Friedrich Miescher Institute for Biomedical Research, PO Box 2543, 4002 Basel, Switzerland.
Nucleic Acids Res. 2012 Jun;40(11):5088-100. doi: 10.1093/nar/gks148. Epub 2012 Feb 23.
The microRNA (miRNA)-mediated repression of protein synthesis in mammalian cells is a reversible process. Target mRNAs with regulatory AU-rich elements (AREs) in their 3'-untranslated regions (3'-UTR) can be relieved of miRNA repression under cellular stress in a process involving the embryonic lethal and altered vision family ARE-binding protein HuR. The HuR-mediated derepression occurred even when AREs were positioned at a considerable distance from the miRNA sites raising questions about the mechanism of HuR action. Here, we show that the relief of miRNA-mediated repression involving HuR can be recapitulated in different in vitro systems in the absence of stress, indicating that HuR alone is sufficient to relieve the miRNA repression upon binding to RNA ARE. Using in vitro assays with purified miRISC and recombinant HuR and its mutants, we show that HuR, likely by its property to oligomerize along RNA, leads to the dissociation of miRISC from target RNA even when miRISC and HuR binding sites are positioned at a distance. Further, we demonstrate that HuR association with AREs can also inhibit miRNA-mediated deadenylation of mRNA in the Krebs-2 ascites extract, in a manner likewise depending on the potential of HuR to oligomerize.
哺乳动物细胞中 microRNA (miRNA) 介导的蛋白质合成抑制是一个可逆的过程。在细胞应激下,具有调节性 AU 丰富元件 (ARE) 的靶 mRNA 可以解除 miRNA 的抑制,该过程涉及胚胎致死和改变视觉家族 ARE 结合蛋白 HuR。即使 ARE 位于 miRNA 位点相当远的位置,HuR 介导的去抑制也会发生,这引发了关于 HuR 作用机制的问题。在这里,我们表明,在没有应激的情况下,不同的体外系统可以重现涉及 HuR 的 miRNA 介导的抑制缓解,表明 HuR 单独结合 RNA ARE 就足以解除 miRNA 的抑制。使用纯化的 miRISC 和重组 HuR 及其突变体的体外测定,我们表明 HuR 可能通过其沿 RNA 寡聚化的特性,导致 miRISC 从靶 RNA 解离,即使 miRISC 和 HuR 结合位点之间存在距离。此外,我们证明 HuR 与 ARE 的结合也可以抑制 Krebs-2 腹水提取物中 mRNA 的 miRNA 介导的脱腺苷酸化,这种方式同样取决于 HuR 寡聚化的潜力。