。在本研究中,我们表征了一种基于细胞周期的机制,通过该机制,神经元活动被剥夺诱导有丝分裂后神经元的凋亡。发现活动剥夺,但不是生长因子的撤回,在发育中的大鼠小脑颗粒神经元中诱导Cdc2表达并因此诱导Cdc2介导的细胞凋亡。我们发现活动剥夺通过cdc2启动子内的E2F结合元件(EBE)诱导神经元中的cdc2转录。在DNA结合试验中发现了在颗粒神经元中表达的转录因子E2F1与cdc2基因的EBE结合。在染色质免疫沉淀分析中,内源性E2F1与颗粒神经元中内源性cdc2基因的启动子形成复合物,表明内源性E2F1有望激活神经元中内源性cdc2基因的转录。与该结论一致,当在颗粒神经元中表达时,E2F的主要干扰形式阻止了活动剥夺诱导的cdc2转录。在其他实验中,我们发现颗粒神经元中E2F1的表达诱导Cdc2表达并通过Cdc2的激活促进神经元凋亡。值得注意的是,与在颗粒神经元中诱导E2F介导的Cdc2表达和Cdc2激活相反,活动剥夺不能刺激触发DNA合成和复制的E2F靶基因的表达。在一起,我们的发现定义了一种新的凋亡机制,在没有刺激性DNA合成的情况下,E2F选择性地将活动剥夺诱导的信号与cdc2转录偶联,从而最终导致有丝分裂后神经元的Cdc2介导的凋亡。

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