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RNAP-II 在酿酒酵母的 RNAP-I 基因启动子和终止子区域转录两个小 RNA。

RNAP-II transcribes two small RNAs at the promoter and terminator regions of the RNAP-I gene in Saccharomyces cerevisiae.

机构信息

MRC Clinical Sciences Centre, Imperial College, London, UK.

出版信息

Yeast. 2013 Jan;30(1):25-32. doi: 10.1002/yea.2938. Epub 2012 Dec 20.

Abstract

Three RNA polymerases coexist in the ribosomal DNA of Saccharomyces cerevisiae. RNAP-I transcribes the 35S rRNA, RNAP-III transcribes the 5S rRNA and RNAP-II is found in both intergenic non-coding regions. Previously, we demonstrated that RNAP-II molecules bound to the intergenic non-coding regions (IGS) of the ribosomal locus are mainly found in a stalled conformation, and the stalled polymerase mediates chromatin interactions, which isolate RNAP-I from the RNAP-III transcriptional domain. Besides, RNAP-II transcribes both IGS regions at low levels, using different cryptic promoters. This report demonstrates that RNAP-II also transcribes two sequences located in the 5'- and 3'-ends of the 35S rRNA gene that overlap with the sequences of the 35S rRNA precursor transcribed by RNAP-I. The sequence located at the promoter region of RNAP-I, called the p-RNA transcript, binds to the transcription termination-related protein, Reb1p, while the T-RNA sequence, located in the termination sites of RNAP-I gene, contains the stem-loop recognized by Rtn1p, which is necessary for proper termination of RNAP-I. Because of their location, these small RNAs may play a key role in the initiation and termination of RNAP-I transcription. To correctly synthesize proteins, eukaryotic cells may retain a mechanism that connects the three main polymerases. This report suggests that cryptic transcription by RNAP-II may be required for normal transcription by RNAP-I in the ribosomal locus of S. cerevisiae.

摘要

酿酒酵母的核糖体 DNA 中存在三种 RNA 聚合酶。RNAP-I 转录 35S rRNA,RNAP-III 转录 5S rRNA,而 RNAP-II 则存在于基因间非编码区。先前,我们证明了结合到核糖体基因座间非编码区(IGS)的 RNAP-II 分子主要处于停滞构象,而停滞的聚合酶介导染色质相互作用,将 RNAP-I 与 RNAP-III 转录结构域隔离开来。此外,RNAP-II 以低水平使用不同的隐蔽启动子转录两个 IGS 区域。本报告表明,RNAP-II 还转录位于 35S rRNA 基因 5' 和 3' 末端的两个序列,这些序列与由 RNAP-I 转录的 35S rRNA 前体的序列重叠。位于 RNAP-I 启动子区域的序列,称为 p-RNA 转录本,与转录终止相关蛋白 Reb1p 结合,而位于 RNAP-I 基因终止位点的 T-RNA 序列含有 Rtn1p 识别的茎环,这对于 RNAP-I 的正确终止是必要的。由于它们的位置,这些小 RNA 可能在 RNAP-I 转录的起始和终止中发挥关键作用。为了正确合成蛋白质,真核细胞可能保留一种将三种主要聚合酶连接起来的机制。本报告表明,酿酒酵母核糖体基因座中,RNAP-II 的隐蔽转录可能是 RNAP-I 正常转录所必需的。

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