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Deregulation of HDAC1 by p25/Cdk5 in neurotoxicity.

机译:p25 / Cdk5对HDAC1的神经毒性抑制作用。

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Aberrant cell-cycle activity and DNA damage are emerging as important pathological components in various neurodegenerative conditions. However, their underlying mechanisms are poorly understood. Here, we show that deregulation of histone deacetylase 1 (HDAC1) activity by p25/Cdk5 induces aberrant cell-cycle activity and double-strand DNA breaks leading to neurotoxicity. In a transgenic model for neurodegeneration, p25/Cdk5 activity elicited cell-cycle activity and double-strand DNA breaks that preceded neuronal death. Inhibition of HDAC1 activity by p25/Cdk5 was identified as an underlying mechanism for these events, and HDAC1 gain of function provided potent protection against DNA damage and neurotoxicity in cultured neurons and an in vivo model for ischemia. Our findings outline a pathological signaling pathway illustrating the importance of maintaining HDAC1 activity in the adult neuron. This pathway constitutes a molecular link between aberrant cell-cycle activity and DNA damage and is a potential target for therapeutics against diseases and conditions involving neuronal death.
机译:在各种神经退行性疾病中,异常的细胞周期活性和DNA损伤已成为重要的病理学成分。但是,对其基本机制了解甚少。在这里,我们显示,p25 / Cdk5对组蛋白脱乙酰基酶1(HDAC1)活性的失调诱导异常的细胞周期活性,双链DNA断裂导致神经毒性。在神经变性的转基因模型中,p25 / Cdk5活性引起细胞周期活性,并在神经元死亡之前引起双链DNA断裂。通过p25 / Cdk5抑制HDAC1活性被确定为这些事件的潜在机制,并且HDAC1的功能获得提供了针对DNA损伤和培养的神经元和体内缺血模型的神经毒性的有效保护。我们的发现概述了病理信号通路,阐明了在成人神经元中维持HDAC1活性的重要性。该途径构成异常细胞周期活性和DNA损伤之间的分子联系,并且是针对涉及神经元死亡的疾病和病症的治疗方法的潜在靶标。

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