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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >In vivo regulation of amyloid precursor protein neuronal splicing by microRNAs.
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In vivo regulation of amyloid precursor protein neuronal splicing by microRNAs.

机译:体内通过microRNA调节淀粉样前体蛋白神经元剪接。

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摘要

The beta-amyloid peptide that accumulate in Alzheimer's disease (AD) brain derive from proteolytic processing of the amyloid precursor protein (APP). Recent evidence suggest that microRNAs (miRNAs) participate in the post-transcriptional regulation of APP expression. Because gene dosage effects of the APP gene can cause genetic AD, dysregulation of the miRNA network could contribute significantly to disease. Here, we present evidence that, besides APP expression regulation, miRNAs are equally involved in the regulation of neuronal APP mRNA alternative splicing. Lack of miRNAs in post-mitotic neurons in vivo is associated with APP exons 7 and 8 inclusion, while ectopic expression of miR-124, an abundant neuronal-specific miRNA, reversed these effects in cultured neurons. Similar results were obtained by depletion of endogenous polypyrimidine tract binding protein 1 (PTBP1) in cells, a recognized miR-124 target gene. Furthermore, PTBP1 levels correlate with the presence of APP exons 7 and 8, while PTBP2 levels correlate with the skipping of these exons during neuronal differentiation. Finally, we show that miR-124 is down-regulated in AD brain. In sum, our results suggest that specific miRNAs are involved in the fine-tuning of APP alternative splicing in neurons. Since abnormal neuronal splicing of APP affects beta-amyloid peptide production, these results could contribute to the understanding of the implication of miRNAs in brain health and disease.
机译:在阿尔茨海默氏病(AD)大脑中积聚的β-淀粉样肽来源于淀粉样前体蛋白(APP)的蛋白水解过程。最近的证据表明,microRNA(miRNA)参与APP表达的转录后调控。由于APP基因的基因剂量效应可能会导致遗传性AD,因此miRNA网络的失调可能导致疾病。在这里,我们提供的证据表明,除了APP表达调控外,miRNA同样参与神经元APP mRNA选择性剪接的调控。体内有丝分裂后神经元中miRNA的缺乏与APP外显子7和8的包容有关,而miR-124的异位表达是一种丰富的神经元特异性miRNA,可逆转培养的神经元中的这些作用。通过消除细胞中的内源性聚嘧啶束结合蛋白1(PTBP1)(一种公认的miR-124靶基因),可以获得类似的结果。此外,PTBP1水平与APP外显子7和8的存在相关,而PTBP2水平与神经元分化过程中这些外显子的跳过相关。最后,我们显示miR-124在AD脑中被下调。总之,我们的结果表明,特定的miRNA参与了神经元APP选择性剪接的微调。由于APP的异常神经元剪接会影响β-淀粉样肽的产生,因此这些结果可能有助于理解miRNA在大脑健康和疾病中的意义。

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