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首页> 外文期刊>FEMS Microbiology Letters >ThetypeIVsecretionsystemaiectsthe expressionofOmp25/Omp31 and the outermembrane properties ofBrucellamelitensis
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ThetypeIVsecretionsystemaiectsthe expressionofOmp25/Omp31 and the outermembrane properties ofBrucellamelitensis

机译:IV型分泌系统影响布鲁氏菌布鲁氏菌Omp25 / Omp31的表达和外膜特性

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摘要

The type IV secretion system (T4SS) contributes to Brucella intracellular survival through its effector proteins. Comparative proteomic analysis showed that intracellular survival proteins are expressed differentially in a virB mutant. Interestingly, several outer membrane proteins (OMPs) are also differentially expressed, implying that T4SS might affect the OM properties of Brucella. To further evaluate the impact of T4SS on OM, in the present study, the OM proteomes were isolated and compared. Many more products of OMPs, particularly different products of the Omp25/Omp31 family, were found to be altered in the virB mutant. The transcription profiles of Omp25/Omp31 were different from those of their protein products, implying their regulation by virB at both transcriptional and post-transcriptional levels. The virB mutant aggregates at a high cell density and produces exopolysaccharide, a phenotype resembling that of the vjbR mutant. The virB mutant showed increased sensitivity to polymyxin B and decreased survival under oxidative, high-salt and high-osmolarity stresses, indicating drastic membrane alterations. These results indicated that in addition to being an effector protein secretion system, T4SS affects OMproperties that might be important for the adaptation of Brucella to both in vitro and in vivo hostile environments.
机译:IV型分泌系统(T4SS)通过其效应蛋白有助于布鲁氏菌细胞内存活。比较蛋白质组学分析表明,细胞内生存蛋白在virB突变体中差异表达。有趣的是,几种外膜蛋白(OMP)也被差异表达,这暗示T4SS可能会影响布鲁氏菌的OM特性。为了进一步评估T4SS对OM的影响,在本研究中,分离并比较了OM蛋白质组。发现更多的OMP产品,特别是Omp25 / Omp31家族的不同产品在virB突变体中发生了改变。 Omp25 / Omp31的转录谱不同于其蛋白质产物,表明它们在转录和转录后水平上均受virB调控。 virB突变体以高细胞密度聚集并产生胞外多糖,其表型类似于vjbR突变体的表型。 virB突变体显示出对多粘菌素B的敏感性增加,在氧化,高盐和高渗透压胁迫下的存活率降低,表明膜发生了剧烈变化。这些结果表明,T4SS除了是一种效应蛋白分泌系统外,还影响OM特性,这对于布鲁氏菌适应体外和体内敌对环境都可能很重要。

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