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Updated: May 18, 2026

Merkel Cell Polyomavirus Infection and Detection
Published on: February 7, 2019
PDGF receptor-α does not promote HCMV entry into epithelial and endothelial cells but increased quantities stimulate
Adam L Vanarsdall1, Todd W Wisner, Hetian Lei
1Department of Molecular Microbiology and Immunology, Oregon Health and Science University, Portland, Oregon, USA.
Abstract:
Epidermal growth factor receptor (EGFR) and platelet-derived growth factor receptor-α (PDGFRα) were reported to mediate entry of HCMV, including HCMV lab strain AD169. AD169 cannot assemble gH/gL/UL128-131, a glycoprotein complex that is essential for HCMV entry into biologically important epithelial cells, endothelial cells, and monocyte-macrophages. Given this, it appeared incongruous that EGFR and PDGFRα play widespread roles in HCMV entry. Thus, we investigated whether PDGFRα and EGFR could promote entry of wild type HCMV strain TR. EGFR did not promote HCMV entry into any cell type. PDGFRα-transduction of epithelial and endothelial cells and several non-permissive cells markedly enhanced HCMV TR entry and surprisingly, promoted entry of HCMV mutants lacking gH/gL/UL128-131 into epithelial and endothelial cells. Entry of HCMV was not blocked by a panel of PDGFRα antibodies or the PDGFR ligand in fibroblasts, epithelial, or endothelial cells or by shRNA silencing of PDGFRα in epithelial cells. Moreover, HCMV glycoprotein induced cell-cell fusion was not increased when PDGFRα was expressed in cells. Together these results suggested that HCMV does not interact directly with PDGFRα. Instead, the enhanced entry produced by PDGFRα resulted from a novel entry pathway involving clathrin-independent, dynamin-dependent endocytosis of HCMV followed by low pH-independent fusion. When PDGFRα was expressed in cells, an HCMV lab strain escaped endosomes and tegument proteins reached the nucleus, but without PDGFRα virions were degraded. By contrast, wild type HCMV uses another pathway to enter epithelial cells involving macropinocytosis and low pH-dependent fusion, a pathway that lab strains (lacking gH/gL/UL128-131) cannot follow. Thus, PDGFRα does not act as a receptor for HCMV but increased PDGFRα alters cells, facilitating virus entry by an abnormal pathway. Given that PDGFRα increased infection of some cells to 90%, PDGFRα may be very useful in overcoming inefficient HCMV entry (even of lab strains) into the many difficult-to-infect cell types.
Insights
Platelet-derived growth factor receptor-α (PDGFRα) enhances human cytomegalovirus (HCMV) entry into cells by altering cellular pathways, not by direct interaction. This finding offers a new strategy to improve HCMV infection in difficult-to-infect cell types.
Area of Science:
- Virology
- Cell Biology
- Molecular Medicine
Background:
- Epidermal growth factor receptor (EGFR) and platelet-derived growth factor receptor-α (PDGFRα) were previously implicated in human cytomegalovirus (HCMV) entry.
- HCMV lab strain AD169, lacking essential glycoproteins, cannot infect epithelial cells, endothelial cells, or monocyte-macrophages, making the role of EGFR and PDGFRα in HCMV entry unclear.
Purpose of the Study:
- To investigate if PDGFRα and EGFR promote the entry of wild-type HCMV strain TR into cells.
- To elucidate the mechanism by which PDGFRα influences HCMV entry, particularly for strains with deficient glycoprotein complexes.
Main Methods:
- Transduction of various cell types with PDGFRα and EGFR.
- Infection assays with wild-type HCMV and HCMV mutants lacking gH/gL/UL128-131.
- Treatment with PDGFRα antibodies and shRNA silencing.
- Analysis of HCMV entry pathways, including endocytosis and fusion mechanisms.
Main Results:
- EGFR did not enhance HCMV entry into any cell type.
- PDGFRα transduction significantly enhanced HCMV TR entry into epithelial, endothelial, and non-permissive cells.
- PDGFRα promoted entry of HCMV mutants lacking gH/gL/UL128-131 into epithelial and endothelial cells.
- HCMV entry was not blocked by PDGFRα antibodies or ligand, and PDGFRα expression did not increase HCMV-induced cell-cell fusion, suggesting no direct interaction.
- PDGFRα facilitated a novel, clathrin-independent, dynamin-dependent, low pH-independent endocytosis and fusion pathway for HCMV entry.
Conclusions:
- PDGFRα does not function as a direct HCMV receptor.
- Increased PDGFRα expression alters cellular machinery, enabling HCMV entry via an alternative pathway.
- This mechanism allows HCMV lab strains to bypass their usual entry restrictions.
- PDGFRα holds potential for enhancing HCMV infection in cell types typically resistant to the virus, potentially reaching up to 90% infection rates.
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