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异质性蓝斑周围神经元调节觉醒和探索行为。

Heterogeneous pericoerulear neurons tune arousal and exploratory behaviours.

作者信息

Luskin Andrew T, Li Li, Fu Xiaonan, Martin Madison M, Barcomb Kelsey, Girven Kasey S, Blackburn Taylor, Wells Bailey A, Thai Sarah T, Li Esther M, Rana Akshay N, Simon Rhiana C, Sun Li, Gao Lei, Murry Alexandria D, Golden Sam A, Stuber Garret D, Ford Christopher P, Gu Liangcai, Bruchas Michael R

机构信息

Department of Anesthesiology and Pain Medicine, University of Washington, Seattle, WA, USA.

Center for Neurobiology of Addiction, Pain, and Emotion, University of Washington, Seattle, WA, USA.

出版信息

Nature. 2025 May 7. doi: 10.1038/s41586-025-08952-w.

Abstract

As the primary source of noradrenaline in the brain, the locus coeruleus (LC) regulates arousal, avoidance and stress responses. However, how local neuromodulatory inputs control LC function remains unresolved. Here we identify a population of transcriptionally, spatially and functionally diverse GABAergic (γ-aminobutyric acid-producing) neurons in the LC dendritic field that receive distant inputs and modulate modes of LC firing to control global arousal levels and arousal-related processing and behaviours. We define peri-LC anatomy using viral tracing and combine single-cell RNA sequencing with spatial transcriptomics to molecularly define both LC noradrenaline-producing and peri-LC cell types. We identify several neuronal cell types that underlie peri-LC functional diversity using a series of complementary neural circuit approaches in behaving mice. Our findings indicate that LC and peri-LC neurons are transcriptionally, functionally and anatomically heterogenous neuronal populations that modulate arousal and avoidance states. Defining the molecular, cellular and functional diversity of the LC and peri-LC provides a roadmap for understanding the neurobiological basis of arousal, motivation and neuropsychiatric disorders.

摘要

作为大脑中去甲肾上腺素的主要来源,蓝斑(LC)调节觉醒、回避和应激反应。然而,局部神经调节输入如何控制LC功能仍未得到解决。在这里,我们在LC树突场中鉴定出一群转录、空间和功能多样的γ-氨基丁酸能(产生γ-氨基丁酸)神经元,它们接收远距离输入并调节LC放电模式,以控制整体觉醒水平以及与觉醒相关的加工过程和行为。我们使用病毒示踪法定义LC周围的解剖结构,并将单细胞RNA测序与空间转录组学相结合,从分子层面定义LC产生去甲肾上腺素的细胞类型和LC周围的细胞类型。我们在行为小鼠中使用一系列互补的神经回路方法,确定了几种构成LC周围功能多样性基础的神经元细胞类型。我们的研究结果表明,LC和LC周围的神经元是转录、功能和解剖结构上异质的神经元群体,它们调节觉醒和回避状态。定义LC和LC周围的分子、细胞和功能多样性,为理解觉醒、动机和神经精神疾病的神经生物学基础提供了路线图。

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