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首页> 外文期刊>The Journal of biological chemistry >Novel Phenol-soluble Modulin Derivatives in Community-associated Methicillin-resistant Staphylococcus aureus Identified through Imaging Mass Spectrometry
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Novel Phenol-soluble Modulin Derivatives in Community-associated Methicillin-resistant Staphylococcus aureus Identified through Imaging Mass Spectrometry

机译:通过成像质谱法鉴定的群落相关甲氧化酰胺抗金黄色葡萄球菌中的新型酚类可溶性蛋白酶衍生物

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Staphylococcus aureus causes a wide range of human disease ranging from localized skin and soft tissue infections to potentially lethal systemic infections. S. aureus has the biosynthetic ability to generate numerous virulence factors that assist in circumventing the innate immune system during disease pathogenesis. Recent studies have uncovered a set of extracellular peptides produced by community-associated methicillin-resistant S. aureus (CA-MRSA) with homology to the phenol-soluble modulins (PSMs) from Staphylococcus epidermidis. CA-MRSA PSMs contribute to skin infection and recruit and lyse neutrophils, and truncated versions of these peptides possess antimicrobial activity. In this study, novel CA-MRSA PSM derivatives were discovered by the use of microbial imaging mass spectrometry. The novel PSM derivatives are compared with their parent full-length peptides for changes in hemolytic, cytolytic, and neutrophil-stimulating activity. A potential contribution of the major S. aureus secreted protease aureolysin in processing PSMs is demonstrated. Finally, we show that PSM processing occurs in multiple CA-MRSA strains by structural confirmation of additional novel derivatives. This work demonstrates that IMS can serve as a useful tool to go beyond genome predictions and expand our understanding of the important family of small peptide virulence factors.
机译:金黄色葡萄球菌导致各种人类疾病从局部皮肤和软组织感染的范围内,以潜在的致命系统感染。 S.金黄色葡萄球菌具有生成多种毒力因子的生物合成能力,有助于在疾病发病机制期间避免先天免疫系统。最近的研究已经发现了一组由群组相关的甲氧西蛋白抗性S.UUREUS(CA-MRSA)产生的细胞外肽,其与来自葡萄球菌的苯酚可溶性调节蛋白(PSM)的同源性。 CA-MRSA PSM有助于皮肤感染和募集和莱斯中性粒细胞,这些肽的截短版本具有抗微生物活性。在该研究中,通过使用微生物成像质谱法发现了新的Ca-MRSA PSM衍生物。将新的PSM衍生物与其母体全长肽进行比较,用于溶血,细胞溶解和中性粒细胞刺激活性的变化。展示了在加工PSM中主要S.UUREUS分泌蛋白酶AULEOLYSIN的潜在贡献。最后,我们表明PSM处理通过额外的新衍生物的结构确认发生在多种Ca-MRSA菌株中。这项工作表明,IMS可以作为超越基因组预测的有用工具,并扩大我们对小肽毒力因子的重要家庭的理解。

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