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Updated: Feb 11, 2026

Merkel Cell Polyomavirus Infection and Detection
Published on: February 7, 2019
Characterization of a Merkel Cell Polyomavirus-Positive Merkel Cell Carcinoma Cell Line CVG-1
Celestino Velásquez1, Yutaka Amako1,2, Alexis Harold1
1Cancer Virology Program, University of Pittsburgh Medical Center Hillman Cancer Center, Pittsburgh, PA, United States.
Abstract:
Merkel cell polyomavirus (MCV) plays a causal role in ∼80% of Merkel cell carcinomas (MCC). MCV is clonally integrated into the MCC tumor genome, which results in persistent expression of large T (LT) and small T (sT) antigen oncoproteins encoded by the early locus. In MCV-positive MCC tumors, LT is truncated by premature stop codons or deletions that lead to loss of the C-terminal origin binding (OBD) and helicase domains important for replication. The N-terminal Rb binding domain remains intact. MCV-positive cell lines derived from MCC explants have been valuable tools to study the molecular mechanism of MCV-induced Merkel cell carcinogenesis. Although all cell lines have integrated MCV and express truncated LT antigens, the molecular sizes of the LT proteins differ between cell lines. The copy number of integrated viral genome also varies across cell lines, leading to significantly different levels of viral protein expression. Nevertheless, these cell lines share phenotypic similarities in cell morphology, growth characteristics, and neuroendocrine marker expression. Several low-passage MCV-positive MCC cell lines have been established since the identification of MCV. We describe a new MCV-positive MCV cell line, CVG-1, with features distinct from previously reported cell lines. CVG-1 tumor cells grow in more discohesive clusters in loose round cell suspension, and individual cells show dramatic size heterogeneity. It is the first cell line to encode an MCV sT polymorphism resulting in a unique leucine (L) to proline (P) substitution mutation at amino acid 144. CVG-1 possesses a LT truncation pattern near identical to that of MKL-1 cells differing by the last two C-terminal amino acids and also shows an LT protein expression level similar to MKL-1. Viral T antigen knockdown reveals that, like other MCV-positive MCC cell lines, CVG-1 requires T antigen expression for cell proliferation.
Insights
Merkel cell polyomavirus (MCV) drives Merkel cell carcinoma (MCC). A new cell line, CVG-1, offers distinct features and a unique small T antigen mutation, aiding research into MCV-induced cancer mechanisms.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Merkel cell polyomavirus (MCV) is a major cause of Merkel cell carcinoma (MCC), with viral DNA integrated into tumor genomes.
- Persistent expression of MCV large T (LT) and small T (sT) oncoproteins drives cancer development, though LT is often truncated in tumors.
- Existing MCV-positive MCC cell lines are crucial for studying carcinogenesis but exhibit variations in viral protein expression and LT truncation patterns.
Purpose of the Study:
- To introduce and characterize a novel MCV-positive MCC cell line, CVG-1.
- To investigate the distinct biological and molecular features of CVG-1 compared to previously established cell lines.
- To confirm the essential role of viral T antigen expression in CVG-1 cell proliferation.
Main Methods:
- Establishment and characterization of the CVG-1 cell line from MCC explants.
- Analysis of MCV integration, LT and sT antigen expression, and protein truncation patterns.
- Comparative analysis of CVG-1 morphology, growth characteristics, and marker expression with existing cell lines.
- Viral T antigen knockdown experiments to assess proliferation dependency.
Main Results:
- CVG-1 exhibits unique discohesive growth in suspension and significant cell size heterogeneity.
- This cell line is the first to show an MCV sT polymorphism (L144P mutation).
- CVG-1 has an LT truncation pattern similar to MKL-1 cells and requires T antigen expression for proliferation.
Conclusions:
- CVG-1 represents a distinct and valuable new tool for MCV-driven Merkel cell carcinoma research.
- The unique sT polymorphism in CVG-1 may offer new insights into viral oncogenesis.
- CVG-1 confirms the critical role of MCV T antigens in maintaining the proliferative phenotype of MCC cells.
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