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Neuronal APOE4-induced Early Hippocampal Network Hyperexcitability in Alzheimer's Disease Pathogenesis.

作者信息

Tabuena Dennis R, Jang Sung-Soo, Grone Brian, Yip Oscar, Aery Jones Emily A, Blumenfeld Jessica, Liang Zherui, Koutsodendris Nicole, Rao Antara, Ding Leonardo, Zhang Alex R, Hao Yanxia, Xu Qin, Yoon Seo Yeon, Leon Samuel De, Huang Yadong, Zilberter Misha

出版信息

bioRxiv. 2024 Jul 3:2023.08.28.555153. doi: 10.1101/2023.08.28.555153.

Abstract

The full impact of apolipoprotein E4 (APOE4), the strongest genetic risk factor for Alzheimer's disease (AD), on neuronal and network function remains unclear. We found hippocampal region-specific network hyperexcitability in young APOE4 knock-in (E4-KI) mice which predicted cognitive deficits at old age. Network hyperexcitability in young E4-KI mice was mediated by hippocampal region-specific subpopulations of smaller and hyperexcitable neurons that were eliminated by selective removal of neuronal APOE4. Aged E4-KI mice exhibited hyperexcitable granule cells, a progressive inhibitory deficit, and E/I imbalance in the dentate gyrus, exacerbating hippocampal hyperexcitability. Single-nucleus RNA-sequencing revealed neuronal cell type-specific and age-dependent transcriptomic changes, including Nell2 overexpression in E4-KI mice. Reducing Nell2 expression in specific neuronal types of E4-KI mice with CRISPRi rescued their abnormal excitability phenotypes, implicating Nell2 overexpression as a cause of APOE4-induced hyperexcitability. These findings highlight the early transcriptomic and electrophysiological alterations underlying APOE4-induced hippocampal network dysfunction and its contribution to AD pathogenesis with aging.

摘要

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1
Neuronal APOE4-induced Early Hippocampal Network Hyperexcitability in Alzheimer's Disease Pathogenesis.
bioRxiv. 2024 Jul 3:2023.08.28.555153. doi: 10.1101/2023.08.28.555153.

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