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Single-Cell RNA-Seq Reveals Hypothalamic Cell Diversity

Cell Reports · 2017 · Vol. 18(13) · pp. 3227–3241
Renchao ChenXiaoji WuLan JiangYi Zhang

Abstract

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<sup>+</sup> and Pax6<sup>+</sup> 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.

Single-cell and spatial transcriptomicsCircadian rhythm and melatoninNeuroendocrine regulation and behaviorRNA-SeqCellRNADiversity (politics)Computational biologyBiologyTranscriptomeCell biologyGeneticsGene expression

MeSH terms

AgingAnimalsCell DifferentiationFemaleFood DeprivationGene Expression RegulationHypothalamusMaleMice, Inbred C57BLNeuronsNeuropeptidesOligodendrogliaTranscription, GeneticSequence Analysis, RNASingle-Cell Analysis

Funding

  • Howard Hughes Medical Institute
  • National Institutes of Health
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