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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Pot1a prevents telomere dysfunction and ATM-dependent neuronal loss
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Pot1a prevents telomere dysfunction and ATM-dependent neuronal loss

机译:Pot1a可防止端粒功能障碍和ATM依赖性神经元丢失

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摘要

Genome stability is essential for neural development and the prevention of neurological disease. Here we determined how DNA damage signaling from dysfunctional telomeres affects neurogenesis. We found that telomere uncapping by Pot1a inactivation resulted in an Atm-dependent loss of cerebellar interneurons and granule neuron precursors in the mouse nervous system. The activation of Atm by Pot1a loss occurred in an Atr-dependent manner, revealing an Atr to Atm signaling axis in the nervous system after telomere dysfunction. In contrast to telomere lesions, Brca2 inactivation in neural progenitors also led to ablation of cerebellar interneurons, but this did not require Atm. These data reveal that neural cell loss after DNA damage selectively engages Atm signaling, highlighting how specific DNA lesions can dictate neuropathology arising in human neurodegenerative syndromes.
机译:基因组稳定性对于神经发育和预防神经系统疾病至关重要。在这里,我们确定了功能障碍端粒的DNA损伤信号传导如何影响神经发生。我们发现,Pot1a失活可导致端粒解开,从而导致小鼠神经系统中小脑间神经元和颗粒神经元前体的Atm依赖性丧失。 Pot1a丢失对Atm的激活以Atr依赖性方式发生,表明端粒功能障碍后神经系统中的Atr到Atm信号轴。与端粒病变不同,神经祖细胞中的Brca2失活也导致小脑中间神经元的消融,但这不需要Atm。这些数据表明,DNA损伤后神经细胞的丢失选择性地参与了Atm信号传导,突显了特定的DNA损伤如何决定人类神经退行性综合症中发生的神经病理学。

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