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PMID: 41036607 Published · ppublish English

Pharmacogenomic Synthetic Lethal Screens Reveal Hidden Vulnerabilities and New Therapeutic Approaches for Treatment of NF1-Associated Tumors.

Molecular cancer therapeutics ·Vol. 25 ·No. 2 ·2026-02-04

Williams KB, Larsson AT, Keller BJ, Chaney KE, Williams RL, Bhunia MM, Draper GM, Jubenville TA, Hudson WA, Georg GI, Moertel CL, Ratner N, Largaespada DA

Abstract

Neurofibromatosis type I (NF1) is a common cancer predisposition syndrome caused by heterozygous loss-of-function mutations in the tumor-suppressor gene NF1. Individuals with NF1 develop benign tumors of the peripheral nervous system (neurofibromas), originating from the Schwann cell (SC) lineage after somatic loss of the wild-type NF1 allele, some of which progress further to malignant peripheral nerve sheath tumors (MPNST). There is only one FDA-approved targeted therapy for symptomatic plexiform neurofibromas and none approved for MPNSTs. The genetic basis of NF1 syndrome makes associated tumors ideal for using synthetic drug sensitivity approaches to uncover therapeutic vulnerabilities. We developed a drug discovery pipeline to identify therapeutics for NF1-related tumors using isogeneic pairs of NF1-proficient and NF1-deficient immortalized human SCs. We utilized these in a large-scale high-throughput screen for drugs that preferentially kill NF1-deficient cells, through which we identified 23 compounds capable of killing NF1-deficient SCs with selectivity. Multiple hits from this screen clustered into classes defined by the method of action. Four clinically interesting drugs from these classes were tested in vivo using both a genetically engineered mouse model of high-grade PNSTs and human MPNST xenografts. All drugs tested showed single-agent efficacy in these models as well as significant synergy when used in combination with the MEK inhibitor selumetinib. This high-throughput screen platform yielded novel therapeutically relevant compounds for the treatment of NF1-associated tumors and can serve as a tool to rapidly evaluate new compounds and combinations in the future.

Article Info
Journal
Molecular cancer therapeutics
Abbr.
Mol Cancer Ther
ISSN
1538-8514
Published
2026-02-04
Language
English
Country/Region
United States
NLM ID
101132535
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