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Identification, cloning and characterization of SpEX exotoxin produced by Staphylococcus pseudintermedius

机译:金黄色葡萄球菌产生的SpEX外毒素的鉴定,克隆和鉴定

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摘要

Staphylococci have evolved numerous strategies to evade their hosts’ immune systems. Some staphylococcal toxins target essential components of host innate immunity, one of the two main branches of the immune system. Analysis of the Staphylococcus pseudintermedius secretome using liquid chromatography mass spectrometry guided by genomic data, was used to identify an S. pseudintermedius exotoxin provisionally named SpEX. This exoprotein has low overall amino acid identity with the Staphylococcus aureus group of proteins named staphylococcal superantigen like proteins (SSLs) and staphylococcal enterotoxin- like toxin X (SEIX), but predictive modeling showed that it shares similar folds and domain architecture to these important virulence factors. In this study, we found SpEX binds to complement component C5, prevents complement mediated lysis of sensitized bovine red blood cells, kills polymorphonuclear leukocytes and monocytes and inhibits neutrophil migration at sub-lethal concentrations. A mutant version of SpEX, produced through amino acid substitution at selected positions, had diminished cytotoxicity. Anti-SpEX produced in dogs reduced the inhibitory effect of native SpEX on canine neutrophil migration and protected immune cells from the toxic effects of the native recombinant protein. These results suggest that SpEX likely plays an important role in S. pseudintermedius virulence and that attenuated SpEX may be an important candidate for inclusion in a vaccine against S. pseudintermedius infections.
机译:葡萄球菌已经进化出许多策略来逃避宿主的免疫系统。一些葡萄球菌毒素靶向宿主固有免疫的基本组成部分,后者是免疫系统两个主要分支之一。在基因组数据的指导下,使用液相色谱质谱法分析伪葡萄球菌分泌基因组,以鉴定临时命名为SpEX的假丝酵母链球菌外毒素。该外蛋白与金黄色葡萄球菌类蛋白(葡萄球菌超抗原样蛋白(SSLs)和葡萄球菌肠毒素样毒素X(SEIX))的蛋白具有较低的总体氨基酸同一性,但预测模型表明其与这些重要毒力具有相似的折叠和域结构因素。在这项研究中,我们发现SpEX结合补体成分C5,阻止补体介导的致敏牛红细胞裂解,杀死多形核白细胞和单核细胞,并抑制亚致死浓度的嗜中性白细胞迁移。通过在选定位置进行氨基酸取代而产生的SpEX突变体版本已降低了细胞毒性。狗中产生的抗SpEX降低了天然SpEX对犬中性粒细胞迁移的抑制作用,并保护了免疫细胞免受天然重组蛋白的毒性作用。这些结果表明,SpEX可能在伪中间链霉菌的毒力中起重要作用,而减弱的SpEX可能是包含在抗伪中间链霉菌感染的疫苗中的重要候选者。

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