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Ovine lentivirus is macrophagetropic and does not replicate productively in T lymphocytes
M D Gorrell1, M R Brandon, D Sheffer
1Division of Comparative Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
Abstract:
The lentiviruses of sheep, goats, and horses cause chronic multiorgan disease in which macrophages are highly permissive for viral replication. Monocytes, which mature into macrophages, are thought to be latently infected with lentivirus, but the extent to which other leukocytes are infected is unknown. Dendritic cells have not been studied separately from monocytes and T-cell subsets have not been examined in previous attempts to identify infected cells in peripheral blood mononuclear cells (PBMC). We found no evidence of T-cell tropism using an animal-passaged, pathogenic ovine lentivirus. Phytohemagglutinin-stimulated infectious PBMC produced 20-fold less virus than differentiated macrophages, and cocultivation of infectious PBMC with fresh, uninfected phytohemagglutinin blasts did not facilitate virus replication. Furthermore, central lymph cells, the best in vivo source of purified lymphocytes, lacked virus and did not yield virus upon in vitro cultivation. In contrast, cultivated blood-derived macrophages were highly permissive for viral replication. To identify the latently infected PBMC, PBMC from infected sheep were selectively depleted of monocytes and B cells by passage over nylon wool and then of nonadherent cells bearing CD4, CD8, T19, gamma delta T-cell receptor, CD45RA, or major histocompatibility complex class II antigens by panning. Removal of adherent monocytes and B cells or of adherent cells and the three major T-cell subsets (CD4+, CD8+, T19+) did not decrease the infectivity of PBMC. The richest sources of infected cells in fresh PBMC were CD45RA+ and major histocompatibility complex class II+ nonadherent cells, which are three characteristics of dendritic cells. Thus, the dendritic cell, and not the monocyte or the CD4+ cell, is probably the predominant infected cell type in blood.
Insights
Dendritic cells, not monocytes or T-cells, are the primary lentivirus-infected cells in sheep blood. This finding clarifies lentiviral pathogenesis and identifies key host cells for viral persistence.
Area of Science:
- Veterinary Virology
- Immunology
- Cell Biology
Background:
- Lentiviruses cause chronic diseases in livestock, with macrophages being key replication sites.
- The role of other leukocytes, particularly dendritic cells and T-cell subsets, in lentiviral infection remains unclear.
- Previous studies focused on monocytes and T-cells within peripheral blood mononuclear cells (PBMC).
Purpose of the Study:
- To identify the predominant leukocyte subset latently infected by lentivirus in sheep blood.
- To investigate the potential tropism of ovine lentivirus for T-cells and monocytes.
- To differentiate the roles of monocytes, T-cells, and dendritic cells in lentiviral infection.
Main Methods:
- Used pathogenic ovine lentivirus in sheep models.
- Analyzed virus replication in differentiated macrophages and phytohemagglutinin-stimulated PBMC.
- Depleted PBMC of specific cell populations (monocytes, B cells, T-cell subsets) using nylon wool filtration and antibody panning.
- Characterized infected cells based on surface markers (CD4, CD8, T19, gamma delta T-cell receptor, CD45RA, MHC class II).
Main Results:
- Ovine lentivirus showed no evidence of T-cell tropism.
- Differentiated macrophages were highly permissive to viral replication, but infected PBMC produced significantly less virus.
- Depletion of monocytes, B cells, or major T-cell subsets did not reduce PBMC infectivity.
- CD45RA+ and MHC class II+ nonadherent cells, characteristic of dendritic cells, were the richest sources of infected cells.
Conclusions:
- Dendritic cells, rather than monocytes or CD4+ T-cells, are likely the predominant lentivirus-infected cell type in sheep blood.
- This finding refines our understanding of lentiviral reservoirs and pathogenesis in sheep.
- Highlights dendritic cells as a critical target for viral persistence and potential therapeutic strategies.