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Updated: Jun 17, 2025

Merkel Cell Polyomavirus Infection and Detection
Published on: February 7, 2019
Merkel cell polyomavirus small tumor antigen contributes to immune evasion by interfering with type I interferon
Denise Ohnezeit1, Jiabin Huang1, Ute Westerkamp1
1Institute for Medical Microbiology, Virology and Hygiene, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Abstract:
Merkel cell polyomavirus (MCPyV) is the causative agent of the majority of Merkel cell carcinomas (MCC). The virus has limited coding capacity, with its early viral proteins, large T (LT) and small T (sT), being multifunctional and contributing to infection and transformation. A fundamental difference in early viral gene expression between infection and MCPyV-driven tumorigenesis is the expression of a truncated LT (LTtr) in the tumor. In contrast, sT is expressed in both conditions and contributes significantly to oncogenesis. Here, we identified novel functions of early viral proteins by performing genome-wide transcriptome and chromatin studies in primary human fibroblasts. Due to current limitations in infection and tumorigenesis models, we mimic these conditions by ectopically expressing sT, LT or LTtr, individually or in combination, at different time points. In addition to its known function in cell cycle and inflammation modulation, we reveal a fundamentally new function of sT. We show that sT regulates the type I interferon (IFN) response downstream of the type I interferon receptor (IFNAR) by interfering with the interferon-stimulated gene factor 3 (ISGF3)-induced interferon-stimulated gene (ISG) response. Expression of sT leads to a reduction in the expression of interferon regulatory factor 9 (IRF9) which is a central component of the ISGF3 complex. We further show that this function of sT is conserved in BKPyV. We provide a first mechanistic understanding of which early viral proteins trigger and control the type I IFN response, which may influence MCPyV infection, persistence and, during MCC progression, regulation of the tumor microenvironment.
Insights
Merkel cell polyomavirus small T antigen (sT) has a novel role in regulating the type I interferon response. This discovery sheds light on viral infection and Merkel cell carcinoma progression.
Area of Science:
- Virology
- Oncology
- Immunology
Background:
- Merkel cell polyomavirus (MCPyV) causes most Merkel cell carcinomas (MCC).
- MCPyV early proteins, large T (LT) and small T (sT), are crucial for infection and transformation.
- Tumorigenesis involves expression of truncated LT (LTtr), while sT is expressed in both infection and tumors.
Purpose of the Study:
- To identify novel functions of MCPyV early viral proteins.
- To investigate the role of sT in regulating the type I interferon (IFN) response.
- To understand the mechanistic basis of sT's interaction with the IFN pathway.
Main Methods:
- Genome-wide transcriptome and chromatin studies in primary human fibroblasts.
- Ectopic expression of sT, LT, and LTtr to mimic infection and tumorigenesis conditions.
- Analysis of interferon-stimulated gene (ISG) expression and interferon regulatory factor 9 (IRF9) levels.
Main Results:
- MCPyV small T antigen (sT) regulates the type I IFN response downstream of the type I interferon receptor (IFNAR).
- sT interferes with the interferon-stimulated gene factor 3 (ISGF3)-induced ISG response by reducing IRF9 expression.
- This sT function is conserved in BK polyomavirus (BKPyV).
Conclusions:
- MCPyV sT possesses a novel function in modulating the type I IFN response.
- Understanding this mechanism provides insights into MCPyV infection, persistence, and MCC tumor microenvironment regulation.
- This study offers a mechanistic understanding of how MCPyV early proteins control the type I IFN response.
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