Center for the Neurobiology of Addiction, Pain, and Emotion, Department of Anesthesiology and Pain Medicine, Department of Pharmacology, University of Washington, Seattle, WA 98195, USA.
Center for the Neurobiology of Addiction, Pain, and Emotion, Department of Anesthesiology and Pain Medicine, Department of Pharmacology, University of Washington, Seattle, WA 98195, USA; Neuroscience Curriculum, University of North Carolina, Chapel Hill, Chapel Hill, NC 27599, USA.
Neuron. 2020 Jun 3;106(5):743-758.e5. doi: 10.1016/j.neuron.2020.03.011. Epub 2020 Apr 8.
The habenula complex is appreciated as a critical regulator of motivated and pathological behavioral states via its output to midbrain nuclei. Despite this, transcriptional definition of cell populations that comprise both the medial habenular (MHb) and lateral habenular (LHb) subregions in mammals remain undefined. To resolve this, we performed single-cell transcriptional profiling and highly multiplexed in situ hybridization experiments of the mouse habenula complex in naive mice and those exposed to an acute aversive stimulus. Transcriptionally distinct neuronal cell types identified within the MHb and LHb, were spatially defined, differentially engaged by aversive stimuli, and had distinct electrophysiological properties. Cell types identified in mice also displayed a high degree of transcriptional similarity to those previously described in zebrafish, highlighting the well-conserved nature of habenular cell types across the phylum. These data identify key molecular targets within habenular cell types and provide a critical resource for future studies.
缰核复合体通过其对中脑核团的输出,被认为是调节动机和病理性行为状态的关键调节剂。尽管如此,哺乳动物中构成内侧缰核(MHb)和外侧缰核(LHb)亚区的细胞群体的转录定义仍未得到明确界定。为了解决这个问题,我们对未暴露于急性厌恶刺激的小鼠和暴露于急性厌恶刺激的小鼠的缰核复合体进行了单细胞转录谱分析和高度多重原位杂交实验。在 MHb 和 LHb 中鉴定出的具有不同转录特征的神经元细胞类型,在空间上是明确界定的,对厌恶刺激有不同程度的反应,并且具有不同的电生理特性。在小鼠中鉴定出的细胞类型与先前在斑马鱼中描述的细胞类型具有高度的转录相似性,突出了缰核细胞类型在整个门中的高度保守性。这些数据确定了缰核细胞类型中的关键分子靶标,并为未来的研究提供了重要资源。