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Evidence for natural antisense transcript-mediated inhibition of microRNA function.

机译:天然反义转录物介导的microRNA功能抑制的证据。

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MicroRNAs (miRNAs) have the potential to regulate diverse sets of mRNA targets. In addition, mammalian genomes contain numerous natural antisense transcripts, most of which appear to be non-protein-coding RNAs (ncRNAs). We have recently identified and characterized a highly conserved non-coding antisense transcript for beta-secretase-1 (BACE1), a critical enzyme in Alzheimer's disease pathophysiology. The BACE1-antisense transcript is markedly up-regulated in brain samples from Alzheimer's disease patients and promotes the stability of the (sense) BACE1 transcript. RESULTS: We report here that BACE1-antisense prevents miRNA-induced repression of BACE1 mRNA by masking the binding site for miR-485-5p. Indeed, miR-485-5p and BACE1-antisense compete for binding within the same region in the open reading frame of the BACE1 mRNA. We observed opposing effects of BACE1-antisense and miR-485-5p on BACE1 protein in vitro and showed that Locked Nucleic Acid-antimiR mediated knockdown of miR-485-5p as well as BACE1-antisense over-expression can prevent the miRNA-induced BACE1 suppression. We found that the expression of BACE1-antisense as well as miR-485-5p are dysregulated in RNA samples from Alzheimer's disease subjects compared to control individuals. CONCLUSIONS: Our data demonstrate an interface between two distinct groups of regulatory RNAs in the computation of BACE1 gene expression. Moreover, bioinformatics analyses revealed a theoretical basis for many other potential interactions between natural antisense transcripts and miRNAs at the binding sites of the latter.
机译:MicroRNA(miRNA)具有调节多种mRNA靶标的潜力。另外,哺乳动物基因组包含许多天然反义转录本,其中大多数似乎是非蛋白质编码的RNA(ncRNA)。我们最近确定并表征了一种高度保守的非编码反义转录物,即β-分泌酶-1(BACE1),这是阿尔茨海默氏病病理生理学中的关键酶。在阿尔茨海默氏病患者的脑样本中,BACE1反义转录物显着上调,并促进了(有义)BACE1转录物的稳定性。结果:我们在这里报告BACE1反义通过掩盖miR-485-5p的结合位点来防止miRNA诱导的BACE1 mRNA阻遏。实际上,miR-485-5p和BACE1反义竞争在BACE1 mRNA开放阅读框中同一区域内的结合。我们观察到BACE1-反义和miR-485-5p在体外对BACE1蛋白的相反作用,并表明锁定核酸-antimiR介导的miR-485-5p的敲低以及BACE1-反义的过度表达可以防止miRNA诱导BACE1抑制。我们发现,与对照组相比,阿尔茨海默氏病受试者的RNA样品中BACE1反义以及miR-485-5p的表达失调。结论:我们的数据证明了在计算BACE1基因表达时两组不同调控RNA之间的接口。此外,生物信息学分析揭示了天然反义转录物与miRNA在其结合位点之间许多其他潜在相互作用的理论基础。

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