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Published on: September 25, 2019
Hepatitis C virus infection suppresses GLUT2 gene expression via downregulation of hepatocyte nuclear factor 1α
Chieko Matsui1, Ikuo Shoji, Shusaku Kaneda
1Division of Microbiology, Center for Infectious Diseases, Kobe University Graduate School of Medicine, Chuo-ku, Kobe, Hyogo, Japan.
Abstract:
Hepatitis C virus (HCV) infection causes not only intrahepatic diseases but also extrahepatic manifestations, including type 2 diabetes. We previously reported that HCV replication suppresses cellular glucose uptake by downregulation of cell surface expression of glucose transporter 2 (GLUT2) (D. Kasai et al., J. Hepatol. 50:883-894, 2009). GLUT2 mRNA levels were decreased in both HCV RNA replicon cells and HCV J6/JFH1-infected cells. To elucidate molecular mechanisms of HCV-induced suppression of GLUT2 gene expression, we analyzed transcriptional regulation of the GLUT2 promoter using a series of GLUT2 promoter-luciferase reporter plasmids. HCV-induced suppression of GLUT2 promoter activity was abrogated when the hepatocyte nuclear factor 1α (HNF-1α)-binding motif was deleted from the GLUT2 promoter. HNF-1α mRNA levels were significantly reduced in HCV J6/JFH1-infected cells. Furthermore, HCV infection remarkably decreased HNF-1α protein levels. We assessed the effects of proteasome inhibitor or lysosomal protease inhibitors on the HCV-induced reduction of HNF-1α protein levels. Treatment of HCV-infected cells with a lysosomal protease inhibitor, but not with a proteasome inhibitor, restored HNF-1α protein levels, suggesting that HCV infection promotes lysosomal degradation of HNF-1α protein. Overexpression of NS5A protein enhanced lysosomal degradation of HNF-1α protein and suppressed GLUT2 promoter activity. Immunoprecipitation analyses revealed that the region from amino acids 1 to 126 of the NS5A domain I physically interacts with HNF-1α protein. Taken together, our results suggest that HCV infection suppresses GLUT2 gene expression via downregulation of HNF-1α expression at transcriptional and posttranslational levels. HCV-induced downregulation of HNF-1α expression may play a crucial role in glucose metabolic disorders caused by HCV.
Insights
Hepatitis C virus (HCV) infection lowers glucose transporter 2 (GLUT2) expression by reducing hepatocyte nuclear factor 1-alpha (HNF-1α). This mechanism contributes to glucose metabolism disorders in HCV patients.
Area of Science:
- Virology
- Hepatology
- Molecular Biology
Background:
- Hepatitis C virus (HCV) infection is linked to extrahepatic manifestations like type 2 diabetes.
- Previous research indicated HCV suppresses glucose uptake by downregulating glucose transporter 2 (GLUT2) expression.
Purpose of the Study:
- To investigate the molecular mechanisms behind HCV-induced suppression of GLUT2 gene expression.
- To elucidate the role of hepatocyte nuclear factor 1-alpha (HNF-1α) in this process.
Main Methods:
- Analysis of GLUT2 promoter activity using luciferase reporter plasmids in HCV-infected cells.
- Quantification of HNF-1α mRNA and protein levels.
- Assessment of proteasome and lysosomal protease inhibitor effects on HNF-1α levels.
- Investigation of NS5A protein interaction with HNF-1α using immunoprecipitation.
Main Results:
- HCV infection suppressed GLUT2 promoter activity, which was dependent on the HNF-1α-binding motif.
- HCV infection significantly reduced both HNF-1α mRNA and protein levels.
- Lysosomal degradation, not proteasomal degradation, was identified as the mechanism for HNF-1α reduction.
- HCV NS5A protein interacted with HNF-1α and enhanced its lysosomal degradation.
Conclusions:
- HCV suppresses GLUT2 gene expression through transcriptional and posttranslational downregulation of HNF-1α.
- HCV-induced reduction of HNF-1α plays a critical role in the glucose metabolic disorders associated with HCV infection.
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