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Severe invasive streptococcal infection by Streptococcus pyogenes and Streptococcus dysgalactiae subsp equisimilis

机译:化脓性链球菌和dysgalactiae亚种亚种亚种的严重侵袭性链球菌感染。

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摘要

Streptococcus pyogenes, a group A Streptococcus (GAS), has been recognized as the causative pathogen in patients with severe invasive streptococcal infection with or without necrotizing fasciitis. In recent epidemiological studies, Streptococcus dysgalactiae subsp. equisimilis (SDSE) has been isolated from severe invasive streptococcal infection. Complete genome sequence showed that SDSE is the closest bacterial species to GAS, with approximately 70% of genome coverage. SDSE, however, lacks several key virulence factors present in GAS, such as SPE-B, the hyaluronan synthesis operon and active superantigen against human immune cells. A key event in the ability of GAS to cause severe invasive streptococcal infection was shown to be the acquisition of novel genetic traits such as phages. Strikingly, however, during severe invasive infection, GAS destroys its own covRS two-component system, which negatively regulates many virulence factor genes, resulting in a hyper-virulent phenotype. In contrast, this phenomenon has not been observed in SDSE. The present review describes the epidemiology of severe invasive streptococcal infection and the detailed pathogenic mechanisms of GAS and SDSE, emphasizing findings from their genome sequences and analyses of gene expression.
机译:化脓性链球菌(一种A型链球菌(GAS))已被认为是伴或不伴坏死性筋膜炎的严重浸润性链球菌感染患者的病原体。在最近的流行病学研究中,dysgalactiae链球菌亚种。从严重的侵袭性链球菌感染中分离出了equimisimilis(SDSE)。完整的基因组序列表明,SDSE是最接近GAS的细菌,约占基因组覆盖率的70%。但是,SDSE缺乏GAS中存在的几种关键毒力因子,例如SPE-B,透明质酸合成操纵子和针对人类免疫细胞的活性超抗原。 GAS导致严重的侵袭性链球菌感染的能力中的关键事件被证明是获得新的遗传特征,例如噬菌体。然而,令人震惊的是,在严重的侵袭性感染期间,GAS破坏了其自身的covRS两组分系统,该系统对许多毒力因子基因具有负调控作用,从而导致了高毒力表型。相反,在SDSE中未观察到此现象。本综述描述了严重的侵袭性链球菌感染的流行病学以及GAS和SDSE的详细致病机制,强调了它们的基因组序列发现和基因表达分析。

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