首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Different requirements of functional telomeres in neural stem cells and terminally differentiated neurons
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Different requirements of functional telomeres in neural stem cells and terminally differentiated neurons

机译:神经干细胞中功能聚粒的不同要求和末端分化神经元

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Telomeres have been studied extensively in peripheral tissues, but their relevance in the nervous system remains poorly understood. Here, we examine the roles of telomeres at distinct stages of murine brain development by using lineage-specific genetic ablation of TRF2, an essential component of the shelterin complex that protects chromosome ends from the DNA damage response machinery. We found that functional telomeres are required for embryonic and adult neurogenesis, but their uncapping has surprisingly no detectable consequences on terminally differentiated neurons. Conditional knockout of TRF2 in post-mitotic immature neurons had virtually no detectable effect on circuit assembly, neuronal gene expression, and the behavior of adult animals despite triggering massive end-to-end chromosome fusions across the brain. These results suggest that telomeres are dispensable in terminally differentiated neurons and provide mechanistic insight into cognitive abnormalities associated with aberrant telomere length in humans.
机译:已经在外周组织中广泛研究了端粒,但它们在神经系统中的相关性仍然明白很差。在这里,我们通过使用TRF2的谱系特异性遗传烧蚀来检查端粒的角色,通过TRF2的谱系特异性遗传烧蚀,保护染色体末端从DNA损伤响应机械的灭绝来保护遮蔽络合物的基本组分。我们发现胚胎和成人神经发生所需的功能粒子,但它们的揭示性令人惊讶地对末端分化的神经元没有可检测的后果。在丝间未成熟的神经元后TRF2的条件敲除对电路组件,神经元基因表达以及成年动物的行为几乎没有可检测到的影响,尽管触发脑穿过大脑的大规模端到端染色体融合。这些结果表明,端粒在末端分化的神经元中可以分配,并提供对人类中异常端粒长度相关的认知异常的机械洞察。

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