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Generation of a novel murine model of Aβ deposition based on the expression of human wild-type amyloid precursor protein gene

机译:基于人类野生型淀粉样前体蛋白基因表达的新型Aβ鼠模型的产生

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Mouse models of Alzheimer disease (AD) have been generated based on Amyloid-β Precursor Protein (AβPP) and the Presenilin (PSEN) gene mutations associated with familial AD (FAD). Such models have provided valuable insights into AD pathogenesis and represent an important research tool for the discovery of potential treatments. To model amyloid deposition in AD, we generated a new mouse line based on the presence of two copies of the genomic region encoding human wild-type AβPP as well as a mutation (L166P) in the murine Psen1. By ~6 months of age, these mice have begun to develop cerebral Aβpathology with a significant increase in the levels of AβPP C-terminal fragments and Aβ42, as well as increase Aβ42/Aβ40 ratio. Since in the brain and other tissues of these mice, wild-type human AβPP mRNA and protein levels are comparable to those of endogenous AβPP, this model may allow studies about the role of AβPP isoforms in the pathogenesis of AD. This animal model may be suitable to test drugs aimed at inhibiting expression or altering splicing and processing of AβPP, without artifacts associated with the presence of mutations in AβPP or overexpression due to the use of exogenous promoters. These features of the new model are of critical importance in assessing the success of therapeutic interventions.
机译:基于淀粉样蛋白-β前体蛋白(AβPP)和与家族性AD(FAD)相关的早老素(PSEN)基因突变,已经建立了阿尔茨海默病(AD)的小鼠模型。此类模型为AD发病机制提供了宝贵的见识,并代表了发现潜在疗法的重要研究工具。为了模拟AD中的淀粉样蛋白沉积,我们基于两个副本的编码人类野生型AβPP的基因组区域以及鼠Psen1中的突变(L166P)的存在,生成了新的小鼠品系。到约6个月大时,这些小鼠已开始发展脑Aβ病理学,其AβPPC末端片段和Aβ42的水平显着增加,并且Aβ42/Aβ40的比例增加。由于在这些小鼠的大脑和其他组织中,野生型人AβPPmRNA和蛋白质水平与内源性AβPP相当,因此该模型可以研究AβPP亚型在AD发病机理中的作用。该动物模型可能适合于测试旨在抑制AβPP的表达或改变AβPP的剪接和加工的药物,而没有与使用外源启动子引起的AβPP突变或过表达有关的假象。新模型的这些特征对于评估治疗干预的成功至关重要。

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