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首页> 外文期刊>The Journal of biological chemistry >Antimicrobial Activity of Community-associated Methicillin-resistant Staphylococcus aureus Is Caused by Phenol-soluble Modulin Derivatives
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Antimicrobial Activity of Community-associated Methicillin-resistant Staphylococcus aureus Is Caused by Phenol-soluble Modulin Derivatives

机译:社区相关的甲氧化素抗性金黄色葡萄球菌的抗菌活性是由酚可溶性蛋白衍生物引起的

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Community-associated methicillin-resistant Staphylococcus aureus (CA-MRSA) are causing an ongoing pandemic of mostly skin and soft tissue infections. The success of CA-MRSA as pathogens is due to a combination of antibiotic resistance with high virulence. In addition, it has been speculated that CA-MRSA strains such as the epidemic U.S. clone USA300 have increased capacity to colonize human epithelia, owing to bacteriocin-based bacterial interference. We here analyzed the molecular basis of antimicrobial activity detected in S. aureus strains, including those of the USA300 lineage. In contrast to a previous hypothesis, we found that this activity is not due to expression of a lantibiotic-type bacteriocin, but proteolytically processed derivatives of the phenol-soluble modulin (PSM) peptides PSMα1 and PSMα2. Notably, processed PSMα1 and PSMα2 exhibited considerable activity against Streptococcus pyogenes, indicating a role of PSMs in the interference of S. aureus strains with the competing colonizing pathogen. Furthermore, by offering a competitive advantage during colonization of the human body, the characteristically high production of PSMs in USA300 and other CA-MRSA strains may thus contribute not only to virulence but also the exceptional capacity of those strains to sustainably spread in the population, which so far has remained poorly understood.
机译:社区相关的甲氧西蛋白抗性金黄色葡萄球菌(CA-MRSA)导致大部分皮肤和软组织感染的持续大流行。 Ca-MRSA作为病原体的成功是由于抗生素抗性的组合具有高毒力。此外,由于基于细菌素的细菌干扰,Ca-MRSA菌株如植入疫苗,克隆USA300的菌株增加了殖民上皮的能力。我们在这里分析了在金黄色葡萄球菌菌株中检​​测到的抗微生物活性的分子基础,包括USA300谱系。与先前的假设相比,我们发现该活性不是由于含锰型菌霉素的表达,而是酚类可溶性调节剂(PSM)肽PSMα1和PSMα2的蛋白水解加工衍生物。值得注意的是,加工后的PSMα1和PSMα2对链球菌的具有相当大的活​​性,表明PSM在与竞争的定植病原体中的S.UUREUS菌株干扰中的作用。此外,通过在人体定植期间提供竞争优势,USA300和其他Ca-MRSA菌株的特征性上高的PSM生产可能不仅可以毒力,而且可以促进可持续地蔓延的卓越能力,到目前为止,这仍然仍然难以理解。

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