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Hepatocyte Growth Factor-Dependent Antiviral Activity of Activated cdc42-Associated Kinase 1 Against Hepatitis B
Hye Won Lee1, Yongwook Choi1, Ah Ram Lee2
1Division of Chronic Viral Diseases, Center for Emerging Virus Research, National Institute of Infectious Disease, National Institute of Health, Cheongju, South Korea.
Abstract:
Activated cdc42-associated kinase 1 (ACK1) is a well-known non-receptor tyrosine kinase that regulates cell proliferation and growth through activation of cellular signaling pathways, including mitogen-activated protein kinase (MAPK). However, the anti-HBV activity of ACK1 has not been elucidated. This study aimed to investigate the role of ACK1 in the HBV life cycle and the mechanism underlying the anti-HBV activity of ACK1. To examine the antiviral activity of ACK1, we established HepG2-ACK1 cells stably overexpressing ACK1. The HBV life cycle, including HBeAg/HBsAg secretion, HBV DNA/transcription, and enhancer activity, was analyzed in HepG2 and HepG2-ACK1 cells with HBV replication-competent HBV 1.2mer (HBV 1.2). Finally, the anti-HBV activity of ACK1 was examined in an HBV infection system. ACK1 suppressed HBV gene expression and transcription in HepG2 and HepG2-ACK1 cells. Furthermore, ACK1 inhibited HBV replication by decreasing viral enhancer activity. ACK1 exhibited its anti-HBV activity via activation of Erk1/2, which consequently downregulated the expression of HNF4α binding to HBV enhancers. Furthermore, hepatocyte growth factor (HGF) induced ACK1 expression at an early stage. Finally, ACK1 mediated the antiviral effect of HGF in the HBV infection system. These results indicated that ACK1 induced by HGF inhibited HBV replication at the transcriptional level by activating the MAPK-HNF signaling pathway. Our findings suggest that ACK1 is a potentially novel upstream molecule of MAPK-mediated anti-HBV activity.
Insights
Activated cdc42-associated kinase 1 (ACK1) suppresses Hepatitis B virus (HBV) replication by activating the MAPK-HNF signaling pathway. This kinase, induced by HGF, offers a potential new strategy for anti-HBV therapy.
Area of Science:
- Molecular Biology
- Virology
- Biochemistry
Background:
- Activated cdc42-associated kinase 1 (ACK1) is a tyrosine kinase regulating cell proliferation.
- The role of ACK1 in Hepatitis B virus (HBV) infection remains unknown.
Purpose of the Study:
- To investigate the function of ACK1 in the HBV life cycle.
- To elucidate the mechanism of ACK1's anti-HBV activity.
Main Methods:
- Established HepG2-ACK1 cells overexpressing ACK1.
- Analyzed HBV gene expression, transcription, and replication in cell models and an HBV infection system.
- Investigated the role of the MAPK-HNF signaling pathway.
Main Results:
- ACK1 suppressed HBV gene expression and transcription.
- ACK1 inhibited HBV replication by reducing viral enhancer activity.
- ACK1 activated Erk1/2, downregulating HNF4α binding to HBV enhancers.
- Hepatocyte growth factor (HGF) induced ACK1 expression, mediating anti-HBV effects.
Conclusions:
- ACK1 inhibits HBV replication transcriptionally via the MAPK-HNF signaling pathway.
- ACK1 is a potential upstream molecule for MAPK-mediated anti-HBV activity.
- HGF-induced ACK1 plays a role in controlling HBV infection.
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