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Updated: Aug 16, 2026

Viral Tracing of Genetically Defined Neural Circuitry
Published on: October 17, 2012
The human polyomavirus, JCV, does not share receptor specificity with SV40 on human glial cells
C K Liu1, A P Hope, W J Atwood
1Department of Molecular Microbiology and Immunology, Brown University, Providence, Rhode Island 02912, USA.
Abstract:
The initial event in the life cycle of a virus is its interaction with specific receptors present on the surface of a cell. Understanding these interactions is important to our understanding of viral tropism and tissue specific pathology associated with viral disease. The human polyomavirus, JCV, is the etiological agent of the fatal central nervous system (CNS) demyelinating disease, progressive multifocal leukoencephalopathy (PML). PML is the direct result of JCV infection of oligodendrocytes, the myelin producing cell in the CNS. In vivo, JCV can be detected in oligodendrocytes, astrocytes, lymphoid tissue, and peripheral blood of PML patients. In vitro, JCV infects human glial cells, tonsilar stromal cells, and, to a limited extent, human B lymphocytes. The initial step in infection of cells by JCV is at the level of attachment and entry. A specific cell surface receptor for JCV on human glial cells has not been identified. To begin to understand the nature of JCV receptors on human glial cells, large quantities of a previously characterized hybrid JC virus (Mad-1/SVEdelta) were purified. A direct virus binding assay demonstrated that these highly purified and labeled JCV virions bound to a finite number of cellular receptors on human glial cells. A competitive virus binding assay demonstrated that an excess of unlabeled JCV competed with labeled JCV more efficiently than did an excess of purified SV40. Furthermore, anti-class I antibodies which inhibited infection of glial cells by SV40 had no significant effect on infection by JCV. These results imply that JCV does not share receptor specificity with the related polyomavirus, SV40.
Insights
JC virus (JCV) binds to specific receptors on human glial cells, distinct from those used by SV40. This finding is crucial for understanding JCV tropism and progressive multifocal leukoencephalopathy (PML) pathogenesis.
Area of Science:
- Virology
- Neuroscience
- Cell Biology
Background:
- Viral entry into host cells is mediated by specific cell surface receptors, dictating viral tropism and disease pathology.
- Human polyomavirus, JC virus (JCV), causes progressive multifocal leukoencephalopathy (PML), a fatal demyelinating disease of the central nervous system (CNS).
- JCV infects oligodendrocytes, the myelin-producing cells in the CNS, and is found in various tissues of PML patients.
Purpose of the Study:
- To investigate the nature of JC virus (JCV) receptors on human glial cells.
- To determine if JCV shares receptor specificity with the related polyomavirus, SV40.
Main Methods:
- Purification of a hybrid JC virus (Mad-1/SVEdelta) for binding assays.
- Direct virus binding assay using labeled JCV virions on human glial cells.
- Competitive virus binding assay comparing JCV and SV40.
- Assessing the effect of anti-class I antibodies on JCV and SV40 infection.
Main Results:
- Highly purified, labeled JCV virions demonstrated specific binding to a finite number of receptors on human glial cells.
- Unlabeled JCV competed more effectively than SV40 for binding to these receptors, indicating distinct binding specificities.
- Anti-class I antibodies, which inhibit SV40 infection, did not significantly affect JCV infection.
Conclusions:
- JC virus (JCV) utilizes specific receptors on human glial cells that are distinct from those recognized by SV40.
- These findings suggest that JCV does not share receptor specificity with SV40, providing insights into JCV tropism and PML pathogenesis.
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