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Published on: April 26, 2024
Vaccinia virus tropism for primary hematolymphoid cells is determined by restricted expression of a unique virus
Ann Chahroudi1, Rahul Chavan, Natalia Kozyr
1Emory Vaccine Center, Emory University School of Medicine, Atlanta, Georgia 30329, USA.
Abstract:
The presumed broad tropism of poxviruses has stymied attempts to identify both the cellular receptor(s) and the viral determinant(s) for binding. Detailed studies of poxvirus binding to and infection of primary human cells have not been conducted. In particular, the determinants of target cell infection and the consequences of infection for cells involved in the generation of antiviral immune responses are incompletely understood. In this report, we show that vaccinia virus (VV) exhibits a more restricted tropism for primary hematolymphoid human cells than has been previously recognized. We demonstrate that vaccinia virus preferentially infects antigen-presenting cells (dendritic cells, monocytes/macrophages, and B cells) and activated T cells, but not resting T cells. The infection of activated T cells is permissive, with active viral replication and production of infectious progeny. Susceptibility to infection is determined by restricted expression of a cellular receptor that is induced de novo upon T-cell activation and can be removed from the cell surface by either trypsin or pronase treatment. The VV receptor expressed on activated T cells displays unique characteristics that distinguish it from the receptor used to infect cell lines in culture. The observed restricted tropism of VV may have significant consequences for the understanding of natural poxvirus infection and immunity and for poxvirus-based vaccine development.
Insights
Vaccinia virus (VV) infects specific immune cells, not all, unlike previously thought. This restricted tropism for hematolymphoid cells impacts understanding poxvirus immunity and vaccine development.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Poxvirus tropism is presumed broad, hindering receptor and determinant identification.
- Limited studies exist on poxvirus binding and infection of primary human cells.
- Infection determinants and consequences for immune cells are poorly understood.
Purpose of the Study:
- To investigate the tropism of vaccinia virus (VV) for primary human hematolymphoid cells.
- To identify cellular receptors and viral determinants involved in VV binding and infection.
- To understand the consequences of VV infection on immune cells.
Main Methods:
- Studied VV binding and infection of primary human hematolymphoid cells.
- Utilized cell culture and immunological assays.
- Analyzed viral replication and progeny production.
Main Results:
- VV exhibits restricted tropism, preferentially infecting antigen-presenting cells and activated T cells, but not resting T cells.
- Activated T cell infection is permissive, supporting viral replication.
- Susceptibility is linked to a cell surface receptor induced upon T cell activation.
Conclusions:
- VV tropism is more restricted than presumed, targeting specific immune cell subsets.
- A novel VV receptor on activated T cells influences tropism.
- Findings impact poxvirus immunity understanding and vaccine strategies.
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