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E2F-1 binding affinity for pRB is not the only determinant of the E2F-1 activity

机译:E2F-1对pRB的结合亲和力不是E2F-1活性的唯一决定因素

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E2F-1 is the major cellular target of pRB and is regulated by pRB during cell proliferation. Interaction between pRB and E2F-1 is dependent on the phosphorylation status of pRB. Despite the fact that E2F-1 and pRB have antagonistic activities when they are overexpressed, the role of the E2F-1-pRB interaction in cell growth largely remains unknown. Ideally, it would be better to study the properties of a pRB mutant that fails to bind to E2F, but retains all other activities. To date, no pRB mutation has been characterized in sufficient detail to show that it specifically eliminates E2F binding but leaves other interactions intact. An alternative approach to this issue is to ask whether mutations that change E2F proteins binding affinity to pRB are sufficient to change cell growth in aspect of cell cycle and tumor formation. Therefore, we used the E2F-1 mutants including E2F-1/S332-7A, E2F-1/S375A, E2F-1/S403A, E2F-1/Y411A and E2F-1/L132Q that have different binding affinities for pRB to better understand the roles of the E2F-1 phosphorylation and E2F-1-pRB interaction in the cell cycle, as well as in transformation and gene expression. Data presented in this study suggests that in vivo phosphorylation at amino acids 332-337, 375 and 403 is important for the E2F-1 and pRB interaction in vivo. However, although E2F-1 mutants 332-7, 375 and 403 showed similar binding affinity to pRB, they showed different characteristics in transformation efficiency, G0 accumulation, and target gene experiments.
机译:E2F-1是pRB的主要细胞靶标,在细胞增殖过程中受pRB调控。 pRB和E2F-1之间的相互作用取决于pRB的磷酸化状态。尽管当E2F-1和pRB过表达时它们具有拮抗活性,但E2F-1-pRB相互作用在细胞生长中的作用仍然未知。理想情况下,最好是研究不能结合E2F但保留所有其他活性的pRB突变体的特性。迄今为止,尚未对pRB突变进行足够详细的表征,以显示其特异性消除了E2F结合,但其他相互作用仍保持完整。解决此问题的另一种方法是询问改变E2F蛋白与pRB的亲和力的突变是否足以改变细胞周期和肿瘤形成方面的细胞生长。因此,我们使用了E2F-1突变体,包括E2F-1 / S332-7A,E2F-1 / S375A,E2F-1 / S403A,E2F-1 / Y411A和E2F-1 / L132Q,它们对pRB的结合亲和力更好,了解E2F-1磷酸化和E2F-1-pRB相互作用在细胞周期以及转化和基因表达中的作用。这项研究中提出的数据表明,氨基酸332-337、375和403的体内磷酸化对于体内E2F-1和pRB相互作用很重要。但是,尽管E2F-1突变体332-7、375和403与pRB具有相似的结合亲和力,但它们在转化效率,G0积累和靶基因实验方面表现出不同的特征。

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