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结合E2F的致癌和抑癌活性进行综合考量。

Putting the Oncogenic and Tumor Suppressive Activities of E2F into Context.

作者信息

Johnson David G, Degregori James

机构信息

Department of Carcinogenesis, The University of Texas MD Anderson Cancer Center, Science Park Research Division, Smithville, TX 78957, USA.

出版信息

Curr Mol Med. 2006 Nov;6(7):731-8. doi: 10.2174/1566524010606070731.

Abstract

Deregulation of E2F transcriptional activity as a result of alterations in the p16(INK4a)-cyclin D1-Rb pathway is a hallmark of human cancer. E2F is a family of related factors that controls the expression of genes important for cell cycle progression as well as other processes such as apoptosis, DNA repair, and differentiation. Some E2F family members are associated with the activation of transcription and the promotion of proliferation while others are implicated in repressing transcription and inhibiting cell growth. It is now becoming clear however, that this view of the E2F family is overly simplistic and that the role of a given E2F in regulating transcription and cell growth is highly dependent on context. This complexity is also evident when analyzing how perturbations in E2F modulate tumor development. As expected, some E2F family members are found to be critical for mediating the oncogenic effects of Rb loss. On the other hand, several E2Fs have tumor suppressive properties in mouse models and this appears to be reflected in some human cancers with decreased E2F expression. Surprisingly, tumor suppressive activity is not associated with the repressor E2Fs but instead is associated with the same E2Fs shown to have oncogenic activities. For example, deregulated E2F1 expression can either promote or inhibit tumorigenesis depending on the nature of the other oncogenic mutations that are present. Thus, the ability of some E2F family members to behave as both oncogene and tumor suppressor gene can be reconciled by putting E2F into context.

摘要

由于p16(INK4a)-细胞周期蛋白D1-Rb通路的改变导致E2F转录活性失调是人类癌症的一个标志。E2F是一组相关因子,它控制着对细胞周期进程以及其他过程(如细胞凋亡、DNA修复和分化)重要的基因的表达。一些E2F家族成员与转录激活和增殖促进有关,而其他成员则与转录抑制和细胞生长抑制有关。然而,现在越来越清楚的是,这种对E2F家族的看法过于简单化,并且给定的E2F在调节转录和细胞生长中的作用高度依赖于背景。当分析E2F的扰动如何调节肿瘤发展时,这种复杂性也很明显。正如预期的那样,一些E2F家族成员被发现对于介导Rb缺失的致癌作用至关重要。另一方面,几种E2F在小鼠模型中具有肿瘤抑制特性,这似乎在一些E2F表达降低的人类癌症中得到体现。令人惊讶的是,肿瘤抑制活性与抑制性E2F无关,而是与显示具有致癌活性的相同E2F有关。例如,E2F1表达失调根据存在的其他致癌突变的性质可以促进或抑制肿瘤发生。因此,通过将E2F置于特定背景中,可以解释一些E2F家族成员既作为癌基因又作为肿瘤抑制基因的能力。

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