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首页> 外文期刊>Infection and immunity >The Brucella abortus Phosphoglycerate Kinase Mutant Is Highly Attenuated and Induces Protection Superior to That of Vaccine Strain 19 in Immunocompromised and Immunocompetent Mice
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The Brucella abortus Phosphoglycerate Kinase Mutant Is Highly Attenuated and Induces Protection Superior to That of Vaccine Strain 19 in Immunocompromised and Immunocompetent Mice

机译:在免疫力低下和免疫能力强的小鼠中,布鲁氏菌流产磷酸甘油酸激酶突变体被高度减弱,并诱导出优于疫苗株19的保护作用。

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Brucella abortus is a facultative intracellular bacterial pathogen that causes abortion in domestic animals and undulant fever in humans. The mechanism of virulence of Brucella spp. is not yet fully understood. Therefore, it is crucial to identify new molecules that can function as virulence factors to better understand the host-pathogen interplay. Herein, we identified the gene encoding the phosphoglycerate kinase (PGK) of B. abortus strain 2308. To test the role of PGK in Brucella pathogenesis, a pgk deletion mutant was constructed. Replacement of the wild-type pgk by recombination was demonstrated by Southern and Western blot analyses. The B. abortus Δpgk mutant strain exhibited extreme attenuation in bone marrow-derived macrophages and in vivo in BALB/c, C57BL/6, 129/Sv, and interferon regulatory factor-1 knockout (IRF-1 KO) mice. Additionally, at 24 h postinfection the Δpgk mutant was not found within the same endoplasmic reticulum-derived compartment as the wild-type bacteria, but, instead, over 60% of Brucella-containing vacuoles (BCVs) retained the late endosomal/lysosomal marker LAMP1. Furthermore, the B. abortus Δpgk deletion mutant was used as a live vaccine. Challenge experiments revealed that the Δpgk mutant strain induced protective immunity in 129/Sv or IRF-1 KO mice that was superior to the protection conferred by commercial strain 19 or RB51. Finally, the results shown here demonstrated that Brucella PGK is critical for full bacterial virulence and that a Δpgk mutant may serve as a potential vaccine candidate in future studies.
机译:流产布鲁氏菌是一种兼性的细胞内细菌病原体,可导致家畜流产和人类过度发热。布鲁氏菌属的毒力机制。尚未完全了解。因此,至关重要的是要鉴定出可以用作毒力因子的新分子,以更好地了解宿主与病原体之间的相互作用。在这里,我们确定了编码流产双歧杆菌菌株2308的磷酸甘油酸激酶(PGK)的基因。为了测试PGK在布鲁氏菌发病机理中的作用,构建了一个pgk缺失突变体。 Southern和Western印迹分析证实了通过重组置换野生型pgk。流产芽孢杆菌Δpgk突变株在骨髓来源的巨噬细胞中和在BALB / c,C57BL / 6、129 / Sv和干扰素调节因子-1敲除(IRF-1 KO)小鼠体内表现出极大的衰减。另外,在感染后24小时,在与野生型细菌相同的内质网衍生的区室中未发现Δpgk突变体,但是,超过60%的含布鲁氏菌的液泡(BCV)保留了晚期的内体/溶酶体标记灯1。此外,流产芽孢杆菌Δpgk缺失突变体被用作活疫苗。挑战实验显示,Δpgk突变株在129 / Sv或IRF-1 KO小鼠中诱导的保护性免疫优于商业株19或RB51赋予的保护性。最后,此处显示的结果表明,布鲁氏菌PGK对于完全细菌毒力至关重要,并且Δpgk突变体可能在未来的研究中充当潜在的疫苗候选者。

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