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探究铜绿假单胞菌的小RNA调控格局:致病性和抗生素敏感性决定因素的转录后调控

Probing the sRNA regulatory landscape of P. aeruginosa: post-transcriptional control of determinants of pathogenicity and antibiotic susceptibility.

作者信息

Zhang Yi-Fan, Han Kook, Chandler Courtney E, Tjaden Brian, Ernst Robert K, Lory Stephen

机构信息

Department of Microbiology and Immunobiology, Harvard Medical School, Boston, MA, USA.

Harvard School of Dental Medicine, Boston, MA, USA.

出版信息

Mol Microbiol. 2017 Dec;106(6):919-937. doi: 10.1111/mmi.13857. Epub 2017 Nov 2.

Abstract

During environmental adaptation bacteria use small regulatory RNAs (sRNAs) to repress or activate expression of a large fraction of their proteome. We extended the use of the in vivo RNA proximity ligation method toward probing global sRNA interactions with their targets in Pseudomonas aeruginosa and verified the method with a known regulon controlled by the PrrF1 sRNA. We also identified two sRNAs (Sr0161 and ErsA) that interact with the mRNA encoding the major porin OprD responsible for the uptake of carbapenem antibiotics. These two sRNAs base pair with the 5' UTR of oprD leading to increase in resistance of the bacteria to meropenem. Additional proximity ligation experiments and enrichment for Sr0161 targets identified the mRNA for the regulator of type III secretion system. Interaction between the exsA mRNA and Sr0161 leads to a block in the synthesis of a component of the T3SS apparatus and an effector. Another sRNA, Sr006, positively regulates, without Hfq, the expression of PagL, an enzyme responsible for deacylation of lipid A, reducing its pro-inflammatory property and resulting in polymyxin resistance. Therefore, an analysis of global sRNA-mRNA interactions can lead to discoveries of novel pathways controlling gene expression that are likely integrated into larger regulatory networks.

摘要

在环境适应过程中,细菌利用小调控RNA(sRNA)来抑制或激活其大部分蛋白质组的表达。我们将体内RNA邻近连接方法的应用扩展到探究铜绿假单胞菌中全局sRNA与其靶标的相互作用,并通过由PrrF1 sRNA控制的已知调控子验证了该方法。我们还鉴定出两种与编码负责碳青霉烯类抗生素摄取的主要孔蛋白OprD的mRNA相互作用的sRNA(Sr0161和ErsA)。这两种sRNA与oprD的5'非翻译区碱基配对,导致细菌对美罗培南的耐药性增加。额外的邻近连接实验和对Sr0161靶标的富集鉴定出III型分泌系统调节因子的mRNA。exsA mRNA与Sr0161之间的相互作用导致III型分泌系统(T3SS)装置的一个组件和一个效应器的合成受阻。另一种sRNA,Sr006,在没有Hfq的情况下正向调节负责脂多糖A去酰化的酶PagL的表达,降低其促炎特性并导致对多粘菌素产生耐药性。因此,对全局sRNA-mRNA相互作用的分析可以发现控制基因表达的新途径,这些途径可能整合到更大的调控网络中。

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