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The Core Histone N-Terminal Tail Domains Negatively Regulate Binding of Transcription Factor IIIA to a Nucleosome Containing a 5S RNA Gene via a Novel Mechanism

机译:核心组蛋白N末端尾域通过一种新机制,负调控转录因子IIIA与包含5S RNA基因的核小体的结合。

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Reconstitution of a DNA fragment containing a 5S RNA gene from Xenopus borealis into a nucleosome greatly restricts binding of the primary 5S transcription factor, TFIIIA. Consistent with transcription experiments using reconstituted templates, removal of the histone tail domains stimulates TFIIIA binding to the 5S nucleosome greater than 100-fold. However, we show that tail removal increases the probability of 5S DNA unwrapping from the core histone surface by only approximately fivefold. Moreover, using site-specific histone-to-DNA cross-linking, we show that TFIIIA binding neither induces nor requires nucleosome movement. Binding studies with COOH-terminal deletion mutants of TFIIIA and 5S nucleosomes reconstituted with native and tailless core histones indicate that the core histone tail domains play a direct role in restricting the binding of TFIIIA. Deletion of only the COOH-terminal transcription activation domain dramatically stimulates TFIIIA binding to the native nucleosome, while further C-terminal deletions or removal of the tail domains does not lead to further increases in TFIIIA binding. We conclude that the unmodified core histone tail domains directly negatively influence TFIIIA binding to the nucleosome in a manner that requires the C-terminal transcription activation domain of TFIIIA. Our data suggest an additional mechanism by which the core histone tail domains regulate the binding of trans-acting factors in chromatin.
机译:将来自非洲爪蟾的5S RNA基因的DNA片段重组为核小体极大地限制了主要5S转录因子TFIIIA的结合。与使用重组模板的转录实验一致,去除组蛋白尾部结构域会刺激TFIIIA与5S核小体的结合大于100倍。然而,我们表明,去除尾巴使5S DNA从核心组蛋白表面解缠的可能性仅增加了大约五倍。此外,使用位点特异性的组蛋白到DNA的交联,我们表明TFIIIA结合既不诱导也不要求核小体移动。用TFIIIA的COOH末端缺失突变体和用天然和无尾核心组蛋白重构的5S核小体的结合研究表明,核心组蛋白尾部结构域在限制TFIIIA的结合中起直接作用。仅COOH-末端转录激活结构域的缺失极大地刺激了TFIIIA与天然核小体的结合,而进一步的C-末端缺失或尾部结构域的去除并未导致TFIIIA结合的进一步增加。我们得出的结论是,未经修饰的核心组蛋白尾部结构域直接以需要TFIIIA的C端转录激活结构域的方式对TFIIIA与核小体的结合产生负面影响。我们的数据表明核心组蛋白尾部域调节染色质中 trans 作用因子的结合的另一种机制。

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