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USP48 stabilizes YBX1 to enforce a Wnt-driven stemness circuit and osimertinib resistance in EGFR-mutant NSCLC
Kun-Chao Li1, Shuai Gan1, Shan Lu2
1Department of Cardiothoracic Surgery, The Second Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, 330000, China.
Abstract:
Osimertinib resistance remains a major obstacle to durable disease control of epidermal growth factor receptor (EGFR)-mutant non-small cell lung cancer (NSCLC), yet the regulatory circuitry that sustains a stem-like drug-tolerant state is incompletely understood. Here, the deubiquitinase (DUB) USP48 was identified as a critical determinant of acquired resistance through stabilization of Y-box binding protein 1 (YBX1) and reinforcement of Wnt/β-catenin signaling. CRISPR-Cas9 dropout screening of patient-derived organoids under osimertinib selection, integrated with multi-omics profiling and clinical correlation analyses, identified USP48 as a functionally selected vulnerability factor in resistant NSCLC. Mechanistically, USP48 associated with YBX1 and removed K48-linked polyubiquitin chains to prevent proteasomal degradation, thereby enabling YBX1-dependent transcriptional activation of PTK7 and subsequent amplification of Wnt-driven stemness programs. Notably, the canonical Wnt effector TCF7L2 directly upregulated USP48 transcription, establishing a positive feedback loop that locked resistant cells in a stable stem-like state. Therapeutically, genetic or pharmacological disruption of this axis, including inhibition of USP48 activity, blockade of downstream Wnt transcriptional output, disruption of the USP48-YBX1 interaction with glycyrrhizic acid, and lipid nanoparticle-mediated delivery of siUSP48-restored osimertinib sensitivity, achieved robust antitumor efficacy with survival benefits in orthotopic and patient-derived xenograft models. Collectively, our findings defined a DUB-centered positive feedback circuit that sustained osimertinib resistance, and highlighted USP48 as a therapeutically useful node to overcome EGFR-TKI resistance of EGFR-mutant NSCLC.
Insights
Osimertinib resistance in EGFR-mutant NSCLC is overcome by targeting USP48, a deubiquitinase that stabilizes YBX1 and boosts Wnt signaling, restoring drug sensitivity.
Area of Science:
- Oncology
- Molecular Biology
- Drug Resistance
Background:
- Osimertinib resistance is a major challenge in EGFR-mutant NSCLC treatment.
- The mechanisms sustaining stem-like drug-tolerant states in resistant NSCLC are not fully understood.
Purpose of the Study:
- To identify key regulators of acquired osimertinib resistance in EGFR-mutant NSCLC.
- To elucidate the role of USP48 in maintaining drug resistance and stemness.
- To explore therapeutic strategies targeting the USP48-YBX1-Wnt axis.
Main Methods:
- CRISPR-Cas9 dropout screening in patient-derived organoids under osimertinib selection.
- Multi-omics profiling and clinical correlation analyses.
- In vivo studies using orthotopic and patient-derived xenograft models.
Main Results:
- USP48 was identified as a critical factor in acquired osimertinib resistance.
- USP48 stabilizes YBX1 by preventing proteasomal degradation, enhancing Wnt/β-catenin signaling and stemness.
- A positive feedback loop involving TCF7L2 upregulating USP48 was established.
- Targeting USP48, YBX1 interaction, or Wnt signaling restored osimertinib sensitivity and showed antitumor efficacy.
Conclusions:
- USP48 acts as a central node in a positive feedback circuit driving osimertinib resistance in NSCLC.
- USP48 represents a promising therapeutic target to overcome EGFR-TKI resistance.
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