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MapB, the Brucella suis TamB homologue, is involved in cell envelope biogenesis, cell division and virulence

机译:Mapb,Brucella suis Tamb同源物,参与细胞包膜生物发生,细胞分裂和毒力

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Brucella species are Gram-negative, facultative intracellular pathogens responsible for a worldwide zoonosis. The envelope of Brucella exhibits unique characteristics that make these bacteria furtive pathogens and resistant to several host defence compounds. We have identified a Brucella suis gene (mapB) that appeared to be crucial for cell envelope integrity. Indeed, the typical resistance of Brucella to both lysozyme and the cationic lipopeptide polymyxin B was markedly reduced in a ?mapB mutant. MapB turned out to represent a TamB orthologue. This last protein, together with TamA, a protein belonging to the Omp85 family, form a complex that has been proposed to participate in the translocation of autotransporter proteins across the outer membrane (OM). Accordingly, we observed that MapB is required for proper assembly of an autotransporter adhesin in the OM, as most of the autotransporter accumulated in the mutant cell periplasm. Both assessment of the relative amounts of other specific outer membrane proteins (OMPs) and a proteome approach indicated that the absence of MapB did not lead to an extensive alteration in OMP abundance, but to a reduction in the relative amounts of a protein subset, including proteins from the Omp25/31 family. Electron microscopy revealed that ?mapB cells exhibit multiple anomalies in cell morphology, indicating that the absence of the TamB homologue in B. suis severely affects cell division. Finally, ?mapB cells were impaired in macrophage infection and showed an attenuated virulence phenotype in the mouse model. Collectively, our results indicate that the role of B. suis TamB homologue is not restricted to participating in the translocation of autotransporters across the OM but that it is essential for OM stability and protein composition and that it is involved in cell envelope biogenesis, a process that is inherently coordinated with cell division.
机译:布鲁氏菌种是革兰氏阴性的,兼性细胞内病原体,负责全球的动物病。布鲁氏菌的封套表现出独特的特征,使这些细菌偷偷摸摸的病原体和耐几种宿主防御化合物。我们鉴定了一种似乎对细胞包络完整性至关重要的布鲁氏菌Suis基因(MAPB)。实际上,Brucella至溶菌酶和阳离子脂肽多粘蛋白B的典型抗性在αMapb突变体中显着降低。 MAPB原来代表一个TAMP ORTOTHOLOGUE。该最后蛋白质与TAMA一起属于OMP85家族的蛋白质,形成了一种复杂,已经提出参与外膜(OM)的自耦积水蛋白的易位。因此,我们观察到MAPB需要在OM中适当地组装自输聚体粘附素,因为大多数在突变细胞周质中积聚的自耦体供电者。对其他特异性外膜蛋白(OMP)和蛋白质组方法的相对量的评估表明,MAPB的不存在不会导致对OMP丰度的广泛改变,而是降低蛋白质子集的相对量,包括来自OMP25 / 31家族的蛋白质。电子显微镜揭示了吗?MAPB细胞在细胞形态中表现出多种异常,表明B. Suis在B. Suis的缺失严重影响细胞分裂。最后,在巨噬细胞感染中,MAPB细胞受到损害,并在小鼠模型中显示了衰减的毒力表型。统称,我们的结果表明B. Suis Tamb同源物的作用不限于参与OM的AmOtransporters的易位,但对于OM稳定性和蛋白质组成至关重要,并且它参与细胞包络生物发生,方法是必不可少的本质上与细胞分裂协调。

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