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A simple and efficient method to search for selected primary transcripts: non-coding and antisense RNAs in the human pathogen Enterococcus faecalis

机译:一种简单而有效的方法来搜索选定的初级转录本:人病原菌肠球菌中的非编码和反义RNA

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摘要

Enterococcus faecalis is a commensal bacterium and a major opportunistic human pathogen. In this study, we combined in silico predictions with a novel 5′RACE-derivative method coined ‘5′tagRACE’, to perform the first search for non-coding RNAs (ncRNAs) encoded on the E. faecalis chromosome. We used the 5′tagRACE to simultaneously probe and characterize primary transcripts, and demonstrate here the simplicity, the reliability and the sensitivity of the method. The 5′tagRACE is complementary to tiling arrays or RNA-sequencing methods, and is also directly applicable to deep RNA sequencing and should significantly improve functional studies of bacterial RNA landscapes. From 45 selected loci of the E. faecalis chromosome, we discovered and mapped 29 novel ncRNAs, 10 putative novel mRNAs and 16 antisense transcriptional organizations. We describe in more detail the oxygen-dependent expression of one ncRNA located in an E. faecalis pathogenicity island, the existence of an ncRNA that is antisense to the ncRNA modulator of the RNA polymerase, SsrS and provide evidences for the functional interplay between two distinct toxin–antitoxin modules.
机译:粪肠球菌是一种常见细菌,是主要的机会性人类病原体。在这项研究中,我们将计算机预测与新颖的5'RACE衍生方法“ 5'tagRACE”相结合,以首次搜索粪肠球菌染色体上编码的非编码RNA(ncRNA)。我们使用5'tagRACE同时探测和鉴定初级转录本,并在此证明该方法的简单性,可靠性和敏感性。 5'tagRACE是平铺阵列或RNA测序方法的补充,也可直接用于深RNA测序,并应显着改善细菌RNA景观的功能研究。从粪肠球菌染色体的45个选定位点中,我们发现并定位了29个新颖的ncRNA,10个推定的新颖mRNA和16个反义转录组织。我们更详细地描述了位于粪肠球菌致病性岛中的一个ncRNA的氧依赖性表达,与RNA聚合酶,SsrS的ncRNA调节剂反义的ncRNA的存在,并为两个不同分子之间的功能相互作用提供了证据毒素-抗毒素模块。

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