首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Calsyntenin-1 regulates targeting of dendritic NMDA receptors and dendritic spine maturation in CA1 hippocampal pyramidal cells during postnatal development
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Calsyntenin-1 regulates targeting of dendritic NMDA receptors and dendritic spine maturation in CA1 hippocampal pyramidal cells during postnatal development

机译:Calsyntenin-1调节产后发育过程中CA1海马锥体细胞中树突状NMDA受体的靶向和树突棘的成熟

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摘要

Calsyntenin-1 is a transmembrane cargo-docking protein important for kinesin-1-mediated fast transport of membrane-bound organelles that exhibits peak expression levels at postnatal day 7. However, its neuronal function during postnatal development remains unknown. We generated a knock-out mouse to characterize calsyntenin-1 function in juvenile mice. In the absence of calsyntenin-1, synaptic transmission was depressed. To address the mechanism, evoked EPSPs were analyzed revealing a greater proportion of synaptic GluN2B subunit-containing receptors typical for less mature synapses. This imbalance was due to a disruption in calsyntenin-1-mediated dendritic transport of NMDA receptor subunits. As a consequence of increased expression of GluN2B subunits, NMDA receptor-dependent LTP was enhanced at Schaffer collateral-CA1 pyramidal cell synapses. Interestingly, these defects were accompanied by a decrease in dendritic arborization and increased proportions of immature filopodia-like dendritic protrusions at the expense of thin-type dendritic spines in CA1 pyramidal cells. Thus, these results highlight a key role for calsyntenin-1 in the transport of NMDA receptors to synaptic targets, which is necessary for the maturation of neuronal circuits during early development.
机译:Calsyntenin-1是跨膜货物对接蛋白,对于驱动蛋白1介导的膜结合细胞器的快速运输很重要,该蛋白在产后第7天达到峰值表达水平。但是,其在产后发育过程中的神经元功能仍然未知。我们生成了一个基因敲除小鼠来表征幼年小鼠中的calsyntenin-1功能。在没有Calsyntenin-1的情况下,突触传递受到抑制。为了解决该机制,分析了诱发的EPSP,揭示了较大比例的较不成熟的突触典型的含突触GluN2B亚基的受体。这种失衡是由于Calsyntenin-1介导的NMDA受体亚基的树突状运输受到破坏。由于GluN2B亚基表达增加,在Schaffer侧支CA1锥体细胞突触处NMDA受体依赖性LTP增强。有趣的是,这些缺陷伴随着树突状乔化的减少和未成熟丝状伪足样树突突出物比例的增加,而以CA1锥体细胞中的薄型树突棘为代价。因此,这些结果突出了Calsyntenin-1在NMDA受体向突触靶标转运中的关键作用,这对于早期发育过程中神经回路的成熟必不可少。

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