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Development of a Hepatitis B Virus Reporter System to Monitor the Early Stages of the Replication Cycle
Published on: February 1, 2017
Adenosine deaminase acting on RNA-1 (ADAR1) inhibits hepatitis B virus (HBV) replication by enhancing microRNA-122
Guangyan Liu1,2,3, Xiancai Ma2, Zhe Wang3,4,5
1College of Basic Medical Sciences, Shenyang Medical College, Shenyang 110034, China.
Abstract:
Adenosine deaminases acting on RNA-1 (ADAR1) involves adenosine to inosine RNA editing and microRNA processing. ADAR1 is known to be involved in the replication of various viruses, including hepatitis C and D. However, the role of ADAR1 in hepatitis B virus (HBV) infection has not yet been elucidated. Here, for the first time, we demonstrated ADAR1 antiviral activity against HBV. ADAR1 has two splicing isoforms in human hepatocytes: constitutive p110 protein and interferon-α (IFN-α)-responsive p150 protein. We found that overexpression of ADAR1 decreased HBV RNA in an HBV culture model. A catalytic-site mutant ADAR1 also decreased HBV RNA levels, whereas another adenosine deaminases that act on the RNA (ADAR) family protein, ADAR2, did not. Moreover, the induction of ADAR1 by stimulation with IFN-α also reduced HBV RNA levels. Decreases in endogenous ADAR1 expression by knock-down or knock-out increased HBV RNA levels. A major hepatocyte-specific microRNA, miRNA-122, was found to be positively correlated with ADAR1 expression, and exogenous miRNA-122 decreased both HBV RNA and DNA, whereas, conversely, transfection with a miRNA-122 inhibitor increased them. The reduction of HBV RNA by ADAR1 expression was abrogated by p53 knock-down, suggesting the involvement of p53 in the ADAR1-mediated reduction of HBV RNA. This study demonstrated, for the first time, that ADAR1 plays an antiviral role against HBV infection by increasing the level of miRNA-122 in hepatocytes.
Insights
Adenosine deaminases acting on RNA-1 (ADAR1) exhibits antiviral activity against hepatitis B virus (HBV). ADAR1 enhances miRNA-122 levels, reducing HBV RNA and DNA replication in hepatocytes.
Area of Science:
- Molecular Biology
- Virology
- Hepatology
Background:
- Adenosine deaminases acting on RNA-1 (ADAR1) is crucial for RNA editing and microRNA processing.
- ADAR1's role in hepatitis B virus (HBV) infection was previously unknown.
- ADAR1 has two isoforms: p110 and interferon-α (IFN-α)-inducible p150.
Purpose of the Study:
- To investigate the role of ADAR1 in HBV infection.
- To determine if ADAR1 possesses antiviral activity against HBV.
- To elucidate the mechanism of ADAR1's action against HBV.
Main Methods:
- Overexpression and knock-down/knock-out of ADAR1 in an HBV culture model.
- Utilized catalytic-site mutant ADAR1 and ADAR2 for comparison.
- Assessed the impact of IFN-α stimulation on ADAR1 and HBV RNA levels.
- Investigated the role of miRNA-122 and p53 in ADAR1-mediated antiviral activity.
Main Results:
- ADAR1 overexpression significantly reduced HBV RNA levels.
- Catalytic activity of ADAR1 is essential for reducing HBV RNA.
- IFN-α induction of ADAR1 decreased HBV RNA, while ADAR1 depletion increased it.
- ADAR1 positively correlated with miRNA-122; miRNA-122 mimics reduced HBV RNA/DNA.
- p53 knock-down abrogated ADAR1's HBV RNA reduction, indicating p53 involvement.
Conclusions:
- ADAR1 demonstrates significant antiviral activity against HBV infection.
- ADAR1 exerts its antiviral effect by upregulating miRNA-122 levels in hepatocytes.
- The findings highlight ADAR1 as a potential therapeutic target for HBV.
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