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端脑γ-氨基丁酸能神经元类型的转录组学和空间组织

The transcriptomic and spatial organization of telencephalic GABAergic neuronal types.

作者信息

van Velthoven Cindy T J, Gao Yuan, Kunst Michael, Lee Changkyu, McMillen Delissa, Chakka Anish Bhaswanth, Casper Tamara, Clark Michael, Chakrabarty Rushil, Daniel Scott, Dolbeare Tim, Ferrer Rebecca, Gloe Jessica, Goldy Jeff, Guzman Junitta, Halterman Carliana, Ho Windy, Huang Mike, James Katelyn, Nguy Beagan, Pham Trangthanh, Ronellenfitch Kara, Thomas Eric D, Torkelson Amy, Pagan Chelsea M, Kruse Lauren, Dee Nick, Ng Lydia, Waters Jack, Smith Kimberly A, Tasic Bosiljka, Yao Zizhen, Zeng Hongkui

机构信息

Allen Institute for Brain Science, Seattle, WA, USA.

出版信息

bioRxiv. 2024 Jun 18:2024.06.18.599583. doi: 10.1101/2024.06.18.599583.

Abstract

The telencephalon of the mammalian brain comprises multiple regions and circuit pathways that play adaptive and integrative roles in a variety of brain functions. There is a wide array of GABAergic neurons in the telencephalon; they play a multitude of circuit functions, and dysfunction of these neurons has been implicated in diverse brain disorders. In this study, we conducted a systematic and in-depth analysis of the transcriptomic and spatial organization of GABAergic neuronal types in all regions of the mouse telencephalon and their developmental origins. This was accomplished by utilizing 611,423 single-cell transcriptomes from the comprehensive and high-resolution transcriptomic and spatial cell type atlas for the adult whole mouse brain we have generated, supplemented with an additional single-cell RNA-sequencing dataset containing 99,438 high-quality single-cell transcriptomes collected from the pre- and postnatal developing mouse brain. We present a hierarchically organized adult telencephalic GABAergic neuronal cell type taxonomy of 7 classes, 52 subclasses, 284 supertypes, and 1,051 clusters, as well as a corresponding developmental taxonomy of 450 clusters across different ages. Detailed charting efforts reveal extraordinary complexity where relationships among cell types reflect both spatial locations and developmental origins. Transcriptomically and developmentally related cell types can often be found in distant and diverse brain regions indicating that long-distance migration and dispersion is a common characteristic of nearly all classes of telencephalic GABAergic neurons. Additionally, we find various spatial dimensions of both discrete and continuous variations among related cell types that are correlated with gene expression gradients. Lastly, we find that cortical, striatal and some pallidal GABAergic neurons undergo extensive postnatal diversification, whereas septal and most pallidal GABAergic neuronal types emerge simultaneously during the embryonic stage with limited postnatal diversification. Overall, the telencephalic GABAergic cell type taxonomy can serve as a foundational reference for molecular, structural and functional studies of cell types and circuits by the entire community.

摘要

哺乳动物大脑的端脑由多个区域和神经回路组成,这些区域和回路在多种脑功能中发挥着适应性和整合性作用。端脑中存在大量的γ-氨基丁酸(GABA)能神经元;它们发挥着多种神经回路功能,并且这些神经元的功能障碍与多种脑部疾病有关。在本研究中,我们对小鼠端脑所有区域的GABA能神经元类型的转录组学和空间组织及其发育起源进行了系统深入的分析。这是通过利用我们生成的成年全小鼠脑的全面且高分辨率的转录组学和空间细胞类型图谱中的611,423个单细胞转录组来实现的,并补充了一个额外的单细胞RNA测序数据集,该数据集包含从出生前和出生后发育的小鼠脑中收集的99,438个高质量单细胞转录组。我们提出了一个层次化组织成7个类别、52个子类别、284个超类型和1,051个簇的成年端脑GABA能神经元细胞类型分类法,以及一个涵盖不同年龄的450个簇的相应发育分类法。详细的绘图工作揭示了非凡的复杂性,其中细胞类型之间的关系反映了空间位置和发育起源。在转录组学和发育上相关的细胞类型常常可以在遥远且多样的脑区中找到,这表明远距离迁移和分散是几乎所有类别的端脑GABA能神经元的共同特征。此外,我们发现相关细胞类型之间存在离散和连续变化的各种空间维度,这些维度与基因表达梯度相关。最后,我们发现皮质、纹状体和一些苍白球GABA能神经元在出生后经历了广泛的多样化,而隔区和大多数苍白球GABA能神经元类型在胚胎期同时出现,出生后多样化有限。总体而言,端脑GABA能细胞类型分类法可以作为整个领域对细胞类型和神经回路进行分子、结构和功能研究的基础参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/585c/11212977/60790e39d1a8/nihpp-2024.06.18.599583v1-f0007.jpg

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