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Antiproliferative activity of berberine in HepG2 cells via inducing apoptosis and arresting cell cycle
Lele Yang1, Jiliang Cao1, Jinchao Wei1
1State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, University of Macau, Macau 999078, China. pli1978@hotmail.com.
Abstract:
The therapeutic targets of berberine for hepatocellular carcinoma (HCC) and its detailed mechanisms remain unexplored. Here, an integration of network pharmacology, proteomic, bioinformatic and in vitro biochemical approach was proposed to reveal therapeutic targets and pathways underlying the antiproliferative activity of berberine against HepG2 cells. Results indicated that berberine caused the cytotoxicity and inhibited the growth of HepG2 cells with IC50 values ranging from 92 μM to 118 μM. Network pharmacology analysis revealed that targeting apoptosis and cell cycle pathways by berberine contributed to its antitumor efficacy against HCC. Proteomic analysis demonstrated that mitochondria-related apoptosis pathways were involved in the cytotoxic action of berberine, as evidenced by the expression of mitochondrial dysfunction-mediated proteins. Moreover, a total of 160 significantly altered proteins were screened, among which AKAP12 presented significantly increased levels under berberine treatment. Bioinformatic analysis of various public datasets showed that expression of AKAP12 in HCC liver tissues was downregulated, emphasizing its role as a tumor suppressor. Immunoblotting validated the increased levels of AKAP12, while co-immunoprecipitation identified its interaction with Cyclin D1. These data, together with flow cytometry analysis, suggested that AKAP12 mediated cell cycle arrest, thereby suppressing cell proliferation. Altogether, the antiproliferative action of berberine in HepG2 cells involves both apoptosis and cell cycle arrest. Regulating AKAP12 signalling by berberine might provide a promising strategy for HCC treatment.
Insights
Berberine inhibits hepatocellular carcinoma (HCC) cell growth by inducing apoptosis and cell cycle arrest. It upregulates AKAP12, a tumor suppressor, suggesting a new therapeutic strategy for HCC.
Area of Science:
- Pharmacology
- Oncology
- Biochemistry
Background:
- Therapeutic targets and mechanisms of berberine in hepatocellular carcinoma (HCC) are not fully understood.
- Berberine exhibits antiproliferative effects, but its specific molecular targets in HCC require elucidation.
Purpose of the Study:
- To investigate the therapeutic targets and molecular mechanisms of berberine's antiproliferative activity against HCC using HepG2 cells.
- To identify key pathways and proteins involved in berberine's action on HCC.
Main Methods:
- Integrated network pharmacology, proteomics, bioinformatics, and in vitro biochemical assays.
- Utilized HepG2 cell line, proteomic analysis, immunoblotting, co-immunoprecipitation, and flow cytometry.
- Analyzed public datasets for AKAP12 expression in HCC tissues.
Main Results:
- Berberine demonstrated cytotoxicity against HepG2 cells (IC50: 92–118 μM), inducing apoptosis and cell cycle arrest.
- Network pharmacology identified apoptosis and cell cycle pathways as key targets.
- Proteomics revealed berberine's action involves mitochondrial dysfunction and significantly increased AKAP12 levels.
- AKAP12, downregulated in HCC tissues, was found to interact with Cyclin D1, mediating cell cycle arrest.
Conclusions:
- Berberine's antiproliferative effect on HCC cells is mediated by apoptosis and cell cycle arrest.
- Upregulation of the tumor suppressor AKAP12 by berberine is a key mechanism.
- Targeting AKAP12 signaling presents a potential therapeutic strategy for hepatocellular carcinoma.
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