Zerfass K, Levy L M, Cremonesi C, Ciccolini F, Jansen-Dürr P, Crawford L, Ralston R, Tommasino M
Imperial Cancer Research Fund Tumour Virus Group, Department of Pathology, University of Cambridge, UK.
J Gen Virol. 1995 Jul;76 ( Pt 7):1815-20. doi: 10.1099/0022-1317-76-7-1815.
The human papillomavirus type 16 (HPV-16) E7 and adenovirus (Ad) E1A oncoproteins share a common pathway of transformation. They disrupt the cell cycle G1 phase-specific protein complex containing the E2F transcription factor and the regulatory protein Rb1, the retinoblastoma tumour suppressor gene product. In the G1 and S phases of the cell cycle, E7 and E1A bind two other cellular complexes containing the Rb1-related protein p107 and E2F. Ad E1A disrupts both complexes and releases active E2F. In contrast, HPV-16 E7, although it efficiently binds both E2F-p107 complexes, causes dissociation of the G1 phase complex only. Using chimeric proteins of HPV-16 E7 and Ad E1A we were able to demonstrate that the ability of E1A to disrupt both G1 and S phase E2F-p107 complexes is not due to the higher concentration of Ad E1A in the cell, but is an intrinsic property of the Ad E1A transforming region. These data suggest that E1A and E7 may function in cellular transformation in similar, but not identical ways.
人乳头瘤病毒16型(HPV - 16)E7蛋白和腺病毒(Ad)E1A癌蛋白具有共同的转化途径。它们会破坏含有E2F转录因子和调节蛋白Rb1(视网膜母细胞瘤肿瘤抑制基因产物)的细胞周期G1期特异性蛋白复合物。在细胞周期的G1期和S期,E7和E1A会结合另外两种含有Rb1相关蛋白p107和E2F的细胞复合物。Ad E1A会破坏这两种复合物并释放出活性E2F。相比之下,HPV - 16 E7虽然能有效结合E2F - p107复合物,但仅导致G1期复合物解离。通过使用HPV - 16 E7和Ad E1A的嵌合蛋白,我们能够证明E1A破坏G1期和S期E2F - p107复合物的能力并非源于细胞中Ad E1A的浓度更高,而是Ad E1A转化区域的固有特性。这些数据表明,E1A和E7在细胞转化中的作用方式可能相似但并不完全相同。