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The prrF-Encoded Small Regulatory RNAs Are Required for Iron Homeostasis and Virulence of Pseudomonas aeruginosa

机译:铁稳态和铜绿假单胞菌的毒力需要prrF编码的小调节RNA。

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Pseudomonas aeruginosa is an opportunistic pathogen that requires iron to cause infection, but it also must regulate the uptake of iron to avoid iron toxicity. The iron-responsive PrrF1 and PrrF2 small regulatory RNAs (sRNAs) are part of P. aeruginosa's iron regulatory network and affect the expression of at least 50 genes encoding iron-containing proteins. The genes encoding the PrrF1 and PrrF2 sRNAs are encoded in tandem in P. aeruginosa, allowing for the expression of a distinct, heme-responsive sRNA named PrrH that appears to regulate genes involved in heme metabolism. Using a combination of growth, mass spectrometry, and gene expression analysis, we showed that the ΔprrF1,2 mutant, which lacks expression of the PrrF and PrrH sRNAs, is defective for both iron and heme homeostasis. We also identified phuS, encoding a heme binding protein involved in heme acquisition, and vreR, encoding a previously identified regulator of P. aeruginosa virulence genes, as novel targets of prrF-mediated heme regulation. Finally, we showed that the prrF locus encoding the PrrF and PrrH sRNAs is required for P. aeruginosa virulence in a murine model of acute lung infection. Moreover, we showed that inoculation with a ΔprrF1,2 deletion mutant protects against future challenge with wild-type P. aeruginosa. Combined, these data demonstrate that the prrF-encoded sRNAs are critical regulators of P. aeruginosa virulence.
机译:铜绿假单胞菌是需要铁引起感染的机会病原体,但它也必须调节铁的吸收以避免铁的毒性。铁反应性PrrF1和PrrF2小调控RNA(sRNA)是铜绿假单胞菌铁调控网络的一部分,会影响至少50个编码含铁蛋白的基因的表达。编码PrrF1和PrrF2 sRNA的基因在铜绿假单胞菌中串联编码,从而允许表达一种独特的,对血红素有反应的sRNA命名为PrrH,该sRNA似乎可以调节参与血红素代谢的基因。结合生长,质谱和基因表达分析,我们发现缺乏PrrF和PrrH sRNA表达的Δ prrF1 2 突变体存在缺陷用于铁和血红素的体内平衡。我们还确定了 phuS (编码参与血红素获取的血红素结合蛋白)和 vreR (编码先前鉴定的铜绿假单胞菌毒力基因调节剂)作为的新靶标> prrF 介导的血红素调节。最后,我们表明在急性肺部感染的鼠模型中,铜绿假单胞菌毒力需要编码PrrF和PrrH sRNA的 prrF 基因座。此外,我们表明接种Δ prrF1,2 缺失突变体可防止野生型铜绿假单胞菌将来受到挑战。结合起来,这些数据表明, prrF 编码的sRNA是铜绿假单胞菌毒力的关键调节因子。

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