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PMID: 11836422 Published · ppublish English Evaluation Study Journal Article Research Support, Non-U.S. Gov't

De novo infection and serial transmission of Kaposi's sarcoma-associated herpesvirus in cultured endothelial cells.

Journal of virology ·Vol. 76 ·No. 5 ·2002-03-00 ·Pages 2440-8

Lagunoff M, Bechtel J, Venetsanakos E, Roy AM, Abbey N, Herndier B, McMahon M, Ganem D

Abstract

Infection by Kaposi's sarcoma-associated herpesvirus (KSHV) is central to the pathogenesis of the endothelial neoplasm Kaposi's sarcoma (KS) and is also linked to the rare B-cell tumor known as primary effusion lymphoma (PEL). Latently infected PEL cell lines can be induced to enter the lytic cycle and produce KSHV virions. However, such cells do not support de novo infection or serial propagation of KSHV. These limitations have prevented the development of systems for the genetic analysis of KSHV and have impeded a deeper understanding of KS pathogenesis. Here we show that human dermal microvascular endothelial cells immortalized by expression of telomerase can be readily infected by KSHV virions produced by PEL cells. Infection is predominantly latent, but a small subpopulation enters the lytic cycle spontaneously. Phorbol ester (tetradecanoyl phorbol acetate [TPA]) treatment of latently infected cells leads to enhanced induction of lytic KSHV replication, resulting in foci of cytopathic effect. There is no cytopathic effect or viral DNA expansion when infected TIME cells (telomerase-immortalized microvascular endothelial cells) are TPA induced in the presence of phosphonoacetic acid (PAA), an inhibitor of herpesvirus replication. Supernatants from phorbol-induced cultures transfer latent KSHV infection to uninfected cells, which can likewise be induced to undergo lytic replication by TPA treatment, and the virus can be further serially transmitted. Serial passage of the virus in TIME cells is completely inhibited when TPA treatment is done in the presence of PAA. Latently infected endothelial cells do not undergo major morphological changes or growth transformation, and infection is lost from the culture upon serial passage. This behavior faithfully recapitulates the behavior of spindle cells explanted from primary KS biopsies, strongly supporting the biological relevance of this culture system. These findings suggest that either the stability or the growth-deregulatory potential of the KSHV latency program in endothelial cells is more limited than might be predicted by analogy with other oncogenic viruses.

MeSH Terms
Caenorhabditis elegans Proteins Carrier Proteins Cell Transformation, Viral Cytopathogenic Effect, Viral Endothelium, Vascular/cytology,pathology,virology Herpesviridae Infections/virology Herpesvirus 8, Human/pathogenicity,physiology Humans Microcirculation Phorbol Esters/pharmacology Protein Kinase C Receptors, Drug Skin/blood supply Telomerase/metabolism Tumor Cells, Cultured Viral Plaque Assay Virus Latency Virus Replication
Chemicals
Caenorhabditis elegans Proteins Carrier Proteins Phorbol Esters Receptors, Drug phorbol ester binding protein phorbol ester receptor Protein Kinase C Telomerase
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Lagunoff Michael
Department of Microbiology and Medicine, Howard Hughes Medical Institute, University of California-San Francisco, 513 Parnassus Ave., San Francisco, CA 94143-0414, USA.
Bechtel Jill
Venetsanakos Eleni
Roy Anne-Marie
Abbey Nancy
Herndier Brian
McMahon Martin
Ganem Don
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Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
2002-03-00
Pages
2440-8
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC153827
Subset
IM
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