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首页> 外文期刊>BMC Microbiology >Functional analysis of the group A streptococcal luxS/AI-2 system in metabolism, adaptation to stress and interaction with host cells
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Functional analysis of the group A streptococcal luxS/AI-2 system in metabolism, adaptation to stress and interaction with host cells

机译:A组链球菌luxS / AI-2系统在代谢,适应压力和与宿主细胞相互作用中的功能分析

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Background The luxS/AI-2 signaling pathway has been reported to interfere with important physiological and pathogenic functions in a variety of bacteria. In the present study, we investigated the functional role of the streptococcal luxS/AI-2 system in metabolism and diverse aspects of pathogenicity including the adaptation of the organism to stress conditions using two serotypes of Streptococcus pyogenes, M1 and M19. Results Exposing wild-type and isogenic luxS-deficient strains to sulfur-limited media suggested a limited role for luxS in streptococcal activated methyl cycle metabolism. Interestingly, loss of luxS led to an increased acid tolerance in both serotypes. Accordingly, luxS expression and AI-2 production were reduced at lower pH, thus linking the luxS/AI-2 system to stress adaptation in S. pyogenes. luxS expression and AI-2 production also decreased when cells were grown in RPMI medium supplemented with 10% serum, considered to be a host environment-mimicking medium. Furthermore, interaction analysis with epithelial cells and macrophages showed a clear advantage of the luxS-deficient mutants to be internalized and survive intracellularly in the host cells compared to the wild-type parents. In addition, our data revealed that luxS influences the expression of two virulence-associated factors, the fasX regulatory RNA and the virulence gene sibA (psp). Conclusion Here, we suggest that the group A streptococcal luxS/AI-2 system is not only involved in the regulation of virulence factor expression but in addition low level of luxS expression seems to provide an advantage for bacterial survival in conditions that can be encountered during infections.
机译:背景技术据报道,luxS / AI-2信号通路会干扰多种细菌的重要生理和致病功能。在本研究中,我们调查了链球菌luxS / AI-2系统在代谢和致病性各个方面的功能作用,包括使用两种血清型化脓性链球菌M1和M19使生物体适应应激条件。结果将野生型和同基因的luxS缺陷型菌株暴露于硫限制培养基表明luxS在链球菌激活的甲基循环代谢中的作用有限。有趣的是,luxS的缺失导致两种血清型的耐酸性增加。因此,在较低的pH下,luxS的表达和AI-2的产生降低,从而将luxS / AI-2系统与化脓性链球菌的胁迫适应性联系起来。当细胞在补充了10%血清的RPMI培养基中生长时,luxS表达和AI-2的产生也降低了,该培养基被认为是宿主环境模拟培养基。此外,与野生型亲本相比,与上皮细胞和巨噬细胞的相互作用分析表明,luxS缺陷型突变体具有明显的优势,可以在宿主细胞中内化并在细胞内存活。此外,我们的数据显示luxS影响两个与毒力相关的因子fasX调节RNA和毒力基因sibA(psp)的表达。结论在此,我们建议A组链球菌luxS / AI-2系统不仅参与毒力因子表达的调节,而且低水平的luxS表达似乎为细菌生存提供了有利条件,在这种条件下可能会遇到这种情况。感染。

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