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Low-shear modelled microgravity alters expression of virulence determinants of Staphylococcus aureus

机译:低剪切模拟微重力改变金黄色葡萄球菌毒力决定因素的表达

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摘要

Microbiological monitoring of air and surfaces within the ISS indicate that bacteria of the genus Staphylococcus are found with high frequency. Staphylococcus aureus, an opportunistic pathogen with the capacity to cause severe debilitating infection, constitutes a significant proportion of these isolates. Experiments conducted during short-term flight suggest that growth in microgravity leads to increases in bacterial antibiotic resistance and to cell wall changes. Growth under low-shear modelled microgravity (LSMMG) indicated that a reduced gravitational field acts as an environmental signal for expression of enhanced bacterial virulence in gram-negative pathogens. We therefore examined the effect of simulated microgravity on parameters of antibiotic susceptibility and virulence in methicillin-susceptible S. aureus isolates RF1, RF6 and RF11; these strains were grown in a high aspect ratio vessel under LSMMG and compared with cells grown under normal gravity (NG). There were no significant differences in antibiotic susceptibility of staphylococci grown under LSMMG compared to NG. LSMMG-induced reductions in synthesis of the pigment staphyloxanthin and the major virulence determinant α-toxin were noted. Significant changes in global gene expression were identified by DNA microarray analysis; with isolate RF6, the expression of hla and genes of the regulatory system saeR/saeS were reduced approximately two-fold. These data provide strong evidence that growth of S. aureus under modelled microgravity leads to a reduction in expression of virulence determinants.
机译:对国际空间站内空气和表面的微生物监测表明,发现葡萄球菌属细菌的频率很高。金黄色葡萄球菌是一种机会病原体,具有引起严重的破坏性感染的能力,在这些分离物中占很大比例。在短期飞行中进行的实验表明,微重力的增长导致细菌对抗生素的抗性增加,并导致细胞壁变化。低剪切模型微重力(LSMMG)下的生长表明,重力场减小是革兰氏阴性病原体表达增强的细菌毒力的环境信号。因此,我们检查了模拟微重力对甲氧西林敏感金黄色葡萄球菌RF1,RF6和RF11分离株中抗生素敏感性和毒力参数的影响。这些菌株在LSMMG下的高长宽比容器中生长,并与在正常重力(NG)下生长的细胞进行比较。与NG相比,在LSMGG下生长的葡萄球菌的抗生素敏感性没有显着差异。注意到LSMMG诱导的色素金黄色素和主要毒力决定因素α-毒素的合成减少。 DNA基因芯片分析确定了全局基因表达的显着变化;用分离的RF6,hla的表达和调节系统saeR / saeS的基因减少了大约两倍。这些数据提供了有力的证据,表明在微重力作用下金黄色葡萄球菌的生长导致毒力决定簇表达的减少。

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