Müller H, Helin K
European Institute of Oncology, Department of Experimental Oncology, Via Ripamonti 435, 20141, Milan, Italy.
Biochim Biophys Acta. 2000 Feb 14;1470(1):M1-12. doi: 10.1016/s0304-419x(99)00030-x.
Ever since its discovery, the RB-1 gene and the corresponding protein, pRB, have been a focal point of cancer research. The isolation of E2F transcription factors provided the key to our current understanding of RB-1 function in the regulation of the cell cycle and in tumor suppression. It is becoming more and more evident that the regulatory circuits governing the cell cycle are very complex and highly interlinked. Certain aspects of RB-1 function, for instance its role in differentiation, cannot be easily explained by the current models of pRB-E2F interaction. One reason is that pRB has targets different from E2F, molecules like MyoD for instance. Another reason may be that we have not completely understood the full complexity of E2F function, itself. In this review, we will try to illuminate the role of E2F in pRB- and p53-mediated tumor suppression pathways with particular emphasis on the aspect of E2F-mediated transcriptional regulation. We conclude that E2F can mediate transcriptional activation as well as transcriptional repression of E2F target genes. The net effect of E2F on the transcriptional activity of a particular gene may be the result of as yet poorly understood protein-protein interactions of E2F with other components of the transcriptional machinery, as well as it may reflect the readout of the different ways of regulating E2F activity, itself. We will discuss the relevance of a thorough understanding of E2F function for cancer therapy.
自RB-1基因及其相应蛋白pRB被发现以来,它们一直是癌症研究的焦点。E2F转录因子的分离为我们目前理解RB-1在细胞周期调控和肿瘤抑制中的功能提供了关键线索。越来越明显的是,控制细胞周期的调控回路非常复杂且高度相互关联。RB-1功能的某些方面,例如其在分化中的作用,目前的pRB-E2F相互作用模型难以轻易解释。一个原因是pRB有不同于E2F的靶点,例如MyoD等分子。另一个原因可能是我们尚未完全理解E2F功能本身的全部复杂性。在本综述中,我们将试图阐明E2F在pRB和p53介导的肿瘤抑制途径中的作用,特别强调E2F介导的转录调控方面。我们得出结论,E2F可以介导E2F靶基因的转录激活和转录抑制。E2F对特定基因转录活性的净效应可能是由于E2F与转录机制其他成分之间尚未充分理解的蛋白质-蛋白质相互作用的结果,也可能反映了对E2F活性本身不同调控方式的解读。我们将讨论深入理解E2F功能对癌症治疗的相关性。