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Burkholderia mallei Cluster 1 Type VI Secretion Mutants Exhibit Growth and Actin Polymerization Defects in RAW 264.7 Murine Macrophages▿

机译:伯克霍尔德菌簇1型VI分泌突变体在RAW 264.7小鼠巨噬细胞中表现出生长和肌动蛋白聚合缺陷▿

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摘要

Burkholderia mallei is a facultative intracellular pathogen that causes severe disease in animals and humans. Recent studies have shown that the cluster 1 type VI secretion system (T6SS-1) expressed by this organism is essential for survival in a hamster model of glanders. To better understand the role of T6SS-1 in the pathogenesis of disease, studies were initiated to examine the interactions of B. mallei tssE mutants with RAW 264.7 murine macrophages. Results obtained by utilizing modified gentamicin protection assays indicated that although the tssE mutants were able to survive within RAW 264.7 cells, significant growth defects were observed in comparison to controls. In addition, analysis of infected monolayers by differential interference contrast and fluorescence microscopy demonstrated that the tssE mutants lacked the ability to induce multinucleated giant cell formation. Via the use of fluorescence microscopy, tssE mutants were shown to undergo escape from lysosome-associated membrane protein 1-positive vacuoles. Curiously, however, following entry into the cytosol, the mutants exhibited actin polymerization defects resulting in inefficient intra- and intercellular spread characteristics. Importantly, all mutant phenotypes observed in this study could be restored by complementation. Based upon these findings, it appears that T6SS-1 plays a critical role in growth and actin-based motility following uptake of B. mallei by RAW 264.7 cells.
机译:伯克霍尔德氏菌是一种兼性的细胞内病原体,可导致动物和人类严重疾病。最近的研究表明,由这种生物体表达的簇1型VI分泌系统(T6SS-1)对于在腺体的仓鼠模型中生存至关重要。为了更好地了解T6SS-1在疾病发病机理中的作用,开始了研究以检查B. Mallei tssE突变体与RAW 264.7鼠巨噬细胞的相互作用。利用改良的庆大霉素保护试验获得的结果表明,尽管tssE突变体能够在RAW 264.7细胞内存活,但与对照相比,观察到了明显的生长缺陷。此外,通过差分干涉对比和荧光显微镜对感染的单分子膜的分析表明,tssE突变体缺乏诱导多核巨细胞形成的能力。通过使用荧光显微镜,tssE突变体显示从溶酶体相关的膜蛋白1阳性液泡中逃逸。然而,奇怪的是,进入细胞质后,突变体表现出肌动蛋白聚合缺陷,导致无效的细胞内和细胞间扩散特性。重要的是,本研究中观察到的所有突变表型都可以通过互补来恢复。基于这些发现,似乎在RAW 264.7细胞摄取马来芽孢杆菌后,T6SS-1在生长和基于肌动蛋白的运动中起关键作用。

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