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E2F-4在细胞周期重新进入时从p130转变为p107和pRB。

E2F-4 switches from p130 to p107 and pRB in response to cell cycle reentry.

作者信息

Moberg K, Starz M A, Lees J A

机构信息

Center for Cancer Research, Massachusetts Institute of Technology, Cambridge, 02139, USA.

出版信息

Mol Cell Biol. 1996 Apr;16(4):1436-49. doi: 10.1128/MCB.16.4.1436.

Abstract

The E2F transcription factor couples the coordinate expression of cell cycle proteins to their appropriate transition points. Its activity is controlled by the cell cycle regulators pRB, p107, and p130. These bind to E2F at defined but distinct stages of the cell cycle. Using specific antisera, we have identified the DP and E2F components of each of these species. Although present at very different levels, DP-1 and DP-2 are evenly distributed among each of these complexes. In contrast, the individual E2Fs have distinctly different binding profiles. Consistent with previous studies, E2F-1, E2F-2, and E2F-3 bind specifically to the retinoblastoma protein. In each case, their expression and DNA binding activity are restricted to post-G1/S fractions. Surprisingly, E2F-1 and E2F-3 make unequal contributions to the pRB-associated and free E2F activity, suggesting that these proteins perform different cell cycle functions. Most significantly, this study showed E2F-4 accounts for the vast majority of the endogenous E2F activity. In arrested cells, E2F-4 is sequestered by the p130 protein. However, as the cells pass the G1-to-S transition, the levels of pRB and p107 increase and E2F-4 now associates with both of these regulators. Despite this, a considerable amount of E2F-4 exists as free E2F. In G1 cells, this accounts for almost all of the free activity. Once the cells enter S phase, free E2F is composed of an equal mixture of E2F-4 and E2F-1.

摘要

E2F转录因子将细胞周期蛋白的协同表达与其适当的转换点联系起来。其活性受细胞周期调节因子pRB、p107和p130的控制。这些因子在细胞周期的特定但不同阶段与E2F结合。我们使用特异性抗血清鉴定了这些复合物中每种复合物的DP和E2F成分。尽管DP-1和DP-2的含量差异很大,但它们在这些复合物中均匀分布。相比之下,各个E2F具有明显不同的结合模式。与先前的研究一致,E2F-1、E2F-2和E2F-3特异性结合视网膜母细胞瘤蛋白。在每种情况下,它们的表达和DNA结合活性都局限于G1/S期之后的部分。令人惊讶的是,E2F-1和E2F-3对与pRB相关的和游离的E2F活性的贡献不相等,这表明这些蛋白质执行不同的细胞周期功能。最重要的是,这项研究表明E2F-4占内源性E2F活性的绝大部分。在静止细胞中,E2F-4被p130蛋白隔离。然而,当细胞通过G1到S期的转换时,pRB和p107的水平增加,E2F-4现在与这两种调节因子都相关联。尽管如此,仍有相当数量的E2F-4以游离E2F的形式存在。在G1期细胞中,这几乎占了所有的游离活性。一旦细胞进入S期,游离E2F由E2F-4和E2F-1的等量混合物组成。

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