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Persistent TOP1 cleavage complexes drive adaptive resistance to EGFR-targeted therapies in lung cancer

GSE330247 Homo sapiens Expression profiling by high throughput sequencing 12 samples 2026/07/22 GPL24676
Summary
Resistance to targeted cancer therapies often arises from drug-tolerant cells (DTCs), which survive treatment by entering a non-proliferative state. Over time, DTCs can acquire mutations that contribute to cell reproliferation, but how non-proliferating DTCs accumulate such mutations remains unclear. Here, we show that EGFR inhibition in EGFR-mutated lung cancer transiently downregulates tyrosyl-DNA phosphodiesterase 1 (TDP1), a repair enzyme that resolves abortive topoisomerase I cleavage complexes (TOP1ccs). In DTCs, elevated reactive oxygen species promote TOP1cc trapping, while TDP1 downregulation impairs their repair, driving TOP1cc accumulation, resistance mutation acquisition, and cell reproliferation. We further find that TDP1 expression is absent in approximately 25% of EGFR-mutated lung cancers. In TDP1-deficient cells, combining EGFR inhibition with at sublethal concentrations of topotecan, which further increases TOP1ccs, abolishes cell reproliferation. Together, these findings identify TOP1cc accumulation as a mechanism linking drug tolerance to a mutagenic program that drives adaptive resistance, and reveal TDP1 loss as a targetable vulnerability in EGFR-mutated lung cancers.
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