Mutational processes impact the evolution of anti-EGFR antibody resistance in colorectal cancer

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Abstract

SUMMARY Anti-EGFR antibodies such as cetuximab are active against KRAS/NRAS wild-type colorectal cancers (CRC) but acquired resistance invariably evolves. Which mutational mechanisms enable resistance evolution and whether adaptive mutagenesis, a transient cetuximab-induced increase in mutagenesis, contributes in patients is unknown. We investigated this in exome sequencing data of 42 baseline and progression biopsies from cetuximab treated CRCs. Mutation loads did not increase from baseline to progression. Evidence for a contribution of cetuximab-induced mutagenesis was limited. However, the mutational Signature 17 was a key contributer of specific KRAS/NRAS and EGFR driver mutations that are common at acquired resistance. Signature 17 activity before treatment predicted shorter progression free survival. This demonstrates the utility of mutational signatures to predict cancer drug resistance evolution. SIGNIFICANCE Drug resistance evolution occurs ubiquitously in solid tumours during treatment with targeted drugs. Biomarkers that can be assessed prior to treatment to predict the time to resistance evolution and the genetic resistance mechanisms that will evolve have not been described. We identified the mutational Signature 17 as the first candidate biomarker that predicts shorter time to progression and several specific KRAS/NRAS and EGFR mutations that will likely evolve in CRCs during cetuximab treatment. Understanding the mutational mechanism underlying Signature 17 may open opportunities to delay resistance acquisition. The potential of mutational signatures to predict resistance to a broader range of drugs in other tumor types should be assessed.

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europepmc
last seen: 2026-05-19T01:45:01.086888+00:00
unpaywall
last seen: 2026-05-24T02:00:01.246996+00:00
License: Public-Domain