Defining key signaling nodes and therapeutic biomarkers in NF1-mutant cancers

Clare F Malone1, Jody A Fromm1, Ophélia Maertens1

  • 1Genetics Division, Department of Medicine, Brigham and Women's Hospital; Harvard Medical School; and.

Cancer Discovery
|June 11, 2014
PubMed
Abstract

Insights

Targeting both mTORC1 and MEK is crucial for treating NF1-mutant cancers. This study identifies a noninvasive biomarker to measure the effectiveness of combined therapy in clinical trials.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Genetics

Background:

  • Neurofibromatosis type 1 (NF1) is linked to cancers driven by abnormal RAS signaling.
  • Optimal therapeutic targets within the RAS pathway for NF1-mutant cancers remain unclear.

Purpose of the Study:

  • To identify key effectors and optimal therapeutic targets in NF1-mutant nervous system malignancies.
  • To establish a noninvasive biomarker for assessing combined therapeutic inhibition in vivo.

Main Methods:

  • Investigated the role of PI3K effectors (mTORC1, mTORC2, AKT) in NF1-mutant cancers.
  • Utilized transcriptional profiling to define a signature of mTORC1-MEK inhibition.
  • Assessed the impact of combined inhibition on (18)F-FDG uptake.

Main Results:

  • Identified mTORC1 as the key PI3K effector, while mTORC2 and AKT were dispensable in NF1-mutant nervous system tumors.
  • Demonstrated that sustained inhibition of both mTORC1 and MEK is required for tumor regression.
  • Found that combined mTORC1 and MEK inhibition potently suppressed GLUT1 and reduced (18)F-FDG uptake, unlike in other cancer types.

Conclusions:

  • mTORC1 and MEK are critical therapeutic targets in NF1-mutant cancers.
  • Combined inhibition of mTORC1 and MEK is necessary for efficacy.
  • A noninvasive biomarker for effective combined target inhibition was established for clinical trials.

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