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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >ASPP1/2 regulate p53-dependent death of retinal ganglion cells through PUMA and Fas/CD95 activation In Vivo
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ASPP1/2 regulate p53-dependent death of retinal ganglion cells through PUMA and Fas/CD95 activation In Vivo

机译:ASPP1 / 2通过PUMA和Fas / CD95体内激活来调节p53依赖的视网膜神经节细胞死亡

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The transcription factor p53 mediates neuronal death in a variety of stress-related and neurodegenerative conditions. The proapoptotic activity of p53 is tightly regulated by the apoptosis-stimulating proteins of p53 (ASPP) family members: ASPP1 and ASPP2. However, whether ASPP1/2 play a role in the regulation of p53-dependent neuronal death in the CNS is currently unknown. To address this, we asked whether ASPP1/2 contribute to the death of retinal ganglion cells (RGCs) using in vivo models of acute optic nerve damage in mice and rats. Here, we show that p53 is activated in RGCs soon after injury and that axotomy-induced RGC death is attenuated in p53 heterozygote and null mice. We demonstrate that ASPP1/2 proteins are abundantly expressed by injured RGCs, and that short interfering (si)RNA-based ASPP1 or ASPP2 knockdown promotes robust RGC survival. Comparative gene expression analysis revealed that siASPPmediated downregulation of p53-upregulated-modulator-of-apoptosis (PUMA), Fas/CD95, and Noxa depends on p53 transcriptional activity. Furthermore, siRNA against PUMA or Fas/CD95 confers neuroprotection, demonstrating a functional role for these p53 targets in RGC death. Our study demonstrates a novel role for ASPP1 and ASPP2 in the death of RGCs and provides evidence that blockade of the ASPP-p53 pathway is beneficial for central neuron survival after axonal injury.
机译:转录因子p53在各种压力相关和神经退行性疾病中介导神经元死亡。 p53的促凋亡活性受到p53(ASPP)家族成员ASPP1和ASPP​​2的凋亡刺激蛋白的调控。但是,目前尚不清楚ASPP1 / 2是否在中枢神经系统中调节p53依赖性神经元死亡中发挥作用。为了解决这个问题,我们使用小鼠和大鼠的急性视神经损伤的体内模型来询问ASPP1 / 2是否有助于视网膜神经节细胞(RGC)的死亡。在这里,我们显示p53在受伤后不久在RGCs中被激活,并且在p53杂合子和无效小鼠中,轴突切开诱导的RGC死亡减弱。我们证明ASPP1 / 2蛋白由受伤的RGC大量表达,并且基于短干扰(si)RNA的ASPP1或ASPP2组合可促进健壮的RGC生存。比较基因表达分析表明,siASPP介导的p53上调的细胞凋亡调节剂(PUMA),Fas / CD95和Noxa的下调取决于p53转录活性。此外,针对PUMA或Fas / CD95的siRNA赋予了神经保护作用,证明了这些p53靶标在RGC死亡中的功能性作用。我们的研究表明ASPP1和ASPP​​2在RGC的死亡中具有新的作用,并提供证据表明ASPP-p53途径的阻断对轴突损伤后中枢神经元的存活是有益的。

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