基底前脑单核转录组图谱揭示了不同的衰老相关途径

IF 11.7 1区 医学 Q1 CLINICAL NEUROLOGY Brain Pub Date : 2025-02-11 DOI:10.1093/brain/awaf060
Jiale Chen, Qianqian Li, Bingqing Ji, Ke Zhang, Miao Ren, Anan Li, Hui Gong, Jian Wang, Gang Cao, Qingming Luo, Xiangning Li
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引用次数: 0

摘要

基底前脑是一个重要的大脑区域,参与各种神经生物学过程,包括学习、记忆和注意力。基底前脑细胞在衰老过程中经历结构和功能变化,增加了它们对神经退行性疾病的脆弱性。为了揭示发育和早期衰老过程中不同细胞类型的分子景观,我们构建了一个全面的单核转录组图谱,涵盖出生后第4天(P4)、出生后第14天(P14)、3个月(3M)、9个月(9M)和15个月(15M)。揭示了基底前脑亚类和衰老相关通路的不同分子调控模式。转录调控分析和伪时间分析揭示了出生后发育过程中胆碱能神经元的动态调控网络。为了深入了解衰老与阿尔茨海默病(AD)之间的关系,我们进行了一项综合分析。我们在5×FAD小鼠中发现了涉及胆固醇/脂质代谢、DNA损伤修复和死亡受体信号的四个潜在调节网络。胆碱能亚型CN-2表现出与Srebf2和Zmiz1相关的调控活性升高,而Srebf2和Zmiz1又靶向这些网络中涉及的枢纽基因。同时,CN-2是导致NRXN信号通路改变的主要胆碱能亚型。该研究提供了一个重要的数据来源,以阐明与衰老相关的基底前脑病理变化的分子基础,为未来的研究和针对特定基底前脑亚类和信号通路的治疗干预铺平了道路。
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Single-nucleus transcriptome atlas of the basal forebrain reveals diverse ageing-related pathways
The basal forebrain is a critical brain region involved in various neurobiological processes, including learning, memory, and attention. Basal forebrain cells undergo structural and functional changes during ageing, increasing their vulnerability to neurodegenerative diseases. To reveal the molecular landscape of distinct cell types during developmental and early ageing, we constructed a comprehensive single-nucleus transcriptomic atlas spanning postnatal day 4 (P4), postnatal day 14 (P14), 3 month (3M), 9 months (9M) and 15 months (15M). Distinct molecular regulatory patterns of basal forebrain subclasses and ageing-related pathways were unveiled. The transcriptional regulation analysis and pseudo-time analysis revealed the dynamic regulatory network of cholinergic neurons during postnatal development. To gain insights into the relationship between ageing and Alzheimer's disease (AD), we conducted an integrative analysis. We identified four potential regulatory networks involved in cholesterol/lipid metabolism, DNA damage repair, and death receptor signal in 5×FAD mice. The cholinergic subtype CN-2 exhibited heightened activity of regulons associated with Srebf2 and Zmiz1, which, in turn, target hub genes implicated in these networks. Meanwhile, CN-2 is the main cholinergic subtype contributing to the alteration of the NRXN signalling pathway. This study offers a significant data source to elucidate the molecular underpinnings of ageing-related and pathological changes in the basal forebrain, paving the way for future research and therapeutic interventions that target specific basal forebrain subclasses and signalling pathways.
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来源期刊
Brain
Brain 医学-临床神经学
CiteScore
20.30
自引率
4.10%
发文量
458
审稿时长
3-6 weeks
期刊介绍: Brain, a journal focused on clinical neurology and translational neuroscience, has been publishing landmark papers since 1878. The journal aims to expand its scope by including studies that shed light on disease mechanisms and conducting innovative clinical trials for brain disorders. With a wide range of topics covered, the Editorial Board represents the international readership and diverse coverage of the journal. Accepted articles are promptly posted online, typically within a few weeks of acceptance. As of 2022, Brain holds an impressive impact factor of 14.5, according to the Journal Citation Reports.
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