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Enhanced plasticity of mature granule cells reduces survival of newborn neurons in the adult mouse hippocampus

机译:成熟颗粒细胞的可塑性增强,降低了成年小鼠海马中新生神经元的存活

摘要

Dentate granule cells are born throughout life in the mammalian hippocampus. The integration of newborn neurons into the dentate circuit is activity-dependent and structural data characterizing synapse formation suggested that the survival of adult-born granule cells is regulated by competition for synaptic partners. Here we tested this hypothesis by using a mouse model with genetically enhanced plasticity of mature granule cells through temporally controlled expression of a nuclear inhibitor of protein phosphatase 1 (NIPP1*). Using thymidine analogues and retrovirus-mediated cell labeling, we show that synaptic integration and subsequent survival of newborn neurons is decreased in NIPP1*- expressing mice, suggesting that newborn neurons compete with pre-existing granule cells for stable integration. The data presented here provides experimental evidence for a long-standing hypothesis and suggest cellular competition as a key mechanism regulating the integration and survival of newborn granule cells in the adult mammalian hippocampus.
机译:齿状颗粒细胞终生生活在哺乳动物海马中。新生神经元整合到齿状回路是活动依赖的,表征突触形成的结构数据表明,成年颗粒细胞的存活受到突触伴侣竞争的调节。在这里,我们通过使用小鼠模型进行了这一假设的测试,该模型通过时间控制性表达蛋白磷酸酶1(NIPP1 *)的核表达,在基因上增强了成熟颗粒细胞的可塑性。使用胸苷类似物和逆转录病毒介导的细胞标记,我们表明新生鼠神经元的突触整合和随后的生存在表达NIPP1 *的小鼠中减少,这表明新生神经元与已有的颗粒细胞竞争稳定整合。本文提供的数据为长期的假设提供了实验证据,并表明细胞竞争是调节成年哺乳动物海马中新生颗粒细胞的整合和存活的关键机制。

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