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Chromatin-Specific Regulation of Mammalian rDNA Transcription by Clustered TTF-I Binding Sites

机译:簇状TTF-1结合位点对哺乳动物rDNA转录的染色质特异性调节

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摘要

Enhancers and promoters often contain multiple binding sites for the same transcription factor, suggesting that homotypic clustering of binding sites may serve a role in transcription regulation. Here we show that clustering of binding sites for the transcription termination factor TTF-I downstream of the pre-rRNA coding region specifies transcription termination, increases the efficiency of transcription initiation and affects the three-dimensional structure of rRNA genes. On chromatin templates, but not on free rDNA, clustered binding sites promote cooperative binding of TTF-I, loading TTF-I to the downstream terminators before it binds to the rDNA promoter. Interaction of TTF-I with target sites upstream and downstream of the rDNA transcription unit connects these distal DNA elements by forming a chromatin loop between the rDNA promoter and the terminators. The results imply that clustered binding sites increase the binding affinity of transcription factors in chromatin, thus influencing the timing and strength of DNA-dependent processes.
机译:增强子和启动子通常包含同一转录因子的多个结合位点,表明结合位点的同型聚类可能在转录调控中起作用。在这里,我们显示前rRNA编码区下游的转录终止因子TTF-1结合位点的簇集指定了转录终止,提高了转录起始效率并影响了rRNA基因的三维结构。在染色质模板上,但不在游离rDNA上,聚集的结合位点促进TTF-1的协同结合,在TTF-1与rDNA启动子结合之前将其装载到下游终止子上。 TTF-1与rDNA转录单元上游和下游的靶位点的相互作用通过在rDNA启动子和终止子之间形成染色质环来连接这些远端DNA元件。结果暗示聚集的结合位点增加了染色质中转录因子的结合亲和力,从而影响了DNA依赖性过程的时间和强度。

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