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The Effect of 2-Thiocyanatopyridine Derivative 11026103 on Burkholderia Cenocepacia : Resistance Mechanisms and Systemic Impact

机译:2-硫氰酸哌啶衍生物11026103对伯克德利菌菌科科尼治疗的影响:抗性机制和全身影响

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Bacteria of the Burkholderia cepacia complex (Bcc) are associated with significant decline of lung functions in cystic fibrosis patients. Bcc infections are virtually impossible to eradicate due to their irresponsiveness to antibiotics. The 2-thiocyanatopyridine derivative 11026103 is a novel, synthetic compound active against Burkholderia cenocepacia . To characterize mechanisms of resistance to 11026103, B. cenocepacia was subjected to chemical mutagenesis, followed by whole genome sequencing. Parallel mutations in resistant isolates were localized in a regulatory protein of the efflux system Resistance-Nodulation-Division (RND)-9 (BCAM1948), RNA polymerase sigma factor (BCAL2462) and its cognate putative anti-sigma factor (BCAL2461). Transcriptomic analysis identified positive regulation of a major facilitator superfamily (MFS) efflux system BCAL1510-1512 by BCAL2462. Artificial overexpression of both efflux systems increased resistance to the compound. The effect of 11026103 on B. cenocepacia was analyzed by RNA-Seq and a competitive fitness assay utilizing an essential gene knockdown mutant library. 11026103 exerted a pleiotropic effect on transcription including profound downregulation of cluster of orthologous groups (COG) category “Translation, ribosomal structure, and biogenesis”. The competitive fitness assay identified many genes which modulated susceptibility to 11026103. In summary, 11026103 exerts a pleiotropic cellular response in B. cenocepacia which can be prevented by efflux system-mediated export.
机译:Burkholderia Cepacia复合物(BCC)的细菌与肺功能患者肺功能的显着下降有关。由于它们对抗生素的不负责任,BCC感染几乎不可能根除。 2-硫氰酸吡啶衍生物11026103是一种对伯克德列尔宫颈狭窄症的新型合成化合物。表征抗性的机制到11026103,B. Cenocepacia进行化学诱变,然后进行了全基因组测序。抗性分离物中的平行突变局部地定位在流出系统电阻 - 旋转分割(RND)-9(BCAM1948),RNA聚合酶Sigma因子(BCAL2462)的调节蛋白质和其同源推定的抗Σ因子(BCAL2461)。转录组分析通过BCAL2462确定了主要促进剂超家族(MFS)流出系统BCAL1510-1512的正规调节。两种流出系统的人工过表达增加了对化合物的抗性。通过RNA-SEQ分析11026103对B. cenocepacia的影响和利用必需基因敲低突变体文库进行竞争性健康测定。 11026103施加了对转录的热熵作用,包括深度下调正交组(COG)类别“翻译,核糖体结构和生物发生”。竞争性健康测定鉴定了许多调节易感性至11026103的基因。总之,11026103在B. Cenocepacia中施加了一种抗嗜血癖的细胞反应,这可以通过Efflux系统介导的出口预防。

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