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Hfq Globally Binds and Destabilizes sRNAs and mRNAs in Yersinia pestis

机译:Hfq在全球范围内绑定并破坏鼠疫耶尔森氏菌中的sRNA和mRNA

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Hfq is a ubiquitous Sm-like RNA-binding protein in bacteria involved in physiological fitness and pathogenesis, while its in vivo binding nature remains elusive. Here we reported genome-wide Hfq-bound RNAs in Yersinia pestis , a causative agent of plague, by using cross-linking immunoprecipitation coupled with deep sequencing (CLIP-seq) approach. We show that the Hfq binding density is enriched in more than 80% mRNAs of Y. pestis and that Hfq also globally binds noncoding small RNAs (sRNAs) encoded by the intergenic, antisense, and 3′ regions of mRNAs. An Hfq U-rich stretch is highly enriched in sRNAs, while motifs partially complementary to AGAAUAA and GGGGAUUA are enriched in both mRNAs and sRNAs. Hfq-binding motifs are enriched at both terminal sites and in the gene body of mRNAs. Surprisingly, a large fraction of the sRNA and mRNA regions bound by Hfq and those downstream are destabilized, likely via a 5′P-activated RNase E degradation pathway, which is consistent with a model in which Hfq facilitates sRNA-mRNA base pairing and the coupled degradation in Y. pestis . These results together have presented a high-quality Hfq-RNA interaction map in Y. pestis , which should be important for further deciphering the regulatory role of Hfq-sRNAs in Y. pestis . IMPORTANCE Discovered in 1968 as an Escherichia coli host factor that was essential for replication of the bacteriophage Qβ, the Hfq protein is a ubiquitous and highly abundant RNA-binding protein in many bacteria. With the assistance of Hfq, small RNAs in bacteria play important roles in regulating the stability and translation of mRNAs by base pairing. In this study, we want to elucidate the Hfq-assisted sRNA-mRNA regulation in Yersinia pestis . A global map of Hfq interaction sites in Y. pestis was obtained by sequencing cDNAs converted from the Hfq-bound RNA fragments using UV cross-linking coupled immunoprecipitation technology. We demonstrate that Hfq could bind to hundreds of sRNAs and the majority of mRNAs in Y. pestis . The enriched binding motifs in sRNAs and mRNAs are complementary to each other, suggesting a general base-pairing mechanism for sRNA-mRNA interaction. The Hfq-bound sRNA and mRNA regions were both destabilized. The results suggest that Hfq binding facilitates sRNA-mRNA base pairing and coordinates their degradation, which might enable Hfq to surveil the homeostasis of most mRNAs in bacteria.
机译:Hfq是参与生理适应性和发病机理的细菌中普遍存在的Sm样RNA结合蛋白,而其体内结合性质仍然难以捉摸。在这里,我们报告了鼠疫耶尔森氏菌(鼠疫的致病因子)中全基因组Hfq结合的RNA,方法是使用交联免疫沉淀与深度测序(CLIP-seq)方法。我们表明,Hfq结合密度丰富了鼠疫耶尔森氏菌的80%以上的mRNA,并且Hfq还与全球范围内的非编码小RNA(sRNA)结合,而这些小RNA分别由mRNA的基因间,反义和3'区域编码。富含Hfq U的片段在sRNA中高度富集,而与AGAAUAA和GGGGAUUA部分互补的基序在mRNA和sRNA中均富集。 Hfq结合基序在mRNA的两个末端位点和基因体中都富集。出乎意料的是,很可能是通过5'P激活的RNase E降解途径使Hfq结合的大部分sRNA和mRNA区域以及下游区域不稳定,这与Hfq促进sRNA-mRNA碱基配对和鼠疫耶尔森菌的耦合降解。这些结果共同提供了一种在鼠疫耶尔森氏菌中的高质量Hfq-RNA相互作用图,这对于进一步破译Hfq-sRNA在鼠疫耶尔森氏菌中的调控作用应该是重要的。重要信息Hfq蛋白于1968年被发现,它是复制噬菌体Qβ必不可少的大肠杆菌宿主因子,是许多细菌中普遍存在且高度丰富的RNA结合蛋白。在Hfq的协助下,细菌中的小RNA通过碱基配对在调节mRNA的稳定性和翻译中起重要作用。在这项研究中,我们想阐明鼠疫耶尔森氏菌中Hfq辅助的sRNA-mRNA调控。通过使用UV交联偶联免疫沉淀技术对从Hfq结合的RNA片段转换而来的cDNA进行测序,获得了鼠疫耶尔森氏菌中Hfq相互作用位点的全球图谱。我们证明了Hfq可以与鼠疫杆菌中的数百个sRNA和大多数mRNA结合。 sRNA和mRNA中富集的结合基序彼此互补,表明sRNA-mRNA相互作用的通用碱基配对机制。 Hfq绑定的sRNA和mRNA区域均不稳定。结果表明,Hfq结合促进sRNA-mRNA碱基配对并协调其降解,这可能使Hfq能够监视细菌中大多数mRNA的稳态。

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