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首页> 外文期刊>Journal of pathogens >Stress-Adaptive Responses Associated with High-Level Carbapenem Resistance in KPC-Producing Klebsiella pneumoniae
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Stress-Adaptive Responses Associated with High-Level Carbapenem Resistance in KPC-Producing Klebsiella pneumoniae

机译:与KPC生产Klebsiella肺炎的高级鲤鱼抗性相关的应激适应性反应

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摘要

Carbapenem-resistant Enterobacteriaceae (CRE) organisms have emerged to become a major global public health threat among antimicrobial resistant bacterial human pathogens. Little is known about how CREs emerge. One characteristic phenotype of CREs is heteroresistance, which is clinically associated with treatment failure in patients given a carbapenem. Through in vitro whole-transcriptome analysis we tracked gene expression over time in two different strains (BR7, BR21) of heteroresistant KPC-producing Klebsiella pneumoniae, first exposed to a bactericidal concentration of imipenem followed by growth in drug-free medium. In both strains, the immediate response was dominated by a shift in expression of genes involved in glycolysis toward those involved in catabolic pathways. This response was followed by global dampening of transcriptional changes involving protein translation, folding and transport, and decreased expression of genes encoding critical junctures of lipopolysaccharide biosynthesis. The emerged high-level carbapenem-resistant BR21 subpopulation had a prophage (IS1) disrupting ompK36 associated with irreversible OmpK36 porin loss. On the other hand, OmpK36 loss in BR7 was reversible. The acquisition of high-level carbapenem resistance by the two heteroresistant strains was associated with distinct and shared stepwise transcriptional programs. Carbapenem heteroresistance may emerge from the most adaptive subpopulation among a population of cells undergoing a complex set of stress-adaptive responses.
机译:耐药肠杆菌(CRE)生物体已经出现成为抗菌药物病原体中的全球性公众卫生威胁。众所周知,关于Cres如何出现。一个特征性的Cres表型是杂蛋白,其在患者患者患者患者临床上与患者进行临床相关联。通过体外整体转录组分析,我们在两种不同的菌株(BR7,BR21)的杂菌KPC制造的Klebsiella肺炎中跟踪基因表达,首先暴露于ImipeNem的杀菌浓度,然后在无药培养基中生长。在两种菌株中,立即响应是由参与参与分解代谢途径的糖酵解的基因的表达的转变。然后通过全局抑制涉及蛋白质翻译,折叠和运输的转录变化的全局抑制,并降低编码脂多糖生物合成关键时刻的基因的表达。出现的高级碳培根抗性BR21亚群具有破坏与不可逆OMPK36豚鼠损失相关的OMPK36的先兆(IS1)。另一方面,BR7的OMPK36损失是可逆的。通过两种杂项菌株采集高级碳癌耐药性与逐渐和共同的逐步转录程序相关。从经历复杂的压力 - 适应性反应的细胞中最适应性的亚群中可能出现Carbapenem杂项。

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