Surface Downregulation of Major Histocompatibility Complex Class I, PE-CAM, and ICAM-1 following De Novo Infection of Endothelial Cells with Kaposi's Sarcoma-Associated Herpesvirus
Open Access
- 1 September 2003
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 77 (17) , 9669-9684
- https://doi.org/10.1128/jvi.77.17.9669-9684.2003
Abstract
Under selective pressure from host cytotoxic T lymphocytes, many viruses have evolved to downregulate major histocompatibility complex (MHC) class I and/or T-cell costimulatory molecules from the surface of infected cells. Kaposi's sarcoma-associated herpesvirus (KSHV) encodes two proteins, MIR-1 and MIR-2, that serve this function during lytic replication. In vivo, however, KSHV exists in a predominantly latent state, with less than 5% of infected cells expressing discernible lytic gene products. Thus, mechanisms of immune evasion that depend on genes expressed only during lytic replication are unlikely to be active in most KSHV-infected cells. As a result, we searched for evidence of similar defensive strategies extant during latency, employing culture systems that strongly favor latent KSHV infection. We measured cell surface levels of immunomodulatory proteins on both primary dermal microvascular endothelial cells (pDMVEC) infected through coculture with induced primary effusion lymphoma cells and telomerase-immortalized DMVEC infected directly with cell-free virus. Employing a panel of antibodies against several endothelial cell surface proteins, we show that de novo infection with KSHV leads to the downregulation of MHC class I, CD31 (PE-CAM), and CD54 (ICAM-I) but not CD58 (LFA-3) or CD95 (Fas). Furthermore, flow cytometry with a fluorescently labeled monoclonal antibody to the latency-associated nuclear antigen (LANA) revealed that downregulation occurred predominantly on KSHV-infected (LANA-positive) cells. Although the vast majority of infected cells displayed this downregulation, less than 1% expressed either immediate-early or late lytic proteins detectable by immunofluorescence. Together, these results suggest that downregulation of immunomodulatory proteins on the surface of target cells may represent a constitutive mode of immune evasion employed by KSHV following de novo infection.Keywords
This publication has 78 references indexed in Scilit:
- Complement Regulation by Kaposi's Sarcoma-Associated Herpesvirus ORF4 ProteinJournal of Virology, 2003
- Kaposi's Sarcoma-Associated Herpesvirus K3 Utilizes the Ubiquitin-Proteasome System in Routing Class I Major Histocompatibility Complexes to Late Endocytic CompartmentsJournal of Virology, 2002
- Definition of an Optimal Cytotoxic T Lymphocyte Epitope in the Latently Expressed Kaposi's Sarcoma–Associated Herpesvirus Kaposin ProteinThe Journal of Infectious Diseases, 2001
- Spindle Cell Conversion by Kaposi's Sarcoma-Associated Herpesvirus: Formation of Colonies and Plaques with Mixed Lytic and Latent Gene Expression in Infected Primary Dermal Microvascular Endothelial Cell CulturesJournal of Virology, 2001
- Primary human herpesvirus 8 infection generates a broadly specific CD8+ T-cell response to viral lytic cycle proteinsBlood, 2001
- Infected Cell Protein (ICP)47 Enhances Herpes Simplex Virus Neurovirulence by Blocking the CD8+ T Cell ResponseThe Journal of Experimental Medicine, 1998
- CD31 immunoreactivity in mesenchymal neoplasms of the skin and subcutis:Journal of Cutaneous Pathology, 1995
- Identification of Herpesvirus-Like DNA Sequences in AIDS-Sssociated Kaposi's SarcomaScience, 1994
- Endothelial Cells Promote Anti‐CD3‐Induced T‐cell Proliferation via Cell‐Cell Contact Mediated by LFA‐1 and CD2Scandinavian Journal of Immunology, 1993
- The proliferative response of human T cells to allogeneic IFN-γ-treated endothelial cells is mediated via both CD2/LFA-3 and LFA-1/ICAM-1 and -2 adhesion pathwaysTransplant Immunology, 1993