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Human Papillomavirus 16 DNA Methylation Patterns and Investigation of Integration Status in Head and Neck Cancer Cases. | LitMetric

AI Article Synopsis

  • Persistent high-risk HPV infection is crucial to the development of cervical cancer and increasingly linked to head and neck squamous cell carcinoma (HNSCC), with HPV-positive cases having distinct characteristics compared to HPV-negative ones.
  • This study investigates the epigenetic changes in the HPV16 gene and untranslated region (UTR) using pyrosequencing in HPV16-positive HNSCC biopsies, focusing on DNA methylation patterns.
  • Results show significant methylation at specific sites associated with tumor histological grade, while HPV16 DNA physical status did not relate to methylation or tumor features, highlighting complex interactions between the virus and host in HNSCC patients in Greece.

Article Abstract

Persistent high-risk human papillomavirus (HPV) infection is a pivotal factor in the progression of cervical cancer. In recent years, an increasing interest has emerged in comprehending the influence of HPV on head and neck squamous cell carcinoma (HNSCC). Notably, it is well established that HPV-associated HNSCC show cases with distinct molecular and clinical attributes compared to HPV-negative cases. The present study delves into the epigenetic landscape of HPV16, specifically its gene and untranslated region (UTR), through pyrosequencing, while the HPV16 DNA physical status was evaluated using E2/E6 ratio analysis in HPV16-positive HNSCC FFPE biopsies. Our findings reveal substantial methylation across six sites within the HPV16 gene and seven sites in the UTR. Specifically, methylation percentages of two L1 CpG sites (7136, 7145) exhibit significant associations with tumor histological grade ( < 0.01), while proving concurrent methylation across multiple sites. The HPV16 DNA physical status was not correlated with the methylation of viral genome or tumor characteristics. This is the first study that examines epigenetic modifications and the HPV16 DNA physical status in Greek HNSCC patients. Our findings suggest an orchestrated epigenetic modulation among specific sites, impacting viral gene expression and intricate virus-host interactions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10572864PMC
http://dx.doi.org/10.3390/ijms241914593DOI Listing

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