miR-17-92 fine-tunes MYC expression and function to ensure optimal B cell lymphoma growth

The synergism between c-MYC and miR-17-19b, a truncated version of the miR-17-92 cluster, is well-documented during tumor initiation. However, little is known about miR-17-19b function in established cancers. Here we investigate the role of miR-17-19b in c-MYC-driven lymphomas by integrating SILAC-b...

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Veröffentlicht in:Nature communications 2015-11, Vol.6 (1), p.8725-8725, Article 8725
Hauptverfasser: Mihailovich, Marija, Bremang, Michael, Spadotto, Valeria, Musiani, Daniele, Vitale, Elena, Varano, Gabriele, Zambelli, Federico, Mancuso, Francesco M., Cairns, David A., Pavesi, Giulio, Casola, Stefano, Bonaldi, Tiziana
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Sprache:eng
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Zusammenfassung:The synergism between c-MYC and miR-17-19b, a truncated version of the miR-17-92 cluster, is well-documented during tumor initiation. However, little is known about miR-17-19b function in established cancers. Here we investigate the role of miR-17-19b in c-MYC-driven lymphomas by integrating SILAC-based quantitative proteomics, transcriptomics and 3′ untranslated region (UTR) analysis upon miR-17-19b overexpression. We identify over one hundred miR-17-19b targets, of which 40% are co-regulated by c-MYC. Downregulation of a new miR-17/20 target, checkpoint kinase 2 (Chek2), increases the recruitment of HuR to c-MYC transcripts, resulting in the inhibition of c-MYC translation and thus interfering with in vivo tumor growth. Hence, in established lymphomas, miR-17-19b fine-tunes c-MYC activity through a tight control of its function and expression, ultimately ensuring cancer cell homeostasis. Our data highlight the plasticity of miRNA function, reflecting changes in the mRNA landscape and 3′ UTR shortening at different stages of tumorigenesis. The synergism between c-MYC and miR-17-19b plays an important role in lymphoma initiation. In this study, the authors identify a panel of targets co-regulated by miR-17-19b and in MYC -driven lymphoma and unravel the molecular mechanism through which miR-17-19b inhibits MYC translation.
ISSN:2041-1723
2041-1723
DOI:10.1038/ncomms9725