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Basal repression of BRCA1 by multiple E2Fs and pocket proteins at adjacent E2F sites.

机译:多个E2F和相邻E2F位点的口袋蛋白对BRCA1的基础抑制。

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The BRCA1 gene is rarely mutated in sporadic tumors, although numerous studies suggest that the expression of this critical tumor suppressor gene is frequently downregulated in tumors derived from a wide range of tissues. However, little is known regarding the mechanisms by which BRCA1 is transcriptionally regulated in human cells in vivo. We have shown recently that the tumor microenvironmental stress of hypoxia induces an E2F-dependent repression of BRCA1 in cancer cells. Here, we report that multiple E2Fs and associated factors bind the BRCA1 promoter at two adjacent E2F sites in the proximal promoter region of the gene, as detected by quantitative chromatin immunoprecipitation (ChIP) analysis. Intriguingly, our data suggest that E2F1 and E2F4 bind the BRCA1 proximal promoter simultaneously at the two E2F sites, although E2F4 appears to be the predominant E2F bound in log-phase cells. In contrast to previous studies, we have also detected promoter occupancy by the pocket proteins p130 and p107, but not Rb, our data indicate that E2F4 and p130/p107 complexes basally repress the BRCA1 promoter. We find that binding by these factors requires both intact E2F sites, which suggests a novel interaction between adjacent promoter elements. Taken together, these findings provide an enhanced molecular portrait of BRCA1 transcriptional regulation by E2Fs and pocket proteins, they enhance our understanding of regulation by repressive E2F complexes at target genes in vivo. Furthermore, the identification of E2F4 and p130/p107 complexes as basal repressors of BRCA1 expression may facilitate the development of strategies based on disruption of these interactions to rescue BRCA1 expression in human tumors.
机译:BRCA1基因在散发性肿瘤中很少发生突变,尽管许多研究表明,这种关键的抑癌基因的表达在源自多种组织的肿瘤中经常被下调。但是,关于BRCA1在体内人类细胞中转录调控的机制知之甚少。最近我们发现,缺氧的肿瘤微环境压力诱导了癌细胞中BRCA1的E2F依赖性抑制。在这里,我们报道了多个E2F和相关因子在基因的近端启动子区域的两个相邻E2F位点结合BRCA1启动子,如通过定量染色质免疫沉淀(ChIP)分析所检测到的。有趣的是,我们的数据表明E2F1和E2F4在两个E2F位点同时结合了BRCA1近端启动子,尽管E2F4似乎是对数期细胞中结合的主要E2F。与以前的研究相反,我们还检测到口袋蛋白p130和p107而不是Rb占据启动子,我们的数据表明E2F4和p130 / p107复合物基本抑制BRCA1启动子。我们发现这些因素的结合需要两个完整的E2F网站,这表明相邻启动子元素之间的新型相互作用。综上所述,这些发现提供了E2F和口袋蛋白对BRCA1转录调控的增强分子肖像,它们通过在体内抑制靶基因上的E2F复合物增强了我们对调控的理解。此外,将E2F4和p130 / p107复合物鉴定为BRCA1表达的基础阻遏物,可以促进基于破坏这些相互作用的策略的发展,以抢救人类肿瘤中的BRCA1表达。

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