Inhibition of Alpha Interferon Signaling by Hepatitis B Virus
- 1 January 2007
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 81 (1) , 159-165
- https://doi.org/10.1128/jvi.01292-06
Abstract
Alpha interferon (IFN-alpha) and pegylated IFN-alpha (pegIFN-alpha) are used for the treatment of chronic hepatitis B (CHB). Unfortunately, only a minority of patients can be cured. The mechanisms responsible for hepatitis B virus (HBV) resistance to pegIFN-alpha treatment are not known. pegIFN-alpha is also used to treat patients with chronic hepatitis C (CHC). As with chronic hepatitis B, many patients with chronic hepatitis C cannot be cured. In CHC, IFN-alpha signaling has been found to be inhibited by an upregulation of protein phosphatase 2A (PP2A). PP2A inhibits protein arginine methyltransferase 1 (PRMT1), the enzyme that catalyzes the methylation of the important IFN-alpha signal transducer STAT1. Hypomethylated STAT1 is less active because it is bound by its inhibitor, PIAS1. In the present work, we investigated whether similar molecular mechanisms are also responsible for the IFN-alpha resistance found in many patients with chronic hepatitis B. We analyzed the expression of PP2A, the enzymatic activity of PRMT1 (methylation assays), the phosphorylation and methylation of STAT1, the association of STAT1 with PIAS1 (via coimmunoprecipitation assays), the binding of activated STAT1 to interferon-stimulated response elements (via electrophoretic mobility shift assays), and the induction of interferon target genes (via real-time RT-PCR) in human hepatoma cells expressing HBV proteins as well as in liver biopsies from patients with chronic hepatitis B and from controls. We found an increased expression of PP2A and an inhibition of IFN-alpha signaling in cells expressing HBV proteins and in liver biopsies of patients with CHB. The molecular mechanisms involved are similar to those found in chronic hepatitis C.Keywords
This publication has 38 references indexed in Scilit:
- Stable HepG2- and Huh7-based human hepatoma cell lines for efficient regulated expression of infectious hepatitis B virusJournal of Hepatology, 2006
- S‐adenosylmethionine and betaine correct hepatitis C virus induced inhibition of interferon signaling in vitro†Hepatology, 2006
- Evasion of intracellular host defence by hepatitis C virusNature, 2005
- Identification of a Nuclear Stat1 Protein Tyrosine PhosphataseMolecular and Cellular Biology, 2002
- SOCS Proteins: Negative Regulators of Cytokine SignalingThe International Journal of Cell Cloning, 2001
- Methylation of Histone H4 at Arginine 3 Facilitating Transcriptional Activation by Nuclear Hormone ReceptorScience, 2001
- STATs and Gene RegulationScience, 1997
- Targeted Disruption of the Mouse Stat1 Gene Results in Compromised Innate Immunity to Viral DiseaseCell, 1996
- Targeted Disruption of the Stat1 Gene in Mice Reveals Unexpected Physiologic Specificity in the JAK–STAT Signaling PathwayCell, 1996
- Histological grading and staging of chronic hepatitisJournal of Hepatology, 1995