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Hfq and sRNA 179 Inhibit Expression of the Pseudomonas aeruginosa cAMP-Vfr and Type III Secretion Regulons

机译:HFQ和SRNA 179抑制<命名含量含量型=“属种”的表达>假单胞菌Aeruginosa CAMP-VFR和II型分泌调节件

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摘要

Pseudomonas aeruginosa is a Gram-negative opportunistic pathogen causing skin and soft tissue, respiratory, and bloodstream infections. The type III secretion system (T3SS) is one important virulence factor. Production of the T3SS is controlled by ExsA, a transcription factor that activates expression of the entire T3SS regulon. Global regulators including Vfr, RsmA, and Hfq also contribute to regulation of the T3SS. Vfr is a cAMP-responsive transcription factor that activates exsA transcription. RsmA, an RNA-binding protein, inversely controls expression of the T3SS and the type VI secretion system (T6SS). Hfq is an RNA chaperone that functions by stabilizing small noncoding RNAs (sRNAs) and/or facilitating base pairing between sRNAs and mRNA targets. A previous study identified sRNA 1061, which directly targets the exsA mRNA and likely inhibits ExsA synthesis. In this study, we screened an sRNA expression library and identified sRNA 179 as an Hfq-dependent inhibitor of T3SS gene expression. Further characterization revealed that sRNA 179 inhibits the synthesis of both ExsA and Vfr. The previous finding that RsmA stimulates ExsA and Vfr synthesis suggested that sRNA 179 impacts the Gac/Rsm system. Consistent with that idea, the inhibitory activity of sRNA 179 is suppressed in a mutant lacking rsmY and rsmZ , and sRNA 179 expression stimulates rsmY transcription. RsmY and RsmZ are small noncoding RNAs that sequester RsmA from target mRNAs. Our combined findings show that Hfq and sRNA 179 indirectly regulate ExsA and Vfr synthesis by reducing the available pool of RsmA, leading to reduced expression of the T3SS and cAMP-Vfr regulons.
机译:假单胞菌铜绿假单胞菌是一种革兰氏阴性机会主义病原体,导致皮肤和软组织,呼吸和血流感染。 III型分泌系统(T3SS)是一个重要的毒力因子。 T3SS的生产由EXSA控制,该转录因子激活整个T3SS调节件的表达。包括VFR,RSMA和HFQ在内的全球监管机构也有助于监管T3SS。 VFR是激活EXSA转录的营养响应转录因子。 RSMA,RNA结合蛋白,反向控制T3SS和VI型分泌系统(T6S)的表达。 HFQ是通过稳定小型非致rNA(SRNA)和/或促进SRNA和mRNA靶标的基础配对来起作用的RNA伴侣。先前的研究确定了SRNA 1061,其直接靶向EXSA mRNA,并可能抑制EXSA合成。在该研究中,我们筛选了SRNA表达文库并鉴定了SRNA 179作为T3SS基因表达的HFQ依赖性抑制剂。进一步表征显示SRNA 179抑制EXSA和VFR的合成。以前发现RSMA刺激EXSA和VFR合成建议SRNA 179影响GAC / RSM系统。与该思想一致,SRNA 179的抑制活性在缺乏RSMY和RSMZ的突变体中抑制,并且SRNA 179表达刺激RSMY转录。 RSMY和RSMZ是小型非编码RNA,其从目标MRNAS隔离RSMA。我们的合并结果表明,HFQ和SRNA 179通过减少可用的RSMA池间接调节EXSA和VFR合成,导致T3S和CAMP-VFR调节件的表达减少。

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