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首页> 外文期刊>Molecular Microbiology >Probing the sRNA regulatory landscape of P. aeruginosa P. aeruginosa : post‐transcriptional control of determinants of pathogenicity and antibiotic susceptibility
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Probing the sRNA regulatory landscape of P. aeruginosa P. aeruginosa : post‐transcriptional control of determinants of pathogenicity and antibiotic susceptibility

机译:P. Aeruginosa P.铜绿假单胞菌的SRNA监管景观:致病性和抗生素敏感度的分析术后控制

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摘要

Summary 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.
机译:概述在环境适应细菌中使用小型调节RNA(SRNA)来压抑或激活大部分蛋白质组的表达。我们扩展了使用体内RNA接近结扎方法的使用,探讨了与其铜绿假单胞菌的靶标探测全局SRNA相互作用,并通过PRRF1 SRNA控制的已知调节件验证了该方法。我们还鉴定了两个SRNA(SR0161和ERSA),其与编码负责Carbapemem抗生素的摄取的主要孔隙OPRD的mRNA相互作用。这两个SRNAS碱基对与OPRD的5'UTR导致细菌的抗性增加到梅洛涅姆。 SR0161靶的额外接近连接实验和富集鉴定了III型分泌系统调节剂的mRNA。 EXSA mRNA和SR0161之间的相互作用导致T3SS装置和效应器的组分合成的嵌段。另一个SRNA,SR006,不受HFQ的阳性调节PAG1的表达,其负责脂质A的脱酰化的酶,降低其促炎性并导致多粘素抗性。因此,对全局SRNA-mRNA相互作用的分析可导致控制可能集成到更大的监管网络中的基因表达的新型途径。

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  • 来源
    《Molecular Microbiology》 |2017年第6期|共19页
  • 作者单位

    Department of Microbiology and ImmunobiologyHarvard Medical SchoolBoston MA USA;

    Department of Microbiology and ImmunobiologyHarvard Medical SchoolBoston MA USA;

    Department of Microbial PathogenesisUniversity of Maryland – Baltimore School of;

    Computer Science DepartmentWellesley CollegeWellesley MA USA;

    Department of Microbial PathogenesisUniversity of Maryland – Baltimore School of;

    Department of Microbiology and ImmunobiologyHarvard Medical SchoolBoston MA USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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