Christenson Wick Zoé, Krook-Magnuson Esther
Epilepsy Curr. 2019 Mar-Apr;19(2):124-125. doi: 10.1177/1535759719835658.
Classes and Continua of Hippocampal CA1 Inhibitory Neurons Revealed by Single-Cell Transcriptomics Harris K, Hochgerner H, Skene NG, et al. PLoS Biol. 2018;16(6):e2006387. doi:10.1371/journal.pbio.2006387. Understanding any brain circuit will require a categorization of its constituent neurons. In hippocampal area CA1, at least 23 classes of GABAergic neurons have been proposed to date. However, this list may be incomplete; additionally, it is unclear whether discrete classes are sufficient to describe the diversity of cortical inhibitory neurons or whether continuous modes of variability are also required. We studied the transcriptomes of 3663 CA1 inhibitory cells, revealing 10 major GABAergic groups that divided into 49 fine-scale clusters. All previously described and several novel cell classes were identified, with 3 previously described classes unexpectedly found to be identical. A division into discrete classes, however, was not sufficient to describe the diversity of these cells, as continuous variation also occurred between and within classes. Latent factor analysis revealed that a single continuous variable could predict the expression levels of several genes, which correlated similarly with it across multiple cell types. Analysis of the genes correlating with this variable suggested it reflects a range from metabolically highly active faster-spiking cells that proximally target pyramidal cells to slower-spiking cells targeting distal dendrites or interneurons. These results elucidate the complexity of inhibitory neurons in one of the simplest cortical structures and show that characterizing these cells require continuous modes of variation as well as discrete cell classes.
单细胞转录组学揭示的海马CA1区抑制性神经元的类别与连续体 哈里斯·K、霍奇格纳·H、斯凯内·N·G等。《公共科学图书馆·生物学》。2018年;16(6):e2006387。doi:10.1371/journal.pbio.2006387。理解任何脑回路都需要对其组成神经元进行分类。迄今为止,在海马CA1区已提出至少23类GABA能神经元。然而,这个列表可能并不完整;此外,尚不清楚离散的类别是否足以描述皮质抑制性神经元的多样性,或者是否也需要连续的变异模式。我们研究了3663个CA1区抑制性细胞的转录组,揭示了10个主要的GABA能组,这些组又分为49个精细尺度的簇。所有先前描述的以及几个新的细胞类别都被识别出来,其中有3个先前描述的类别被意外发现是相同的。然而,划分为离散的类别不足以描述这些细胞的多样性,因为在类别之间和类别内部也存在连续变异。潜在因子分析表明,一个单一的连续变量可以预测几个基因的表达水平,这些基因在多种细胞类型中与该变量的相关性相似。对与该变量相关的基因的分析表明,它反映了一个范围,从代谢高度活跃、向锥体细胞近端投射的快速放电细胞到向远端树突或中间神经元投射的慢速放电细胞。这些结果阐明了最简单的皮质结构之一中抑制性神经元的复杂性,并表明表征这些细胞需要连续的变异模式以及离散的细胞类别。