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小RNA的正向调控作用及Hfq的作用

Positive regulation by small RNAs and the role of Hfq.

作者信息

Soper Toby, Mandin Pierre, Majdalani Nadim, Gottesman Susan, Woodson Sarah A

机构信息

Johns Hopkins University, Program in Cell, Molecular, Developmental Biology and Biophysics, Baltimore, MD 21218, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 May 25;107(21):9602-7. doi: 10.1073/pnas.1004435107. Epub 2010 May 10.

Abstract

Bacterial small noncoding RNAs carry out both positive and negative regulation of gene expression by pairing with mRNAs; in Escherichia coli, this regulation often requires the RNA chaperone Hfq. Three small regulatory RNAs (sRNAs), DsrA, RprA, and ArcZ, positively regulate translation of the sigma factor RpoS, each pairing with the 5' leader to open up an inhibitory hairpin. In vitro, rpoS interaction with sRNAs depends upon an (AAN)(4) Hfq-binding site upstream of the pairing region. Here we show that both Hfq and this Hfq binding site are required for RprA or ArcZ to act in vivo and to form a stable complex with rpoS mRNA in vitro; both were partially dispensable for DsrA at 37 degrees C. ArcZ sRNA is processed from 121 nt to a stable 56 nt species that contains the pairing region; only the 56 nt ArcZ makes a strong Hfq-dependent complex with rpoS. For each of these sRNAs, the stability of the sRNAmRNA complexes, rather than their rate of formation, best predicted in vivo activity. These studies demonstrate that binding of Hfq to the rpoS mRNA is critical for sRNA regulation under normal conditions, but if the stability of the sRNAmRNA complex is sufficiently high, the requirement for Hfq can be bypassed.

摘要

细菌小非编码RNA通过与mRNA配对对基因表达进行正调控和负调控;在大肠杆菌中,这种调控通常需要RNA伴侣Hfq。三种小调控RNA(sRNA),即DsrA、RprA和ArcZ,对σ因子RpoS的翻译起正调控作用,它们各自与5'前导序列配对以打开一个抑制性发夹结构。在体外,rpoS与sRNA的相互作用取决于配对区域上游的一个(AAN)4 Hfq结合位点。我们在此表明,Hfq和这个Hfq结合位点对于RprA或ArcZ在体内发挥作用以及在体外与rpoS mRNA形成稳定复合物都是必需的;在37℃时,二者对于DsrA来说部分是可有可无的。ArcZ sRNA由121个核苷酸加工成一个稳定的56个核苷酸的产物,该产物包含配对区域;只有56个核苷酸的ArcZ与rpoS形成强烈的依赖Hfq的复合物。对于这些sRNA中的每一种,sRNAmRNA复合物的稳定性而非其形成速率最能预测体内活性。这些研究表明,在正常条件下,Hfq与rpoS mRNA的结合对于sRNA调控至关重要,但如果sRNAmRNA复合物的稳定性足够高,则可以绕过对Hfq的需求。

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