首页> 外文期刊>Journal of Pathology: Journal of the Pathological Society of Great Britain and Ireland >Depletion of HPV16 early genes induces autophagy and senescence in a cervical carcinogenesis model, regardless of viral physical state
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Depletion of HPV16 early genes induces autophagy and senescence in a cervical carcinogenesis model, regardless of viral physical state

机译:HPV16早期基因的耗竭在宫颈癌发生模型中诱导自噬和衰老,无论病毒的物理状态如何

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In cervical carcinomas, high-risk human papillomavirus (HR-HPV) may be integrated into host chromosomes or remain extra-chromosomal (episomal). We used the W12 cervical keratinocyte model to investigate the effects of HPV16 early gene depletion on in vitro cervical carcinogenesis pathways, particularly effects shared by cells with episomal versus integrated HPV16 DNA. Importantly, we were able to study the specific cellular consequences of viral gene depletion by using short interfering RNAs known not to cause phenotypic or transcriptional off-target effects in keratinocytes. We found that while cervical neoplastic progression in vitro was characterized by dynamic changes in HPV16 transcript levels, viral early gene expression was required for cell survival at all stages of carcinogenesis, regardless of viral physical state, levels of early gene expression or histology in organotypic tissue culture. Moreover, HPV16 early gene depletion induced changes in host gene expression that were common to both episome-containing and integrant-containing cells. In particular, we observed up-regulation of autophagy genes, associated with enrichment of senescence and innate immune-response pathways, including the senescence-associated secretory phenotype (SASP). In keeping with these observations, HPV16 early gene depletion induced autophagy in both episome-containing and integrant-containing W12 cells, as evidenced by the appearance of autophagosomes, punctate expression of the autophagy marker LC3, conversion of LC3B-I to LC3B-II, and reduced levels of the autophagy substrate p62. Consistent with the reported association between autophagy and senescence pathways, HPV16 early gene depletion induced expression of the senescence marker beta-galactosidase and increased secretion of the SASP-related protein IGFBP3. Together, these data indicate that depleting HR-HPV early genes would be of potential therapeutic benefit in all cervical carcinogenesis pathways, regardless of viral physical state. In addition, the senescence/SASP response associated with autophagy induction may promote beneficial immune effects in bystander cells.
机译:在子宫颈癌中,高危型人乳头瘤病毒(HR-HPV)可能整合到宿主染色体中或保持染色体外(附加)。我们使用W12宫颈角质形成细胞模型来研究HPV16早期基因耗竭对体外宫颈癌发生途径的影响,特别是游离型与整合型HPV16 DNA的细胞共有的效应。重要的是,我们能够使用已知不会在角质形成细胞中引起表型或转录脱靶效应的短干扰RNA,研究病毒基因耗竭的特定细胞后果。我们发现,尽管宫颈癌的体外发展以HPV16转录水平的动态变化为特征,但病毒早期基因表达对于癌变的所有阶段的细胞存活都是必需的,而与病毒性状态,早期基因表达水平或器官型组织中的组织学无关文化。此外,HPV16早期基因耗竭诱导宿主基因表达的变化,这对于含附加体和含整合体的细胞都是常见的。特别是,我们观察到自噬基因的上调,与衰老和先天免疫反应途径的丰富化相关,包括衰老相关的分泌表型(SASP)。与这些观察结果一致,HPV16早期基因耗竭在含附加体和含整合子的W12细胞中诱导自噬,这由自噬体的出现,自噬标记物LC3的点状表达,LC3B-I转化为LC3B-II所证明。自噬底物p62的水平降低。与自噬和衰老途径之间的相关报道相一致,HPV16早期基因耗竭诱导衰老标志物β-半乳糖苷酶的表达和SASP相关蛋白IGFBP3的分泌增加。总之,这些数据表明,不管病毒的物理状态如何,耗尽HR-HPV早期基因在所有宫颈癌发生途径中都具有潜在的治疗益处。此外,与自噬诱导相关的衰老/ SASP反应可能促进旁观者细胞产生有益的免疫作用。

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