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Merkel Cell Polyomavirus Infection and Detection
Published on: February 7, 2019
The Ubiquitin-Specific Protease Usp7, a Novel Merkel Cell Polyomavirus Large T-Antigen Interaction Partner, Modulates
Manja Czech-Sioli1, Svenja Siebels1, Sonja Radau2
1Institute for Medical Microbiology, Virology and Hygiene, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Abstract:
Merkel cell polyomavirus (MCPyV) is the major cause for Merkel cell carcinoma (MCC), a rare but highly aggressive skin cancer predominantly found in elderly and immunosuppressed patients. The early viral gene products large T-antigen (LT) and small T-antigen (sT) are important for efficient viral DNA replication, and both contribute to transformation processes. These functions are executed mainly through interactions with host factors. Here, we identify the cellular ubiquitin-specific processing protease 7 (Usp7) as a new interaction partner of the MCPyV LT. Using glutathione S-transferase pulldown experiments, we show that MCPyV LT directly binds to Usp7 and that N- as well as C-terminal regions of LT bind to the TRAF (tumor necrosis factor receptor-associated) domain of Usp7. We demonstrate that endogenous Usp7 coprecipitates with MCPyV T-antigens and relocalizes to viral DNA replication centers in cells actively replicating MCPyV genomes. We show that Usp7 does not alter ubiquitination levels of the T-antigens; however, Usp7 binding increases the binding affinity of LT to the origin of replication, thereby negatively regulating viral DNA replication. Together, these data identify Usp7 as a restriction factor of MCPyV replication. In contrast to other DNA viruses, Usp7 does not affect MCPyV gene expression via its ubiquitination activity but influences MCPyV DNA replication solely via a novel mechanism that modulates binding of LT to viral DNA.IMPORTANCE MCPyV is the only human polyomavirus that is associated with cancer; the majority of Merkel cell cancers have a viral etiology. While much emphasis was placed on investigations to understand the transformation process by MCPyV oncoproteins and cellular factors, we have only limited knowledge of cellular factors participating in the MCPyV life cycle. Here, we describe Usp7, a cellular deubiquitination enzyme, as a new factor involved in MCPyV replication. Usp7 is known in the context of large DNA tumor viruses, Epstein-Barr virus (EBV) and Kaposi's sarcoma herpesvirus, to restrict viral replication. Similar to EBV, where Usp7 binding to EBNA1 increases EBNA1 binding affinity to viral DNA, we find MCPyV LT binding to the origin of replication to be increased in the presence of Usp7, resulting in restriction of viral DNA replication. However, Usp7-induced restriction of MCPyV replication is independent of its enzymatic activity, thereby constituting a novel mechanism of Usp7-induced restriction of viral replication.
Insights
The cellular protein Usp7 binds to Merkel cell polyomavirus LT, restricting viral DNA replication. This interaction enhances LT binding to the viral origin of replication, independent of Usp7
Area of Science:
- Virology
- Molecular Biology
- Oncology
Background:
- Merkel cell polyomavirus (MCPyV) causes Merkel cell carcinoma (MCC), an aggressive skin cancer.
- MCPyV early gene products, large T-antigen (LT) and small T-antigen (sT), are crucial for viral replication and cell transformation.
- Cellular factors interacting with viral oncoproteins are key to understanding viral life cycles and pathogenesis.
Purpose of the Study:
- To identify novel cellular factors interacting with MCPyV LT.
- To elucidate the role of Usp7 in MCPyV replication and pathogenesis.
- To understand the mechanism by which Usp7 influences MCPyV DNA replication.
Main Methods:
- Glutathione S-transferase (GST) pulldown assays to detect direct binding between MCPyV LT and Usp7.
- Co-immunoprecipitation to confirm endogenous Usp7 and MCPyV T-antigen interactions.
- Cellular localization studies to observe Usp7 relocalization to viral replication centers.
Main Results:
- Usp7 directly binds to MCPyV LT through its N- and C-terminal regions.
- Endogenous Usp7 coprecipitates with MCPyV T-antigens and localizes to viral replication sites.
- Usp7 binding increases LT affinity for the viral origin of replication, inhibiting viral DNA replication.
- This restriction mechanism is independent of Usp7's deubiquitination enzymatic activity.
Conclusions:
- Usp7 acts as a restriction factor for MCPyV replication.
- Usp7 modulates MCPyV DNA replication through a novel mechanism involving enhanced LT binding to the viral origin.
- This finding expands the understanding of cellular factor involvement in the MCPyV life cycle and offers new insights into viral restriction mechanisms.
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