首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Pim-1 kinase as activator of the cell cycle pathway in neuronal death induced by DNA damage.
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Pim-1 kinase as activator of the cell cycle pathway in neuronal death induced by DNA damage.

机译:Pim-1激酶是DNA损伤诱导的神经元死亡中细胞周期途径的激活剂。

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摘要

DNA damage is a critical component of neuronal death underlying neurodegenerative diseases and injury. Neuronal death evoked by DNA damage is characterized by inappropriate activation of multiple cell cycle components. However, the mechanism regulating this activation is not fully understood. We demonstrated previously that the cell division cycle (Cdc) 25A phosphatase mediates the activation of cyclin-dependent kinases and neuronal death evoked by the DNA damaging agent camptothecin. We also showed that Cdc25A activation is blocked by constitutive checkpoint kinase 1 activity under basal conditions in neurons. Presently, we report that an additional factor is central to regulation of Cdc25A phosphatase in neuronal death. In a gene array screen, we first identified Pim-1 as a potential factor up-regulated following DNA damage. We confirmed the up-regulation of Pim-1 transcript, protein and kinase activity following DNA damage. This induction of Pim-1 is regulated by the nuclear factor kappa beta (NF-kappaB) pathway as Pim-1 expression and activity are significantly blocked by siRNA-mediated knockdown of NF-kappaB or NF-kappaB pharmacological inhibitors. Importantly, Pim-1 activity is critical for neuronal death in this paradigm and its deficiency blocks camptothecin-mediated neuronal death. It does so by activating Cdc25A with consequent activation of cyclin D1-associated kinases. Taken together, our results demonstrate that Pim-1 kinase plays a central role in DNA damage-evoked neuronal death by regulating aberrant neuronal cell cycle activation.
机译:DNA损伤是导致神经退行性疾病和损伤的神经元死亡的重要组成部分。 DNA损伤引起的神经元死亡的特征在于多个细胞周期成分的不适当活化。但是,尚未完全了解调节这种激活的机制。我们以前证明了细胞分裂周期(Cdc)25A磷酸酶介导了细胞周期蛋白依赖性激酶的激活和DNA破坏剂喜树碱引起的神经元死亡。我们还显示,在基础条件下,神经元中的组成性检查点激酶1活性可阻断Cdc25A的激活。目前,我们报告一个额外的因素是神经元死亡中Cdc25A磷酸酶调节的核心。在基因阵列筛选中,我们首先确定Pim-1是DNA损伤后上调的潜在因子。我们证实DNA损伤后Pim-1转录,蛋白质和激酶活性上调。 Pim-1的这种诱导受核因子kappa beta(NF-kappaB)途径的调节,因为Pim-1的表达和活性被siRNA介导的NF-kappaB或NF-kappaB药理抑制剂的阻滞作用显着阻断。重要的是,在这种范例中,Pim-1活性对于神经元死亡至关重要,其缺乏会阻止喜树碱介导的神经元死亡。它通过激活Cdc25A并随后激活细胞周期蛋白D1相关激酶来实现。两者合计,我们的研究结果表明Pim-1激酶通过调节异常的神经元细胞周期激活,在DNA损伤诱发的神经元死亡中发挥重要作用。

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