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MYCN-driven regulatory mechanisms controlling LIN28B in neuroblastoma

  • Anneleen Beckers
  • , Gert Van Peer
  • , Daniel R. Carter
  • , Moritz Gartlgruber
  • , Carl Herrmann
  • , Saurabh Agarwal
  • , Hetty H. Helsmoortel
  • , Kristina Althoff
  • , Jan J. Molenaar
  • , Belamy B. Cheung
  • , Johannes H. Schulte
  • , Yves Benoit
  • , Jason M. Shohet
  • , Frank Westermann
  • , Glenn M. Marshall
  • , Jo Vandesompele
  • , Katleen De Preter
  • , Frank Speleman

Research output: Contribution to journalArticlepeer-review

46 Citations (Scopus)

Abstract

LIN28B has been identified as an oncogene in various tumor entities, including neuroblastoma, a childhood cancer that originates from neural crest-derived cells, and is characterized by amplification of the MYCN oncogene. Recently, elevated LIN28B expression levels were shown to contribute to neuroblastoma tumorigenesis via let-7 dependent de-repression of MYCN. However, additional insight in the regulation of LIN28B in neuroblastoma is lacking. Therefore, we have performed a comprehensive analysis of the regulation of LIN28B in neuroblastoma, with a specific focus on the contribution of miRNAs.We show that MYCN regulates LIN28B expression in neuroblastoma tumors via two distinct parallel mechanisms. First, through an unbiased LIN28B-3'UTR reporter screen, we found that miR-26a-5p and miR-26b-5p regulate LIN28B expression. Next, we demonstrated that MYCN indirectly affects the expression of miR-26a-5p, and hence regulates LIN28B, therefore establishing an MYCN-miR-26a-5p-LIN28B regulatory axis. Second, we provide evidence that MYCN regulates LIN28B expression via interaction with the LIN28B promoter, establishing a direct MYCN-LIN28B regulatory axis. We believe that these findings mark LIN28B as an important effector of the MYCN oncogenic phenotype and underline the importance of MYCN-regulated miRNAs in establishing the MYCN-driven oncogenic process.

Original languageEnglish
Pages (from-to)123-132
Number of pages10
JournalCancer Letters
Volume366
Issue number1
DOIs
Publication statusPublished - 28 Sept 2015
Externally publishedYes

Keywords

  • Cross-species
  • Integrative analysis
  • MicroRNA

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