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HIF1α and HIF2α independently activate SRC to promote melanoma metastases

  • Sara C. Hanna
  • , Bhavani Krishnan
  • , Sean T. Bailey
  • , Stergios J. Moschos
  • , Pei Fen Kuan
  • , Takeshi Shimamura
  • , Lukas D. Osborne
  • , Marni B. Siegel
  • , Lyn M. Duncan
  • , E. Tim O'Brien
  • , Richard Superfine
  • , C. Ryan Miller
  • , M. Celeste Simon
  • , Kwok Kin Wong
  • , William Y. Kim
  • University of North Carolina at Chapel Hill
  • Loyola University Chicago
  • Massachusetts General Hospital
  • University of Pennsylvania
  • Harvard University
  • Ludwig Center at Dana-Farber/Harvard Cancer Center

Research output: Contribution to journalArticlepeer-review

143 Scopus citations

Abstract

Malignant melanoma is characterized by a propensity for early lymphatic and hematogenous spread. The hypoxia-inducible factor (HIF) family of transcription factors is upregulated in melanoma by key oncogenic drivers. HIFs promote the activation of genes involved in cancer initiation, progression, and metastases. Hypoxia has been shown to enhance the invasiveness and metastatic potential of tumor cells by regulating the genes involved in the breakdown of the ECM as well as genes that control motility and adhesion of tumor cells. Using a Pten-deficient, Braf-mutant genetically engineered mouse model of melanoma, we demonstrated that inactivation of HIF1α or HIF2α abrogates metastasis without affecting primary tumor formation. HIF1α and HIF2α drive melanoma invasion and invadopodia formation through PDGFRα and focal adhesion kinase-mediated (FAK-mediated) activation of SRC and by coordinating ECM degradation via MT1-MMP and MMP2 expression. These results establish the importance of HIFs in melanoma progression and demonstrate that HIF1α and HIF2α activate independent transcriptional programs that promote metastasis by coordinately regulating cell invasion and ECM remodeling.

Original languageEnglish
Pages (from-to)2078-2093
Number of pages16
JournalJournal of Clinical Investigation
Volume123
Issue number5
DOIs
StatePublished - May 1 2013

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