Aug 2026· Biochimica et biophysica acta. Molecular cell research· pp.
120212
· 0 citations· 37 references
Medicine
Abstract
Gefitinib resistance remains a major obstacle to the effective treatment of non-small cell lung cancer (NSCLC), and the underlying molecular mechanisms have not yet been fully elucidated. Lysosomal-associated transmembrane protein 4B (LAPTM4B) has been shown to be involved in cancer progression, but its specific role in gefitinib resistance and the prognosis of NSCLC patients remains unclear. In this study, we conducted functional experiments including CCK-8, Transwell, and tumor sphere formation assays in LAPTM4B-overexpressing or knockdown HCC827 cells and gefitinib-resistant HCC827-R cells. In vivo validation was performed using a NSCLC xenograft model in nude mice. The results showed that LAPTM4B was upregulated in NSCLC, with a further increase in gefitinib-resistant NSCLC samples. Functional experiments demonstrated that knockdown or overexpression of LAPTM4B regulated gefitinib resistance, cell migration, and stemness in HCC827 cells. Furthermore, RPS3 was identified as a key interacting target of LAPTM4B, and LAPTM4B could enhance the stability of RPS3 protein by inhibiting its ubiquitination. In vivo xenograft experiments showed that knockdown of LAPTM4B significantly suppressed tumor growth and tumor stemness, and this inhibitory effect could be reversed by overexpression of RPS3. Collectively, our findings indicate that LAPTM4B promotes gefitinib resistance and NSCLC progression by stabilizing RPS3 protein through inhibiting its ubiquitination, and the LAPTM4B-RPS3 axis may serve as a potential therapeutic target for overcoming gefitinib resistance in NSCLC.
Targeted silencing of ORC1 effectively reversed resistance both in vitro and in vivo, representing a potential molecular target for overcoming Cisplatin resistance in NSCLC.
Jian-Hui Sheng, Ying-Jian Song· Journal of biochemical and m...· 0 citations
Pharmacologic suppression of IL20RB by APAP presents a novel therapeutic strategy, positioning IL20RB as a promising prognostic biomarker and therapeutic target in NSCLC.
Yang-Hao Wang, Guo-Yun Li, Wei-Zhou Wang et al.· Lung Cancer· 0 citations
ST6GAL1-mediated α2,6-sialylation of EGFR contributes to the maintenance of CSLC-associated paclitaxel resistance through mTOR-SOX2/BMI1 signaling, which identifies ST6GAL1-dependent EGFR sialylation as a potential therapeutic target in CSLC-associated chemoresistance.
Yu-Xi Yang, Bing-Hui Liang, Wei-Jie Hong et al.· Cancer Drug Resistance· 1 citation
RIPK3 enhances the sensitivity of colorectal cancer cells to 5-FU and increases the efficacy of 5-FU in inhibiting cell proliferation, invasion, and migration by activating cellular autophagy through inhibition of the AKT-mTOR signaling pathway, thereby reversing drug resistance in colorectal cancer cells.
Biao Wang, Xiao-Tong An, Wei-Hua Fu· Scientific Reports· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.