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ErbB-3 activation by NRG-1β sustains growth and promotes vemurafenib resistance in BRAF-V600E colon cancer stem cells (CSCs)

  • Pramudita R. Prasetyanti
  • , Emily Capone
  • , Daniela Barcaroli
  • , Daniela D'Agostino
  • , Silvia Volpe
  • , Antonina Benfante
  • , Sander van Hooff
  • , Valentina Iacobelli
  • , Cosmo Rossi
  • , Stefano Iacobelli
  • , Jan Paul Medema
  • , Vincenzo de Laurenzi
  • , Gianluca Sala

Research output: Contribution to journalArticlepeer-review

39 Citations (Scopus)

Abstract

Approximately 5-10% of metastatic colorectal cancers harbor a BRAF-V600E mutation, which is correlated with resistance to EGFR-targeted therapies and worse clinical outcome. Vice versa, targeted inhibition of BRAF-V600E with the selective inhibitor PLX 4032 (Vemurafenib) is severely limited due to feedback re-activation of EGFR in these tumors. Mounting evidence indicates that upregulation of the ErbB-3 signaling axis may occur in response to several targeted therapeutics, including Vemurafenib, and NRG-1β-dependent re-activation of the PI3K/AKT survival pathway has been associated with therapy resistance. Here we show that colon CSCs express, next to EGFR and ErbB-2, also significant amounts of ErbB-3 on their membrane. This expression is functional as NRG-1β strongly induces AKT/PKB and ERK phosphorylation, cell proliferation, clonogenic growth and promotes resistance to Vemurafenib in BRAF-V600E mutant colon CSCs. This resistance was completely dependent on ErbB-3 expression, as evidenced by knockdown of ErbB-3. More importantly, resistance could be alleviated with therapeutic antibody blocking ErbB-3 activation, which impaired NRG-1β-driven AKT/PKB and ERK activation, clonogenic growth in vitro and tumor growth in xenograft models. In conclusion, our findings suggest that targeting ErbB-3 receptors could represent an effective therapeutic approach in BRAF-V600E mutant colon cancer.

Original languageEnglish
Pages (from-to)16902-16911
Number of pages10
JournalOncotarget
Volume6
Issue number19
DOIs
Publication statusPublished - 2015
Externally publishedYes

Keywords

  • Colon cancer stem cells
  • ErbB-3
  • NRG-1β
  • Vemurafenib

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