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首页> 外文期刊>Scientific reports. >Postnatal dysregulation of Notch signal disrupts dendrite development of adult-born neurons in the hippocampus and contributes to memory impairment
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Postnatal dysregulation of Notch signal disrupts dendrite development of adult-born neurons in the hippocampus and contributes to memory impairment

机译:产后Notch信号失调会破坏海马中成年神经元的树突发育,并导致记忆障碍

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摘要

Deficits in the Notch pathway are involved in a number of neurologic diseases associated with mental retardation or/and dementia. The mechanisms by which Notch dysregulation are associated with mental retardation and dementia are poorly understood. We found that Notch1 is highly expressed in the adult-born immature neurons in the hippocampus of mice. Retrovirus mediated knockout of notch1 in single adult-born immature neurons decreases mTOR signaling and compromises their dendrite morphogenesis. In contrast, overexpression of Notch1 intracellular domain (NICD), to constitutively activate Notch signaling in single adult-born immature neurons, promotes mTOR signaling and increases their dendrite arborization. Using a unique genetic approach to conditionally and selectively knockout notch 1 in the postnatally born immature neurons in the hippocampus decreases mTOR signaling, compromises their dendrite morphogenesis, and impairs spatial learning and memory. Conditional overexpression of NICD in the postnatally born immature neurons in the hippocampus increases mTOR signaling and promotes dendrite arborization. These data indicate that Notch signaling plays a critical role in dendrite development of immature neurons in the postnatal brain, and dysregulation of Notch signaling in the postnatally born neurons disrupts their development and thus contributes to the cognitive deficits associated with neurological diseases.
机译:Notch途径的缺陷与许多与智力低下或/和痴呆有关的神经系统疾病有关。 Notch失调与智力低下和痴呆症相关的机制了解甚少。我们发现Notch1在小鼠海马的成年出生的未成熟神经元中高度表达。逆转录病毒介导的单个成年未成熟神经元中notch1的敲除降低mTOR信号传导并损害其树突形态发生。相比之下,Notch1细胞内域(NICD)的过表达,以组成性激活单个成年成年未成熟神经元中的Notch信号传导,促进mTOR信号传导并增加其树突状树状化。使用独特的遗传方法有条件和选择性地敲除海马中出生后出生的未成熟神经元中的缺口1会降低mTOR信号传导,损害其树突形态发生,并损害空间学习和记忆。在海马出生后出生的未成熟神经元中,NICD的条件性过表达增加了mTOR信号传导并促进了树突状乔化。这些数据表明,Notch信号在出生后脑中未成熟神经元的树突状发育中起关键作用,而出生后出生的神经元中Notch信号失调会破坏其发育,从而导致与神经系统疾病相关的认知缺陷。

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