Wang Hsu-Kun, Duffy Aaron A, Broker Thomas R, Chow Louise T
Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.
Genes Dev. 2009 Jan 15;23(2):181-94. doi: 10.1101/gad.1735109. Epub 2009 Jan 8.
Using Cre-loxP-mediated recombination, we established a highly efficient and reproducible system that generates autonomous HPV-18 genomes in primary human keratinocytes (PHKs), the organotypic raft cultures of which recapitulated a robust productive program. While E7 promoted S-phase re-entry in numerous suprabasal differentiated cells, HPV DNA unexpectedly amplified following a prolonged G2 arrest in mid- and upper spinous cells. As viral DNA levels intensified, E7 activity diminished and then extinguished. These cells then exited the cell cycle to undergo virion morphogenesis. High titers of progeny virus generated an indistinguishable productive infection in naïve PHK raft cultures as before, never before achieved until now. An immortalization-defective HPV-18 E6 mutant genome was also characterized for the first time. Numerous cells accumulated p53 protein, without inducing apoptosis, but the productive program was severely curtailed. Complementation of mutant genomes by E6-expressing retrovirus restored proper degradation of p53 as well as viral DNA amplification and L1 production. This system will be invaluable for HPV genetic dissection and serves as a faithful ex vivo model for investigating infections and interventions.
利用Cre-loxP介导的重组,我们建立了一个高效且可重复的系统,该系统可在原代人角质形成细胞(PHK)中产生自主的HPV-18基因组,其器官型筏培养物重现了强大的生产程序。虽然E7促进了许多基底上层分化细胞重新进入S期,但HPV DNA在棘层中、上部细胞长时间G2期停滞之后意外地发生了扩增。随着病毒DNA水平的升高,E7活性降低然后消失。这些细胞随后退出细胞周期以进行病毒粒子形态发生。高滴度的子代病毒在未接触过病毒的PHK筏培养物中产生了与之前难以区分的有效感染,这在此之前从未实现过。首次对一种永生化缺陷型HPV-18 E6突变体基因组进行了表征。许多细胞积累了p53蛋白,但未诱导细胞凋亡,不过生产程序受到了严重限制。通过表达E6的逆转录病毒对突变体基因组进行互补,恢复了p53的正常降解以及病毒DNA扩增和L1产生。该系统对于HPV基因剖析将具有重要价值,并可作为研究感染和干预措施的可靠体外模型。