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PDZK1 inhibits MRP2-mediated oxaliplatin chemosensitivity in hepatocellular carcinoma
Zeqi Duan1, Jinyu Li2,3, Chao Ren4
1First Clinical Medical College, Shanxi Medical University, Taiyuan, 030001, Shanxi Province, People's Republic of China.
Abstract:
Recurrence after oxaliplatin chemotherapy is a major challenge in the treatment of advanced hepatocellular carcinoma patients. Differential expression gene analysis and Kaplan-Meier curves were screened biomarkers associated with OXA-treated recurrence in GSE51951, TCGA-LIHC, and Chinese Liver Cancer Atlas databases. We retrospectively collected 39 cases of HCC treated with platinum based drugs at the First Hospital of Shanxi Medical University. Immunohistochemistry was used to analyze the relationship between PDZK1 expression and patient recurrence of HCC. Cell model and subcutaneous transplant tumor model of HCC were established to detect the cell growth ability treated with OXA. Gene Set Enrichment Analysis analysis identified signaling pathways associated with high PDZK1. Co-Immunoprecipitation and immunofluorescence experiments were used to explore the potential interaction between PDZK1 and MRP2. We identified that high expression of PDZK1 was associated with OXA resistance and poor prognosis in HCC. PDZK1 promoted the cell viability, migration, and invasion of HCC after OXA treatment in vitro and vivo. MRP2-mediated ABC transporters pathway and bile acid metabolism were significantly activated in the PDZK1 overexpression group of HCC. PDZK1 interacted and co-localized with the carboxyl terminal PDZ binding motif of MRP2. Clinical specimen analysis have shown a positive correlation between the protein levels of PDZK1 and MRP2. Our study identified PDZK1 as a novel biomarker significantly associated with OXA chemosensitivity in HCC. Mechanistically, PDZK1 promoted the OXA sensitivity of HCC by activating the MRP2-mediated signaling pathway.
Insights
High PDZK1 expression predicts poor prognosis and oxaliplatin resistance in hepatocellular carcinoma (HCC). PDZK1 enhances HCC cell growth by activating the MRP2-mediated pathway, suggesting it as a biomarker for oxaliplatin chemotherapy sensitivity.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Recurrence following oxaliplatin (OXA) chemotherapy presents a significant challenge for advanced hepatocellular carcinoma (HCC) patients.
- Identifying biomarkers for OXA-treated recurrence is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate the role of PDZK1 in oxaliplatin resistance and prognosis in hepatocellular carcinoma.
- To elucidate the underlying molecular mechanisms involving PDZK1 and MRP2 in HCC chemosensitivity.
Main Methods:
- Differential gene expression analysis and Kaplan-Meier survival analysis using public databases (GSE51951, TCGA-LIHC, Chinese Liver Cancer Atlas).
- Retrospective analysis of 39 HCC cases treated with platinum-based drugs.
- Immunohistochemistry, cell culture models, subcutaneous tumor models, Gene Set Enrichment Analysis (GSEA), Co-Immunoprecipitation (Co-IP), and immunofluorescence assays.
Main Results:
- High PDZK1 expression correlated with OXA resistance and poor prognosis in HCC.
- PDZK1 overexpression promoted HCC cell viability, migration, and invasion in vitro and in vivo following OXA treatment.
- PDZK1 interacted with and co-localized with MRP2, activating MRP2-mediated ABC transporter and bile acid metabolism pathways.
- Clinical specimens showed a positive correlation between PDZK1 and MRP2 protein levels.
Conclusions:
- PDZK1 is a novel biomarker associated with oxaliplatin chemosensitivity in HCC.
- PDZK1 enhances OXA sensitivity in HCC by activating the MRP2-mediated signaling pathway, offering a potential therapeutic target.
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