Sotorasib Is a Pan-RASG12C Inhibitor Capable of Driving Clinical Response in NRASG12C Cancers
Douglas A Rubinson1, Noritaka Tanaka2, Ferran Fece de la Cruz2
1Dana Farber Cancer Institute and Department of Medicine, Harvard Medical School, Boston, Massachusetts.
Abstract:
KRASG12C inhibitors, like sotorasib and adagrasib, potently and selectively inhibit KRASG12C through a covalent interaction with the mutant cysteine, driving clinical efficacy in KRASG12C tumors. Because amino acid sequences of the three main RAS isoforms-KRAS, NRAS, and HRAS-are highly similar, we hypothesized that some KRASG12C inhibitors might also target NRASG12C and/or HRASG12C, which are less common but critical oncogenic driver mutations in some tumors. Although some inhibitors, like adagrasib, were highly selective for KRASG12C, others also potently inhibited NRASG12C and/or HRASG12C. Notably, sotorasib was five-fold more potent against NRASG12C compared with KRASG12C or HRASG12C. Structural and reciprocal mutagenesis studies suggested that differences in isoform-specific binding are mediated by a single amino acid: Histidine-95 in KRAS (Leucine-95 in NRAS). A patient with NRASG12C colorectal cancer treated with sotorasib and the anti-EGFR antibody panitumumab achieved a marked tumor response, demonstrating that sotorasib can be clinically effective in NRASG12C-mutated tumors.
Significance:
These studies demonstrate that certain KRASG12C inhibitors effectively target all RASG12C mutations and that sotorasib specifically is a potent NRASG12C inhibitor capable of driving clinical responses. These findings have important implications for the treatment of patients with NRASG12C or HRASG12C cancers and could guide design of NRAS or HRAS inhibitors. See related commentary by Seale and Misale, p. 698. This article is featured in Selected Articles from This Issue, p. 695.
Insights
Certain KRASG12C inhibitors, including sotorasib, also target NRASG12C and HRASG12C mutations. Sotorasib is a potent NRASG12C inhibitor, showing clinical efficacy in NRASG12C-mutated cancers.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- KRASG12C inhibitors like sotorasib and adagrasib target specific mutations.
- RAS isoforms (KRAS, NRAS, HRAS) share high sequence similarity.
- NRASG12C and HRASG12C are less common but critical oncogenic drivers.
Purpose of the Study:
- To investigate if KRASG12C inhibitors target NRASG12C and/or HRASG12C mutations.
- To understand the molecular basis for isoform-specific inhibition.
- To assess the clinical potential of these inhibitors in non-KRASG12C RAS-mutated cancers.
Main Methods:
- Biochemical assays to assess inhibitor potency against different RAS isoforms.
- Structural studies to elucidate binding interactions.
- Reciprocal mutagenesis to identify key amino acid residues.
- Clinical case study of a patient with NRASG12C colorectal cancer.
Main Results:
- Some KRASG12C inhibitors, notably sotorasib, potently inhibit NRASG12C and HRASG12C.
- Sotorasib demonstrated five-fold greater potency against NRASG12C compared to KRASG12C or HRASG12C.
- Histidine-95 in KRAS (Leucine-95 in NRAS) was identified as a key determinant of isoform specificity.
- A patient with NRASG12C colorectal cancer experienced a significant response to sotorasib plus panitumumab.
Conclusions:
- Certain KRASG12C inhibitors effectively target all RASG12C mutations.
- Sotorasib is a potent NRASG12C inhibitor with demonstrated clinical activity.
- Findings support the development of NRASG12C and HRASG12C inhibitors and guide treatment strategies for these cancers.
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