Inhibition of the CRAF/prohibitin interaction reverses CRAF-dependent resistance to vemurafenib

N A Doudican1, S J Orlow1,2

  • 1The Ronald O. Perelman Department of Dermatology, New York University School of Medicine, New York, NY, USA.

Oncogene
|June 21, 2016
PubMed

Insights

Targeting Prohibitin 1 (PHB1) may overcome vemurafenib resistance in melanoma. Rocaglamide A disrupts PHB1-CRAF interaction, inhibiting tumor growth and inducing apoptosis in preclinical models.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • Activating BRAF mutations drive MAPK signaling in cancers like melanoma.
  • BRAF inhibitors (e.g., vemurafenib) are effective but resistance is common.
  • CRAF overexpression reactivates MAPK signaling, causing vemurafenib resistance in melanoma.

Purpose of the Study:

  • To investigate the role of Prohibitin 1 (PHB1) in CRAF-mediated vemurafenib resistance.
  • To assess the therapeutic potential of targeting the PHB1-CRAF interaction.

Main Methods:

  • Developed a CRAF-mediated model of vemurafenib resistance in melanoma cells.
  • Utilized rocaglamide A to disrupt PHB1-CRAF interaction.
  • Evaluated effects on MEK/ERK signaling, cell growth, apoptosis, and in vivo xenograft models.

Main Results:

  • CRAF overexpression conferred resistance to BRAF-targeting agents.
  • Rocaglamide A disrupted PHB1-CRAF interaction, reducing MEK/ERK signaling.
  • Rocaglamide A inhibited melanoma cell growth, induced apoptosis, and showed efficacy in xenografts.

Conclusions:

  • PHB1 is essential for CRAF-mediated ERK1/2 activation.
  • PHB1 is a potential therapeutic target for overcoming vemurafenib resistance.
  • Rocaglamide A demonstrates preclinical efficacy against CRAF-mediated resistance.

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