4.7 Review

Epigenetic Dysregulations in Merkel Cell Polyomavirus-Driven Merkel Cell Carcinoma

期刊

出版社

MDPI
DOI: 10.3390/ijms222111464

关键词

Merkel cell polyomavirus (MCPyV); Merkel cell carcinoma (MCC); epigenetics; virus-driven tumors; histone posttranslational modifications; HPTMs; DNA methylation; microRNA; miRNA

资金

  1. Associazione Italiana per la Ricerca sul Cancro (AIRC), Milan, Italy [21956, 21617]

向作者/读者索取更多资源

This review discusses the impact of epigenetic mechanisms on Merkel cell polyomavirus (MCPyV)-driven Merkel Cell Carcinoma (MCC), highlighting the importance of histone posttranslational modifications, DNA methylation, and microRNA regulation. The dysregulation of these epigenetic processes may have clinical significance for MCC diagnosis, prognosis, and therapy.
Merkel cell polyomavirus (MCPyV) is a small DNA virus with oncogenic potential. MCPyV is the causative agent of Merkel Cell Carcinoma (MCC), a rare but aggressive tumor of the skin. The role of epigenetic mechanisms, such as histone posttranslational modifications (HPTMs), DNA methylation, and microRNA (miRNA) regulation on MCPyV-driven MCC has recently been highlighted. In this review, we aim to describe and discuss the latest insights into HPTMs, DNA methylation, and miRNA regulation, as well as their regulative factors in the context of MCPyV-driven MCC, to provide an overview of current findings on how MCPyV is involved in the dysregulation of these epigenetic processes. The current state of the art is also described as far as potentially using epigenetic dysregulations and related factors as diagnostic and prognostic tools is concerned, in addition to targets for MCPyV-driven MCC therapy. Growing evidence suggests that the dysregulation of HPTMs, DNA methylation, and miRNA pathways plays a role in MCPyV-driven MCC etiopathogenesis, which, therefore, may potentially be clinically significant for this deadly tumor. A deeper understanding of these mechanisms and related factors may improve diagnosis, prognosis, and therapy for MCPyV-driven MCC.

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