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Updated: May 30, 2026

Merkel Cell Polyomavirus Infection and Detection
Published on: February 7, 2019
Glycosaminoglycans and sialylated glycans sequentially facilitate Merkel cell polyomavirus infectious entry
Rachel M Schowalter1, Diana V Pastrana, Christopher B Buck
1Tumor Virus Molecular Biology Section, Laboratory of Cellular Oncology, National Cancer Institute, Bethesda, Maryland, United States of America.
Abstract:
Merkel cell polyomavirus (MCV or MCPyV) appears to be a causal factor in the development of Merkel cell carcinoma, a rare but highly lethal form of skin cancer. Although recent reports indicate that MCV virions are commonly shed from apparently healthy human skin, the precise cellular tropism of the virus in healthy subjects remains unclear. To begin to explore this question, we set out to identify the cellular receptors or co-receptors required for the infectious entry of MCV. Although several previously studied polyomavirus species have been shown to bind to cell surface sialic acid residues associated with glycolipids or glycoproteins, we found that sialylated glycans are not required for initial attachment of MCV virions to cultured human cell lines. Instead, glycosaminoglycans (GAGs), such as heparan sulfate (HS) and chondroitin sulfate (CS), serve as initial attachment receptors during the MCV infectious entry process. Using cell lines deficient in GAG biosynthesis, we found that N-sulfated and/or 6-O-sulfated forms of HS mediate infectious entry of MCV reporter vectors, while CS appears to be dispensable. Intriguingly, although cell lines deficient in sialylated glycans readily bind MCV capsids, the cells are highly resistant to MCV reporter vector-mediated gene transduction. This suggests that sialylated glycans play a post-attachment role in the infectious entry process. Results observed using MCV reporter vectors were confirmed using a novel system for infectious propagation of native MCV virions. Taken together, the findings suggest a model in which MCV infectious entry occurs via initial cell binding mediated primarily by HS, followed by secondary interactions with a sialylated entry co-factor. The study should facilitate the development of inhibitors of MCV infection and help shed light on the infectious entry pathways and cellular tropism of the virus.
Insights
Merkel cell polyomavirus (MCV) uses glycosaminoglycans like heparan sulfate for initial cell attachment. Sialylated glycans are crucial for later stages of MCV infection, guiding viral entry into cells.
Area of Science:
- Virology
- Dermatology
- Cell Biology
Background:
- Merkel cell polyomavirus (MCV) is linked to Merkel cell carcinoma.
- MCV shedding from skin is common, but cellular tropism is unclear.
- Understanding MCV entry is key to controlling infection.
Purpose of the Study:
- Identify cellular receptors for MCV infectious entry.
- Investigate the roles of sialylated glycans and glycosaminoglycans (GAGs) in MCV infection.
Main Methods:
- Utilized cell lines with deficiencies in GAG or sialic acid biosynthesis.
- Employed MCV reporter vectors and native MCV virions for infection studies.
- Analyzed viral attachment, gene transduction, and infectious propagation.
Main Results:
- Sialylated glycans are not required for initial MCV attachment.
- Heparan sulfate (HS), a type of GAG, mediates initial MCV attachment and entry.
- N-sulfated and/or 6-O-sulfated HS forms are critical for MCV reporter vector entry.
- Chondroitin sulfate (CS) appears dispensable for MCV entry.
- Sialylated glycans are necessary for post-attachment steps, facilitating gene transduction.
Conclusions:
- MCV entry involves initial binding to HS, followed by secondary interactions with sialylated co-factors.
- This mechanism explains MCV cellular tropism and provides targets for antiviral development.
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