首页> 美国卫生研究院文献>Frontiers in Neurology >microRNA-34a (miRNA-34a) Mediated Down-Regulation of the Post-synaptic Cytoskeletal Element SHANK3 in Sporadic Alzheimers Disease (AD)
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microRNA-34a (miRNA-34a) Mediated Down-Regulation of the Post-synaptic Cytoskeletal Element SHANK3 in Sporadic Alzheimers Disease (AD)

机译:microRNA-34a(miRNA-34a)在散发性阿尔茨海默氏病(AD)中介导的突触后细胞骨架元件SHANK3的下调

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摘要

Integrating a combination of bioinformatics, microRNA microfluidic arrays, ELISA analysis, LED Northern, and transfection-luciferase reporter assay data using human neuronal-glial (HNG) cells in primary culture we have discovered a set of up-regulated microRNAs (miRNAs) linked to a small family of down-regulated messenger RNAs (mRNAs) within the superior temporal lobe neocortex (Brodmann A22) of sporadic Alzheimer's disease (AD) brain. At the level of mRNA abundance, the expression of a significant number of human brain genes found to be down-regulated in sporadic AD neocortex appears to be due to the increased abundance of a several brain-abundant inducible miRNAs. These up-regulated miRNAs—including, prominently, miRNA-34a—have complimentary RNA sequences in the 3′ untranslated-region (3′-UTR) of their target-mRNAs that results in the pathological down-regulation in the expression of important brain genes. An up-regulated microRNA-34a, already implicated in age-related inflammatory-neurodegeneration–appears to down-regulate key mRNA targets involved in synaptogenesis and synaptic-structure, distinguishing neuronal deficits associated with AD neuropathology. One significantly down-regulated post-synaptic element in AD is the proline-rich SH3 and multiple-ankyrin-repeat domain SHANK3 protein. Bioinformatics, microRNA array analysis and SHANK3-mRNA-3′UTR luciferase-reporter assay confirmed the importance of miRNA-34a in the regulation of SHANK3 expression in HNG cells. This paper reports on recent studies of a miRNA-34a-up-regulation coupled to SHANK3 mRNA down-regulation in sporadic AD superior-temporal lobe compared to age-matched controls. These findings further support our hypothesis of an altered miRNA-mRNA coupled signaling network in AD, much of which is supported, and here reviewed, by recently reported experimental-findings in the scientific literature.
机译:在原代培养中使用人类神经胶质(HNG)细胞整合了生物信息学,microRNA微流控阵列,ELISA分析,LED Northern和转染荧光素酶报告基因检测数据的组合,我们发现了一组上调的microRNA(miRNA)与散发性阿尔茨海默氏病(AD)大脑上颞叶新皮层(Brodmann A22)中的一小类下调信使RNA(mRNA)。在mRNA丰度水平上,发现在散发性AD新皮层中被下调的大量人类大脑基因的表达似乎是由于几种大脑丰富的可诱导miRNA的丰度增加所致。这些上调的miRNA(主要是miRNA-34a)在其靶标mRNA的3'非翻译区(3'-UTR)中具有互补的RNA序列,从而导致重要脑部表达的病理性下调基因。上调的microRNA-34a,已经与年龄相关的炎症神经变性有关,似乎下调了涉及突触形成和突触结构的关键mRNA靶标,从而区分了与AD神经病理学相关的神经元缺陷。 AD中一种明显下调的突触后元件是富含脯氨酸的SH3和多个锚蛋白重复域SHANK3蛋白。生物信息学,microRNA阵列分析和SHANK3-mRNA-3'UTR荧光素酶报告基因测定证实了miRNA-34a在调节HNG细胞中SHANK3表达中的重要性。本文报道了与年龄匹配的对照组相比,散发性AD颞叶上的miRNA-34a上调与SHANK3 mRNA下调相结合的最新研究。这些发现进一步支持了我们关于AD中miRNA-mRNA偶联信号网络发生变化的假说,该假说在科学文献中最近报道的实验结果中得到了支持,并在此进行综述。

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