Laboratory of Genetics, The Salk Institute for Biological Studies, La Jolla, California, USA.
Hippocampus. 2023 Apr;33(4):412-423. doi: 10.1002/hipo.23515. Epub 2023 Feb 22.
Immature dentate granule cells (DGCs) generated in the hippocampus during adulthood are believed to play a unique role in dentate gyrus (DG) function. Although immature DGCs have hyperexcitable membrane properties in vitro, the consequences of this hyperexcitability in vivo remain unclear. In particular, the relationship between experiences that activate the DG, such as exploration of a novel environment (NE), and downstream molecular processes that modify DG circuitry in response to cellular activation is unknown in this cell population. We first performed quantification of immediate early gene (IEG) proteins in immature (5-week-old) and mature (13-week-old) DGCs from mice exposed to a NE. Paradoxically, we observed lower IEG protein expression in hyperexcitable immature DGCs. We then isolated nuclei from active and inactive immature DGCs and performed single-nuclei RNA-Sequencing. Compared to mature nuclei collected from the same animal, immature DGC nuclei showed less activity-induced transcriptional change, even though they were classified as active based on expression of ARC protein. These results demonstrate that the coupling of spatial exploration, cellular activation, and transcriptional change differs between immature and mature DGCs, with blunted activity-induced changes in immature cells.
成年海马区中产生的未成熟颗粒细胞(DGCs)被认为在 DG 功能中发挥独特作用。尽管未成熟的 DGC 在体外具有超兴奋性的膜特性,但体内这种超兴奋性的后果尚不清楚。特别是,在该细胞群中,激活 DG 的经历(例如探索新环境(NE))与下游分子过程之间的关系尚不清楚,后者响应细胞激活来修饰 DG 回路。我们首先在暴露于 NE 的小鼠的未成熟(5 周龄)和成熟(13 周龄)DGC 中定量了即时早期基因(IEG)蛋白。矛盾的是,我们观察到超兴奋性未成熟 DGC 中的 IEG 蛋白表达较低。然后,我们从活跃和不活跃的未成熟 DGC 中分离出核,并进行了单细胞 RNA 测序。与从同一动物收集的成熟核相比,即使根据 ARC 蛋白的表达将未成熟 DGC 核分类为活跃,其活性诱导的转录变化也较少。这些结果表明,空间探索、细胞激活和转录变化之间的偶联在未成熟和成熟的 DGC 之间存在差异,而不成熟细胞的活性诱导变化减弱。