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首页> 外文期刊>The Journal of biological chemistry >A Natural Inactivating Mutation in the CovS Component of the CovRS Regulatory Operon in a Pattern D Streptococcal pyogenes Strain Influences Virulence-associated Genes
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A Natural Inactivating Mutation in the CovS Component of the CovRS Regulatory Operon in a Pattern D Streptococcal pyogenes Strain Influences Virulence-associated Genes

机译:CoVRS调节型术语中COVS组分中的天然灭活突变在图案D链球菌韧带菌株中应变影响毒力相关基因

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A skin-tropic invasive group A Streptococcus pyogenes (GAS) strain, AP53, contains a natural inactivating mutation in the covS gene (covSM) of the two-component responder (CovR)/sensor (CovS) gene regulatory system. The effects of this mutation on specific GAS virulence determinants have been assessed, with emphasis on expression of the extracellular protease, streptococcal pyrogenic exotoxin B (SpeB), capsular hyaluronic acid, and proteins that allow host plasmin assembly on the bacterial surface, viz. a high affinity plasminogen (Pg)/plasmin receptor, Pg-binding group A streptococcal M protein (PAM), and the human Pg activator streptokinase. To further illuminate mechanisms of the functioning of CovRS in the virulence of AP53, two AP53 isogenic strains were generated, one in which the natural covSM gene was mutated to WT-covS (AP53/covSWT) and a strain that contained an inactivated covR gene (AP53/ΔcovR). Two additional strains that do not contain PAM, viz. WT-NS931 and NS931/covSM, were also employed. SpeB was not measurably expressed in strains containing covRWT/covSM, whereas in strains with natural or engineered covRWT/covSWT, SpeB expression was highly up-regulated. Alternatively, capsule synthesis via the hasABC operon was enhanced in strain AP53/covSM, whereas streptokinase expression was only slightly affected by the covS inactivation. PAM expression was not substantially influenced by the covS mutation, suggesting that covRS had minimal effects on the mga regulon that controls PAM expression. These results demonstrate that a covS inactivation results in virulence gene alterations and also suggest that the CovR phosphorylation needed for gene up- or down-regulation can occur by alternative pathways to CovS kinase.
机译:皮肤热带侵袭性组链球菌(气体)菌株AP53含有双组分响应者/传感器(COVS)基因调节系统的COVS基因(CoVSM)中的天然灭活突变。已经评估了这种突变对特异性气体毒力决定簇的影响,重点是细胞外蛋白酶,链球菌热原外菜蛋白B(SPEB),荚膜透明质酸和蛋白质的表达,使饲养血浆组件在细菌表面上,viz。高亲和力纤溶酶原(PG)/纤溶酶受体,PG结合基团是链球菌M蛋白(PAM)和人PG活化剂链激酶。为了进一步照亮CoVR在AP53的毒力中的功能的机制,产生了两种AP53中源菌株,其中天然CoVSM基因突变为WT-COV(AP53 / CoVS)和含有灭活CoVR基因的菌株( AP53 /ΔCovr)。两个不包含PAM,VIZ的额外菌株。 WT-NS931和NS931 / COVSM也被使用。 SPEB未在含CoVRWT / CoVSM的菌株中可测量地表达,而在具有天然或工程的CoVRWT / CoVSwt的菌株中,SpeB表达被高度上调。或者,通过HasaBC操纵子的胶囊合成在菌株AP53 / CoVSM中增强,而链孢菌酶表达仅受COVS灭活的略微影响。 PAM表达基本上没有受COVS突变的影响,表明CoVR对控制PAM表达的MGA调节件具有最小的影响。这些结果表明,COVS灭活导致毒力基因改变,并且还表明基因所需的CoVR磷酸化可以通过对COVS激酶的替代途径发生。

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