首页> 外文期刊>Frontiers in Aging Neuroscience >Differential contributions of ApoE4 and female sex to BACE1 activity and expression mediate A β deposition and learning and memory in mouse models of Alzheimer’s disease
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Differential contributions of ApoE4 and female sex to BACE1 activity and expression mediate A β deposition and learning and memory in mouse models of Alzheimer’s disease

机译:ApoE4和雌性对BACE1活性和表达的不同贡献介导了阿尔茨海默氏病小鼠模型中的β沉积和学习记忆

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Alzheimer’s disease (AD), the most common form of dementia, disproportionately affects women in both prevalence and severity. This increased vulnerability to AD in women is strongly associated with age-related ovarian hormone loss and apolipoprotein E 4 allele (ApoE4), the most important genetic risk factor for sporadic AD. Up to date, the mechanism involved in the interaction between ApoE4 and sex/gender in AD is still unclear. This study evaluated the sex-dependent ApoE4 effects on learning and memory, Aβ deposition and potential mechanisms, using mice bearing both sporadic (ApoE4) and familial (APP_(Swe), PS1_(M146V), tau_(P301L); 3xTg) AD risk factors and compared with sex- and age-matched 3xTg or nonTg mice. Compared to nonTg mice, transgenic mice of both sexes showed spatial learning and memory deficits in the radial arm water maze and novel arm discrimination tests at 20 months of age. However, at 10 months, only ApoE4/3xTg mice showed significant learning and memory impairment. Moreover, molecular studies of hippocampal tissue revealed significantly higher protein levels of Aβ species, β-site APP cleavage enzyme (BACE1) and Sp1, a transcription factor of BACE1, in female ApoE4/3xTg when compared with female nonTg, female 3xTg, and male ApoE4/3xTg mice. Significantly increased BACE1 enzymatic activities were observed in both male and female mice carrying ApoE4; however, only the females showed significant higher BACE1 expressions. Together, these data suggest that ApoE4 allele is associated with increased BACE1 enzymatic activity, while female sex plays an important role in increasing BACE1 expression. The combination of both provides a molecular basis for high Aβ pathology and the resultant hippocampus-dependent learning and memory deficits in female ApoE4 carriers.
机译:阿尔茨海默氏病(AD)是痴呆症最常见的形式,其患病率和严重程度均对妇女造成不成比例的影响。女性对AD的易感性增加与年龄相关的卵巢激素丢失和载脂蛋白E 4等位基因(ApoE4)密切相关,后者是散发性AD的最重要遗传风险因素。迄今为止,AD中ApoE4与性别之间的相互作用机制尚不清楚。这项研究使用携带零星(ApoE4)和家族性(APP_(Swe),PS1_(M146V),tau_(P301L),3xTg)AD风险的小鼠评估了性别依赖性ApoE4对学习和记忆,Aβ沉积和潜在机制的影响并与性别和年龄匹配的3xTg或nonTg小鼠进行比较。与nonTg小鼠相比,两种性别的转基因小鼠在20个月大时在the臂水迷宫中均表现出空间学习和记忆缺陷,并进行了新颖的臂分辨测试。但是,在10个月时,只有ApoE4 / 3xTg小鼠显示出明显的学习和记忆障碍。此外,海马组织的分子研究显示,与雌性非Tg,雌性3xTg和雄性Tg相比,雌性ApoE4 / 3xTg中Aβ物种,β-位APP裂解酶(BACE1)和Sp1(BACE1的转录因子)的蛋白水平明显更高。 ApoE4 / 3xTg小鼠。在携带ApoE4的雄性和雌性小鼠中均观察到BACE1酶活性的显着增加。但是,只有雌性动物显示出明显更高的BACE1表达。总之,这些数据表明ApoE4等位基因与增加的BACE1酶活性有关,而女性在增加BACE1表达中起重要作用。两者的结合为女性ApoE4携带者的高Aβ病理学以及由此产生的海马依赖性学习和记忆缺陷提供了分子基础。

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