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首页> 外文期刊>Scientific reports. >Whole transcriptome profiling of Late-Onset Alzheimer’s Disease patients provides insights into the molecular changes involved in the disease
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Whole transcriptome profiling of Late-Onset Alzheimer’s Disease patients provides insights into the molecular changes involved in the disease

机译:晚期疾病患者的整个转录组分析患者提供了患有疾病所涉及的分子变化的见解

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摘要

Alzheimer’s Disease (AD) is the most common cause of dementia affecting the elderly population worldwide. We have performed a comprehensive transcriptome profiling of Late-Onset AD (LOAD) patients using second generation sequencing technologies, identifying 2,064 genes, 47 lncRNAs and 4 miRNAs whose expression is specifically deregulated in the hippocampal region of?LOAD patients. Moreover, analyzing the hippocampal, temporal and frontal regions from the same LOAD patients, we identify specific sets of deregulated miRNAs for each region, and we confirm that the miR-132/212 cluster is deregulated in each of these regions in LOAD patients, consistent with these miRNAs playing a role in AD pathogenesis. Notably, a luciferase assay indicates that miR-184 is able to target the 3’UTR NR4A2 - which is known to be involved in cognitive functions and long-term memory and whose expression levels are inversely correlated with those of miR-184 in the hippocampus. Finally, RNA editing analysis reveals a general RNA editing decrease in LOAD hippocampus, with 14 recoding sites significantly and differentially edited in 11 genes. Our data underline specific transcriptional changes in LOAD brain and provide an important source of information for understanding the molecular changes characterizing LOAD progression.
机译:阿尔茨海默病(AD)是影响全球老年人口的痴呆症最常见的原因。我们已经进行了使用第二代测序技术的晚期发病AD(载荷)患者的全面转录组分析,鉴定了2,064个基因,47个LNCRNA和4个miRNA,其表达在载荷患者的海马区域中特异性化。此外,从相同的载荷患者分析海马,时间和额度区域,我们识别每个区域的特定令人讨进的miRNA集,我们确认MIR-132/212集群在负荷患者中的每一个区域中都可以管制,一致随着这些miRNA在广告发病机制中发挥作用。值得注意的是,荧光素酶测定表明miR-184能够靶向3'UTR NR4A2 - 已知参与认知函数和长期记忆,其表达水平与海马中miR-184的表达水平与匹配相反。最后,RNA编辑分析显示负载海马的一般RNA编辑减少,其中14个备用位点在11个基因中显着和差异地编辑。我们的数据强调负载大脑的特定转录变化,并提供了理解表征负荷进展的分子变化的重要信息来源。

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