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miR-199a-5p/GPR89A axis modulates sorafenib resistance in hepatocellular carcinoma through glutamate metabolic
Yao Li1, Yi Cai2, Guangliang Duan3
1Anhui Provincial Key Laboratory of Immunology in Chronic Diseases, Anhui Provincial Key Laboratory of Infection and Immunology, and Department of Laboratory Medicine, Bengbu Medical University, Anhui, China.
Abstract:
ObjectiveSorafenib is a key targeted therapeutic agent for hepatocellular carcinoma (HCC). However, the emergence of drug resistance greatly limits its clinical efficacy. We found that GPR89A is markedly overexpressed in both sorafenib-resistant HCC cell lines and clinical tumor specimens. Nevertheless, the exact biological role of GPR89A in sorafenib-resistant HCC remains to be elucidated.MethodsTo generate sorafenib-resistant HCC cell lines, cells were cultured in medium with 10 μM sorafenib. GPR89A expression in these cells was examined by quantitative reverse transcription-polymerase chain reaction and Western blot. The impact of GPR89A inhibition on cell proliferation was assessed using cell counting kit-8 and colony formation assays. Bioinformatics predicted miR-199a-5p binding sites in the GPR89A promoter region; luciferase reporter assays were conducted with wild-type or mutant promoter sequences. Glutamate in culture supernatants was measured by enzyme-linked immunosorbent assay, and exogenous glutamate showed dose-dependent inhibition of resistant cell proliferation (MTT assay). Clinical correlation analysis involved 30 pairs of advanced HCC samples. Pearson analysis revealed significant inverse correlations among miR-199a-5p, GPR89A, and metabotropic glutamate receptor 1 (mGluR1) expression.ResultsWe found that the cell surface transmembrane protein GPR89A was substantially overexpressed in both sorafenib-resistant HCC cell lines and clinical tumor specimens. Importantly, higher GPR89A expression levels were positively correlated with an increased degree of sorafenib resistance in clinical samples. In sorafenib-resistant HCC tissues, the expression of both GPR89A and mGluR1 was significantly upregulated, whereas miR-199a-5p levels were markedly reduced. Correlation analysis revealed a negative association between GPR89A and miR-199a-5p expression, and a positive association between GPR89A and mGluR1. Mechanistically, miR-199a-5p directly targets GPR89A mRNA to suppress its expression, thereby downregulating mGluR1 and reducing glutamate levels.ConclusionsThese findings uncover a novel regulatory axis linking GPR89A overexpression, glutamate metabolic reprogramming, and the development of acquired sorafenib-resistant HCC.
Insights
GPR89A overexpression drives sorafenib resistance in hepatocellular carcinoma (HCC) by altering glutamate metabolism. Inhibiting GPR89A via miR-199a-5p offers a potential therapeutic strategy for overcoming drug resistance in HCC patients.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Sorafenib is a crucial targeted therapy for hepatocellular carcinoma (HCC).
- Acquired drug resistance to sorafenib significantly limits its clinical effectiveness in HCC treatment.
- GPR89A is overexpressed in sorafenib-resistant HCC, but its role remains unclear.
Purpose of the Study:
- To investigate the biological role of GPR89A in the development of sorafenib resistance in HCC.
- To elucidate the molecular mechanisms underlying GPR89A-mediated sorafenib resistance.
- To explore the potential of targeting GPR89A for overcoming sorafenib resistance in HCC.
Main Methods:
- Generation of sorafenib-resistant HCC cell lines and analysis of GPR89A expression via qRT-PCR and Western blot.
- Assessment of cell proliferation and colony formation upon GPR89A inhibition.
- Luciferase reporter assays to confirm miR-199a-5p targeting of GPR89A.
- Measurement of glutamate levels and correlation analysis with GPR89A, miR-199a-5p, and mGluR1 expression in clinical HCC samples.
Main Results:
- GPR89A is significantly overexpressed in sorafenib-resistant HCC cell lines and patient tumors, correlating positively with resistance.
- Sorafenib-resistant HCC tissues show increased GPR89A and mGluR1, and decreased miR-199a-5p expression.
- miR-199a-5p directly targets GPR89A, downregulating mGluR1 and affecting glutamate levels, thereby influencing proliferation.
Conclusions:
- GPR89A overexpression is a key driver of acquired sorafenib resistance in HCC.
- A novel regulatory axis involving GPR89A, miR-199a-5p, and glutamate metabolism contributes to sorafenib resistance.
- Targeting the GPR89A/miR-199a-5p/mGluR1 pathway may represent a therapeutic strategy for resistant HCC.
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