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Pocket Protein Complexes Are Recruited to Distinct Targets in Quiescent and Proliferating Cells

机译:口袋蛋白复合物被招募到静止和增殖细胞中的不同目标

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摘要

Biochemical and genetic studies have determined that retinoblastoma protein (pRB) tumor suppressor family members have overlapping functions. However, these studies have largely failed to distinguish functional differences between the highly related p107 and p130 proteins. Moreover, most studies pertaining to the pRB family and its principal target, the E2F transcription factor, have focused on cells that have reinitiated a cell cycle from quiescence, although recent studies suggest that cycling cells exhibit layers of regulation distinct from mitogenically stimulated cells. Using genome-wide chromatin immunoprecipitation, we show that there are distinct classes of genes directly regulated by unique combinations of E2F4, p107, and p130, including a group of genes specifically regulated in cycling cells. These groups exhibit both distinct histone acetylation signatures and patterns of mammalian Sin3B corepressor recruitment. Our findings suggest that cell cycle-dependent repression results from recruitment of an unexpected array of diverse complexes and reveals specific differences between transcriptional regulation in cycling and quiescent cells. In addition, factor location analyses have, for the first time, allowed the identification of novel and specific targets of the highly related transcriptional regulators p107 and p130, suggesting new and distinct regulatory networks engaged by each protein in continuously cycling cells.
机译:生化和遗传研究已确定视网膜母细胞瘤蛋白(pRB)抑癌家族成员具有重叠的功能。但是,这些研究在很大程度上未能区分高度相关的p107和p130蛋白之间的功能差异。此外,大多数有关pRB家族及其主要靶标E2F转录因子的研究都集中于从静止状态重新启动细胞周期的细胞,尽管最近的研究表明,循环细胞显示出不同于有丝分裂刺激细胞的调控层。使用全基因组染色质免疫沉淀,我们显示有不同类别的基因直接受E2F4,p107和p130的独特组合调控,包括一组在循环细胞中特异性调控的基因。这些组展示了不同的组蛋白乙酰化签名和哺乳动物Sin3B核心pressor募集的模式。我们的发现表明,细胞周期依赖性阻抑是由一系列复杂复合物的意外募集导致的,并揭示了循环细胞和静止细胞转录调控之间的特异性差异。此外,因子位置分析首次允许鉴定高度相关的转录调节因子p107和p130的新颖和特异性靶标,这表明每种蛋白质在连续循环的细胞中都参与了新的和独特的调节网络。

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