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古菌中的转录保真度与校对及其对TFS诱导的RNA切割机制的影响。

Transcriptional fidelity and proofreading in Archaea and implications for the mechanism of TFS-induced RNA cleavage.

作者信息

Lange Udo, Hausner Winfried

机构信息

Institut für Allgemeine Mikrobiologie, Christian-Albrechts-Universität, Am Botanischen Garten 1-9, 24118 Kiel, Germany.

出版信息

Mol Microbiol. 2004 May;52(4):1133-43. doi: 10.1111/j.1365-2958.2004.04039.x.

Abstract

We have addressed the question whether TFS, a protein that stimulates the intrinsic cleavage activity of the archaeal RNA polymerase, is able to improve the fidelity of transcription in Methanococcus. Using non-specific transcription experiments, we could demonstrate that misincorporation of non-templated nucleotides is reduced in the presence of TFS. A more detailed analysis revealed that elongation complexes containing a misincorporated nucleotide were arrested, but could be reactivated by TFS. RNase as well as exonuclease III footprinting experiments demonstrated that this arrest was not combined with extended backtracking. Analysis of paused elongation complexes demonstrated that TFS is able to induce a cleavage resynthesis cycle in such complexes, which resulted in the accumulation of dinucleotides corresponding to the last two nucleotides of the transcript. Further analysis of cleavage products revealed that, even under conditions that strongly promote misincorporation, still 50% of the released dinucleotides were correctly incorporated. Therefore, we assume that pausing of elongation complexes is an important determinant of TFS-induced RNA cleavage from the 3' end. As the incorporation rate of wrong nucleotides is about 700-fold reduced, it is possible that this delay also provides an appropriate time window for cleavage induction in order to maintain transcriptional fidelity by preventing misincorporation.

摘要

我们探讨了一个问题,即TFS(一种刺激古细菌RNA聚合酶内在切割活性的蛋白质)是否能够提高甲烷球菌转录的保真度。通过非特异性转录实验,我们能够证明在TFS存在的情况下,非模板核苷酸的错误掺入减少。更详细的分析表明,含有错误掺入核苷酸的延伸复合物会停滞,但可以被TFS重新激活。核糖核酸酶以及核酸外切酶III足迹实验表明,这种停滞与延长的回溯无关。对暂停的延伸复合物的分析表明,TFS能够在此类复合物中诱导一个切割再合成循环,这导致了与转录本最后两个核苷酸相对应的二核苷酸的积累。对切割产物的进一步分析表明,即使在强烈促进错误掺入的条件下,仍有50%释放的二核苷酸被正确掺入。因此,我们认为延伸复合物的暂停是TFS诱导从3'端切割RNA的一个重要决定因素。由于错误核苷酸的掺入率降低了约700倍,这种延迟也有可能为切割诱导提供一个合适的时间窗口,以便通过防止错误掺入来维持转录保真度。

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