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大肠杆菌核糖调节因子6S RNA的功能研究:RNA聚合酶结合、体外转录抑制及RNA指导的从头转录本合成

Studies on the function of the riboregulator 6S RNA from E. coli: RNA polymerase binding, inhibition of in vitro transcription and synthesis of RNA-directed de novo transcripts.

作者信息

Gildehaus Nina, Neusser Thomas, Wurm Reinhild, Wagner Rolf

机构信息

Institut für Physikalische Biologie, Heinrich-Heine-Universität Düsseldorf, Düsseldorf, Germany.

出版信息

Nucleic Acids Res. 2007;35(6):1885-96. doi: 10.1093/nar/gkm085. Epub 2007 Mar 1.

Abstract

Escherichia coli 6S RNA represents a non-coding RNA (ncRNA), which, based on the conserved secondary structure and previous functional studies, had been suggested to interfere with transcription. Selective inhibition of sigma-70 holoenzymes, preferentially at extended -10 promoters, but not stationary-phase-specific transcription was described, suggesting a direct role of 6S RNA in the transition from exponential to stationary phase. To elucidate the underlying mechanism, we have analysed 6S RNA interactions with different forms of RNA polymerase by gel retardation and crosslinking. Preferred binding of 6S RNA to Esigma(70) was confirmed, however weaker binding to Esigma(38) was also observed. The crosslinking analysis revealed direct contact between a central 6S RNA sequence element and the beta/beta' and sigma subunits. Promoter complex formation and in vitro transcription analysis with exponential- and stationary-phase-specific promoters and the corresponding holoenzymes demonstrated that 6S RNA interferes with transcription initiation but does not generally distinguish between exponential- and stationary-phase-specific promoters. Moreover, we show for the first time that 6S RNA acts as a template for the transcription of defined RNA molecules in the absence of DNA. In conclusion, this study reveals new aspects of 6S RNA function.

摘要

大肠杆菌6S RNA是一种非编码RNA(ncRNA),基于其保守的二级结构和先前的功能研究,曾被认为会干扰转录。研究描述了6S RNA对σ-70全酶的选择性抑制,优先作用于延伸的-10启动子,但对稳定期特异性转录无抑制作用,这表明6S RNA在从指数生长期到稳定期的转变中具有直接作用。为了阐明其潜在机制,我们通过凝胶阻滞和交联分析了6S RNA与不同形式RNA聚合酶的相互作用。证实了6S RNA与Eσ(70)的优先结合,但也观察到其与Eσ(38)的较弱结合。交联分析揭示了6S RNA中央序列元件与β/β'和σ亚基之间的直接接触。使用指数生长期和稳定期特异性启动子以及相应全酶进行的启动子复合物形成和体外转录分析表明,6S RNA干扰转录起始,但通常不区分指数生长期和稳定期特异性启动子。此外,我们首次表明,在没有DNA的情况下,6S RNA可作为特定RNA分子转录的模板。总之,本研究揭示了6S RNA功能的新方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7163/1874619/0a08f368bbf7/gkm085f1.jpg

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