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The primary transcriptome of Neisseria meningitidis and its interaction with the RNA chaperone Hfq

机译:脑膜炎奈瑟菌的初级转录组及其与RNA伴侣Hfq的相互作用

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摘要

Neisseria meningitidis is a human commensal that can also cause life-threatening meningitis and septicemia. Despite growing evidence for RNA-based regulation in meningococci, their transcriptome structure and output of regulatory small RNAs (sRNAs) are incompletely understood. Using dRNA-seq, we have mapped at single-nucleotide resolution the primary transcriptome of N. meningitidis strain 8013. Annotation of 1625 transcriptional start sites defines transcription units for most protein-coding genes but also reveals a paucity of classical σ70-type promoters, suggesting the existence of activators that compensate for the lack of −35 consensus sequences in N. meningitidis. The transcriptome maps also reveal 65 candidate sRNAs, a third of which were validated by northern blot analysis. Immunoprecipitation with the RNA chaperone Hfq drafts an unexpectedly large post-transcriptional regulatory network in this organism, comprising 23 sRNAs and hundreds of potential mRNA targets. Based on this data, using a newly developed gfp reporter system we validate an Hfq-dependent mRNA repression of the putative colonization factor PrpB by the two trans-acting sRNAs RcoF1/2. Our genome-wide RNA compendium will allow for a better understanding of meningococcal transcriptome organization and riboregulation with implications for colonization of the human nasopharynx.
机译:脑膜炎奈瑟氏球菌是一种人类共病,也可能导致威胁生命的脑膜炎和败血病。尽管有越来越多的证据表明脑膜炎球菌中基于RNA的调控,但它们的转录组结构和调控小RNA(sRNA)的输出仍不完全清楚。使用dRNA-seq,我们以单核苷酸分辨率定位了脑膜炎奈瑟氏菌菌株8013的主要转录组。1625转录起始位点的注释定义了大多数蛋白质编码基因的转录单位,但同时也揭示了经典的σ70型启动子的不足,提示存在可以弥补脑膜炎奈瑟氏球菌-35共有序列不足的激活剂。转录组图谱还显示了65个候选sRNA,其中三分之一已通过Northern blot分析验证。 RNA伴侣Hfq的免疫沉淀法在该生物体中拟定了一个出乎意料的大转录后调控网络,该网络包含23个sRNA和数百个潜在的mRNA靶标。基于此数据,使用新开发的gfp报告系统,我们验证了两个反式sRNA RcoF1 / 2对假定的定居因子PrpB的Hfq依赖性mRNA抑制。我们的全基因组RNA纲要将使人们更好地了解脑膜炎球菌转录组的组织和核糖调节对人鼻咽部定植有影响。

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