Shamanin Vladimir A, Sekaric Pedja, Androphy Elliot J
University of Massachusetts Medical School, LRB328, 364 Plantation St., Worcester, MA 01605, USA.
J Virol. 2008 Apr;82(8):3912-20. doi: 10.1128/JVI.02466-07. Epub 2008 Feb 6.
Two activities of human papillomavirus type 16 E6 (HPV16 E6) are proposed to contribute to the efficient immortalization of human epithelial cells: the degradation of p53 protein and the induction of telomerase. However, the requirement for p53 inactivation has been debated. Another E6 target is the hAda3 protein, a p53 coactivator and a component of histone acetyltransferase complexes. We have previously described the role of hAda3 and p53 acetylation in p14ARF-induced human mammary epithelial cell (MEC) senescence (P. Sekaric, V. A. Shamanin, J. Luo, and E. J. Androphy, Oncogene 26:6261-6268, 2007). In this study, we analyzed a set of HPV16 E6 mutants for the ability to induce hAda3 degradation. E6 mutants that degrade hAda3 but not p53 could abrogate p14ARF-induced growth arrest despite the presence of normal levels of p53 and efficiently immortalized MECs. However, two E6 mutants that previously were reported to immortalize MECs with low efficiency were found to be defective for both p53 and hAda3 degradation. We found that these immortal MECs select for reduced p53 protein levels through a proteasome-dependent mechanism. The findings strongly imply that the inactivation of the p14ARF-p53 pathway, either by the E6-mediated degradation of p53 or hAda3 or by cellular adaptation, is required for MEC immortalization.
人乳头瘤病毒16型E6(HPV16 E6)的两种活性被认为有助于人类上皮细胞的有效永生化:p53蛋白的降解和端粒酶的诱导。然而,p53失活的必要性一直存在争议。另一个E6靶点是hAda3蛋白,它是一种p53共激活因子,也是组蛋白乙酰转移酶复合物的一个组成部分。我们之前已经描述了hAda3和p53乙酰化在p14ARF诱导的人乳腺上皮细胞(MEC)衰老中的作用(P. Sekaric、V. A. Shamanin、J. Luo和E. J. Androphy,《癌基因》26:6261 - 6268,2007年)。在本研究中,我们分析了一组HPV16 E6突变体诱导hAda3降解的能力。能够降解hAda3但不能降解p53的E6突变体,尽管p53水平正常,仍能消除p14ARF诱导的生长停滞,并有效地使MEC永生化。然而,之前报道的两个低效率使MEC永生化的E6突变体,被发现对p53和hAda3的降解均有缺陷。我们发现这些永生化的MEC通过蛋白酶体依赖机制选择降低p53蛋白水平。这些发现强烈表明,MEC永生化需要通过E6介导的p53或hAda3降解或细胞适应来使p14ARF - p53途径失活。