肠外致病性大肠杆菌rtx家族毒素HlyA在血清耐药中的作用。

FEMS microbes Pub Date : 2025-07-02 eCollection Date: 2025-01-01 DOI:10.1093/femsmc/xtaf009
Naoise McGarry, Stephen G J Smith
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引用次数: 0

摘要

肠外致病性大肠杆菌(ExPEC)是尿路感染、菌血症和败血症的主要原因。CFT073是序列型(ST) 73泌尿脓毒症的原型分离株。与ST131等其他大流行克隆群相比,ST73分离株具有更高的毒力评分。该实验室,除其他外,先前已经证明菌株CFT073具有血清抗性,毒力因子如胞外多糖胶囊和其他细胞外多糖赋予补体系统抗性。在这项研究中,与在新鲜培养基中标准化的培养物相比,培养上清在标准化的血清杀伤试验中具有保护作用。在新鲜培养基中稀释培养物,以代替条件培养基,显著提高了CFT073对血清的敏感性,表明一种分泌因子可能对血清具有抗性。溶血素是一种成孔毒素,由CFT073以钙依赖的方式分泌。本研究发现CFT073 hlyA突变体对50%血清的敏感性明显高于野生型,暗示溶血素参与了CFT073对血清的反应。除了在分泌时作为一种毒素外,先前已经表明HlyA与脂多糖(LPS)形成复合物,这允许HlyA调节宿主免疫反应,同时与细胞相关。本研究检测和表征了HlyA对胶囊表达和血清抗性的影响,结果表明HlyA- lps复合物可能与表面胶囊相互作用。这项研究首次确定溶血素是促进CFT073血清抗性的毒力因子,与细胞相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role for RTX-family toxin HlyA of extraintestinal pathogenic Escherichia coli in serum resistance.

Extraintestinal pathogenic Escherichia coli (ExPEC) is a major cause of urinary tract infections, bacteraemia, and sepsis. CFT073 is a prototypic, urosepsis isolate of sequence type (ST) 73. ST73 isolates are associated with higher virulence scores than other pandemic clonal groups, such as ST131. This laboratory, among others, has previously shown that strain CFT073 is serum-resistant, with virulence factors such as the exopolysaccharide capsule and other extracellular polysaccharides imparting resistance to the complement system. In this study, it was shown that culture supernatants were protective in standardized serum killing assays, when compared to cultures standardized in fresh medium. Diluting cultures in fresh medium in place of conditioned medium significantly increased sensitivity of CFT073 to serum, indicating that a secreted factor may provide resistance to serum. Haemolysin, a pore-forming toxin, is secreted by CFT073 in a calcium-dependent manner. This study found that a CFT073 hlyA mutant is significantly more sensitive to 50% serum than the wild-type, implicating haemolysin in the response of CFT073 to serum. In addition to acting as a toxin upon secretion, it has been shown previously that HlyA forms a complex with lipopolysaccharide (LPS), which permits modulation of host immune responses by HlyA whilst cell-associated. The effect of HlyA on capsule expression and serum resistance was examined and characterized in this study, with results indicating that perhaps the HlyA-LPS complex interacts with surface capsule. This study is the first to identify haemolysin as a virulence factor promoting resistance to serum in CFT073, acting whilst associated with the cell.

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CiteScore
3.30
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