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首页> 外文期刊>Neuropathology and applied neurobiology >Aberrant microRNA expression in the brains of neurodegenerative diseases: miR-29a decreased in Alzheimer disease brains targets neurone navigator 3
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Aberrant microRNA expression in the brains of neurodegenerative diseases: miR-29a decreased in Alzheimer disease brains targets neurone navigator 3

机译:神经退行性疾病的大脑中异常的microRNA表达:阿尔茨海默氏病大脑中针对神经元导航仪3的miR-29a降低

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Aims: MicroRNAs (miRNAs) are small non-coding RNAs that regulate translation^ repression of target mRNAs. Accumulating evidence indicates that various miRNAs, expressed in a spatially and temporally controlled that manner in the brain plays a key role in neuronal development. However, at present, the pathological implication of aberrant miRNA expression in neurodegenerative events remains largely unknown. To identify miRNAs closely associated with neurodegeneration, we performed miRNA expression profiling of brain tissues of various neurodegenerative diseases. Methods: We initially studied the frontal cortex derived from three amyotrophic lateral sclerosis patients by using a microarray of 723 human miRNAs. This was followed by enlargement of study population with quantitative RT-PCR analysis (n = 21). Results: By microarray analysis, we identified up-regulation of miR-29a, miR-29b and miR-338-3p in amyotrophiclateral sclerosis brains, but due to a great interindividual variation, we could not validate these results by quantitative RT-PCR. However, we found significant down-regulation of miR-29a in Alzheimer disease (AD) brains. The database search on TargetScan, PicTar and miRBase Target identified neurone navigator 3 (NAV3), a regulator of axpn guidance, as a principal target of miR-29a, and actually NAV3 mRNA levels were elevated in AD brains. MiR-29a-mediated down-regulation of NAV3 was verified by the luciferase reporter assay. By immunohistochemis-try, NAV3 expression was most evidently enhanced in degenerating pyramidal neurones in the cerebral cortex of AD. Conclusions: These observations suggest the hypothesis that underexpression of miR-29a affects neurodegenerative processes by enhancing neuronal NAV3 expression in AD brains.
机译:目的:MicroRNA(miRNA)是小的非编码RNA,可调节目标mRNA的翻译抑制。越来越多的证据表明,在大脑中以时空方式控制的各种miRNA在神经元发育中起关键作用。然而,目前,在神经退行性事件中异常miRNA表达的病理学含义仍是未知的。为了鉴定与神经变性密切相关的miRNA,我们对各种神经退行性疾病的脑组织进行了miRNA表达谱分析。方法:我们最初使用723条人类miRNA芯片研究了三名肌萎缩性侧索硬化症患者的额叶皮层。其次是通过定量RT-PCR分析扩大研究人群(n = 21)。结果:通过微阵列分析,我们鉴定了肌萎缩性侧索硬化性脑中miR-29a,miR-29b和miR-338-3p的上调,但是由于个体差异很大,我们无法通过定量RT-PCR验证这些结果。但是,我们发现阿尔茨海默氏病(AD)大脑中的miR-29a明显下调。在Tar​​getScan,PicTar和miRBase Target上进行的数据库搜索确定了神经元导航器3(NAV3)(即axpn引导的调节剂)是miR-29a的主要靶标,实际上,AD大脑中NAV3 mRNA的水平升高了。萤光素酶报告基因检测证实了MiR-29a介导的NAV3的下调。通过免疫组织化学试验,在AD的大脑皮层退化的锥体神经元中,NAV3表达最明显地增强。结论:这些观察结果提出了这样的假说,即miR-29a的低表达会通过增强AD大脑中神经元NAV3的表达来影响神经退行性过程。

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