利用人源化 APP 和 APOE 基因敲入大鼠模型,分析人类 APOE 异构体对阿尔茨海默病和 III 型高脂蛋白血症通路的早期影响。

IF 8.2 2区 生物学 Q1 CELL BIOLOGY Cell Communication and Signaling Pub Date : 2024-09-27 DOI:10.1186/s12964-024-01832-2
Metin Yesiltepe, Tao Yin, Marc Tambini, Hanmei Bao, Meixia Pan, Cristina d'Abramo, Luca Giliberto, Xianlin Han, D'Adamio Luciano
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引用次数: 0

摘要

APOE 是晚发性阿尔茨海默病(LOAD)的主要遗传因素,其中 APOE4 增加风险,APOE3 起到中性作用,而 APOE2 提供保护。APOE 还在脂质代谢中发挥关键作用,影响外周和中枢系统,尤其是在调节甘油三酯和胆固醇的脂蛋白代谢中。APOE2 与 III 型高脂蛋白血症(HLP)有关,其特点是由于与低密度脂蛋白受体结合受损而导致混合型高胆固醇血症和高甘油三酯血症。为了探索人类 APOE 异构体对 LOAD 和脂质代谢的影响,我们培育了用人类 APOE2、APOE3 或 APOE4 代替大鼠载脂蛋白的 Long-Evans 大鼠。这些大鼠与携带人源化 App 等位基因的大鼠杂交,以表达比啮齿动物 Aβ 更易聚集的人类 Aβ,从而能够研究人类 APOE 与人类 Aβ 之间的相互作用。在这项研究中,我们以80天大的青春期大鼠为研究对象,分析可能与LOAD后期发展相关的早期变化。我们发现,APOE2hAβ大鼠血清和大脑中的APOE水平最高,不同异构体之间没有明显的转录差异,这表明蛋白质翻译或稳定性存在差异。雄性 APOE4hAβ 大鼠的 Aβ43 水平明显高于 APOE2hAβ 大鼠。然而,不同 APOE 异构体的 Tau 或磷酸化 Tau 水平并无差异。神经炎症分析表明,与 APOE4hAβ 雄性大鼠相比,APOE2hAβ 雄性大鼠的 IL13、IL4 和 IL5 水平较低。使用现场输入输出(I/O)和长期电位(LTP)记录进行的神经元传递和可塑性测试表明,所有携带APOE的大鼠的兴奋性都有所提高,与ApoehAβ和APOE3hAβ大鼠相比,APOE2hAβ和APOE4hAβ大鼠的LTP功能缺失。此外,对血清样本中 222 种脂质分子进行的脂质组学分析表明,APOE2hAβ 大鼠的甘油三酯和胆固醇水平升高,使其成为研究 HLP 的重要模型。这些大鼠还表现出磷脂酰甘油、磷脂酰丝氨酸、磷脂酰乙醇胺、鞘磷脂和溶血磷脂酰胆碱水平升高。APOE3hAβ 和 APOE4hAβ 大鼠的脂质特征差异很小,这反映了小鼠模型的研究结果。未来的研究将包括在不同中枢神经系统区域和更大年龄段进行全面的脂质组学分析,以进一步验证这些模型,并探索 APOE 异构体对与注意力缺失症病理相关的脂质代谢的影响。
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Analysis of early effects of human APOE isoforms on Alzheimer's disease and type III hyperlipoproteinemia pathways using knock-in rat models with humanized APP and APOE.

APOE is a major genetic factor in late-onset Alzheimer's disease (LOAD), with APOE4 increasing risk, APOE3 acting as neutral, and APOE2 offering protection. APOE also plays key role in lipid metabolism, affecting both peripheral and central systems, particularly in lipoprotein metabolism in triglyceride and cholesterol regulation. APOE2 is linked to Hyperlipoproteinemia type III (HLP), characterized by mixed hypercholesterolemia and hypertriglyceridemia due to impaired binding to Low-Density Lipoproteins receptors. To explore the impact of human APOE isoforms on LOAD and lipid metabolism, we developed Long-Evans rats with human APOE2, APOE3, or APOE4 in place of rat Apoe. These rats were crossed with those carrying a humanized App allele to express human Aβ, which is more aggregation-prone than rodent Aβ, enabling the study of human APOE-human Aβ interactions. In this study, we focused on 80-day-old adolescent rats to analyze early changes that may be associated with the later development of LOAD. We found that APOE2hAβ rats had the highest levels of APOE in serum and brain, with no significant transcriptional differences among isoforms, suggesting variations in protein translation or stability. Aβ43 levels were significantly higher in male APOE4hAβ rats compared to APOE2hAβ rats. However, no differences in Tau or phosphorylated Tau levels were observed across the APOE isoforms. Neuroinflammation analysis revealed lower levels of IL13, IL4 and IL5 in APOE2hAβ males compared to APOE4hAβ males. Neuronal transmission and plasticity tests using field Input-Output (I/O) and long-term potentiation (LTP) recordings showed increased excitability in all APOE-carrying rats, with LTP deficits in APOE2hAβand APOE4hAβ rats compared to ApoehAβ and APOE3hAβ rats. Additionally, a lipidomic analysis of 222 lipid molecular species in serum samples showed that APOE2hAβ rats displayed elevated triglycerides and cholesterol, making them a valuable model for studying HLP. These rats also exhibited elevated levels of phosphatidylglycerol, phosphatidylserine, phosphatidylethanolamine, sphingomyelin, and lysophosphatidylcholine. Minimal differences in lipid profiles between APOE3hAβ and APOE4hAβ rats reflect findings from mouse models. Future studies will include comprehensive lipidomic analyses in various CNS regions and at older ages to further validate these models and explore the effects of APOE isoforms on lipid metabolism in relation to AD pathology.

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来源期刊
CiteScore
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期刊介绍: Cell Communication and Signaling (CCS) is a peer-reviewed, open-access scientific journal that focuses on cellular signaling pathways in both normal and pathological conditions. It publishes original research, reviews, and commentaries, welcoming studies that utilize molecular, morphological, biochemical, structural, and cell biology approaches. CCS also encourages interdisciplinary work and innovative models, including in silico, in vitro, and in vivo approaches, to facilitate investigations of cell signaling pathways, networks, and behavior. Starting from January 2019, CCS is proud to announce its affiliation with the International Cell Death Society. The journal now encourages submissions covering all aspects of cell death, including apoptotic and non-apoptotic mechanisms, cell death in model systems, autophagy, clearance of dying cells, and the immunological and pathological consequences of dying cells in the tissue microenvironment.
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