4.7 Article

The genesis of cerebellar interneurons and the prevention of neural DNA damage require XRCC1

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NATURE NEUROSCIENCE
卷 12, 期 8, 页码 973-U35

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NATURE PUBLISHING GROUP
DOI: 10.1038/nn.2375

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资金

  1. US National Institutes of Health [NS-37956, CA-21765]
  2. Cancer Center [P30 CA21765]
  3. American Lebanese and Syrian Associated Charities of St. Jude Children's Research Hospital
  4. Medical Research Council [G0600776, G0400959]
  5. European Union Integrated Project on DNA Repair
  6. Wellcome Trust [085284]
  7. MRC [G0400959, G0600776] Funding Source: UKRI
  8. Medical Research Council [G0400959, G0600776] Funding Source: researchfish

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Defective responses to DNA single strand breaks underlie various neurodegenerative diseases. However, the exact role of this repair pathway during the development and maintenance of the nervous system is unclear. Using murine neural-specific inactivation of Xrcc1, a factor that is critical for the repair of DNA single strand breaks, we found a profound neuropathology that is characterized by the loss of cerebellar interneurons. This cell loss was linked to p53-dependent cell cycle arrest and occurred as interneuron progenitors commenced differentiation. Loss of Xrcc1 also led to the persistence of DNA strand breaks throughout the nervous system and abnormal hippocampal function. Collectively, these data detail the in vivo link between DNA single strand break repair and neurogenesis and highlight the diverse consequences of specific types of genotoxic stress in the nervous system.

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