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淀粉样蛋白-β改变了阿尔茨海默病模型中细胞命运基因的 DNA 甲基化状态。

Amyloid-β alters the DNA methylation status of cell-fate genes in an Alzheimer's disease model.

机构信息

Department of Biology and Chemistry, Liberty University, Lynchburg, VA, USA.

出版信息

J Alzheimers Dis. 2014;38(4):831-44. doi: 10.3233/JAD-131061.

Abstract

Alzheimer's disease (AD) is characterized by neurofibrillary tangles and extracellular amyloid-β plaques (Aβ). Despite ongoing research, some ambiguity remains surrounding the role of Aβ in the pathogenesis of this neurodegenerative disease. While several studies have focused on the mutations associated with AD, our understanding of the epigenetic contributions to the disease remains less clear. To that end, we determined the changes in DNA methylation in differentiated human neurons with and without Aβ treatment. DNA was isolated from neurons treated with Aβ or vehicle, and the two samples were digested with either a methylation-sensitive (HpaII) or a methylation-insensitive (MspI) restriction endonuclease. The fragments were amplified and co-hybridized to a commercial promoter microarray. Data analysis revealed a subset of genomic loci that shows a significant change in DNA methylation following Aβ treatment in comparison to the control group. After mapping these loci to nearby genes, we discovered high enrichment for cell-fate genes that control apoptosis and neuronal differentiation. Finally, we incorporated three of those genes in a possible model suggesting the means by which Aβ contributes to the brain shrinkage and memory loss seen in AD.

摘要

阿尔茨海默病(AD)的特征是神经纤维缠结和细胞外淀粉样-β斑块(Aβ)。尽管正在进行研究,但 Aβ 在这种神经退行性疾病发病机制中的作用仍然存在一些不确定性。虽然有几项研究集中在与 AD 相关的突变上,但我们对疾病的表观遗传贡献的理解仍然不太清楚。为此,我们确定了有和没有 Aβ 处理的分化人类神经元中的 DNA 甲基化变化。从用 Aβ 或载体处理的神经元中分离 DNA,并使用甲基化敏感(HpaII)或甲基化不敏感(MspI)限制性内切酶消化这两种样本。扩增片段并与商业启动子微阵列共杂交。数据分析显示,与对照组相比,Aβ 处理后,基因组中存在一小部分 DNA 甲基化发生了显著变化的基因座。将这些基因座映射到附近的基因后,我们发现了控制细胞命运的基因的高度富集,这些基因控制细胞凋亡和神经元分化。最后,我们将其中三个基因纳入一个可能的模型中,该模型表明 Aβ 导致 AD 中脑萎缩和记忆丧失的机制。

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