Targeting vulnerable microcircuits in the ventral hippocampus of male transgenic mice to rescue Alzheimer-like social memory loss
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Published:2024-03-11
Issue:1
Volume:11
Page:
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ISSN:2054-9369
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Container-title:Military Medical Research
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language:en
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Short-container-title:Military Med Res
Author:
Lei Hui-Yang, Pi Gui-Lin, He Ting, Xiong Rui, Lv Jing-Ru, Liu Jia-Le, Wu Dong-Qin, Li Meng-Zhu, Shi Kun, Li Shi-Hong, Yu Na-Na, Gao Yang, Yu Hui-Ling, Wei Lin-Yu, Wang Xin, Zhou Qiu-Zhi, Zou Pei-Lin, Zhou Jia-Yang, Liu Ying-Zhou, Shen Nai-Ting, Yang Jie, Ke Dan, Wang Qun, Liu Gong-Ping, Yang Xi-Fei, Wang Jian-Zhi, Yang YingORCID
Abstract
Abstract
Background
Episodic memory loss is a prominent clinical manifestation of Alzheimer’s disease (AD), which is closely related to tau pathology and hippocampal impairment. Due to the heterogeneity of brain neurons, the specific roles of different brain neurons in terms of their sensitivity to tau accumulation and their contribution to AD-like social memory loss remain unclear. Therefore, further investigation is necessary.
Methods
We investigated the effects of AD-like tau pathology by Tandem mass tag proteomic and phosphoproteomic analysis, social behavioural tests, hippocampal electrophysiology, immunofluorescence staining and in vivo optical fibre recording of GCaMP6f and iGABASnFR. Additionally, we utilized optogenetics and administered ursolic acid (UA) via oral gavage to examine the effects of these agents on social memory in mice.
Results
The results of proteomic and phosphoproteomic analyses revealed the characteristics of ventral hippocampal CA1 (vCA1) under both physiological conditions and AD-like tau pathology. As tau progressively accumulated, vCA1, especially its excitatory and parvalbumin (PV) neurons, were fully filled with mislocated and phosphorylated tau (p-Tau). This finding was not observed for dorsal hippocampal CA1 (dCA1). The overexpression of human tau (hTau) in excitatory and PV neurons mimicked AD-like tau accumulation, significantly inhibited neuronal excitability and suppressed distinct discrimination-associated firings of these neurons within vCA1. Photoactivating excitatory and PV neurons in vCA1 at specific rhythms and time windows efficiently ameliorated tau-impaired social memory. Notably, 1 month of UA administration efficiently decreased tau accumulation via autophagy in a transcription factor EB (TFEB)-dependent manner and restored the vCA1 microcircuit to ameliorate tau-impaired social memory.
Conclusion
This study elucidated distinct protein and phosphoprotein networks between dCA1 and vCA1 and highlighted the susceptibility of the vCA1 microcircuit to AD-like tau accumulation. Notably, our novel findings regarding the efficacy of UA in reducing tau load and targeting the vCA1 microcircuit may provide a promising strategy for treating AD in the future.
Funder
Natural Science Foundation of China Hubei Province Key S&T Program Guangdong Provincial Key S&T Program
Publisher
Springer Science and Business Media LLC
Reference73 articles.
1. Li MZ, Liu EJ, Zhou QZ, Li SH, Liu SJ, Yu HT, Pan QH, et al. Intracellular accumulation of tau inhibits autophagosome formation by activating TIA1-amino acid-mTORC1 signaling. Mil Med Res. 2022;9(1):38. 2. Ranganath C, Ritchey M. Two cortical systems for memory-guided behaviour. Nat Rev Neurosci. 2012;13(10):713–26. 3. Ritchey M, Libby LA, Ranganath C. Cortico-hippocampal systems involved in memory and cognition: the PMAT framework. Prog Brain Res. 2015;219:45–64. 4. Kim S, Nilakantan AS, Hermiller MS, Palumbo RT, Vanhaerents S, Voss JL. Selective and coherent activity increases due to stimulation indicate functional distinctions between episodic memory networks. Sci Adv. 2018;4(8):eaar2768. 5. Berron D, Neumann K, Maass A, Schütze H, Fliessbach K, Kiven V, et al. Age-related functional changes in domain-specific medial temporal lobe pathways. Neurobiol Aging. 2018;65:86–97.
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