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Burkholderia pseudomallei BimC Is Required for Actin-Based Motility Intracellular Survival and Virulence

机译:基于肌动蛋白的动力细胞内存活和毒力需要伯克霍尔德菌假mallei BimC

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摘要

The intracellular pathogen Burkholderia pseudomallei, the etiological agent of melioidosis in humans and various animals, is capable of survival and movement within the cytoplasm of host cells by a process known as actin-based motility. The bacterial factor BimA is required for actin-based motility through its direct interaction with actin, and by mediating actin polymerization at a single pole of the bacterium to promote movement both within and between cells. However, little is known about the other bacterial proteins required for this process. Here, we have investigated the role of the bimC gene (bpss1491) which lies immediately upstream of the bimA gene (bpss1492) on the B. pseudomallei chromosome 2. Conserved amongst all B. pseudomallei, B. mallei and B. thailandensis strains sequenced to date, this gene encodes an iron-binding protein with homology to a group of proteins known as the bacterial autotransporter heptosyltransferase (BAHT) family. We have constructed a B. pseudomallei bimC deletion mutant and demonstrate that it is defective in intracellular survival in HeLa cells, but not in J774.1 macrophage-like cells. The bimC mutant is defective in cell to cell spread as demonstrated by ablation of plaque formation in HeLa cells, and by the inability to form multi-nucleated giant cells in J774.1 cells. These phenotypes in intracellular survival and cell to cell spread are not due to the loss of expression and polar localization of the BimA protein on the surface of intracellular bacteria, however they do correlate with an inability of the bacteria to recruit and polymerize actin. Furthermore, we also establish a role for bimC in virulence of B. pseudomallei using a Galleria mellonella larvae model of infection. Taken together, our findings indicate that B. pseudomallei BimC plays an important role in intracellular behavior and virulence of this emerging pathogen.
机译:细胞内病原体假人伯克霍尔德氏菌是人类和各种动物类瘤病的病原体,能够通过基于肌动蛋白的运动性在宿主细胞的细胞质内存活和移动。细菌因子BimA通过其与肌动蛋白的直接相互作用,并通过在细菌的单极介导肌动蛋白聚合以促进细胞内和细胞间的运动,而为基于肌动蛋白的运动所必需。但是,对该过程所需的其他细菌蛋白知之甚少。在这里,我们研究了bimC基因(bpss1491)的作用,该基因位于B. pseudomallei染色体2上bimA基因(bpss1492)的紧邻上游。在所有测序到迄今为止,该基因编码的铁结合蛋白与一组称为细菌自转运体庚糖基转移酶(BAHT)家族的蛋白具有同源性。我们已经构建了一个假单胞菌bimC缺失突变体,并证明它在HeLa细胞的细胞内存活中有缺陷,但在J774.1巨噬细胞样细胞中却没有。如消融HeLa细胞中斑块形成以及无法在J774.1细胞中形成多核巨细胞所证明的那样,bimC突变体在细胞间扩散中存在缺陷。这些细胞内存活和细胞间扩散的表型不是由于BimA蛋白在细胞内细菌表面的表达损失和极性定位所致,但它们确实与细菌无法募集和聚合肌动蛋白有关。此外,我们还建立了使用感染Galleria mellonella幼虫模型的bimC在假苹果芽孢杆菌毒力中的作用。综上所述,我们的发现表明假单胞菌BimC在这种新兴病原体的细胞内行为和毒力中起重要作用。

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