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鉴定咽峡炎链球菌中的β-溶血素编码基因。

Identification of β-haemolysin-encoding genes in Streptococcus anginosus.

机构信息

Institute of Medical Microbiology and Hospital Hygiene, University of Ulm, Ulm, Germany.

出版信息

Mol Oral Microbiol. 2013 Aug;28(4):302-15. doi: 10.1111/omi.12026. Epub 2013 Apr 18.

Abstract

Streptococcus anginosus is an emerging pathogen, but little is known about its virulence factors. To detect the genes responsible for β-haemolysis we performed genomic mutagenesis of the β-haemolytic S. anginosus type strain ATCC 12395 using the vector pGhost9:ISS1. Integration site analysis of 15 non-haemolytic mutants identified a gene cluster with high homology to the genes of the streptolysin S (SLS) encoding sag gene cluster of S. pyogenes. The gene cluster harbours 10 open reading frames displaying significant similarities to the S. pyogenes genes sagA-sagI, with the identities on protein level ranging from 38 to 87%. Complementation assays of S. anginosus sagB and sagD integration mutants with the respective genes confirmed their importance for β-haemolysin production and suggest the presence of post-translational modifications in S. anginosus SLS similar to SLS of S. pyogenes. Characterization of the S. anginosus haemolysin in comparison to the S. pyogenes SLS showed that the haemolysin is surface bound, but in contrast to S. pyogenes neither fetal calf serum nor RNA was able to stabilize the haemolysin of S. anginosus in culture supernatants. Inhibition of β-haemolysis by polyethylene glycol of different sizes was carried out, giving no evidence of a pore-forming haemolytic mechanism. Analysis of a whole genome shotgun sequence of Streptococcus constellatus, a closely related streptococcal species that belongs to the S. anginosus group, revealed a similar sag gene cluster. Employing a genomic mutagenesis strategy we were able to determine an SLS encoding gene cluster in S. anginosus and demonstrate its importance for β-haemolysin production in S. anginosus.

摘要

咽峡炎链球菌是一种新兴的病原体,但人们对其毒力因子知之甚少。为了检测与β-溶血有关的基因,我们使用质粒 pGhost9:ISS1 对β-溶血的咽峡炎链球菌标准株 ATCC 12395 进行了基因组诱变。对 15 个非溶血突变体的整合位点分析,确定了一个与化脓性链球菌 SLS 编码 sag 基因簇具有高度同源性的基因簇。该基因簇包含 10 个开放阅读框,与化脓性链球菌的 sagA-sagI 基因具有显著相似性,在蛋白质水平上的同一性为 38%至 87%。通过与相应基因互补实验,证实了咽峡炎链球菌 sagB 和 sagD 整合突变体在β-溶血产生中的重要性,并提示了咽峡炎链球菌 SLS 中存在类似于化脓性链球菌 SLS 的翻译后修饰。与化脓性链球菌 SLS 相比,对咽峡炎链球菌溶血素的特征分析表明,该溶血素是表面结合的,但与化脓性链球菌不同,胎牛血清和 RNA 均不能稳定咽峡炎链球菌培养上清液中的溶血素。对不同大小的聚乙二醇进行了抑制β-溶血实验,没有证据表明存在形成孔的溶血机制。对密切相关的链球菌种星座链球菌的全基因组测序分析表明,存在类似的 sag 基因簇。我们采用基因组诱变策略,确定了咽峡炎链球菌中编码 SLS 的基因簇,并证明了其在咽峡炎链球菌β-溶血产生中的重要性。

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