Friggi-Grelin Florence, Lavenant-Staccini Laurence, Therond Pascal
Institut de Recherches Signalisation, Biologie du Développement et Cancer, Université de Nice-Sophia Antipolis, CNRS UMR 6543, Centre de Biochimie, Parc Valrose, 06108 Nice Cedex 2, France.
Genetics. 2008 May;179(1):429-39. doi: 10.1534/genetics.107.083733.
Hedgehog (Hh) signaling is critical for many developmental processes and for the genesis of diverse cancers. Hh signaling comprises a series of negative regulatory steps, from Hh reception to gene transcription output. We previously showed that stability of antagonistic regulatory proteins, including the coreceptor Smoothened (Smo), the kinesin-like Costal-2 (Cos2), and the kinase Fused (Fu), is affected by Hh signaling activation. Here, we show that the level of these three proteins is also regulated by a microRNA cluster. Indeed, the overexpression of this cluster and resulting microRNA regulation of the 3'-UTRs of smo, cos2, and fu mRNA decreases the levels of the three proteins and activates the pathway. Further, the loss of the microRNA cluster or of Dicer function modifies the 3'-UTR regulation of smo and cos2 mRNA, confirming that the mRNAs encoding the different Hh components are physiological targets of microRNAs. Nevertheless, an absence of neither the microRNA cluster nor of Dicer activity creates an hh-like phenotype, possibly due to dose compensation between the different antagonistic targets. This study reveals that a single signaling pathway can be targeted at multiple levels by the same microRNAs.
刺猬信号通路(Hh)对于许多发育过程以及多种癌症的发生至关重要。Hh信号通路包括一系列从Hh接收至基因转录输出的负调控步骤。我们之前表明,包括共受体平滑受体(Smo)、驱动蛋白样蛋白Costal-2(Cos2)和激酶融合蛋白(Fu)在内的拮抗调节蛋白的稳定性受Hh信号通路激活的影响。在此,我们表明这三种蛋白的水平也受一个微小RNA簇调控。实际上,该簇的过表达以及由此产生的微小RNA对smo、cos2和fu mRNA的3'-非翻译区的调控降低了这三种蛋白的水平并激活了该信号通路。此外,微小RNA簇或Dicer功能的缺失改变了smo和cos2 mRNA的3'-非翻译区调控,证实编码不同Hh组分的mRNA是微小RNA的生理靶标。然而,微小RNA簇或Dicer活性的缺失均未产生hh样表型,这可能是由于不同拮抗靶标之间的剂量补偿所致。这项研究揭示了单一信号通路可被相同的微小RNA在多个水平上靶向作用。