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依赖于血清型和菌株的 CovRS 双组分系统传感器激酶 CovS 对酿脓链球菌发病机制的贡献。

Serotype- and strain- dependent contribution of the sensor kinase CovS of the CovRS two-component system to Streptococcus pyogenes pathogenesis.

机构信息

University of Rostock, Medical Faculty, Institute of Medical Microbiology, Virology and Hygiene, Department of Med, Microbiology and Hospital Hygiene, Schillingallee 70, 18055 Rostock, Germany.

出版信息

BMC Microbiol. 2010 Feb 1;10:34. doi: 10.1186/1471-2180-10-34.

Abstract

BACKGROUND

The Streptococcus pyogenes (group A streptococci, GAS) two-component signal transduction system CovRS has been described to be important for pathogenesis of this exclusively human bacterial species. If this system acts uniquely in all serotypes is currently unclear. Presence of serotype- or strain-dependent regulatory circuits and polarity is an emerging scheme in Streptococcus pyogenes pathogenesis. Thus, the contribution of the sensor kinase (CovS) of the global regulatory two-component signal transduction system CovRS on pathogenesis of several M serotypes was investigated.

RESULTS

CovS mutation uniformly repressed capsule expression and hampered keratinocyte adherence in all tested serotypes. However, a serotype- and even strain-dependent contribution on survival in whole human blood and biofilm formation was noted, respectively.

CONCLUSIONS

These data provide new information on the action of the CovS sensor kinase and revealed that its activity on capsule expression and keratinocyte adherence is uniform across serotypes, whereas the influence on biofilm formation and blood survival is serotype or even strain dependent. This adds the CovRS system to a growing list of serotype-specific acting regulatory loci in S. pyogenes.

摘要

背景

化脓性链球菌(A 组链球菌,GAS)的双组分信号转导系统 CovRS 对于该种专性人类细菌的发病机制非常重要。目前尚不清楚该系统是否在所有血清型中都具有独特作用。血清型或菌株依赖性调节回路和极性的存在是化脓性链球菌发病机制中的一个新兴方案。因此,研究了全局调节双组分信号转导系统 CovRS 的传感器激酶(CovS)对几种 M 血清型发病机制的贡献。

结果

CovS 突变均匀地抑制了所有测试血清型的荚膜表达并阻碍了角质形成细胞的黏附。然而,在整个全血和生物膜形成中,分别注意到了与血清型甚至菌株依赖性相关的存活贡献。

结论

这些数据提供了 CovS 传感器激酶作用的新信息,并表明其在荚膜表达和角质形成细胞黏附方面的活性在血清型之间是一致的,而对生物膜形成和血液存活的影响则取决于血清型甚至菌株。这将 CovRS 系统添加到化脓性链球菌中越来越多的血清型特异性作用的调节基因座列表中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3a2/2823723/1f7b390f5361/1471-2180-10-34-1.jpg

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