College of Life Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China.
BGI-Shenzhen, Shenzhen, 518083, China.
Sci Rep. 2022 Nov 11;12(1):19358. doi: 10.1038/s41598-022-21496-7.
Understanding the phenotypic and functional diversity of cerebral cortical GABAergic neurons requires a comprehensive analysis of key transcriptional signatures and neuronal subtype identity. However, the diversity and conservation of GABAergic neurons across multiple mammals remain unclear. Here, we collected the single-nucleus RNA sequencing (snRNA-seq) datasets of cerebral cortex from human, macaque, mouse, and pig to identify the conserved neuronal cell types across species. After systematic analysis of the heterogeneity of GABAergic neurons, we defined four major conserved GABAergic neuron subclasses (Inc SST, Inc LAMP5, Inc PVALB, and Inc VIP) across species. We characterized the species-enriched subclasses of GABAergic neurons from four mammals, such as Inc Meis2 in mouse. Then, we depicted the genetic regulatory network (GRNs) of GABAergic neuron subclasses, which showed the conserved and species-specific GRNs for GABAergic neuron cell types. Finally, we investigated the GABAergic neuron subclass-specific expression modules of Alzheimer's disease (AD)-related genes in GABAergic neuron cell types. Overall, our study reveals the conserved and divergent GABAergic neuron subclasses and GRNs across multiple species and unravels the gene expression modules of AD-risk genes in GABAergic neuron subclasses, facilitating the GABAergic neurons research and clinical treatment.
要了解大脑皮层 GABA 能神经元的表型和功能多样性,需要对关键转录特征和神经元亚型身份进行全面分析。然而,多种哺乳动物的 GABA 能神经元的多样性和保守性仍不清楚。在这里,我们收集了来自人类、猕猴、小鼠和猪的大脑皮层的单细胞 RNA 测序 (snRNA-seq) 数据集,以鉴定跨物种保守的神经元细胞类型。在对 GABA 能神经元的异质性进行系统分析后,我们定义了跨物种的四个主要保守 GABA 能神经元亚类 (Inc SST、Inc LAMP5、Inc PVALB 和 Inc VIP)。我们对来自四种哺乳动物的 GABA 能神经元物种丰富亚类进行了特征描述,例如小鼠中的 Inc Meis2。然后,我们描绘了 GABA 能神经元亚类的遗传调控网络 (GRNs),这显示了 GABA 能神经元细胞类型的保守和物种特异性 GRNs。最后,我们研究了 GABA 能神经元细胞类型中与阿尔茨海默病 (AD) 相关基因的 GABA 能神经元亚类特异性表达模块。总的来说,我们的研究揭示了跨多种物种的保守和分歧的 GABA 能神经元亚类和 GRNs,并揭示了 AD 风险基因在 GABA 能神经元亚类中的基因表达模块,为 GABA 能神经元研究和临床治疗提供了便利。