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HPV 癌基因仅从多个整合的 HPV DNA 拷贝中的一个表达,驱动宫颈癌中的克隆细胞扩增。

HPV oncogenes expressed from only one of multiple integrated HPV DNA copies drive clonal cell expansion in cervical cancer.

机构信息

Tumor Virus RNA Biology Section, HIV Dynamics and Replication Program, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Frederick, Maryland, USA.

CCR Collaborative Bioinformatics Resource (CCBR), National Cancer Institute, Bethesda, Maryland, USA.

出版信息

mBio. 2024 May 8;15(5):e0072924. doi: 10.1128/mbio.00729-24. Epub 2024 Apr 16.

Abstract

UNLABELLED

The integration of HPV DNA into human chromosomes plays a pivotal role in the onset of papillomavirus-related cancers. HPV DNA integration often occurs by linearizing the viral DNA in the E1/E2 region, resulting in the loss of a critical viral early polyadenylation signal (PAS), which is essential for the polyadenylation of the E6E7 bicistronic transcripts and for the expression of the viral E6 and E7 oncogenes. Here, we provide compelling evidence that, despite the presence of numerous integrated viral DNA copies, virus-host fusion transcripts originate from only a single integrated HPV DNA in HPV16 and HPV18 cervical cancers and cervical cancer-derived cell lines. The host genomic elements neighboring the integrated HPV DNA are critical for the efficient expression of the viral oncogenes that leads to clonal cell expansion. The fusion RNAs that are produced use a host RNA polyadenylation signal downstream of the integration site, and almost all involve splicing to host sequences. In cell culture, siRNAs specifically targeting the host portion of the virus-host fusion transcripts effectively silenced viral E6 and E7 expression. This, in turn, inhibited cell growth and promoted cell senescence in HPV16+ CaSki and HPV18+ HeLa cells. Showing that HPV E6 and E7 expression from a single integration site is instrumental in clonal cell expansion sheds new light on the mechanisms of HPV-induced carcinogenesis and could be used for the development of precision medicine tailored to combat HPV-related malignancies.

IMPORTANCE

Persistent oncogenic HPV infections lead to viral DNA integration into the human genome and the development of cervical, anogenital, and oropharyngeal cancers. The expression of the viral E6 and E7 oncogenes plays a key role in cell transformation and tumorigenesis. However, how E6 and E7 could be expressed from the integrated viral DNA which often lacks a viral polyadenylation signal in the cancer cells remains unknown. By analyzing the integrated HPV DNA sites and expressed HPV RNAs in cervical cancer tissues and cell lines, we show that HPV oncogenes are expressed from only one of multiple chromosomal HPV DNA integrated copies. A host polyadenylation signal downstream of the integrated viral DNA is used for polyadenylation and stabilization of the virus-host chimeric RNAs, making the oncogenic transcripts targetable by siRNAs. This observation provides further understanding of the tumorigenic mechanism of HPV integration and suggests possible therapeutic strategies for the development of precision medicine for HPV cancers.

摘要

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HPV 病毒 DNA 整合到人类染色体中在引发与乳头瘤病毒相关的癌症方面起着关键作用。HPV 病毒 DNA 整合通常通过线性化 E1/E2 区域中的病毒 DNA 来实现,导致关键的病毒早期聚腺苷酸化信号(PAS)丢失,该信号对于 E6E7 双顺反子转录物的聚腺苷酸化以及病毒 E6 和 E7 癌基因的表达至关重要。在这里,我们提供了令人信服的证据,表明尽管存在大量整合的病毒 DNA 拷贝,但 HPV16 和 HPV18 宫颈癌和宫颈癌衍生细胞系中仅来自单个整合 HPV DNA 的病毒-宿主融合转录本起源。整合 HPV DNA 附近的宿主基因组元件对于导致克隆细胞扩增的病毒癌基因的有效表达至关重要。产生的融合 RNA 使用整合位点下游的宿主 RNA 聚腺苷酸化信号,并且几乎所有融合 RNA 都涉及到与宿主序列的拼接。在细胞培养中,特异性靶向病毒-宿主融合转录本的宿主部分的 siRNA 可有效沉默病毒 E6 和 E7 的表达。反过来,它抑制 HPV16+CaSki 和 HPV18+HeLa 细胞的细胞生长并促进细胞衰老。表明单个整合位点的 HPV E6 和 E7 表达对于克隆细胞扩增至关重要,这为 HPV 诱导的致癌机制提供了新的见解,并可用于开发针对 HPV 相关恶性肿瘤的精准医学。

重要性

持续性致癌 HPV 感染导致病毒 DNA 整合到人类基因组中,并导致宫颈癌、肛门生殖器癌和口咽癌的发生。病毒 E6 和 E7 癌基因的表达在细胞转化和肿瘤发生中起着关键作用。然而,在癌细胞中经常缺乏病毒聚腺苷酸化信号的整合病毒 DNA 中,E6 和 E7 如何表达仍然未知。通过分析宫颈癌组织和细胞系中的整合 HPV DNA 位点和表达的 HPV RNA,我们表明 HPV 癌基因仅从多个染色体 HPV DNA 整合拷贝中的一个拷贝表达。整合病毒 DNA 下游的宿主聚腺苷酸化信号用于聚腺苷酸化和稳定病毒-宿主嵌合 RNA,使致癌转录物可被 siRNA 靶向。这一观察结果进一步了解了 HPV 整合的肿瘤发生机制,并为开发针对 HPV 癌症的精准医学提供了可能的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8692/11077993/cf8f657a9dbe/mbio.00729-24.f001.jpg

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