Selective Inhibition of KRASG13C Reveals an Increased Dependence on Wild-Type RAS Isoforms in Codon 13 RAS-Mutant Cancers

  • Cancer Discov. 2026 Jun 22. doi: 10.1158/2159-8290.CD-25-0886.
Kyle J Seamon  1 Yongxian Zhuang  2 Yu Chi Yang  1 Sujata Chakraborty  1 James Cregg  1 Aidan C A Tomlinson  1 Andrea Gould  1 Ethan Ahler  1 Benjamin J Maldonato  1 Jessica N Spradlin  1 Kristof Pota  1 Caroline Weller  1 Abby Marquez  1 Zhican Wang  1 Elena S Koltun  1 John E Knox  1 Adrian L Gill  3 Jacqueline A M Smith  1 Mallika Singh  1 Jingjing Jiang  1 David Wildes  1 Matthew Holderfield  1
Affiliations
  • 1. Revolution Medicines (United States) Redwood City, CA United States.
  • 2. Revolution Medicines (United States) Redwood City United States.
  • 3. Revolution Medicines (United States) Redwood City, California United States.
Abstract

Covalent KRAS G12C inhibitors have changed the treatment landscape for NSCLC and CRC patients, but numerous RAS-mutant cancers lack approved targeted therapies. Here we describe RMC-8839, an oral Ras(ON) G13C-selective, covalent, tri-complex inhibitor that induced tumor regressions in selected KRAS G13C-mutant xenograft models. However, one-third of KRAS G13C-mutant human Cancer cell lines in vitro showed incomplete Ras pathway suppression despite near-complete KRAS G13C engagement, suggesting a role for wild-type Ras(ON). We find that codon 13-mutant Ras differs from Other KRAS mutations, exhibiting decreased stability, increased nucleotide exchange, and substantial intrinsic and GAP-stimulated GTP hydrolysis, which decreases oncogenicity. Furthermore, co-occurring Ras pathway mutations leading to increased wild-type Ras activation are enriched in codon 13 mutant tumors. Consistent with a role for wild-type Ras(ON) signaling, combination of RMC-8839 with a Ras(ON) multi-selective inhibitor resulted in deeper inhibition of KRAS G13C-mutant xenograft tumor growth than either inhibitor alone.

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