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人类二氢叶酸还原酶次要转录本的5'非翻译RNA会改变主要(核心)启动子处转录前起始复合物的组装。

The 5'-untranslated RNA of the human dhfr minor transcript alters transcription pre-initiation complex assembly at the major (core) promoter.

作者信息

Blume Scott W, Meng Zheng, Shrestha Kedar, Snyder Richard C, Emanuel Peter D

机构信息

Department of Medicine and Comprehensive Cancer Center, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.

出版信息

J Cell Biochem. 2003 Jan 1;88(1):165-80. doi: 10.1002/jcb.10326.

Abstract

The human dhfr minor transcript is distinguished from the predominant dhfr mRNA by an approximately 400 nucleotide extension of the 5'-untranslated region, which corresponds to the major (core) promoter DNA (its template). Based on its unusual sequence composition, we hypothesized that the minor transcript 5'-UTR might be capable of altering transcription pre-initiation complex assembly at the core promoter, through direct interactions of the RNA with specific regulatory polypeptides or the promoter DNA itself. We found that the minor transcript 5'-UTR selectively sequesters transcription factor Sp3, and to a lesser extent Sp1, preventing their binding to the dhfr core promoter. This allows a third putative transcriptional regulatory protein, which is relatively resistant to sequestration by the minor transcript RNA, the opportunity to bind the dhfr core promoter. The selective sequestration of Sp3 > Sp1 by the minor transcript 5'-UTR involves an altered conformation of the RNA, and a structural domain of the protein distinct from that required for binding to DNA. As a consequence, the minor transcript 5'-UTR inhibits transcription from the core promoter in vitro (in trans) in a concentration-dependent manner. These results suggest that the dhfr minor transcript may function in vivo (in cis) to regulate the transcriptional activity of the major (core) promoter.

摘要

人类二氢叶酸还原酶(dhfr)次要转录本与主要的dhfr信使核糖核酸(mRNA)的区别在于其5'-非翻译区有大约400个核苷酸的延伸,这与主要(核心)启动子DNA(其模板)相对应。基于其不寻常的序列组成,我们推测次要转录本的5'-非翻译区可能能够通过RNA与特定调节多肽或启动子DNA本身的直接相互作用,改变核心启动子处转录预起始复合物的组装。我们发现次要转录本的5'-非翻译区选择性地隔离转录因子Sp3,并在较小程度上隔离Sp1,阻止它们与dhfr核心启动子结合。这使得第三种假定的转录调节蛋白有机会结合dhfr核心启动子,该蛋白对次要转录本RNA的隔离相对具有抗性。次要转录本的5'-非翻译区对Sp3>Sp1的选择性隔离涉及RNA构象的改变以及该蛋白与DNA结合所需结构域不同的一个结构域。因此,次要转录本的5'-非翻译区在体外(反式)以浓度依赖的方式抑制核心启动子的转录。这些结果表明,dhfr次要转录本可能在体内(顺式)发挥作用,以调节主要(核心)启动子的转录活性。

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