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The primary transcriptome small RNAs and regulation of antimicrobial resistance in Acinetobacter baumannii ATCC 17978

机译:鲍曼不动杆菌ATCC 17978中的初级转录组小RNA和抗药性的调控

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摘要

We present the first high-resolution determination of transcriptome architecture in the priority pathogen Acinetobacter baumannii. Pooled RNA from 16 laboratory conditions was used for differential RNA-seq (dRNA-seq) to identify 3731 transcriptional start sites (TSS) and 110 small RNAs, including the first identification in A. baumannii of sRNAs encoded at the 3′ end of coding genes. Most sRNAs were conserved among sequenced A. baumannii genomes, but were only weakly conserved or absent in other Acinetobacter species. Single nucleotide mapping of TSS enabled prediction of −10 and −35 RNA polymerase binding sites and revealed an unprecedented base preference at position +2 that hints at an unrecognized transcriptional regulatory mechanism. To apply functional genomics to the problem of antimicrobial resistance, we dissected the transcriptional regulation of the drug efflux pump responsible for chloramphenicol resistance, craA. The two craA promoters were both down-regulated >1000-fold when cells were shifted to nutrient limited medium. This conditional down-regulation of craA expression renders cells sensitive to chloramphenicol, a highly effective antibiotic for the treatment of multidrug resistant infections. An online interface that facilitates open data access and visualization is provided as ‘AcinetoCom’ ().
机译:我们提出了在优先病原体鲍曼不动杆菌中转录组结构的第一个高分辨率测定。来自16个实验室条件的汇总RNA用于差异RNA-seq(dRNA-seq),以鉴定3731个转录起始位点(TSS)和110个小RNA,包括在鲍曼不动杆菌中首次鉴定在编码3'端编码的sRNA。基因。大多数sRNA在序列化的鲍曼不动杆菌基因组中是保守的,但在其他不动杆菌属中仅弱保守或不存在。 TSS的单核苷酸定位可以预测-10和-35 RNA聚合酶的结合位点,并揭示了在+2位置上空前的碱基偏爱,这提示了无法识别的转录调控机制。为了将功能基因组学应用于抗菌素耐药性问题,我们解剖了负责氯霉素耐药性craA的药物外排泵的转录调控。当细胞转移到营养有限的培养基中时,两个craA启动子均被下调> 1000倍。 craA表达的这种条件下调使细胞对氯霉素敏感,氯霉素是一种有效的抗生素,可治疗多种药物引起的感染。提供方便开放数据访问和可视化的在线界面,称为“ AcinetoCom”()。

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