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SagA和SiaA在化脓性链球菌群体感应和铁调节中的作用。

Role for sagA and siaA in quorum sensing and iron regulation in Streptococcus pyogenes.

作者信息

Salim Kowthar Y, de Azavedo Joyce C, Bast Darrin J, Cvitkovitch Dennis G

机构信息

University of Toronto, Dental Research Institute, Department of Microbiology, Toronto, Ontario, Canada M5G 1G6.

出版信息

Infect Immun. 2007 Oct;75(10):5011-7. doi: 10.1128/IAI.01824-06. Epub 2007 Jul 16.

Abstract

Streptococcus pyogenes is a ubiquitous and versatile pathogen that causes a variety of infections with a wide range of severity. The versatility of this organism is due in part to its capacity to regulate virulence gene expression in response to the many environments that it encounters during an infection. We analyzed the expression of two potential virulence factors, sagA and siaA (also referred to as pel and htsA, respectively), in response to conditions of varying cell densities and iron concentrations. The sagA gene was up-regulated in conditioned medium from a wild-type strain but not from sagA-deficient mutants, and the gene was also up-regulated in the presence of streptolysin S (SLS), the gene product of sagA, thus indicating that this gene or its product is involved in density-dependent regulation of S. pyogenes. By comparison, siaA responded in a manner consistent with a role in iron acquisition since it was up-regulated under iron-restricted conditions. Although siaA expression was also up-regulated in the presence of SLS and in conditioned media from both wild-type and sagA-deficient mutants, this up-regulation was not growth phase dependent. We conclude that sagA encodes a quorum-sensing signaling molecule, likely SLS, and further support the notion that siaA is likely involved in iron acquisition.

摘要

化脓性链球菌是一种普遍存在且具有多种致病能力的病原体,可引发各种严重程度不一的感染。这种微生物的多种致病能力部分归因于其能够根据感染过程中遇到的多种环境来调节毒力基因表达。我们分析了两种潜在毒力因子sagA和siaA(也分别称为pel和htsA)在不同细胞密度和铁浓度条件下的表达情况。sagA基因在野生型菌株的条件培养基中上调,但在sagA缺陷型突变体中未上调,并且在sagA基因产物链球菌溶血素S(SLS)存在的情况下该基因也上调,这表明该基因或其产物参与了化脓性链球菌的密度依赖性调节。相比之下,siaA的反应方式与其在铁摄取中的作用一致,因为它在铁限制条件下上调。虽然siaA的表达在SLS存在时以及在野生型和sagA缺陷型突变体的条件培养基中也上调,但这种上调不依赖于生长阶段。我们得出结论,sagA编码一种群体感应信号分子,可能是SLS,并进一步支持了siaA可能参与铁摄取的观点。

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