首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >Cadherin-13 Deficiency Increases Dorsal Raphe 5-HT Neuron Density and Prefrontal Cortex Innervation in the Mouse Brain
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Cadherin-13 Deficiency Increases Dorsal Raphe 5-HT Neuron Density and Prefrontal Cortex Innervation in the Mouse Brain

机译:Cadherin-13缺乏症会增加小鼠大脑中背缝5-HT神经元的密度和前额叶皮层神经支配。

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摘要

>Background: During early prenatal stages of brain development, serotonin (5-HT)-specific neurons migrate through somal translocation to form the raphe nuclei and subsequently begin to project to their target regions. The rostral cluster of cells, comprising the median and dorsal raphe (DR), innervates anterior regions of the brain, including the prefrontal cortex. Differential analysis of the mouse 5-HT system transcriptome identified enrichment of cell adhesion molecules in 5-HT neurons of the DR. One of these molecules, cadherin-13 (Cdh13) has been shown to play a role in cell migration, axon pathfinding, and synaptogenesis. This study aimed to investigate the contribution of Cdh13 to the development of the murine brain 5-HT system.>Methods: For detection of Cdh13 and components of the 5-HT system at different embryonic developmental stages of the mouse brain, we employed immunofluorescence protocols and imaging techniques, including epifluorescence, confocal and structured illumination microscopy. The consequence of CDH13 loss-of-function mutations on brain 5-HT system development was explored in a mouse model of Cdh13 deficiency.>Results: Our data show that in murine embryonic brain Cdh13 is strongly expressed on 5-HT specific neurons of the DR and in radial glial cells (RGCs), which are critically involved in regulation of neuronal migration. We observed that 5-HT neurons are intertwined with these RGCs, suggesting that these neurons undergo RGC-guided migration. Cdh13 is present at points of intersection between these two cell types. Compared to wildtype controls, Cdh13-deficient mice display increased cell densities in the DR at embryonic stages E13.5, E17.5, and adulthood, and higher serotonergic innervation of the prefrontal cortex at E17.5.>Conclusion: Our findings provide evidence for a role of CDH13 in the development of the serotonergic system in early embryonic stages. Specifically, we indicate that Cdh13 deficiency affects the cell density of the developing DR and the posterior innervation of the prefrontal cortex (PFC), and therefore might be involved in the migration, axonal outgrowth and terminal target finding of DR 5-HT neurons. Dysregulation of CDH13 expression may thus contribute to alterations in this system of neurotransmission, impacting cognitive function, which is frequently impaired in neurodevelopmental disorders including attention-deficit/hyperactivity and autism spectrum disorders.
机译:>背景:在大脑发育的产前早期阶段,5-羟色胺(5-HT)特异性神经元通过体位易位而迁移,形成网状核,随后开始投射至其靶区域。包含中缝和背缝(DR)的细胞的延髓簇神经支配大脑的前部区域,包括前额叶皮层。小鼠5-HT系统转录组的差异分析确定了DR的5-HT神经元中细胞粘附分子的富集。这些分子之一,钙粘着蛋白13(Cdh13)已显示在细胞迁移,轴突寻路和突触形成中起作用。这项研究旨在研究Cdh13对小鼠脑5-HT系统发育的贡献。>方法:用于检测小鼠不同胚胎发育阶段的Cdh13和5-HT系统组分。大脑,我们采用了免疫荧光方案和成像技术,包括落射荧光,共聚焦和结构照明显微镜。在Cdh13缺乏症的小鼠模型中探讨了CDH13功能丧失突变对脑5-HT系统发育的影响。 DR和radial神经胶质细胞(RGC)中的-HT特定神经元,这些神经元与神经元迁移的调节密切相关。我们观察到5-HT神经元与这些RGC交织在一起,表明这些神经元经历了RGC指导的迁移。 Cdh13存在于这两种细胞类型之间的交点。与野生型对照组相比,Cdh13缺陷型小鼠在胚胎期E13.5,E17.5和成年期的DR中细胞密度增加,在E17.5时前额叶皮层的血清素能神经支配性更高。>结论:我们的发现为CDH13在胚胎早期血清素能系统发育中的作用提供了证据。具体来说,我们表明Cdh13缺乏会影响正在发展的DR的细胞密度和前额叶皮层(PFC)的后神经支配,因此可能参与DR 5-HT神经元的迁移,轴突生长和终末靶点的发现。 CDH13表达的失调可能因此导致该神经传递系统的改变,影响认知功能,这在包括注意力缺陷/多动症和自闭症谱系障碍在内的神经发育障碍中经常受损。

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