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Balancing mcr-1 expression and bacterial survival is a delicate equilibrium between essential cellular defence mechanisms

机译:mcr-1表达和细菌存活之间的平衡是基本细胞防御机制之间的微妙平衡

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摘要

MCR-1 is a lipid A modifying enzyme that confers resistance to the antibiotic colistin. Here, we analyse the impact of MCR-1 expression on E. coli morphology, fitness, competitiveness, immune stimulation and virulence. Increased expression of mcr-1 results in decreased growth rate, cell viability, competitive ability and significant degradation in cell membrane and cytoplasmic structures, compared to expression of catalytically inactive MCR-1 (E246A) or MCR-1 soluble component. Lipopolysaccharide (LPS) extracted from mcr-1 strains induces lower production of IL-6 and TNF, when compared to control LPS. Compared to their parent strains, high-level colistin resistance mutants (HLCRMs) show reduced fitness (relative fitness is 0.41–0.78) and highly attenuated virulence in a Galleria mellonella infection model. Furthermore, HLCRMs are more susceptible to most antibiotics than their respective parent strains. Our results show that the bacterium is challenged to find a delicate equilibrium between expression of MCR-1-mediated colistin resistance and minimalizing toxicity and thus ensuring cell survival.
机译:MCR-1是一种脂质A修饰酶,可赋予对抗生素大肠菌素的抗性。在这里,我们分析了MCR-1表达对大肠杆菌的形态,适应性,竞争力,免疫刺激和毒力的影响。与催化失活的MCR-1(E246A)或MCR-1可溶性成分的表达相比,增加的mcr-1表达导致生长速率,细胞活力,竞争能力降低以及细胞膜和细胞质结构的显着降解。与对照LPS相比,从mcr-1菌株提取的脂多糖(LPS)诱导IL-6和TNF的降低。与亲本菌株相比,高水平大肠菌素抗性突变体(HLCRMs)在马鞭毛虫感染模型中显示适应性降低(相对适应度为0.41-0.78),毒力大大降低。此外,HLCRMs比其各自的亲本菌株更易受大多数抗生素的影响。我们的结果表明,该细菌面临挑战,需要在MCR-1介导的大肠菌素抗性表达与最小化毒性之间找到微妙的平衡,从而确保细胞存活。

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