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色氨酸t'终止子内的ρ因子依赖性终止。I. ρ因子加载和模板序列的影响。

Rho-dependent termination within the trp t' terminator. I. Effects of rho loading and template sequence.

作者信息

Zhu A Q, von Hippel P H

机构信息

Institute of Molecular Biology, Department of Chemistry, University of Oregon, Eugene 97403-1229, USA.

出版信息

Biochemistry. 1998 Aug 11;37(32):11202-14. doi: 10.1021/bi9729110.

Abstract

About one-half of the terminators of the Escherichia coli genome require transcription termination factor rho to function. Here we use the very "diffuse" trp t' terminator of E. coli to show that both template sequence and transcript secondary structure are involved in controlling the template positions and efficiencies of rho-dependent termination. Termination begins in the wild-type trp t' terminator sequence approximately 97 bps downstream of the promoter under our standard reaction conditions, and termination efficiencies for individual positions on three related templates have been determined in the form of quantitative patterns of rho-dependent RNA release. Comparison of these patterns shows that the rho-dependent termination efficiency at individual template positions depends primarily on the nucleotide sequence at and near the putative 3' end of the transcript, although these efficiencies can also be influenced by RNA sequence elements located further upstream. The amplitudes of the peaks of the RNA release patterns at specific template positions are controlled primarily by the effectiveness of the binding of the rho hexamer to the "rho loading site" of the transcript. Introduction of a stable element of secondary structure into the nascent RNA within the loading site both shifts the position of initial rho-dependent termination downstream and decreases the amplitudes of the peaks of the RNA release pattern at the corresponding sequences. These results and others are consistent with the view that rho-dependent terminators contain two essential components: (i) an upstream rho loading site on the RNA that is 70-80 nucleotide residues in length, essentially devoid of secondary structure, and which contains sufficient numbers of rC residues to activate the RNA-dependent ATPase of rho; and (ii) a downstream sequence within which termination actually occurs. In this study we use the trp t' terminator to characterize the involvement of each of these sequence components in detail in order to provide the parameters required to define a quantitative mechanistic model for the function of rho in transcript termination.

摘要

大肠杆菌基因组中约一半的终止子需要转录终止因子rho才能发挥作用。在此,我们利用大肠杆菌“非常分散的”trp t'终止子来表明模板序列和转录本二级结构都参与控制rho依赖性终止的模板位置和效率。在我们的标准反应条件下,野生型trp t'终止子序列中的终止在启动子下游约97个碱基对处开始,并且已经以rho依赖性RNA释放的定量模式的形式确定了三个相关模板上各个位置的终止效率。这些模式的比较表明,各个模板位置上的rho依赖性终止效率主要取决于转录本假定3'端及其附近的核苷酸序列,尽管这些效率也可能受到更上游的RNA序列元件的影响。特定模板位置处RNA释放模式峰的幅度主要由rho六聚体与转录本“rho加载位点”结合的有效性控制。在加载位点内的新生RNA中引入二级结构的稳定元件,既会使初始rho依赖性终止的位置向下游移动,又会降低相应序列处RNA释放模式峰的幅度。这些结果及其他结果与以下观点一致,即rho依赖性终止子包含两个基本成分:(i)RNA上的上游rho加载位点,其长度为70 - 80个核苷酸残基,基本没有二级结构,并且含有足够数量的rC残基以激活rho的RNA依赖性ATP酶;以及(ii)实际发生终止的下游序列。在本研究中,我们利用trp t'终止子详细表征这些序列成分各自的参与情况,以便提供定义rho在转录终止中功能的定量机制模型所需的参数。

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