Latent Kaposi's Sarcoma-Associated Herpesvirus Infection of Endothelial Cells Activates Hypoxia-Induced Factors
- 1 November 2006
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 80 (21) , 10802-10812
- https://doi.org/10.1128/jvi.00673-06
Abstract
Kaposi's sarcoma-associated herpesvirus (KSHV or HHV-8) is the etiological agent of Kaposi's sarcoma, a highly vascularized, endothelial-derived tumor. A direct role for KSHV-mediated induction of angiogenesis has been proposed based upon the nature of the neoplasia and various KSHV gene overexpression and infection model systems. We have found that KSHV infection of endothelial cells induces mRNA of hypoxia-induced factor 1α (HIF1α) and HIF2α, two homologous alpha subunits of the heterodimeric transcription factor HIF. HIF is a master regulator of both developmental and pathological angiogenesis, composed of an oxygen-sensitive alpha subunit and a constitutively expressed beta subunit. HIF is classically activated posttranscriptionally with hypoxia, leading to increased protein stability of HIF1α and/or HIF2α. However, we demonstrate that both alpha subunits are up-regulated at the transcript level by KSHV infection. The transcriptional activation of HIF leads to a functional increase in HIF activity under normoxic conditions, as demonstrated by both luciferase reporter assay and the increased expression of vascular endothelial growth factor receptor 1 (VEGFR1), an HIF-responsive gene. KSHV infection synergizes with hypoxia mimics and induces higher expression levels of HIF1α and HIF2α protein, and HIF1α is increased in a significant proportion of the latently infected endothelial cells. Src family kinases are required for the activation of HIF and the downstream gene VEGFR1 by KSHV. We also show that KS lesions, in vivo, express elevated levels of HIF1α and HIF2α proteins. Thus, KSHV stimulates the HIF pathway via transcriptional up-regulation of both HIF alphas, and this activation may play a role in KS formation, localization, and progression.Keywords
This publication has 67 references indexed in Scilit:
- SRC family kinase inhibitor SU6656 enhances antiangiogenic effect of irradiationInternational Journal of Radiation Oncology*Biology*Physics, 2006
- Kaposi sarcoma herpesvirus–induced cellular reprogramming contributes to the lymphatic endothelial gene expression in Kaposi sarcomaNature Genetics, 2004
- Lymphatic reprogramming of blood vascular endothelium by Kaposi sarcoma–associated herpesvirusNature Genetics, 2004
- Constitutive upregulation of hypoxia-inducible factor-1α mRNA occurring in highly metastatic lung carcinoma cells leads to vascular endothelial growth factor overexpression upon hypoxic exposureOncogene, 2003
- Biology of Kaposi's sarcomaEuropean Journal Of Cancer, 2001
- Induction of HHV-8 Lytic Cycle Replication by Inflammatory Cytokines Produced by HIV-1-Infected T CellsThe American Journal of Pathology, 2000
- Regulation of Mammalian O2Homeostasis by Hypoxia-Inducible Factor 1Annual Review of Cell and Developmental Biology, 1999
- Differential Transcriptional Regulation of the Two Vascular Endothelial Growth Factor Receptor GenesJournal of Biological Chemistry, 1997
- Identification of Herpesvirus-Like DNA Sequences in AIDS-Sssociated Kaposi's SarcomaScience, 1994
- The fms -Like Tyrosine Kinase, a Receptor for Vascular Endothelial Growth FactorScience, 1992