Kim Young-Kook, Yu Jieun, Han Tae Su, Park Seong-Yeon, Namkoong Bumjin, Kim Dong Hyuk, Hur Keun, Yoo Moon-Won, Lee Hyuk-Joon, Yang Han-Kwang, Kim V Narry
Department of Biological Sciences, Seoul National University, Seoul, Korea.
Nucleic Acids Res. 2009 Apr;37(5):1672-81. doi: 10.1093/nar/gkp002. Epub 2009 Jan 19.
microRNAs (miRNAs) play integral roles in diverse processes including tumorigenesis. miRNA gene loci are often found in close conjunction, and such clustered miRNA genes are transcribed from a common promoter to generate polycistronic primary transcript. The primary transcript (pri-miRNA) is then processed by two RNase III proteins to release the mature miRNAs. Although it has been speculated that the miRNAs in the same cluster may play related biological functions, this has not been experimentally addressed. Here we report that the miRNAs in two clusters (miR-106b approximately 93 approximately 25 and miR-222 approximately 221) suppress the Cip/Kip family members of Cdk inhibitors (p57(Kip2), p21(Cip1) and p27(Kip1)). We show that miR-25 targets p57 through the 3'-UTR. Furthermore, miR-106b and miR-93 control p21 while miR-222 and miR-221 regulate both p27 and p57. Ectopic expression of these miRNAs results in activation of Cdk2 and facilitation of G1/S phase transition. Consistent with these results, both clusters are abnormally upregulated in gastric cancer tissues compared to the corresponding normal tissues. Ectopic expression of miR-222 cluster enhanced tumor growth in the mouse xenograft model. Our study demonstrates the functional associations between clustered miRNAs and further implicates that effective cancer treatment may require a combinatorial approach to target multiple oncogenic miRNA clusters.
微小RNA(miRNA)在包括肿瘤发生在内的多种过程中发挥着不可或缺的作用。miRNA基因位点常常紧密相连,这些成簇的miRNA基因从一个共同的启动子转录,产生多顺反子初级转录本。然后,初级转录本(pri-miRNA)由两种核糖核酸酶III蛋白加工,以释放成熟的miRNA。尽管有人推测同一簇中的miRNA可能发挥相关的生物学功能,但这尚未通过实验得到证实。在此,我们报告两个簇(miR-106b9325和miR-222~221)中的miRNA抑制细胞周期蛋白依赖性激酶抑制剂(Cdk抑制剂)的Cip/Kip家族成员(p57(Kip2)、p21(Cip1)和p27(Kip1))。我们发现miR-25通过3'-非翻译区靶向p57。此外,miR-106b和miR-93调控p21,而miR-222和miR-221则同时调节p27和p57。这些miRNA的异位表达导致Cdk2激活并促进G1/S期转换。与这些结果一致,与相应的正常组织相比,这两个簇在胃癌组织中均异常上调。miR-222簇的异位表达增强了小鼠异种移植模型中的肿瘤生长。我们的研究证明了成簇miRNA之间的功能关联,并进一步表明有效的癌症治疗可能需要一种联合方法来靶向多个致癌miRNA簇。