Torres-Quesada Omar, Reinkensmeier Jan, Schlüter Jan-Philip, Robledo Marta, Peregrina Alexandra, Giegerich Robert, Toro Nicolás, Becker Anke, Jiménez-Zurdo Jose I
Grupo de Ecología Genética de la Rizosfera; Estación Experimental del Zaidín; Consejo Superior de Investigaciones Científicas; CSIC, Granada, Spain.
Center for Biotechnology (CeBiTec); Bielefeld University; Bielefeld, Germany.
RNA Biol. 2014;11(5):563-79. doi: 10.4161/rna.28239. Epub 2014 Feb 26.
The RNA chaperone Hfq is a global post-transcriptional regulator in bacteria. Here, we used RNAseq to analyze RNA populations from the legume symbiont Sinorhizobium meliloti that were co-immunoprecipitated (CoIP-RNA) with a FLAG-tagged Hfq in five growth/stress conditions. Hfq-bound transcripts (1315) were largely identified in stressed bacteria and derived from small RNAs (sRNAs), both trans-encoded (6.4%) and antisense (asRNAs; 6.3%), and mRNAs (86%). Pull-down with Hfq recovered a small proportion of annotated S. meliloti sRNAs (14% of trans-sRNAs and 2% of asRNAs) suggesting a discrete impact of this protein in sRNA pathways. Nonetheless, Hfq selectively stabilized CoIP-enriched sRNAs, anticipating that these interactions are functionally significant. Transcription of 26 Hfq-bound sRNAs was predicted to occur from promoters recognized by the major stress σ factors σ(E2) or σ(H1/2). Recovery rates of sRNAs in each of the CoIP-RNA libraries suggest a large impact of Hfq-assisted riboregulation in S. meliloti osmoadaptation. Hfq directly targeted 18% of the predicted S. meliloti mRNAs, which encode functionally diverse proteins involved in transport and metabolism, σ(E2)-dependent stress responses, quorum sensing, flagella biosynthesis, ribosome, and membrane assembly or symbiotic nitrogen fixation. Canonical targeting of the 5' regions of two of the ABC transporter mRNAs by the homologous Hfq-binding AbcR1 and AbcR2 sRNAs leading to inhibition of protein synthesis was confirmed in vivo. We therefore provide a comprehensive resource for the systems-level deciphering of hitherto unexplored S. meliloti stress and symbiotic post-transcriptional regulons and the identification of Hfq-dependent sRNA-mRNA regulatory pairs.
RNA伴侣蛋白Hfq是细菌中一种全局性的转录后调节因子。在此,我们利用RNA测序技术分析了豆科植物共生菌苜蓿中华根瘤菌在五种生长/应激条件下与带有FLAG标签的Hfq进行共免疫沉淀(CoIP-RNA)得到的RNA群体。与Hfq结合的转录本(1315个)主要在应激细菌中被鉴定出来,它们来源于小RNA(sRNA),包括反式编码的(6.4%)和反义的(asRNA;6.3%),以及mRNA(86%)。用Hfq进行下拉实验回收了一小部分已注释的苜蓿中华根瘤菌sRNA(反式sRNA的14%和asRNA的2%),这表明该蛋白在sRNA途径中具有离散的影响。尽管如此,Hfq选择性地稳定了CoIP富集的sRNA,这表明这些相互作用在功能上具有重要意义。预测26个与Hfq结合的sRNA的转录发生在由主要应激σ因子σ(E2)或σ(H1/2)识别的启动子上。每个CoIP-RNA文库中sRNA的回收率表明Hfq辅助的核糖调节在苜蓿中华根瘤菌渗透适应中具有很大影响。Hfq直接靶向了预测的苜蓿中华根瘤菌mRNA的18%,这些mRNA编码功能多样的蛋白质,涉及转运和代谢、σ(E2)依赖性应激反应、群体感应、鞭毛生物合成、核糖体以及膜组装或共生固氮。同源的Hfq结合sRNA AbcR1和AbcR2对两个ABC转运蛋白mRNA的5'区域进行经典靶向从而抑制蛋白质合成,这一点在体内得到了证实。因此,我们为系统水平解析迄今为止未被探索的苜蓿中华根瘤菌应激和共生转录后调控子以及鉴定Hfq依赖性sRNA-mRNA调控对提供了一个全面的资源。