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人乳头瘤病毒致癌基因对上皮细胞增殖和分化的个体及互补效应

Individual and Complementary Effects of Human Papillomavirus Oncogenes on Epithelial Cell Proliferation and Differentiation.

作者信息

Bergner Sven, Halec Gordana, Schmitt Markus, Aubin François, Alonso Angel, Auvinen Eeva

机构信息

Research Program in Infection and Cancer, Deutsches Krebsforschungszentrum, Heidelberg, Germany.

出版信息

Cells Tissues Organs. 2016;201(2):97-108. doi: 10.1159/000441716. Epub 2015 Dec 5.

Abstract

Previous studies on human papillomavirus (HPV) type 16 protein functions have established the oncogenic nature of three viral proteins: E5, E6 and E7. Here we have studied the functions of these proteins by functional deletion of the individual E5, E6 or E7, or both E6 and E7 oncogenes in the context of the whole viral genome. These mutants, or the intact wild-type genome, were expressed from the natural viral promoters along with differentiation of epithelial HaCaT cells in three-dimensional collagen raft cultures. High episomal viral copy numbers were obtained using a transfection-based loxp-HPV16-eGFP-N1 vector system. All epithelial equivalents carrying the different HPV type 16 genomes showed pronounced hyperplastic and dysplastic morphology. Particularly the E7 oncogene, with contribution of E6, was shown to enhance cell proliferation. Specifically, the crucial role of E7 in HPV-associated hyperproliferation was clearly manifested. Based on morphological characteristics, immunohistochemical staining for differentiation and proliferation markers, and low expression of E1^E4, we propose that our raft culture models produce cervical intraepithelial neoplasia (CIN)1 and CIN2-like tissue. Our experimental setting provides an alternative tool to study concerted functions of HPV proteins in the development of epithelial dysplasia.

摘要

先前关于16型人乳头瘤病毒(HPV)蛋白功能的研究已证实三种病毒蛋白(E5、E6和E7)具有致癌性。在此,我们通过在整个病毒基因组背景下对单个E5、E6或E7致癌基因,或E6和E7致癌基因进行功能缺失,研究了这些蛋白的功能。这些突变体或完整的野生型基因组在三维胶原筏培养中,与上皮HaCaT细胞分化一起由天然病毒启动子表达。使用基于转染的loxp-HPV16-eGFP-N1载体系统获得了高附加型病毒拷贝数。所有携带不同16型HPV基因组的上皮等效物均表现出明显的增生和发育异常形态。特别是E7致癌基因,在E6的作用下,显示出可增强细胞增殖。具体而言,E7在HPV相关的过度增殖中的关键作用得到了明确体现。基于形态学特征、分化和增殖标志物的免疫组织化学染色以及E1^E4的低表达,我们提出我们的筏培养模型可产生宫颈上皮内瘤变(CIN)1和CIN2样组织。我们的实验设置为研究HPV蛋白在上皮发育异常中的协同功能提供了一种替代工具。

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