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Notch signaling in response to excitotoxicity induces neurodegeneration via erroneous cell cycle reentry

机译:响应兴奋毒性的凹口信号传导通过错误的细胞周期再入诱导神经变性

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摘要

Neurological disorders such as Alzheimer's disease, stroke and epilepsy are currently marred by the lack of effective treatments to prevent neuronal death. Erroneous cell cycle reentry (CCR) is hypothesized to have a causative role in neurodegeneration. We show that forcing S-phase reentry in cultured hippocampal neurons is sufficient to induce neurodegeneration. We found that kainic-acid treatment in vivo induces erroneous CCR and neuronal death through a Notch-dependent mechanism. Ablating Notch signaling in neurons provides neuroprotection against kainic acid-induced neuronal death. We further show that kainic-acid treatment activates Notch signaling, which increases the bioavailability of CyclinD1 through Akt/GSK3 beta pathway, leading to aberrant CCR via activation of CyclinD1-Rb-E2F1 axis. In addition, pharmacological blockade of this pathway at critical steps is sufficient to confer resistance to kainic acid-induced neurotoxicity in mice. Taken together, our results demonstrate that excitotoxicity leads to neuronal death in a Notch-dependent manner through erroneous CCR.
机译:目前缺乏有效治疗方法,目前患有阿尔茨海默病,中风和癫痫症等神经疾病,以防止神经元死亡。错误的细胞周期再入(CCR)被假设为在神经变性中具有致病作用。我们表明,培养的海马神经元中的迫使S相工再入足以诱导神经变性。我们发现在体内的Kainic-酸治疗通过凹口依赖性机制诱导错误的CCR和神经元死亡。神经元中的消融陷波信号传导为神经保护导致Kainic酸诱导的神经元死亡。我们进一步表明,Kainic酸治疗激活了Notch信号传导,这增加了Cyclind1至Akt /GSK3β途径的生物利用度,导致异常CCR通过环帘1-RB-E2F1轴的活化。此外,在临界步骤下该途径的药理阻滞足以赋予小鼠抗链酸诱导的神经毒性的抗性。我们的结果表明,兴奋性毒性通过错误的CCR导致缺口依赖性方式导致神经元死亡。

著录项

  • 来源
    《Cell death and differentiation》 |2015年第11期|共10页
  • 作者单位

    Univ Fribourg Inst Anat Dept Med CH-1700 Fribourg Switzerland;

    NINDS Receptor Biol Sect NIH Bethesda MD 20892 USA;

    Univ Fribourg Inst Anat Dept Med CH-1700 Fribourg Switzerland;

    Univ Fribourg Inst Anat Dept Med CH-1700 Fribourg Switzerland;

    Univ Fribourg Inst Anat Dept Med CH-1700 Fribourg Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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