首页> 美国卫生研究院文献>PLoS Clinical Trials >Role of Pathogenicity Determinant Protein C (PdpC) in Determining the Virulence of the Francisella tularensis Subspecies tularensis SCHU
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Role of Pathogenicity Determinant Protein C (PdpC) in Determining the Virulence of the Francisella tularensis Subspecies tularensis SCHU

机译:致病性决定蛋白C(PdpC)在确定土拉弗朗西斯菌亚种tularensis SCHU的毒力中的作用

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摘要

Francisella tularensis subspecies tularensis, the etiological agent of tularemia, is highly pathogenic to humans and animals. However, the SCHU strain of F. tularensis SCHU P0 maintained by passaging in artificial media has been found to be attenuated. To better understand the molecular mechanisms behind the pathogenicity of F. tularensis SCHU, we attempted to isolate virulent bacteria by serial passages in mice. SCHU P5 obtained after 5th passages in mice remained avirulent, while SCHU P9 obtained after 9th passages was completely virulent in mice. Moreover, SCHU P9 grew more efficiently in J774.1 murine macrophages compared with that in the less pathogenic SCHU P0 and P5. Comparison of the nucleotide sequences of the whole genomes of SCHU P0, P5, and P9 revealed only 1 nucleotide difference among P0, P5 and P9 in 1 of the 2 copies of pathogenicity determinant protein C (pdpC) gene. An adenine residue deletion was observed in the pdpC1 gene of SCHU P0, P5, and P9 and in the pdpC2 gene of SCHU P0, and P5, while P9 was characterized by the wild type pdpC2 gene. Thus, SCHU P0 and P5 expressed only truncated forms of PdpC protein, while SCHU P9 expressed both wild type and truncated versions. To validate the pathogenicity of PdpC, both copies of the pdpC gene in SCHU P9 have been inactivated by Targetron mutagenesis. SCHU P9 mutants with inactivated pdpC gene showed low intracellular growth in J774.1 cells and did not induce severe disease in experimentally infected mice, while virulence of the mutants was restored by complementation with expression of the intact PdpC. These results demonstrate that PdpC is crucial in determining the virulence of F. tularensis SCHU.
机译:土拉弗朗西斯菌Tularensis亚种tularensis是Tularemia的病原体,对人类和动物高度致病。然而,已经发现通过在人工培养基中传代而维持的杜氏镰刀菌SCHU P0的SCHU菌株被减毒。为了更好地了解Tularensis SCHU致病性的分子机制,我们尝试通过在小鼠中连续传代分离出强力细菌。小鼠第5代后获得的SCHU P5仍然无毒,而小鼠第9代后获得的SCHU P9完全无毒。此外,与病原性较低的SCHU P0和P5相比,J774.1鼠巨噬细胞中的SCHU P9更有效地生长。比较SCHU P0,P5和P9整个基因组的核苷酸序列,发现在2份致病性决定蛋白C(pdpC)基因中的1个中,P0,P5和P9仅存在1个核苷酸差异。在SCHU P0,P5和P9的pdpC1基因以及SCHU P0和P5的pdpC2基因中观察到腺嘌呤残基缺失,而P9的特征是野生型pdpC2基因。因此,SCHU P0和P5仅表达PdpC蛋白的截短形式,而SCHU P9则同时表达野生型和截短形式。为了验证PdpC的致病性,已通过Targetron诱变灭活了SCHU P9中pdpC基因的两个拷贝。具有灭活的pdpC基因的SCHU P9突变体在J774.1细胞中显示出低的细胞内生长,并且在实验感染的小鼠中没有引起严重的疾病,而突变体的毒性通过与完整PdpC的表达互补而得以恢复。这些结果表明,PdpC在确定土拉弗朗西斯SCHU的毒力中至关重要。

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