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首页> 外文期刊>Microbiological Research >Functional analysis of c-di-AMP phosphodiesterase, GdpP, in Streptococcus suis serotype 2
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Functional analysis of c-di-AMP phosphodiesterase, GdpP, in Streptococcus suis serotype 2

机译:猪链球菌血清型2中的c-di-AMP磷酸二酯酶GdpP的功能分析

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Streptococcus suis serotype 2 (SS2) is an important zoonotic pathogen that causes serious diseases in pigs and humans. GdpP protein is a recently discovered specific phosphodiesterase that degrades cyclic diadenosine monophosphate (c-di-AMP). It is widely distributed among the firmicutes phylum and altered expression of GdpP is associated with several phenotypes in various bacterial strains. We investigated the role of GdpP in physiology and virulence in SS2. An in-frame mutant of gdpP was constructed using homologous recombination and bacterial growth, biofilm formation, hemolytic activity, cell adherence and invasion, expression of virulence factors, and virulence were evaluated. Disruption of gdpP increased intracellular c-di-AMP level and affected growth and increased biofilm formation of SS2. Simultaneously, the gdpP mutant strain exhibited a significant decrease in hemolytic activity and adherence to and invasion of HEp-2 cells compared with the parental strain. Quantitative reverse transcriptase polymerase chain reaction indicated significantly reduced expression of the known virulence genes cps2, sly, fpbs, mrp, ef and gdh in the gdpP mutant. In murine infection models, the gdpP mutant strain was attenuated, and impaired bacterial growth was observed in specific organs. All these findings revealed a significant contribution of gdpP and its substrate (c-di-AMP) to the biology and virulence of SS2
机译:猪链球菌血清型2(SS2)是一种重要的人畜共患病原体,可引起猪和人的严重疾病。 GdpP蛋白是最近发现的一种特定的磷酸二酯酶,可降解环二腺苷单磷酸(c-di-AMP)。它广泛分布在硬毛门之间,GdpP表达的改变与各种细菌菌株中的几种表型有关。我们调查了GdpP在SS2的生理和毒力中的作用。使用同源重组和细菌生长,生物膜形成,溶血活性,细胞粘附和侵袭,毒力因子的表达和毒力,构建了gdpP的框内突变体。 gdpP的破坏增加了细胞内c-di-AMP的水平,影响了SS2的生长和生物膜的形成。同时,与亲代菌株相比,gdpP突变菌株的溶血活性以及对HEp-2细胞的粘附和侵袭均显着降低。定量逆转录酶聚合酶链反应表明gdpP突变体中已知毒力基因cps2,sly,fpbs,mrp,ef和gdh的表达显着降低。在鼠类感染模型中,gdpP突变株减毒,并且在特定器官中观察到细菌生长受损。所有这些发现揭示了gdpP及其底物(c-di-AMP)对SS2的生物学和毒力的重大贡献

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