HRAS promotes mutant NRAS–driven transformation with codon and allele specificity

Wild-type RAS family members determine the signaling and therapeutic response in cancers driven by mutant HRAS and KRAS because they activate alternate RAS effector pathways. Here, we found that the requirement for wild-type RAS to support mutant NRAS–driven transformation correlated with codon-specific differences in GTP hydrolysis. NRAS with mutations at either Gly 12 (G12X) or Gly 13 (G13X), which retained the GDP-GTP cycling function, had modest autonomous transforming potential. In contrast, NRAS with GTP-locking mutations at Gln 61 (Q61X mutants) was uncoupled from receptor tyrosine kinase (RTK) input, rendering wild-type RAS an obligate partner for RTK-stimulated signaling and oncogenesis. In RASless cells expressing mutant NRAS, reintroduction of wild-type HRAS was sufficient to restore signaling and transformation. Global dependency mapping in human cancer cells revealed functional partitioning, wherein mutant NRAS promoted MAPK signaling and wild-type HRAS promoted PI3K-AKT survival signaling. Consequently, allele-specific or pan-RAS(ON) inhibitors synergized with inhibitors of proximal RTK signaling or of wild-type HRAS or KRAS to overcome this signaling plasticity. Pan-RAS(ON) and HRAS inhibition was synergistic for all NRAS mutants tested, with Q61X mutants showing greater sensitivity. These findings define the signaling partnership between mutant NRAS and wild-type HRAS as a targetable vulnerability and provide a biochemical blueprint for dual RAS inhibition in NRAS -mutated malignancies.

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Publication Details

Journal
Science Signaling
Published
2026-09-08
DOI
https://doi.org/10.1126/scisignal.aej6209
Primary Topic
Protein Kinase Regulation and GTPase Signaling
Type
article
Field-Weighted Citation Impact
0.00

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article

HRAS promotes mutant NRAS–driven transformation with codon and allele specificity

Picabo Binette, Marielle E. Yohe, Vanessa Wall, Matthew D. Wilkerson et al.
Science Signaling
Protein Kinase Regulation and GTPase Signaling
article

HRAS promotes mutant NRAS–driven transformation with codon and allele specificity

Picabo Binette, Marielle E. Yohe, Vanessa Wall, Matthew D. Wilkerson, Robert L. Kortum, Bridget A. Finniff, Joseph P. LaMorte, Dominic Esposito, Jacob M. Hughes, Hyun Lee, Ariana Covas, Sarasi K. Gunasekara
article en

Abstract

Wild-type RAS family members determine the signaling and therapeutic response in cancers driven by mutant HRAS and KRAS because they activate alternate RAS effector pathways. Here, we found that the requirement for wild-type RAS to support mutant NRAS–driven transformation correlated with codon-specific differences in GTP hydrolysis. NRAS with mutations at either Gly 12 (G12X) or Gly 13 (G13X), which retained the GDP-GTP cycling function, had modest autonomous transforming potential. In contrast, NRAS with GTP-locking mutations at Gln 61 (Q61X mutants) was uncoupled from receptor tyrosine kinase (RTK) input, rendering wild-type RAS an obligate partner for RTK-stimulated signaling and oncogenesis. In RASless cells expressing mutant NRAS, reintroduction of wild-type HRAS was sufficient to restore signaling and transformation. Global dependency mapping in human cancer cells revealed functional partitioning, wherein mutant NRAS promoted MAPK signaling and wild-type HRAS promoted PI3K-AKT survival signaling. Consequently, allele-specific or pan-RAS(ON) inhibitors synergized with inhibitors of proximal RTK signaling or of wild-type HRAS or KRAS to overcome this signaling plasticity. Pan-RAS(ON) and HRAS inhibition was synergistic for all NRAS mutants tested, with Q61X mutants showing greater sensitivity. These findings define the signaling partnership between mutant NRAS and wild-type HRAS as a targetable vulnerability and provide a biochemical blueprint for dual RAS inhibition in NRAS -mutated malignancies.

Science SignalingVol. 19(954)
Leidos (United States) (US), Henry M. Jackson Foundation (US), Uniformed Services University of the Health Sciences (US), Frederick National Laboratory for Cancer Research (US), National Cancer Institute (US), Center for Cancer Research (US)
National Institutes of Health
Partnerships for the goals
Openalex Percentile: Top 18%
Protein Kinase Regulation and GTPase Signaling
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