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A SAGE study of apolipoprotein E3/3 E3/4 and E4/4 allele-specific gene expression in hippocampus in Alzheimer disease

机译:SAGE研究阿尔茨海默病患者海马中载脂蛋白E3 / 3E3 / 4和E4 / 4等位基因特异性基因

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摘要

APOE4 allele is a major risk factor for late-onset Alzheimer disease (AD). The mechanism of action of APOE in AD remains unclear. To study the effects of APOE alleles on gene expression in AD, we have analyzed the gene transcription patterns of human hippocampus from APOE3/3, APOE3/4, APOE4/4 AD patients and normal control using Serial Analysis of Gene Expression (SAGE). Using SAGE, we found gene expression patterns in hippocampus of APOE3/4 and APOE4/4 AD patients differ substantially from those of APOE3/3 AD patients. APOE3/4 and APOE4/4 allele expression may activate similar genes or gene pools with associated functions. APOE4 AD alleles activate multiple tumor suppressors, tumor inducers and negative regulator of cell growth or repressors that may lead to increased cell arrest, senescence and apoptosis. In contrast, there is decreased expression of large clusters of genes associated with synaptic plasticity, synaptic vesicle docking and fusing and axonaleuronal outgrowth. In addition, reduction of neurotransmitter receptors and Ca++ homeostasis, disruption of multiple signal transduction pathways, loss of cell protection, and perhaps most notably, mitochondrial oxidative phosphorylation/energy metabolism are associated with APOE3/4 and APOE4/4 AD alleles. These findings may help define the mechanisms that APOE4 contribute increased risk for AD and identify new candidate genes conferring susceptibility to AD.
机译:APOE4等位基因是晚期阿尔茨海默病(AD)的主要危险因素。 APOE在AD中的作用机制仍不清楚。为了研究APOE等位基因对AD基因表达的影响,我们使用基因表达序列分析(SAGE)分析了APOE3 / 3,APOE3 / 4,APOE4 / 4 AD患者和正常对照人海马的基因转录模式。使用SAGE,我们发现APOE3 / 4和APOE4 / 4 AD患者海马中的基因表达模式与APOE3 / 3 AD患者海马中的基因表达模式有很大不同。 APOE3 / 4和APOE4 / 4等位基因表达可能激活具有相关功能的相似基因或基因库。 APOE4 AD等位基因激活多种肿瘤抑制因子,肿瘤诱导因子和细胞生长抑制因子的负调控因子,从而导致细胞停滞,衰老和凋亡增加。相反,与突触可塑性,突触囊泡对接和融合以及轴突/神经元生长相关的大基因簇的表达减少。此外,神经递质受体和Ca ++ 稳态的减少,多个信号转导途径的破坏,细胞保护的丧失,以及也许最值得注意的是,线粒体氧化磷酸化/能量代谢与APOE3 / 4和APOE4 / 4 AD等位基因。这些发现可能有助于确定APOE4导致AD风险增加的机制,并确定赋予AD易感性的新候选基因。

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