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一个整合的小鼠下丘脑室旁核单细胞 RNA-seq 图谱将转录组和功能类型联系起来。

An integrated single-cell RNA-seq atlas of the mouse hypothalamic paraventricular nucleus links transcriptomic and functional types.

机构信息

Division of Endocrinology, Department of Medicine, Leiden University Medical Centre, Leiden, The Netherlands.

Department of Human Genetics, Leiden University Medical Centre, Leiden, The Netherlands.

出版信息

J Neuroendocrinol. 2024 Feb;36(2):e13367. doi: 10.1111/jne.13367. Epub 2024 Jan 28.

Abstract

The hypothalamic paraventricular nucleus (PVN) is a highly complex brain region that is crucial for homeostatic regulation through neuroendocrine signaling, outflow of the autonomic nervous system, and projections to other brain areas. In the past years, single-cell datasets of the hypothalamus have contributed immensely to the current understanding of the diverse hypothalamic cellular composition. While the PVN has been adequately classified functionally, its molecular classification is currently still insufficient. To address this, we created a detailed atlas of PVN transcriptomic cell types by integrating various PVN single-cell datasets into a recently published hypothalamus single-cell transcriptome atlas. Furthermore, we functionally profiled transcriptomic cell types, based on relevant literature, existing retrograde tracing data, and existing single-cell data of a PVN-projection target region. Finally, we validated our findings with immunofluorescent stainings. In our PVN atlas dataset, we identify the well-known different neuropeptide types, each composed of multiple novel subtypes. We identify Avp-Tac1, Avp-Th, Oxt-Foxp1, Crh-Nr3c1, and Trh-Nfib as the most important neuroendocrine subtypes based on markers described in literature. To characterize the preautonomic functional population, we integrated a single-cell retrograde tracing study of spinally projecting preautonomic neurons into our PVN atlas. We identify these (presympathetic) neurons to cocluster with the Adarb2 clusters in our dataset. Further, we identify the expression of receptors for Crh, Oxt, Penk, Sst, and Trh in the dorsal motor nucleus of the vagus, a key region that the pre-parasympathetic PVN neurons project to. Finally, we identify Trh-Ucn3 and Brs3-Adarb2 as some centrally projecting populations. In conclusion, our study presents a detailed overview of the transcriptomic cell types of the murine PVN and provides a first attempt to resolve functionality for the identified populations.

摘要

下丘脑室旁核(PVN)是一个高度复杂的脑区,通过神经内分泌信号、自主神经系统的传出和向其他脑区的投射,对体内平衡调节至关重要。在过去的几年中,下丘脑的单细胞数据集极大地促进了人们对下丘脑细胞组成多样性的理解。虽然 PVN 已经在功能上得到了充分的分类,但它的分子分类目前仍然不足。为了解决这个问题,我们将各种 PVN 单细胞数据集整合到最近发表的下丘脑单细胞转录组图谱中,创建了一个详细的 PVN 转录组细胞类型图谱。此外,我们还根据相关文献、现有的逆行追踪数据和 PVN 投射靶区的现有单细胞数据,对转录组细胞类型进行了功能分析。最后,我们用免疫荧光染色来验证我们的发现。在我们的 PVN 图谱数据集中,我们识别出了众所周知的不同神经肽类型,每种类型又由多个新的亚型组成。根据文献中描述的标志物,我们确定 Avp-Tac1、Avp-Th、Oxt-Foxp1、Crh-Nr3c1 和 Trh-Nfib 是最重要的神经内分泌亚型。为了描述前自主功能群体,我们将一个对脊髓投射前自主神经元进行单细胞逆行追踪的研究整合到我们的 PVN 图谱中。我们发现这些(前交感)神经元与我们数据集内的 Adarb2 簇共聚类。此外,我们还发现了 Crh、Oxt、Penk、Sst 和 Trh 受体在迷走神经背核中的表达,迷走神经背核是 PVN 前副交感神经元投射的关键区域。最后,我们确定了 Trh-Ucn3 和 Brs3-Adarb2 是一些向中枢投射的群体。总之,我们的研究提供了一个关于小鼠 PVN 转录组细胞类型的详细概述,并首次尝试为鉴定出的群体解析功能。

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