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A组链球菌中的一个磷酸转移酶系统(PTS)EII突变体文库鉴定出一种影响SLS介导溶血的混杂的甘露糖家族PTS转运蛋白。

A PTS EII mutant library in Group A Streptococcus identifies a promiscuous man-family PTS transporter influencing SLS-mediated hemolysis.

作者信息

Sundar Ganesh S, Islam Emrul, Gera Kanika, Le Breton Yoann, McIver Kevin S

机构信息

Department of Cell Biology and Molecular Genetics, Maryland Pathogen Research Institute, University of Maryland, College Park, MD, 20742, USA.

出版信息

Mol Microbiol. 2017 Feb;103(3):518-533. doi: 10.1111/mmi.13573. Epub 2016 Nov 29.

Abstract

The Group A Streptococcus (GAS, Streptococcus pyogenes) is a Gram-positive human pathogen that must adapt to unique host environments in order to survive. Links between sugar metabolism and virulence have been demonstrated in GAS, where mutants in the phosphoenolpyruvate-dependent phosphotransferase system (PTS) exhibited Streptolysin S (SLS)-mediated hemolysis during exponential growth. This early onset hemolysis correlated with an increased lesion size and severity in a murine soft tissue infection model when compared with parental M1T1 MGAS5005. To identify the PTS components responsible for this phenotype, we insertionally inactivated the 14 annotated PTS EIIC-encoding genes in the GAS MGAS5005 genome and subjected this library to metabolic and hemolysis assays to functionally characterize each EIIC. It was found that a few EIIs had a very limited influence on PTS sugar metabolism, whereas others were fairly promiscuous. The mannose-specific EII locus, encoded by manLMN, was expressed as a mannose-inducible operon that exhibited the most influence on PTS sugar metabolism, including mannose. Importantly, components of the mannose-specific EII also acted to prevent the early onset of SLS-mediated hemolysis. Interestingly, these roles were not identical in two different M1T1 GAS strains, highlighting the possible versatility of the PTS to adapt to strain-specific needs.

摘要

A 群链球菌(GAS,化脓性链球菌)是一种革兰氏阳性人类病原体,为了生存必须适应独特的宿主环境。糖代谢与毒力之间的联系已在 A 群链球菌中得到证实,其中磷酸烯醇丙酮酸依赖性磷酸转移酶系统(PTS)的突变体在指数生长期表现出链球菌溶血素 S(SLS)介导的溶血。与亲本 M1T1 MGAS5005 相比,这种早期溶血与小鼠软组织感染模型中病变大小和严重程度的增加相关。为了鉴定导致这种表型的 PTS 成分,我们在 GAS MGAS5005 基因组中插入失活了 14 个注释的 PTS EIIC 编码基因,并对该文库进行代谢和溶血测定,以从功能上表征每个 EIIC。结果发现,一些 EII 对 PTS 糖代谢的影响非常有限,而其他一些则相当混杂。由 manLMN 编码的甘露糖特异性 EII 位点作为甘露糖诱导型操纵子表达,对包括甘露糖在内的 PTS 糖代谢影响最大。重要的是,甘露糖特异性 EII 的成分也起到了防止 SLS 介导的溶血早期发生的作用。有趣的是,这些作用在两种不同的 M1T1 GAS 菌株中并不相同,这突出了 PTS 适应菌株特异性需求的可能的多功能性。

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