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Nectin-3 modulates the structural plasticity of dentate granule cells and long-term memory

机译:Nectin-3调节齿状颗粒细胞的结构可塑性和长期记忆

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Nectin-3, a cell adhesion molecule enriched in hippocampal neurons, has been implicated in stress-related cognitive disorders. Nectin-3 is expressed by granule cells in the dentate gyrus (DG), but it remains unclear whether nectin-3 in DG modulates the structural plasticity of dentate granule cells and hippocampus-dependent memory. In this study, we found that DG nectin-3 expression levels were developmentally regulated and reduced by early postnatal stress exposure in adult mice. Most importantly, knockdown of nectin-3 levels in all DG neuron populations by adeno-associated virus (AAV) mimicked the cognitive effects of early-life stress, and impaired long-term spatial memory and temporal order memory. Moreover, AAV-mediated DG nectin-3 knockdown increased the density of doublecortin-immunoreactive differentiating cells under proliferation and calretinin-immunoreactive immature neurons, but markedly decreased calbindin immunoreactivity, indicating that nectin-3 modulates the differentiation and maturation of adult-born DG granule cells. Using retrovirus to target newly generated DG neurons, we found that selective nectin-3 knockdown in new DG neurons also impaired long-term spatial memory. In addition, suppressing nectin-3 expression in new DG neurons evoked a reduction of dendritic spines, especially thin spines. Our data indicate that nectin-3 expressed in DG neurons may modulate adult neurogenesis, dendritic spine plasticity and the cognitive effects of early-life stress.
机译:Nectin-3是一种富含海马神经元的细胞粘附分子,与压力相关的认知障碍有关。 Nectin-3由齿状回(DG)中的颗粒细胞表达,但尚不清楚DG中的Nectin-3是否调节齿状颗粒细胞的结构可塑性和海马依赖性记忆。在这项研究中,我们发现DG nectin-3的表达水平受成年小鼠早期产后应激暴露的调节和降低。最重要的是,腺相关病毒(AAV)降低了所有DG神经元群体中Nectin-3的水平,模仿了早期生活压力的认知作用,并损害了长期空间记忆和时间顺序记忆。此外,AAV介导的DG Nectin-3敲低增加了增殖和Calretinin免疫反应的未成熟神经元下双皮质素免疫反应分化细胞的密度,但显着降低了Calbindin免疫反应性,表明Nectin-3调节成年DG颗粒的分化和成熟。细胞。使用逆转录病毒靶向新生成的DG神经元,我们发现新DG神经元中的选择性nectin-3敲低也损害了长期空间记忆。另外,抑制新的DG神经元中nectin-3的表达引起树突棘,特别是细棘的减少。我们的数据表明,在DG神经元中表达的nectin-3可能调节成年神经发生,树突棘的可塑性和早期应激的认知作用。

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