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The death receptor CD95 activates adult neural stem cells for working memory formation and brain repair.

机译:死亡受体CD95激活成人神经干细胞,用于工作记忆形成和大脑修复。

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Adult neurogenesis persists in the subventricular zone and the dentate gyrus and can be induced upon central nervous system injury. However, the final contribution of newborn neurons to neuronal networks is limited. Here we show that in neural stem cells, stimulation of the "death receptor" CD95 does not trigger apoptosis but unexpectedly leads to increased stem cell survival and neuronal specification. These effects are mediated via activation of the Src/PI3K/AKT/mTOR signaling pathway, ultimately leading to a global increase in protein translation. Induction of neurogenesis by CD95 was further confirmed in the ischemic CA1 region, in the naive dentate gyrus, and after forced expression of CD95L in the adult subventricular zone. Lack of hippocampal CD95 resulted in a reduction in neurogenesis and working memory deficits. Following global ischemia, CD95-mediated brain repair rescued behavioral impairment. Thus, we identify the CD95/CD95L system as an instructive signal for ongoing and injury-induced neurogenesis.
机译:成人神经发生持续存在于脑室下区域和齿状回,并可在中枢神经系统损伤时被诱导。但是,新生神经元对神经元网络的最终贡献是有限的。在这里,我们表明在神经干细胞中,“死亡受体” CD95的刺激不会触发细胞凋亡,但出乎意料地导致干细胞存活率和神经元规格的增加。这些作用是通过激活Src / PI3K / AKT / mTOR信号传导途径介导的,最终导致蛋白质翻译的整体增加。在缺血CA1区,幼稚齿状回中以及在成年脑室下区域强制表达CD95L之后,进一步证实了CD95诱导的神经发生。海马CD95的缺乏导致神经发生和工作记忆缺陷的减少。全局缺血后,CD95介导的脑修复可以挽救行为障碍。因此,我们将CD95 / CD95L系统确定为正在进行的和损伤诱导的神经发生的指导性信号。

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