bioRxiv · 10.64898/2025.12.24.696437
Adaptive regulation of dNTP homeostasis confers osimertinib resistance in EGFR mutant non-small cell lung carcinoma
Abstract
Maintaining sustained deoxyribonucleotide triphosphate (dNTP) pools is essential for DNA replication fidelity and genome stability. In EGFR-mutant non-small cell lung carcinoma (NSCLC), we find that disruption of dNTP homeostasis plays a critical role in determining sensitivity to the EGFR inhibitor osimertinib and in shaping mechanisms of acquired resistance. Transcriptomic and biochemical analyses revealed that osimertinib suppresses RRM2 expression, a key regulator of dNTP synthesis, through the downregulation of the transcription factor MYBL2. In response to osimertinib-mediated replication stress and dNTP depletion, cells activated a compensatory pathway involving the stress-inducible ribonucleotide reductase subunit RRM2B via a novel transcriptional regulator, TNNT3. We further identified CHK2 signaling as essential for TNNT3 nuclear translocation and RRM2B transcriptional activation. Inhibition of CHK2 or combined CHK1/2 blockade impaired RRM2B induction, exacerbated replication stress, and delayed the development of osimertinib resistance both in vitro and in xenograft models. Collectively, our findings reveal that EGFR-mutant NSCLC cells rely on a dynamic EGFR-MYBL2-RRM2 and CHK2-TNNT3-RRM2B regulatory axis to maintain dNTP pool balance under therapeutic pressure. Disruption of this axis sensitizes tumors to osimertinib and impairs the acquisition of resistance, highlighting dNTP metabolism as a critical vulnerability and actionable target in EGFR-driven lung cancer. STATEMENT OF SIGNIFICANCETargeting dNTP metabolism via the EGFR-MYBL2-RRM2 and CHK2-TNNT3-RRM2B regulatory axis sensitizes EGFR-mutant NSCLC to osimertinib treatment and delays drug resistance, revealing a novel and actionable therapeutic vulnerability in EGFR-driven lung cancer.
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Xie, Q., Wang, Y., Lei, Y., Fernandez, A., Hess, J., Yang, L., Williams, T. M., Zheng, L., Shen, B., Li, M.. 2025-12-25. Adaptive regulation of dNTP homeostasis confers osimertinib resistance in EGFR mutant non-small cell lung carcinoma. https://doi.org/10.64898/2025.12.24.696437
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