Jones D L, Alani R M, Münger K
Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Genes Dev. 1997 Aug 15;11(16):2101-11. doi: 10.1101/gad.11.16.2101.
The high risk human papillomaviruses (HPVs) are associated etiologically with the majority of human cervical carcinomas. These HPVs encode two viral oncoproteins, E6 and E7, which are expressed consistently in cervical cancers. The function of these viral oncoproteins during a productive infection is to ensure viral replication in cells that have normally withdrawn from the cell division cycle and are committed to terminal differentiation. Expression of the E7 oncoprotein has been shown to lead to the abrogation of various negative growth regulatory signals, including a p53-mediated G1 growth arrest, TGFbeta-mediated growth inhibition, and quiescence of suprabasal keratinocytes. Here we describe a novel mechanism by which E7 can uncouple cellular proliferation and differentiation. In contrast to normal, differentiating keratinocytes, HPV-16 E7-expressing keratinocytes show delayed cellular differentiation and elevated cdk2 kinase activity despite high levels of p21(Cip1) and association of p21(Cip1) with cdk2. We show that the HPV E7 protein can interact with p21(Cip1) and abrogate p21(Cip1)-mediated inhibition of cyclin A and E-associated kinase activities. Based on these findings, we propose that this capacity of the HPV E7 oncoprotein to overcome p21(Cip1)-mediated inhibition of cdk2 activity during keratinocyte differentiation contributes to the ability of E7 to allow for cellular DNA synthesis in differentiated keratinocytes.
高危型人乳头瘤病毒(HPV)在病因学上与大多数人类宫颈癌相关。这些HPV编码两种病毒癌蛋白E6和E7,它们在宫颈癌中持续表达。在有效感染过程中,这些病毒癌蛋白的功能是确保病毒在正常退出细胞分裂周期并致力于终末分化的细胞中复制。E7癌蛋白的表达已被证明会导致各种负性生长调节信号的消除,包括p53介导的G1期生长停滞、TGFβ介导的生长抑制以及基底上层角质形成细胞的静止。在此,我们描述了一种E7可使细胞增殖与分化解偶联的新机制。与正常的、正在分化的角质形成细胞不同,表达HPV - 16 E7的角质形成细胞尽管p21(Cip1)水平较高且p21(Cip1)与cdk2相关联,但细胞分化延迟且cdk2激酶活性升高。我们表明,HPV E7蛋白可与p21(Cip1)相互作用,并消除p21(Cip1)介导的对细胞周期蛋白A和E相关激酶活性的抑制作用。基于这些发现,我们提出HPV E7癌蛋白在角质形成细胞分化过程中克服p21(CipJ)介导的对cdk2活性抑制的这种能力,有助于E7在分化的角质形成细胞中实现细胞DNA合成。