ArticleFrontiers in immunology2025
PSMD14 drives lung adenocarcinoma progression through HMMR stabilization and dual activation of TGF-β/Smad and PI3K/AKT/mTOR signaling.
Article in Frontiers in immunology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- PDIA1 promotes androgen receptor activation and prostate cancer cell survival through enhancing HMMR stability.FEBS letters · 2026Article
- Prognostic and therapeutic implications of PSMD14 in hepatocellular carcinoma: an integrative analysis of transcriptomic and single-cell profiles.Translational cancer research · 2026Article
- Expression of PIEZO1 in lung adenocarcinoma correlates with PD-L1 expression, cell migration, and poor prognosis: an exploratory study.Discover oncology · 2026Article
- PSMD4 promotes malignant phenotypes and is associated with angiogenesis-related signaling and immune remodeling in hepatocellular carcinoma.Discover oncology · 2026Article
- ASPM promotes the progression of esophageal squamous cell carcinoma by upregulating the expression of HMMR.Cancer cell international · 2026Article
- PSMD14 as a translational target in cancer and beyond: from deubiquitination mechanisms to drug resistance and precision therapy.Cancer drug resistance (Alhambra, Calif.) · 2026Review
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3 authors.
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Abstract
Background: Lung adenocarcinoma (LUAD) represents a major subtype of non-small cell lung cancer with limited therapeutic options. While the ubiquitin-proteasome system has been implicated in cancer pathogenesis, the specific role of deubiquitinating enzymes in LUAD remains incompletely understood. This study investigates the clinical significance and molecular mechanisms of PSMD14, a crucial proteasome subunit, in LUAD progression. Methods: We analyzed PSMD14 expression patterns across multiple databases including TCGA, GEO, and CPTAC. Functional characterization was performed through Results: PSMD14 was significantly overexpressed in LUAD tissues at both mRNA and protein levels, demonstrating excellent diagnostic value (AUC = 0.898) and strong prognostic significance for multiple survival endpoints. Mechanistically, PSMD14 directly interacted with HMMR, removing K63-linked ubiquitin chains to enhance its protein stability. The PSMD14-HMMR axis promoted malignant phenotypes, including proliferation, migration, and invasion. Notably, HMMR overexpression rescued these impaired phenotypes induced by PSMD14 deficiency. PSMD14 high expression correlated with immunosuppressive features and coordinated activation of TGF-β/Smad and PI3K/AKT/mTOR signaling pathways. The PSMD14 inhibitor Capzimin exhibited potent anti-tumor effects Conclusion: Our findings demonstrate that PSMD14 acts as a key driver of LUAD progression by stabilizing HMMR and consequently activates both the TGF-β/Smad and PI3K/AKT/mTOR signaling pathways. Consequently, the PSMD14-HMMR axis emerges as a promising therapeutic target. Inhibition of PSMD14 exhibited significant anti-tumor efficacy, underscoring its potential for clinical translation in LUAD treatment.
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