Fatty Acid Synthase Expression Is Induced by the Epstein-Barr Virus Immediate-Early Protein BRLF1 and Is Required for Lytic Viral Gene Expression
Open Access
- 15 April 2004
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 78 (8) , 4197-4206
- https://doi.org/10.1128/jvi.78.8.4197-4206.2004
Abstract
The Epstein-Barr virus (EBV) immediate-early (IE) protein BRLF1 (R) is a transcription factor that induces the lytic form of EBV infection. R activates certain early viral promoters through a direct binding mechanism but induces transcription of the other EBV IE gene, BZLF1 (Z), indirectly through cellular factors binding to a CRE motif in the Z promoter (Zp). Here we demonstrate that R activates expression of the fatty acid synthase (FAS) cellular gene through a p38 stress mitogen-activated protein kinase-dependent mechanism. B-cell receptor engagement of Akata cells also increases FAS expression. The FAS gene product is required for de novo synthesis of the palmitate fatty acid, and high-level FAS expression is normally limited to liver, brain, lung, and adipose tissue. We show that human epithelial tongue cells lytically infected with EBV (from oral hairy leukoplakia lesions) express much more FAS than uninfected cells. Two specific FAS inhibitors, cerulenin and C75, prevent R activation of IE (Z) and early (BMRF1) lytic EBV proteins in Jijoye cells. In addition, cerulenin and C75 dramatically attenuate IE and early lytic gene expression after B-cell receptor engagement in Akata cells and constitutive lytic viral gene expression in EBV-positive AGS cells. However, FAS inhibitors do not reduce lytic viral gene expression induced by a vector in which the Z gene product is driven by a strong heterologous promoter. In addition, FAS inhibitors do not reduce R activation of a naked DNA reporter gene construct driven by the Z promoter (Zp). These results suggest that cellular FAS activity is important for induction of Z transcription from the intact latent EBV genome, perhaps reflecting the involvement of lipid-derived signaling pathways or palmitoylated proteins. Furthermore, using FAS inhibitors may be a completely novel approach for blocking the lytic form of EBV replication.Keywords
This publication has 105 references indexed in Scilit:
- Inhibition of Epstein–Barr virus lytic cycle by (−)-epigallocatechin gallateBiochemical and Biophysical Research Communications, 2003
- The Epstein-Barr Virus Immediate-Early Protein BZLF1 Induces Expression of E2F-1 and Other Proteins Involved in Cell Cycle Progression in Primary Keratinocytes and Gastric Carcinoma CellsJournal of Virology, 2002
- Green Tea Epigallocatechin Gallate: A Natural Inhibitor of Fatty-Acid SynthaseBiochemical and Biophysical Research Communications, 2001
- De novo‐synthesized ceramide signals apoptosis in astrocytes via extracellular signal‐regulated kinaseThe FASEB Journal, 2000
- Palmitoylation of Ha-Ras Facilitates Membrane Binding, Activation of Downstream Effectors, and Meiotic Maturation in Xenopus OocytesPublished by Elsevier ,1996
- Cerulenin inhibits production of mature virion particles in chick embryo fibroblasts infected by influenza A virusesResearch in Virology, 1995
- Pivotal reactions in fatty acid synthesisProgress in Lipid Research, 1994
- Replication of Epstein–Barr Virus within the Epithelial Cells of Oral Hairy Leukoplakia, an AIDS-Associated LesionNew England Journal of Medicine, 1985
- Epstein–Barr Virus Replication in Oropharyngeal Epithelial CellsNew England Journal of Medicine, 1984
- Inhibition of fatty acid synthesis by the antibiotic ceruleninBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1973