Institute of Neuroscience, State Key Laboratory of Neuroscience, Center for Excellence in Brain Science and Intelligence Technology, Chinese Academy of Sciences, Shanghai, China.
University of Chinese Academy of Sciences, Beijing, China.
J Mol Cell Biol. 2019 Aug 19;11(8):636-648. doi: 10.1093/jmcb/mjy089.
The cerebellum is critical for controlling motor and non-motor functions via cerebellar circuit that is composed of defined cell types, which approximately account for more than half of neurons in mammals. The molecular mechanisms controlling developmental progression and maturation processes of various cerebellar cell types need systematic investigation. Here, we analyzed transcriptome profiles of 21119 single cells of the postnatal mouse cerebellum and identified eight main cell clusters. Functional annotation of differentially expressed genes revealed trajectory hierarchies of granule cells (GCs) at various states and implied roles of mitochondrion and ATPases in the maturation of Purkinje cells (PCs), the sole output cells of the cerebellar cortex. Furthermore, we analyzed gene expression patterns and co-expression networks of 28 ataxia risk genes, and found that most of them are related with biological process of mitochondrion and around half of them are enriched in PCs. Our results also suggested core transcription factors that are correlated with interneuron differentiation and characteristics for the expression of secretory proteins in glia cells, which may participate in neuronal modulation. Thus, this study presents a systematic landscape of cerebellar gene expression in defined cell types and a general gene expression framework for cerebellar development and dysfunction.
小脑对于通过小脑回路控制运动和非运动功能至关重要,小脑回路由特定的细胞类型组成,这些细胞类型约占哺乳动物神经元的一半以上。控制各种小脑细胞类型发育进展和成熟过程的分子机制需要系统研究。在这里,我们分析了出生后小鼠小脑的 21119 个单细胞的转录组谱,并鉴定出了 8 个主要的细胞簇。差异表达基因的功能注释揭示了颗粒细胞(GCs)在不同状态下的轨迹层次结构,并暗示了线粒体和 ATP 酶在浦肯野细胞(PCs)成熟过程中的作用,PCs 是小脑皮层的唯一输出细胞。此外,我们分析了 28 个共济失调风险基因的表达模式和共表达网络,发现它们中的大多数与线粒体的生物学过程有关,其中约一半在 PCs 中富集。我们的结果还表明了与中间神经元分化相关的核心转录因子,以及与胶质细胞中分泌蛋白表达相关的特征,它们可能参与神经元调节。因此,这项研究提供了小脑在特定细胞类型中的基因表达的系统图谱,以及小脑发育和功能障碍的一般基因表达框架。