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Single-Cell RNA-Seq Reveals Hypothalamic Cell Diversity

机译:单细胞RNA-Seq显示下丘脑细胞多样性

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The hypothalamus is one of the most complex brain structures involved in homeostatic regulation. Defining cell composition and identifying cell-type-specific transcriptional features of the hypothalamus is essential for understanding its functions and related disorders. Here, we report single-cell RNA sequencing results of adult mouse hypothalamus, which defines 11 non-neuronal and 34 neuronal cell clusters with distinct transcriptional signatures. Analyses of cell-type-specific transcriptomes reveal gene expression dynamics underlying oligodendrocyte differentiation and tanycyte subtypes. Additionally, data analysis provides a comprehensive view of neuropeptide expression across hypothalamic neuronal subtypes and uncover Crabp1^+ and Pax6^+ neuronal populations in specific hypothalamic sub-regions. Furthermore, we found food deprivation exhibited differential transcriptional effects among the different neuronal subtypes, suggesting functional specification of various neuronal subtypes. Thus, the work provides a comprehensive transcriptional perspective of adult hypothalamus, which serves as a valuable resource for dissecting cell-type-specific functions of this complex brain region.
机译:下丘脑是参与稳态调节的最复杂的大脑结构之一。定义下丘脑的细胞组成和识别特定于细胞类型的转录特征对于理解其功能和相关疾病至关重要。在这里,我们报告成年小鼠下丘脑的单细胞RNA测序结果,该结果定义了11个非神经元和34个具有不同转录特征的神经元细胞簇。细胞类型特异性转录组的分析揭示了少突胶质细胞分化和单核细胞亚型的基因表达动力学。另外,数据分析提供了跨下丘脑神经元亚型的神经肽表达的全面视图,并揭示了特定下丘脑亚区域中的Crabp1 ^ +和Pax6 ^ +神经元群体。此外,我们发现食物剥夺在不同的神经元亚型之间表现出不同的转录作用,表明各种神经元亚型的功能规格。因此,这项工作为成年下丘脑提供了全面的转录视角,这是解剖该复杂脑区域的细胞类型特异性功能的宝贵资源。

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