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Structural characterisation of the virulence-associated protein VapG from the horse pathogen Rhodococcus equi

机译:马病原体红球菌的毒力相关蛋白VapG的结构表征

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摘要

Virulence and host range in Rhodococcus equi depends on the variable pathogenicity island of their virulence plasmids. Notable gene products are a family of small secreted virulence-associated proteins (Vaps) that are critical to intramacrophagic proliferation. Equine-adapted strains, which cause severe pyogranulomatous pneumonia in foals, produce a cell-associated VapA that is necessary for virulence, alongside five other secreted homologues. In the absence of biochemical insight, attention has turned to the structures of these proteins to develop a functional hypothesis. Recent studies have described crystal structures for VapD and a truncate of the VapA orthologue of porcine-adapted strains, VapB. Here, we crystallised the full-length VapG and determined its structure by molecular replacement. Electron density corresponding to the N-terminal domain was not visible suggesting that it is disordered. The protein core adopted a compact elliptical, anti-parallel β-barrel fold with β1–β2–β3–β8–β5–β6–β7–β4 topology decorated by a single peripheral α-helix unique to this family. The high glycine content of the protein allows close packing of secondary structural elements. Topologically, the surface has no indentations that indicate a nexus for molecular interactions. The distribution of polar and apolar groups on the surface of VapG is markedly uneven. One-third of the surface is dominated by exposed apolar side-chains, with no ionisable and only four polar side-chains exposed, giving rise to an expansive flat hydrophobic surface. Other surface regions are more polar, especially on or near the α-helix and a belt around the centre of the β-barrel. Possible functional significance of these recent structures is discussed.
机译:马红球菌的毒力和宿主范围取决于其毒力质粒的可变致病岛。值得注意的基因产物是一类小分泌的毒力相关蛋白(Vap),对宏吞噬细胞的增殖至关重要。适应马的菌株在小马驹中引起严重的脓性肉芽肿性肺炎,与其他五种分泌的同源物一起,产生了与细胞毒性相关的VapA,这对毒力是必需的。在没有生物化学见解的情况下,注意力已经转向这些蛋白质的结构以发展功能假设。最近的研究描述了VapD的晶体结构和猪适应株VapB的VapA直向同源物的截短。在这里,我们结晶了全长VapG,并通过分子置换确定了其结构。对应于N末端结构域的电子密度不可见,表明它是无序的。蛋白核心采用紧凑的椭圆形,反平行的β-桶状折叠,具有由该家族独特的单个外围α-螺旋修饰的β1-β2-β3-β8-β5-β6-β6-β7-β4拓扑。蛋白质的甘氨酸含量高,可以使二级结构元件紧密堆积。在拓扑上,该表面没有凹痕,该凹痕指示分子相互作用的联系。 VapG表面上极性和非极性基团的分布明显不均匀。表面的三分之一由暴露的非极性侧链控制,没有可电离的离子,只有四个极性的侧链暴露,从而产生了膨胀的平坦疏水表面。其他表面区域则更具极性,尤其是在α螺旋上或附近以及围绕β桶中心的皮带上。讨论了这些最新结构的可能功能意义。

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