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首页> 外文期刊>PLoS One >Manipulating the type VI secretion system spike to shuttle passenger proteins
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Manipulating the type VI secretion system spike to shuttle passenger proteins

机译:操纵VI型分泌系统Spike到梭式乘客蛋白

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The type VI secretion system (T6SS) is a contractile injection apparatus that translocates a spike loaded with various effectors directly into eukaryotic or prokaryotic target cells. Pseudomonas aeruginosa can load either one of its three T6SSs with a variety of toxic bullets using different but specific modes. The T6SS spike, which punctures the bacterial cell envelope allowing effector transport, consists of a torch-like VgrG trimer on which sits a PAAR protein sharpening the VgrG tip. VgrG itself sits on the Hcp tube and all elements, packed into a T6SS sheath, are propelled out of the cell and into target cells. On occasion, effectors are covalent extensions of VgrG, PAAR or Hcp proteins, which are then coined “evolved” components as opposed to canonical. Here, we show how various passenger domains could be fused to the C terminus of a canonical VgrG, VgrG1a from P . aeruginosa , and be sent into the bacterial culture supernatant. There is no restriction on the passenger type, although the efficacy may vary greatly, since we used either an unrelated T6SS protein, β-lactamase, a covalent extension of an “evolved” VgrG, VgrG2b, or a Hcp-dependent T6SS toxin, Tse2. Our data further highlights an exceptional modularity/flexibility for loading the T6SS nano-weapon. Refining the parameters to optimize delivery of passenger proteins of interest would have attractive medical and industrial applications. This may for example involve engineering the T6SS as a delivery system to shuttle toxins into either bacterial pathogens or tumour cells which would be an original approach in the fight against antimicrobial resistant bacteria or cancer.
机译:VI型分泌系统(T6SS)是一种收缩注射装置,其易于将各种效应器的尖峰转向真核或原核靶细胞。假单胞菌铜绿假单胞院可以使用不同但具体模式装载其三个T6SS中的一个三个T6SS中的一个。穿刺允许效应传输的细菌细胞包络的T6SS尖峰由割炬类似的vgrg三聚体组成,该三聚体坐在锐化vgrg尖端的Paar蛋白质。 VGRG本身位于HCP管中,并将所有元件包装在T6SS护套中,被推出从细胞中并进入靶细胞。有时,效应器是VGRG,PAAR或HCP蛋白的共价延伸,然后将其与规范相反的“进化”组分。在这里,我们展示了各种乘客域如何融合到规范vGRG的C末端,VGRG1A来自p。铜绿假单胞菌,并被送入细菌培养上清液中。乘客型没有限制,尽管疗效可能变化很大,因为我们使用不相关的T6SS蛋白,β-内酰胺酶,“进化”vGRG,VGRG2B或HCP依赖性T6SS毒素,TSE2的无关延伸。 。我们的数据还突出了加载T6SS纳米武器的特殊模块化/灵活性。优化兴趣乘用蛋白的交付的参数将具有吸引力的医疗和工业应用。例如,这可能涉及将T6S作为输送系统,以将毒素穿梭于细菌病原体或肿瘤细胞中,这将是对抗抗菌药物或癌症的原始方法。

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