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Emergence of a bacterial clone with enhanced virulence by acquisition of a phage encoding a secreted phospholipase A(2)

机译:通过获取编码分泌型磷脂酶A(2)的噬菌体,具有增强的毒力的细菌克隆的出现。

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The molecular basis of pathogen clone emergence is relatively poorly understood. Acquisition of a bacteriophage encoding a previously unknown secreted phospholipase A(2) (designated SlaA) has been implicated in the rapid emergence in the mid-1980s of a new hypervirulent clone of serotype M3 group A Streptococcus. Although several lines of circumstantial evidence suggest that SlaA is a virulence factor, this issue has not been addressed experimentally. We found that an isogenic Delta slaA mutant strain was significantly impaired in ability to adhere to and kill human epithelial cells compared with the wild-type parental strain. The mutant strain was less virulent for mice than the wild-type strain, and immunization with purified SlaA significantly protected mice from invasive disease. Importantly, the mutant strain was significantly attenuated for colonization in a monkey model of pharyngitis. We conclude that transductional acquisition of the ability of a GAS strain to produce SlaA enhanced the spread and virulence of the serotype M3 precursor strain. Hence, these studies identified a crucial molecular event underlying the evolution, rapid emergence, and widespread dissemination of unusually severe human infections caused by a distinct bacterial clone.
机译:病原体克隆出现的分子基础相对了解甚少。编码以前未知的分泌的磷脂酶A(2)(称为SlaA)的噬菌体的获得与血清型M3 A组链球菌的一种新的高毒力克隆的迅速出现有关。尽管几行间接证据表明SlaA是一种毒力因子,但尚未通过实验解决此问题。我们发现,与野生型亲本菌株相比,同基因Delta slaA突变菌株在粘附和杀死人上皮细胞的能力上显着受损。突变株对小鼠的毒性不如野生株,并且用纯化的SlaA免疫可显着保护小鼠免受侵袭性疾病的侵害。重要的是,突变菌株在咽炎的猴子模型中显着减毒定植。我们得出的结论是,GAS菌株产生SlaA能力的转导获得增强了M3型血清型前体菌株的传播和毒力。因此,这些研究确定了由独特的细菌克隆引起的异常严重的人类感染的演变,迅速出现和广泛传播的关键分子事件。

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