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Updated: Mar 13, 2026

A Reporter Assay to Analyze Intronic microRNA Maturation in Mammalian Cells
Published on: June 16, 2022
miR-203a is involved in HBx-induced inflammation by targeting Rap1a
AiRong Wu1, Huo Chen2, ChunFang Xu1
1Department of gastroenterology, The First affiliated Hospital of Soochow University, Suzhou 215006, China.
Insights
Hepatitis B virus infection upregulates miR-203a, which targets Rap1a. This leads to inflammation via the PI3K/ERK/p38/NFκB pathways, contributing to liver disease progression.
Area of Science:
- Hepatology
- Molecular Biology
- Virology
Background:
- Hepatitis B virus (HBV) infection is a leading cause of liver cirrhosis and hepatocellular carcinoma.
- Inflammation is a critical factor in the pathogenesis of HBV-associated liver diseases.
- MicroRNAs (miRNAs) are key regulators of biological processes, including inflammation.
Purpose of the Study:
- To investigate the role of microRNAs in Hepatitis B virus (HBV) X protein (HBx)-induced liver inflammation.
- To identify specific miRNAs and their targets involved in HBV-mediated inflammatory responses.
Main Methods:
- Microarray analysis to identify differentially expressed miRNAs in HBV-positive liver samples.
- Cell culture experiments (HepG2 cells) with HBx or miR-203a overexpression.
- Real-time PCR, Annexin V/BrdU staining, cytokine analysis, luciferase reporter assays, and mass spectrometry to elucidate molecular mechanisms.
- Western blotting to assess pathway activation.
Main Results:
- Hepatitis B virus (HBV)-infected liver samples and HBx-expressing HepG2 cells showed significantly higher miR-203a levels.
- Overexpression of miR-203a induced HepG2 cell apoptosis and proliferation, altered cell cycle distribution, and modulated cytokine production (increased IL-6/IL-8, decreased TGFβ/IFNγ).
- Rap1a was identified as a direct target of miR-203a, and its downregulation, along with modulation of PI3K/ERK/p38/NFκB pathways, was observed.
Conclusions:
- HBV infection upregulates miR-203a expression.
- miR-203a contributes to liver inflammation by downregulating Rap1a and activating inflammatory signaling pathways (PI3K/ERK/p38/NFκB).
- These findings highlight miR-203a as a potential therapeutic target for HBV-related liver inflammation.
Abstract:
Hepatitis B virus (HBV) causes acute and chronic hepatitis, and is one of the major causes of cirrhosis and hepatocellular carcinoma. Accumulating evidence suggests that inflammation is the key factor for liver cirrhosis and hepatocellular carcinoma. MicroRNAs play important roles in many biological processes. Here, we aim to explore the function of microRNAs in the HBX-induced inflammation. First, microarray experiment showed that HBV+ liver samples expressed higher level of miR-203a compared to HBV- liver samples. To verify these alterations, HBx-coding plasmid was transfected into HepG2 cells to overexpress HBx protein. The real-time PCR results suggested that over-expression of HBx could induce up-regulation of miR-203a. To define how up-regulation of miR-203a can induce liver cells inflammation, we over-expressed miR-203a in HepG2 cells. Annexin V staining and BrdU staining suggested that overexpression of miR-203a significantly increased the cell apoptosis and proliferation, meanwhile, over-expression of miR-203a could lead to a decrease in G0/G1 phase cells and an increase in G2/M phase cells. Some cytokines production including IL-6 and IL-8 were significantly increased, but TGFβ and IFNγ were decreased in miR-203a over-expressed HepG2 cells. Luciferase reporter assay experiments, protein mass-spectrum assay and real-time PCR all together demonstrated that Rap1a was the target gene of miR-203a. Further experiments showed that these alterations were modulated through PI3K/ERK/p38/NFκB pathways. These data suggested that HBV-infection could up-regulate the expression of miR-203a, thus down regulated the expression of Rap1a and affected the PI3K/ERK/p38/NFκB pathways, finally induced the hepatitis inflammation.
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