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天然 RNA 环作为有效的 microRNA 海绵发挥作用。

Natural RNA circles function as efficient microRNA sponges.

机构信息

Department of Molecular Biology and Genetics, Aarhus University, C.F. Møllers Alle 3, 8000C, Aarhus, Denmark.

出版信息

Nature. 2013 Mar 21;495(7441):384-8. doi: 10.1038/nature11993. Epub 2013 Feb 27.

DOI:10.1038/nature11993
PMID:23446346
Abstract

MicroRNAs (miRNAs) are important post-transcriptional regulators of gene expression that act by direct base pairing to target sites within untranslated regions of messenger RNAs. Recently, miRNA activity has been shown to be affected by the presence of miRNA sponge transcripts, the so-called competing endogenous RNA in humans and target mimicry in plants. We previously identified a highly expressed circular RNA (circRNA) in human and mouse brain. Here we show that this circRNA acts as a miR-7 sponge; we term this circular transcript ciRS-7 (circular RNA sponge for miR-7). ciRS-7 contains more than 70 selectively conserved miRNA target sites, and it is highly and widely associated with Argonaute (AGO) proteins in a miR-7-dependent manner. Although the circRNA is completely resistant to miRNA-mediated target destabilization, it strongly suppresses miR-7 activity, resulting in increased levels of miR-7 targets. In the mouse brain, we observe overlapping co-expression of ciRS-7 and miR-7, particularly in neocortical and hippocampal neurons, suggesting a high degree of endogenous interaction. We further show that the testis-specific circRNA, sex-determining region Y (Sry), serves as a miR-138 sponge, suggesting that miRNA sponge effects achieved by circRNA formation are a general phenomenon. This study serves as the first, to our knowledge, functional analysis of a naturally expressed circRNA.

摘要

微小 RNA(miRNAs)是重要的基因表达后转录调控因子,通过与信使 RNA 的非翻译区的靶位点直接碱基配对起作用。最近,miRNA 的活性已被证明受到 miRNA 海绵转录物的影响,在人类中称为竞争内源性 RNA,在植物中称为靶模拟。我们之前在人和鼠脑中鉴定了一种高度表达的环状 RNA(circRNA)。在这里,我们显示这种 circRNA 作为 miR-7 的海绵;我们将这种环状转录物命名为 ciRS-7(miR-7 的环状 RNA 海绵)。ciRS-7 含有 70 多个选择性保守的 miRNA 靶位点,并且以 miR-7 依赖的方式与 Argonaute(AGO)蛋白高度广泛相关。虽然 circRNA 完全抵抗 miRNA 介导的靶标失稳,但它强烈抑制 miR-7 的活性,导致 miR-7 靶标的水平增加。在小鼠脑中,我们观察到 ciRS-7 和 miR-7 的重叠共表达,特别是在新皮质和海马神经元中,表明存在高度的内源性相互作用。我们进一步表明,睾丸特异性 circRNA,性别决定区域 Y(Sry),作为 miR-138 的海绵,表明由 circRNA 形成的 miRNA 海绵效应是一种普遍现象。这项研究是我们所知的对天然表达的 circRNA 的首次功能分析。

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