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衰老扰乱小鼠海马体中蛋白质表达的昼夜节律模式。

Aging Disrupts the Circadian Patterns of Protein Expression in the Murine Hippocampus.

作者信息

Adler Paula, Chiang Cheng-Kang, Mayne Janice, Ning Zhibin, Zhang Xu, Xu Bo, Cheng Hai-Ying Mary, Figeys Daniel

机构信息

Shanghai Institute of Materia Medica-University of Ottawa Joint Research Centre on Systems and Personalized Pharmacology, University of Ottawa, Ottawa, ON, Canada.

Ottawa Institute of Systems Biology, University of Ottawa, Ottawa, ON, Canada.

出版信息

Front Aging Neurosci. 2020 Jan 15;11:368. doi: 10.3389/fnagi.2019.00368. eCollection 2019.

Abstract

Aging is associated with cognitive decline and dysregulation of the circadian system, which modulates hippocampal-dependent memory as well as biological processes underlying hippocampal function. While circadian dysfunction and memory impairment are common features of aging and several neurodegenerative brain disorders, how aging impacts the circadian expression patterns of proteins involved in processes that underlie hippocampal-dependent memory is not well understood. In this study, we profiled the hippocampal proteomes of young and middle-aged mice across two circadian cycles using quantitative mass spectrometry in order to explore aging-associated changes in the temporal orchestration of biological pathways. Of the ∼1,420 proteins that were accurately quantified, 15% (214 proteins) displayed circadian rhythms in abundance in the hippocampus of young mice, while only 1.6% (23 proteins) were rhythmic in middle-aged mice. Remarkably, aging disrupted the circadian regulation of proteins involved in cellular functions critical for hippocampal function and memory, including dozens of proteins participating in pathways of energy metabolism, neurotransmission, and synaptic plasticity. These included processes such as glycolysis, the tricarboxylic acid cycle, synaptic vesicle cycling, long-term potentiation, and cytoskeletal organization. Moreover, aging altered the daily expression rhythms of proteins implicated in hallmarks of aging and the pathogenesis of several age-related neurodegenerative brain disorders affecting the hippocampus. Notably, we identified age-related alterations in the rhythmicity of proteins involved in mitochondrial dysfunction and loss of proteostasis, as well as proteins involved in the pathogenesis of disorders such as Alzheimer's disease and Parkinson's disease. These insights into aging-induced changes in the hippocampal proteome provide a framework for understanding how the age-dependent circadian decline may contribute to cognitive impairment and the development of neurodegenerative diseases during aging.

摘要

衰老与认知能力下降以及昼夜节律系统失调有关,昼夜节律系统调节海马体依赖的记忆以及海马体功能背后的生物过程。虽然昼夜节律功能障碍和记忆损害是衰老以及几种神经退行性脑部疾病的常见特征,但衰老如何影响参与海马体依赖记忆过程的蛋白质的昼夜表达模式尚不清楚。在本研究中,我们使用定量质谱分析了年轻和中年小鼠在两个昼夜周期内的海马蛋白质组,以探索生物途径时间编排中与衰老相关的变化。在准确定量的约1420种蛋白质中,15%(214种蛋白质)在年轻小鼠的海马体中表现出丰度的昼夜节律,而在中年小鼠中只有1.6%(23种蛋白质)有节律。值得注意的是,衰老破坏了对海马体功能和记忆至关重要的细胞功能中蛋白质的昼夜调节,包括参与能量代谢、神经传递和突触可塑性途径的数十种蛋白质。这些过程包括糖酵解、三羧酸循环、突触小泡循环、长时程增强和细胞骨架组织。此外,衰老改变了与衰老特征以及影响海马体的几种与年龄相关的神经退行性脑部疾病发病机制相关的蛋白质的每日表达节律。值得注意的是,我们发现了与线粒体功能障碍和蛋白质稳态丧失相关的蛋白质以及与阿尔茨海默病和帕金森病等疾病发病机制相关的蛋白质在节律性方面的年龄相关变化。这些对衰老诱导的海马蛋白质组变化的见解为理解年龄依赖性昼夜节律下降如何导致衰老过程中的认知障碍和神经退行性疾病的发展提供了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c86b/6974521/35d9d8498a1b/fnagi-11-00368-g001.jpg

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