Related Experiment Video
Updated: Mar 14, 2026

Using Click Chemistry to Measure the Effect of Viral Infection on Host-Cell RNA Synthesis
Published on: August 9, 2013
The VP1u Receptor Restricts Parvovirus B19 Uptake to Permissive Erythroid Cells
Remo Leisi1, Marcus Von Nordheim2, Carlos Ros3,4
1Department of Chemistry and Biochemistry, University of Bern, Bern 3012, Switzerland. remo.leisi@dcb.unibe.ch.
Abstract:
Parvovirus B19 (B19V) is a small non-enveloped virus and known as the causative agent for the mild childhood disease erythema infectiosum. B19V has an extraordinary narrow tissue tropism, showing only productive infection in erythroid precursor cells in the bone marrow. We recently found that the viral protein 1 unique region (VP1u) contains an N-terminal receptor-binding domain (RBD), which mediates the uptake of the virus into cells of the erythroid lineage. To further investigate the role of the RBD in connection with a B19V-unrelated capsid, we chemically coupled the VP1u of B19V to the bacteriophage MS2 capsid and tested the internalization capacity of the bioconjugate on permissive cells. In comparison, we studied the cellular uptake and infection of B19V along the erythroid differentiation. The results showed that the MS2-VP1u bioconjugate mimicked the specific internalization of the native B19V into erythroid precursor cells, which further coincides with the restricted infection profile. The successful mimicry of B19V uptake demonstrates that the RBD in the VP1u is sufficient for the endocytosis of the viral capsid. Furthermore, the recombinant VP1u competed with B19V uptake into permissive cells, thus excluding a significant alternative uptake mechanism by other receptors. Strikingly, the VP1u receptor appeared to be expressed only on erythropoietin-dependent erythroid differentiation stages that also provide the necessary intracellular factors for a productive infection. Taken together, these findings suggest that the VP1u binds to a yet-unknown erythroid-specific cellular receptor and thus restricts the virus entry to permissive cells.
Insights
Parvovirus B19
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Parvovirus B19 (B19V) causes erythema infectiosum and infects only erythroid precursor cells.
- The viral protein 1 unique region (VP1u) contains a receptor-binding domain (RBD) crucial for erythroid cell uptake.
- Understanding B19V tropism is key to controlling its infections.
Purpose of the Study:
- To investigate the role of the VP1u's RBD in viral entry.
- To determine if the RBD alone is sufficient for specific cellular uptake.
- To identify the cellular receptor responsible for B19V's restricted tropism.
Main Methods:
- Chemically coupled VP1u to bacteriophage MS2 capsid to create a bioconjugate.
- Tested MS2-VP1u bioconjugate internalization in permissive erythroid precursor cells.
- Compared bioconjugate uptake with native B19V internalization during erythroid differentiation.
Main Results:
- The MS2-VP1u bioconjugate mimicked B19V's specific internalization into erythroid precursor cells.
- VP1u alone was sufficient for viral capsid endocytosis, confirming the RBD's role.
- Recombinant VP1u competed with B19V uptake, suggesting a specific receptor interaction.
- The VP1u receptor is expressed on erythropoietin-dependent erythroid cells, coinciding with productive infection stages.
Conclusions:
- The VP1u's RBD is sufficient for mediating B19V capsid endocytosis.
- B19V utilizes a specific, yet unidentified, erythroid cell receptor for entry.
- This receptor-specific binding restricts B19V infection to permissive erythroid precursor cells.

