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Updated: Apr 28, 2026

Author Spotlight: Finding New Therapeutic Targets for Malignant Peripheral Nerve Sheath Tumor Through Genome-Scale shRNA Screens
Published on: August 25, 2023
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.
Unlabelled:
NF1 encodes a RAS GTPase-activating protein. Accordingly, aberrant RAS activation underlies the pathogenesis of NF1-mutant cancers. Nevertheless, it is unclear which RAS pathway components represent optimal therapeutic targets. Here, we identify mTORC1 as the key PI3K effector in NF1-mutant nervous system malignancies and conversely show that mTORC2 and AKT are dispensable. However, we find that tumor regression requires sustained inhibition of both mTORC1 and MEK. Transcriptional profiling studies were therefore used to establish a signature of effective mTORC1-MEK inhibition in vivo. We unexpectedly found that the glucose transporter GLUT1 was potently suppressed, but only when both pathways were inhibited. Moreover, unlike VHL- and LKB1-mutant cancers, reduction of (18)F-FDG uptake required the suppression of both mTORC1 and MEK. Together, these studies identify optimal and suboptimal therapeutic targets in NF1-mutant malignancies and define a noninvasive means of measuring combined mTORC1-MEK inhibition in vivo, which can be readily incorporated into clinical trials.
Significance:
This work demonstrates that mTORC1 and MEK are key therapeutic targets in NF1-mutant cancers and establishes a noninvasive biomarker of effective, combined target inhibition that can be evaluated in clinical trials.
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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