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The Two-Component Regulatory System VicRK is Important to Virulence of Streptococcus equi Subspecies equi

机译:两组分调节系统VicRK对马链球菌亚种马毒的重要性很重要

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摘要

This study aims at evaluating the importance of the two-component regulatory system VicRK to virulence of the horse pathogen Streptococcus equi subspecies equi and the potential of a vicK mutant as a live vaccine candidate using mouse infection models. The vicK gene was deleted by gene replacement. The ΔvicK mutant is attenuated in virulence in both subcutaneous and intranasal infections in mice. ΔvicK grows less slowly than the parent strain but retains the ability of S. equi to resist to phagocytosis by polymorphoneuclear leukocytes, suggesting that the vicK deletion causes growth defect. ΔvicK infection protects mice against reinfection with a wild-type S. equi strain. Intranasal ΔvicK infection induces production of anti-SeM mucosal IgA and systemic IgG. These results indicate that VicRK is important to S. equi growth and virulence and suggest that ΔvicK has the potential to be developed as a live S. equi vaccine.
机译:这项研究旨在评估两组分调节系统VicRK对马病原体链球菌马亚种马毒力的重要性,以及使用小鼠感染模型的vicK突变体作为活疫苗候选者的潜力。通过基因置换删除了vicK基因。在小鼠的皮下和鼻内感染中,ΔvicK突变体的毒力减弱。 ΔvicK的生长速度低于亲本菌株,但保留了马链球菌抵抗多形核白细胞吞噬的能力,这表明vicK缺失会导致生长缺陷。 ΔvicK感染可保护小鼠免受野生型马链球菌的再感染。鼻内ΔvicK感染诱导产生抗SeM粘膜IgA和全身性IgG。这些结果表明,VicRK对马链球菌的生长和毒力很重要,并表明ΔvicK有潜力开发成为活的马链球菌疫苗。

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