Abstract

MicroRNAs contribute to cancer development by acting as oncogenes or tumor suppressor genes. However, only a few microRNA target genes were determined. We identified a nearly perfect complementarity between miR-206 and the 3'-untranslated regions of both mouse and human notch3. Expression of miR-206 decreased the luciferase activity dose-dependently when cotransfected with the mouse or human notch3 3'-untranslated region-luciferase reporter containing the miR-206 target site in HeLa cells. This suppression was relieved by deletion and mutation of the miR-206-binding site and was partially recovered by expression of notch3 or by a specific inhibitor of miR-206. Interestingly, overexpression of miR-206 decreased the levels of both Notch3 protein and mRNA. Expression of miR-206 markedly induced apoptotic cell death and blocked the anti-apoptotic activity of Notch3. In addition, ectopic expression of miR-206 inhibited HeLa cell migration and focus formation. Therefore, we identified miR-206 as a pro-apoptotic activator of cell death, which was associated with its inhibition of notch3 signaling and tumor formation. The inhibition of cancer cell migration and focus formation by miR-206 strongly suggests that miR-206 may function as a novel tumor suppressor.

Highlights

  • Studies identified miR-206 as a skeletal musclespecific miRNA involved in muscle development (10 –12)

  • We further show that miR-206 inhibits tumor cell migration and focus formation

  • Because the miR-206 target site was observed in the human notch3 3Ј-untranslated regions (3Ј-UTRs), we tested the effect of miR-206 on human Notch3 expression in HeLa cells

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Summary

Introduction

Studies identified miR-206 as a skeletal musclespecific miRNA involved in muscle development (10 –12). MEFs were used because our pilot study showed that notch3 expression and function, we constructed a miR-206 these cells expressed higher levels of notch3, which would promiR-206 Targets notch3 in Apoptosis vide a better detection system for notch3 down-regulation by miR-206. Because the miR-206 target site was observed in the human notch3 3Ј-UTR, we tested the effect of miR-206 on human Notch3 expression in HeLa cells.

Results
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