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RNA聚合酶I转录复合物与其启动子的结合可改变体外组装的下游核小体的定位。

Binding of the RNA polymerase I transcription complex to its promoter can modify positioning of downstream nucleosomes assembled in vitro.

作者信息

Georgel P, Demeler B, Terpening C, Paule M R, van Holde K E

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis 97331-7305.

出版信息

J Biol Chem. 1993 Jan 25;268(3):1947-54.

PMID:8420969
Abstract

We have studied the reconstitution of chromatin-like structures in vitro, using purified RNA polymerase I transcription complexes and histone octamers. The plasmid construct used in these studies is a pUC8 derivative in which we have inserted an RNA polymerase I core promoter region of Acanthamoeba castellanii upstream of four repeats of the 5 S rDNA nucleosome positioning sequence (208 base pairs) from Lytechinus variegatus. When histone octamers were reconstituted onto the naked DNA template, the expected nucleosome positioning previously observed using tandem repeats of the same 208-base pair fragment was not obtained (as assayed by restriction enzyme digestion mapping of the inserted region of the plasmid). We show that the location of the RNA polymerase I core promoter region with regard to the tandemly repeated 208-base pair positioning sequence is a major determinant in the positioning of the histone octamers. Reconstituting first with the stalled transcription complex excluded octamers from the promoter region and recovered the expected nucleosome positioning downstream on the four repeats of the 5 S positioning sequence. The observed competition between histone octamers and the transcription complex for the promoter region suggests a great similarity with what has been reported from in vitro studies of RNA polymerase II and III transcription systems. We may be looking at a mechanism of regulation of transcription for the RNA polymerase I.

摘要

我们利用纯化的RNA聚合酶I转录复合物和组蛋白八聚体,在体外研究了染色质样结构的重建。这些研究中使用的质粒构建体是pUC8的衍生物,我们在其中插入了卡氏棘阿米巴的RNA聚合酶I核心启动子区域,该区域位于来自多棘海胆的5S rDNA核小体定位序列(208个碱基对)的四个重复序列的上游。当组蛋白八聚体重建到裸露的DNA模板上时,未获得先前使用相同208碱基对片段的串联重复序列观察到的预期核小体定位(通过对质粒插入区域的限制性酶切图谱分析)。我们表明,RNA聚合酶I核心启动子区域相对于串联重复的208碱基对定位序列的位置是组蛋白八聚体定位的主要决定因素。先用停滞的转录复合物进行重建,可将八聚体排除在启动子区域之外,并在5S定位序列的四个重复序列下游恢复预期的核小体定位。观察到的组蛋白八聚体与转录复合物在启动子区域的竞争表明,这与RNA聚合酶II和III转录系统的体外研究报道有很大相似性。我们可能正在研究RNA聚合酶I的转录调控机制。

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