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Alterations in Gene Expression in Mutant Amyloid Precursor Protein Transgenic Mice Lacking Niemann-Pick Type C1 Protein

机译:缺乏Niemann-Pick C1型蛋白的突变淀粉样前体蛋白转基因小鼠中基因表达的变化。

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摘要

Niemann-Pick type C (NPC) disease, a rare autosomal recessive disorder caused mostly by mutation in NPC1 gene, is pathologically characterized by the accumulation of free cholesterol in brain and other tissues. This is accompanied by gliosis and loss of neurons in selected brain regions, including the cerebellum. Recent studies have shown that NPC disease exhibits intriguing parallels with Alzheimer’s disease, including the presence of neurofibrillary tangles and increased levels of amyloid precursor protein (APP)-derived β-amyloid (Aβ) peptides in vulnerable brain neurons. To evaluate the role of Aβ in NPC disease, we determined the gene expression profile in selected brain regions of our recently developed bigenic ANPC mice, generated by crossing APP transgenic (Tg) mice with heterozygous Npc1-deficient mice. The ANPC mice exhibited exacerbated neuronal and glial pathology compared to other genotypes [i.e., APP-Tg, double heterozygous (Dhet), Npc1-null and wild-type mice]. Analysis of expression profiles of 86 selected genes using real-time RT-PCR arrays showed a wide-spectrum of alterations in the four genotypes compared to wild-type controls. The changes observed in APP-Tg and Dhet mice are limited to only few genes involved mostly in the regulation of cholesterol metabolism, whereas Npc1-null and ANPC mice showed alterations in the expression profiles of a number of genes regulating cholesterol homeostasis, APP metabolism, vesicular trafficking and cell death mechanism in both hippocampus and cerebellum compared to wild-type mice. Intriguingly, ANPC and Npc1-null mice, with some exceptions, exhibited similar changes, although more genes were differentially expressed in the affected cerebellum than the relatively spared hippocampus. The altered gene profiles were found to match with the corresponding protein levels. These results suggest that lack of Npc1 protein can alter the expression profile of selected transcripts as well as proteins, and APP overexpression influences cerebral pathology by enhancing changes triggered by Npc1 deficiency in the bigenic line.
机译:Niemann-Pick C型(NPC)病是一种罕见的常染色体隐性遗传疾病,主要由NPC1基因突变引起,其病理特征是大脑和其他组织中游离胆固醇的积累。伴有神经胶质增生和选定的大脑区域(包括小脑)神经元丢失。最近的研究表明,NPC疾病与阿尔茨海默氏病表现出令人着迷的相似之处,包括存在神经原纤维缠结和脆弱的大脑神经元中淀粉样前体蛋白(APP)衍生的β-淀粉样蛋白(Aβ)肽水平升高。为了评估Aβ在NPC疾病中的作用,我们确定了我们最近开发的双基因ANPC小鼠选定大脑区域的基因表达谱,该基因是通过将APP转基因(Tg)小鼠与杂合的Npc1缺陷型小鼠杂交而产生的。与其他基因型[即APP-Tg,双杂合子(Dhet),Npc1-null和野生型小鼠]相比,ANPC小鼠表现出神经元和神经胶质病理的恶化。使用实时RT-PCR阵列分析86个选定基因的表达谱,与野生型对照相比,显示了四种基因型的广谱变化。在APP-Tg和Dhet小鼠中观察到的变化仅限于少数几个主要参与胆固醇代谢调控的基因,而Npc1-null和ANPC小鼠则显示了许多调控胆固醇稳态,APP代谢,与野生型小鼠相比,海马和小脑中的水泡运输和细胞死亡机制。有趣的是,ANPC和Npc1-null小鼠表现出相似的变化,尽管受影响的小脑中的基因差异表达要多于相对较幸存的海马。发现改变的基因谱与相应的蛋白质水平匹配。这些结果表明,缺乏Npc1蛋白可以改变所选转录本以及蛋白质的表达谱,APP的过表达通过增强双基因株系中Npc1缺乏引起的变化来影响脑病理。

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