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Characterization of molecular mechanisms driving Merkel cell polyomavirus oncogene transcription and tumorigenic potential

Merkel cell polyomavirus (MCPyV) is associated with approximately 80% of cases of Merkel cell carcinoma (MCC), an aggressive type of skin cancer. The incidence of MCC has tripled over the past twenty years, but there are currently very few effective targeted treatments. A better understanding of the...

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Autores principales: Yang, June F., Liu, Wei, You, Jianxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10468096/
https://www.ncbi.nlm.nih.gov/pubmed/37647312
http://dx.doi.org/10.1371/journal.ppat.1011598
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author Yang, June F.
Liu, Wei
You, Jianxin
author_facet Yang, June F.
Liu, Wei
You, Jianxin
author_sort Yang, June F.
collection PubMed
description Merkel cell polyomavirus (MCPyV) is associated with approximately 80% of cases of Merkel cell carcinoma (MCC), an aggressive type of skin cancer. The incidence of MCC has tripled over the past twenty years, but there are currently very few effective targeted treatments. A better understanding of the MCPyV life cycle and its oncogenic mechanisms is needed to unveil novel strategies for the prevention and treatment of MCC. MCPyV infection and oncogenesis are reliant on the expression of the early viral oncoproteins, which drive the viral life cycle and MCPyV+ MCC tumor cell growth. To date, the molecular mechanisms regulating the transcription of the MCPyV oncogenes remain largely uncharacterized. In this study, we investigated how MCPyV early transcription is regulated to support viral infection and MCC tumorigenesis. Our studies established the roles of multiple cellular factors in the control of MCPyV gene expression. Inhibitor screening experiments revealed that the histone acetyltransferases p300 and CBP positively regulate MCPyV transcription. Their regulation of viral gene expression occurs through coactivation of the transcription factor NF-κB, which binds to the viral genome to drive MCPyV oncogene expression in a manner that is tightly controlled through a negative feedback loop. Furthermore, we discovered that small molecule inhibitors specifically targeting p300/CBP histone acetyltransferase activity are effective at blocking MCPyV tumor antigen expression and MCPyV+ MCC cell proliferation. Together, our work establishes key cellular factors regulating MCPyV transcription, providing the basis for understanding the largely unknown mechanisms governing MCPyV transcription that defines its infectious host cell tropism, viral life cycle, and oncogenic potential. Our studies also identify a novel therapeutic strategy against MCPyV+ MCC through specific blockage of MCPyV oncogene expression and MCC tumor growth.
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spelling pubmed-104680962023-08-31 Characterization of molecular mechanisms driving Merkel cell polyomavirus oncogene transcription and tumorigenic potential Yang, June F. Liu, Wei You, Jianxin PLoS Pathog Research Article Merkel cell polyomavirus (MCPyV) is associated with approximately 80% of cases of Merkel cell carcinoma (MCC), an aggressive type of skin cancer. The incidence of MCC has tripled over the past twenty years, but there are currently very few effective targeted treatments. A better understanding of the MCPyV life cycle and its oncogenic mechanisms is needed to unveil novel strategies for the prevention and treatment of MCC. MCPyV infection and oncogenesis are reliant on the expression of the early viral oncoproteins, which drive the viral life cycle and MCPyV+ MCC tumor cell growth. To date, the molecular mechanisms regulating the transcription of the MCPyV oncogenes remain largely uncharacterized. In this study, we investigated how MCPyV early transcription is regulated to support viral infection and MCC tumorigenesis. Our studies established the roles of multiple cellular factors in the control of MCPyV gene expression. Inhibitor screening experiments revealed that the histone acetyltransferases p300 and CBP positively regulate MCPyV transcription. Their regulation of viral gene expression occurs through coactivation of the transcription factor NF-κB, which binds to the viral genome to drive MCPyV oncogene expression in a manner that is tightly controlled through a negative feedback loop. Furthermore, we discovered that small molecule inhibitors specifically targeting p300/CBP histone acetyltransferase activity are effective at blocking MCPyV tumor antigen expression and MCPyV+ MCC cell proliferation. Together, our work establishes key cellular factors regulating MCPyV transcription, providing the basis for understanding the largely unknown mechanisms governing MCPyV transcription that defines its infectious host cell tropism, viral life cycle, and oncogenic potential. Our studies also identify a novel therapeutic strategy against MCPyV+ MCC through specific blockage of MCPyV oncogene expression and MCC tumor growth. Public Library of Science 2023-08-30 /pmc/articles/PMC10468096/ /pubmed/37647312 http://dx.doi.org/10.1371/journal.ppat.1011598 Text en © 2023 Yang et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yang, June F.
Liu, Wei
You, Jianxin
Characterization of molecular mechanisms driving Merkel cell polyomavirus oncogene transcription and tumorigenic potential
title Characterization of molecular mechanisms driving Merkel cell polyomavirus oncogene transcription and tumorigenic potential
title_full Characterization of molecular mechanisms driving Merkel cell polyomavirus oncogene transcription and tumorigenic potential
title_fullStr Characterization of molecular mechanisms driving Merkel cell polyomavirus oncogene transcription and tumorigenic potential
title_full_unstemmed Characterization of molecular mechanisms driving Merkel cell polyomavirus oncogene transcription and tumorigenic potential
title_short Characterization of molecular mechanisms driving Merkel cell polyomavirus oncogene transcription and tumorigenic potential
title_sort characterization of molecular mechanisms driving merkel cell polyomavirus oncogene transcription and tumorigenic potential
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10468096/
https://www.ncbi.nlm.nih.gov/pubmed/37647312
http://dx.doi.org/10.1371/journal.ppat.1011598
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