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Loss of BCL9/9l suppresses Wnt driven tumourigenesis in models that recapitulate human cancer

  • David M. Gay
  • , Rachel A. Ridgway
  • , Miryam Müeller
  • , Michael C. Hodder
  • , Ann Hedley
  • , William Clark
  • , Joshua D. Leach
  • , Rene Jackstadt
  • , Colin Nixon
  • , David J. Huels
  • , Andrew D. Campbell
  • , Thomas G. Bird
  • , Owen J. Sansom

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Different thresholds of Wnt signalling are thought to drive stem cell maintenance, regeneration, differentiation and cancer. However, the principle that oncogenic Wnt signalling could be specifically targeted remains controversial. Here we examine the requirement of BCL9/9l, constituents of the Wnt-enhanceosome, for intestinal transformation following loss of the tumour suppressor APC. Although required for Lgr5+ intestinal stem cells and regeneration, Bcl9/9l deletion has no impact upon normal intestinal homeostasis. Loss of BCL9/9l suppressed many features of acute APC loss and subsequent Wnt pathway deregulation in vivo. This resulted in a level of Wnt pathway activation that favoured tumour initiation in the proximal small intestine (SI) and blocked tumour growth in the colon. Furthermore, Bcl9/9l deletion completely abrogated β-catenin driven intestinal and hepatocellular transformation. We speculate these results support the just-right hypothesis of Wnt–driven tumour formation. Importantly, loss of BCL9/9l is particularly effective at blocking colonic tumourigenesis and mutations that most resemble those that occur in human cancer.
Original languageEnglish
Article number723
JournalNature communications
Volume10
Issue number1
DOIs
Publication statusPublished - 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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