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首页> 外文期刊>PLoS Pathogens >Burkholderia Type VI Secretion Systems Have Distinct Roles in Eukaryotic and Bacterial Cell Interactions
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Burkholderia Type VI Secretion Systems Have Distinct Roles in Eukaryotic and Bacterial Cell Interactions

机译:伯克霍尔德氏菌VI型分泌系统在真核和细菌细胞相互作用中具有不同的作用

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Bacteria that live in the environment have evolved pathways specialized to defend against eukaryotic organisms or other bacteria. In this manuscript, we systematically examined the role of the five type VI secretion systems (T6SSs) of Burkholderia thailandensis (B. thai) in eukaryotic and bacterial cell interactions. Consistent with phylogenetic analyses comparing the distribution of the B. thai T6SSs with well-characterized bacterial and eukaryotic cell-targeting T6SSs, we found that T6SS-5 plays a critical role in the virulence of the organism in a murine melioidosis model, while a strain lacking the other four T6SSs remained as virulent as the wild-type. The function of T6SS-5 appeared to be specialized to the host and not related to an in vivo growth defect, as ΔT6SS-5 was fully virulent in mice lacking MyD88. Next we probed the role of the five systems in interbacterial interactions. From a group of 31 diverse bacteria, we identified several organisms that competed less effectively against wild-type B. thai than a strain lacking T6SS-1 function. Inactivation of T6SS-1 renders B. thai greatly more susceptible to cell contact-induced stasis by Pseudomonas putida, Pseudomonas fluorescens and Serratia proteamaculans—leaving it 100- to 1000-fold less fit than the wild-type in competition experiments with these organisms. Flow cell biofilm assays showed that T6S-dependent interbacterial interactions are likely relevant in the environment. B. thai cells lacking T6SS-1 were rapidly displaced in mixed biofilms with P. putida, whereas wild-type cells persisted and overran the competitor. Our data show that T6SSs within a single organism can have distinct functions in eukaryotic versus bacterial cell interactions. These systems are likely to be a decisive factor in the survival of bacterial cells of one species in intimate association with those of another, such as in polymicrobial communities present both in the environment and in many infections.
机译:生活在环境中的细菌已经进化出专门防御真核生物或其他细菌的途径。在这份手稿中,我们系统地检查了泰国伯克霍尔德氏菌(B. thai)的五个VI型分泌系统(T6SSs)在真核和细菌细胞相互作用中的作用。与系统进化分析相一致,泰国B.T6SSs与特征明确的靶向细菌和真核细胞的T6SSs的分布相比较,我们发现T6SS-5在鼠类弧菌病模型中对微生物的毒力起着关键作用,而一株缺少其他四个T6SS的毒性仍然与野生型相同。 T6SS-5的功能似乎专门针对宿主,与体内生长缺陷无关,因为ΔT6SS-5在缺乏MyD88的小鼠中具有完全毒性。接下来,我们探讨了这五个系统在细菌相互作用中的作用。从一组31种不同的细菌中,我们鉴定出了几种生物,它们与缺乏T6SS-1功能的菌株相比,对野生型泰国白菜的竞争较弱。 T6SS-1的失活使泰国假单胞菌更容易受到恶臭假单胞菌,荧光假单胞菌和粘质沙雷氏菌的细胞接触诱导的停滞,在与这些生物的竞争实验中,其适应性比野生型低100-1000倍。流式细胞生物膜测定表明,T6S依赖性细菌间相互作用可能与环境有关。缺乏T6SS-1的泰国芽孢杆菌细胞在与恶臭假单胞菌的混合生物膜中迅速移位,而野生型细胞持续存在并压倒了竞争者。我们的数据表明,单一生物体内的T6SS在真核与细菌细胞相互作用中可以具有不同的功能。这些系统可能是一个物种的细菌细胞与另一个物种的细菌细胞密切相关的决定性因素,例如在环境和许多感染中都存在的微生物群落中。

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