Tumorigenic activation around HPV integrated sites in head and neck squamous cell carcinoma

Author:

Mima Masato12,Okabe Atsushi2,Hoshii Takayuki2,Nakagawa Takuya23,Kurokawa Tomoya23,Kondo Satoru4ORCID,Mizokami Harue24,Fukuyo Masaki2,Fujiki Ryoji2,Rahmutulla Bahityar2,Yoshizaki Tomokazu4,Hanazawa Toyoyuki3,Misawa Kiyoshi1ORCID,Kaneda Atsushi2ORCID

Affiliation:

1. Department of Otorhinolaryngology, Head and Neck Surgery Hamamatsu University School of Medicine Hamamatsu Japan

2. Department of Molecular Oncology, Graduate School of Medicine Chiba University Chiba Japan

3. Department of Otorhinolaryngology, Head and Neck Surgery, Graduate School of Medicine Chiba University Chiba Japan

4. Division of Otorhinolaryngology, Head and Neck Surgery, Graduate School of Medical Science Kanazawa University Kanazawa Japan

Abstract

AbstractHuman papillomavirus (HPV) is causally involved in the development of head and neck squamous cell carcinoma (HNSCC). The integration of HPV drives tumorigenesis through expression of oncogenic viral genes as well as genomic alterations in surrounding regions. To elucidate involvement of epigenetic dysregulation in tumorigenesis, we here performed integrated analyses of the epigenome, transcriptome and interactome using ChIP‐seq, RNA‐seq and Hi‐C and 4C‐seq for HPV(+) HNSCCs. We analyzed clinical HNSCC using The Cancer Genome Atlas data and found that genes neighboring HPV integration sites were significantly upregulated and were correlated with oncogenic phenotypes in HPV(+) HNSCCs. While we found four HPV integration sites in HPV(+) HNSCC cell line UPCI‐SCC‐090 through target enrichment sequencing, 4C‐seq revealed 0.5 to 40 Mb of HPV‐interacting regions (HPVIRs) where host genomic regions interacted with integrated HPV genomes. While 9% of the HPVIRs were amplified and activated epigenetically forming super‐enhancers, the remaining non‐amplified regions were found to show a significant increase in H3K27ac levels and an upregulation of genes associated with GO terms, for example, Signaling by WNT and Cell Cycle. Among those genes, ITPR3 was significantly upregulated, involving UPCI‐SCC‐090‐specific super‐enhancer formation around the ITPR3 promoter and in the 80‐kb‐downstream region. The knockdown of ITPR3 by siRNA or CRISPR deletions of the distant enhancer region led to a significant suppression of cell proliferation. The epigenetic activation of HPVIRs was also confirmed in other cell lines, UM‐SCC‐47 and UM‐SCC‐104. These data indicate that epigenetic activation in HPVIRs contributes, at least partially, to genesis of HPV(+) HNSCC.

Funder

Chiba University

Japan Agency for Medical Research and Development

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

Cancer Research,Oncology

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