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Piperlongumine overcomes osimertinib resistance via governing ubiquitination-modulated Sp1 turnover
Ruirui Wang, Qiang Wang, Jinzhuang Liao, Xinfang Yu, Wei Li
Ruirui Wang, Qiang Wang, Jinzhuang Liao, Xinfang Yu, Wei Li
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Research Article Cell biology Oncology

Piperlongumine overcomes osimertinib resistance via governing ubiquitination-modulated Sp1 turnover

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Abstract

Non–small cell lung cancer (NSCLC) is a common cause of cancer-related deaths worldwide, and its incidence has been increasing in recent years. While targeted therapies like osimertinib, an epidermal growth factor receptor tyrosine kinase inhibitor, have brought about notable improvements in patient outcomes for advanced NSCLC, the challenge of acquired drug resistance persists. Here, we found that cellular mesenchymal-epithelial transition factor (c-Met) was highly expressed in osimertinib-resistant cells, and depletion of c-Met markedly inhibited the growth of osimertinib-resistant cells ex vivo and in vivo, suggesting that c-Met is a potential target to address osimertinib resistance. Through a screening process using a natural product compound library, we identified piperlongumine as a potent inhibitor to overcome osimertinib resistance. Furthermore, the combined treatment of piperlongumine and osimertinib exhibited robust antitumor effects in resistant cells, partially restoring their sensitivity to osimertinib. Additionally, we discovered that piperlongumine could enhance the interaction between E3 ligase RNF4 and Sp1, inhibit the phosphorylation of Sp1 at Thr739, facilitate the ubiquitination and degradation of Sp1, lead to c-Met destabilization, and trigger intrinsic apoptosis in resistant cells. In summary, our study sheds light on the potential of piperlongumine in overcoming osimertinib resistance, offering new strategies and perspectives for the clinical management of drug-resistant NSCLC.

Authors

Ruirui Wang, Qiang Wang, Jinzhuang Liao, Xinfang Yu, Wei Li

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Figure 1

Silencing of c-Met inhibits the malignant phenotype of osimertinib-resistant cells.

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Silencing of c-Met inhibits the malignant phenotype of osimertinib-resis...
(A) MTS assay was performed after treating HCC827/HCC827OR, H1975/H1975OR, and PC9/PC9OR cells with osimertinib for 24 hours. (B) Colony-forming ability of HCC827/HCC827OR and H1975/H1975OR cells was detected using soft agar assay after treatment with osimertinib. Scale bar, 200 μm. ***P < 0.001. (C–H) Stable cell lines with c-Met gene silencing were constructed with HCC827OR and H1975OR cells and given osimertinib or DMSO treatment. Cell viability was analyzed by MTS assay (C, n = 3. ***P < 0.001), colony formation ability was determined by soft agar assay (D and E, n = 3, ***P < 0.001), protein expression level of c-caspase-3 was analyzed by immunoblotting assay (F), and activity level of caspase-3 was detected by caspase-3 activity assay kit (G and H, n = 3, ***P < 0.001). (I and J) shc-Met HCC827OR cells were utilized to construct a xenograft transplantation tumor model and analyze the effects of c-Met deletion and administration of osimertinib treatment on tumor volume (I, ***P < 0.001) and tumor weight (J, n = 5, ***P < 0.001). Comparisons were performed by using 1-way ANOVA test (B–E and G–J). Data are presented as the mean ± SD (B–E, G, and H).

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