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The Type VI Secretion System Spike Protein VgrG5 Mediates Membrane Fusion during Intercellular Spread by Pseudomallei Group Burkholderia Species

机译:VI型分泌系统穗蛋白VgrG5在Pseudomallei Group Burkholderia种在细胞间传播过程中介导膜融合。

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摘要

Pseudomallei group Burkholderia species are facultative intracellular parasites that spread efficiently from cell to cell by a mechanism involving the fusion of adjacent cell membranes. Intercellular fusion requires the function of the cluster 5 type VI secretion system (T6SS-5) and its associated valine-glycine repeat protein, VgrG5. Here we show that VgrG5 alleles are conserved and functionally interchangeable between Burkholderia pseudomallei and its relatives B. mallei, B. oklahomensis, and B. thailandensis. We also demonstrate that the integrity of the VgrG5 C-terminal domain is required for fusogenic activity, and we identify sequence motifs, including two hydrophobic segments, that are important for fusion. Mutagenesis and secretion experiments using B. pseudomallei strains engineered to express T6SS-5 in vitro show that the VgrG5 C-terminal domain is dispensable for T6SS-mediated secretion of Hcp5, demonstrating that the ability of VgrG5 to mediate membrane fusion can be uncoupled from its essential role in type VI secretion. We propose a model in which a unique fusogenic activity at the C terminus of VgrG5 facilitates intercellular spread by B. pseudomallei and related species following injection across the plasma membranes of infected cells.
机译:假单胞菌伯克霍尔德氏菌属是兼性的细胞内寄生虫,其通过涉及相邻细胞膜融合的机制在细胞之间有效扩散。细胞间融合需要簇5型VI分泌系统(T6SS-5)及其相关的缬氨酸-甘氨酸重复蛋白VgrG5的功能。在这里,我们显示VgrG5等位基因在假伯克霍尔德氏菌及其亲属B. Mallei,B。oklahomensis和B.thailandensis之间是保守的且在功能上可互换。我们还证明了融合活性需要VgrG5 C末端结构域的完整性,并且我们确定了序列基序,包括两个疏水片段,这对于融合很重要。使用工程改造为在体外表达T6SS-5的假芽孢杆菌菌株进行诱变和分泌实验表明,VgrG5 C末端结构域对于T6SS介导的Hcp5分泌是必不可少的,这表明VgrG5介导膜融合的能力可以与其分离。在VI型分泌中起重要作用。我们提出了一个模型,其中在VgrG5的C末端具有独特的融合活性,可促进B. pseudomallei和相关物种跨细胞扩散,然后跨感染细胞的质膜注射。

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