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PMID: 24899707 已发表 · ppublish 英语

Pot1a prevents telomere dysfunction and ATM-dependent neuronal loss.

Lee Youngsoo, Brown Eric J, Chang Sandy, McKinnon Peter J

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.

关键词
ATM DNA damage cerebellum neural development telomeres
文献信息
期刊
The Journal of neuroscience : the official journal of the Society for Neuroscience
期刊简称
J Neurosci
发表日期
2014-07-25
收录日期
2014-06-06
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
8102140
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