首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Identification of tandem duplicate regulatory small RNAs in Pseudomonas aeruginosa involved in iron homeostasis.
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Identification of tandem duplicate regulatory small RNAs in Pseudomonas aeruginosa involved in iron homeostasis.

机译:在铜铁假单胞菌中参与铁稳态的串联重复调控小RNA的鉴定。

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In many bacteria, iron homeostasis is controlled primarily by the ferric uptake regulator (Fur), a transcriptional repressor. However, some genes, including those involved in iron storage, are positively regulated by Fur. A Fur-repressed regulatory small RNA (sRNA), RyhB, has been identified in Escherichia coli, and it has been demonstrated that negative regulation of genes by this sRNA is responsible for the positive regulation of some genes by Fur. No RyhB sequence homologs were found in Pseudomonas aeruginosa, despite the identification of genes positively regulated by its Fur homolog. A bioinformatics approach identified two tandem sRNAs in P. aeruginosa that were candidates for functional homologs of RyhB. These sRNAs (PrrF1 and PrrF2) are >95% identical to each other, and a functional Fur box precedes each. Their expression is induced under iron limitation. Deletion of both sRNAs is required to affect the iron-dependent regulation of an array of genes, including those involved in resistance to oxidative stress, iron storage, and intermediary metabolism. As in E. coli, induction of the PrrF sRNAs leads to the rapid loss of mRNAs for sodB (superoxide dismutase), sdh (succinate dehydrogenase), and a gene encoding a bacterioferritin. Thus, the PrrF sRNAs are the functional homologs of RyhB sRNA. At least one gene, bfrB, is positively regulated by Fur and Fe(2+), even in the absence of the PrrF sRNAs. This work suggests that the role of sRNAs in bacterial iron homeostasis may be broad, and approaches similar to those described here may identify these sRNAs in other organisms.
机译:在许多细菌中,铁稳态主要受转录抑制因子铁摄取调节剂(Fur)的控制。但是,某些基因,包括与铁存储有关的基因,受到Fur的正调控。在大肠杆菌中已鉴定出Fur抑制的调控小RNA(sRNA)RyhB,并且已证明该sRNA对基因的负调控是Fur对某些基因的正调控的原因。尽管鉴定了由其Fur同源物正调控的基因,但在铜绿假单胞菌中未发现RyhB序列同源物。一种生物信息学方法确定了铜绿假单胞菌中的两个串联sRNA,它们是RyhB功能同源物的候选物。这些sRNA(PrrF1和PrrF2)彼此的同源性> 95%,并且每个功能性的Fur盒位于它们之前。它们的表达在铁限制下被诱导。需要删除两个sRNA才能影响一系列基因的铁依赖性调节,这些基因包括与抗氧化应激,铁存储和中间代谢有关的基因。如在大肠杆菌中一样,PrrF sRNA的诱导导致sodB(超氧化物歧化酶),sdh(琥珀酸脱氢酶)和编码细菌铁蛋白的基因的mRNA迅速丢失。因此,PrrF sRNA是RyhB sRNA的功能同源物。即使没有PrrF sRNA,至少一个基因bfrB也受到Fur和Fe(2+)的正调控。这项工作表明,sRNA在细菌铁稳态中的作用可能很广泛,与本文所述方法相似的方法可能会在其他生物体中鉴定这些sRNA。

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