Plante Isabelle, Plé Hélène, Landry Patricia, Gunaratne Preethi H, Provost Patrick
CHUQ Research Center/CHUL Quebec, QC, Canada.
Front Genet. 2012 Jun 4;3:99. doi: 10.3389/fgene.2012.00099. eCollection 2012.
The ribonuclease Dicer plays a central role in the microRNA pathway by catalyzing the formation of 19-24-nucleotide (nt) long microRNAs. Subsequently incorporated into Argonaute 2 (Ago2) effector complexes, microRNAs are known to regulate messenger RNA (mRNA) translation. Whether shorter RNA species derived from microRNAs exist and play a role in mRNA regulation remains unknown. Here, we report the serendipitous discovery of a 12-nt long RNA species corresponding to the 5' region of the microRNA let-7, and tentatively termed semi-microRNA, or smiRNA. Using a smiRNA derived from the precursor of miR-223 as a model, we show that 12-nt long smiRNA species are devoid of any direct mRNA regulatory activity, as assessed in a reporter gene activity assay in transfected cultured human cells. However, smiR-223 was found to modulate the ability of the microRNA from which it derives to mediate translational repression or cleavage of reporter mRNAs. Our findings suggest that the 12-nt RNA species, generated along the microRNA pathway, may participate to the control of gene expression by regulating the activity of the related full-length mature microRNA in vivo.
核糖核酸酶Dicer在微小RNA(miRNA)途径中发挥核心作用,它催化形成19 - 24个核苷酸(nt)长的微小RNA。随后,微小RNA被整合到Argonaute 2(Ago2)效应复合物中,已知其可调节信使核糖核酸(mRNA)的翻译。源自微小RNA的较短RNA种类是否存在并在mRNA调节中发挥作用仍不清楚。在此,我们报告意外发现了一种与微小RNA let - 7的5'区域相对应的12 nt长的RNA种类,暂称为半微小RNA,或smiRNA。以源自miR - 223前体的smiRNA为模型,我们发现在转染的培养人细胞的报告基因活性测定中,12 nt长的smiRNA种类没有任何直接的mRNA调节活性。然而,发现smiR - 223可调节其来源的微小RNA介导报告mRNA翻译抑制或切割的能力。我们的研究结果表明,沿着微小RNA途径产生的12 nt RNA种类可能通过在体内调节相关全长成熟微小RNA的活性来参与基因表达的调控。