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Structural Variations within the Transferrin Binding Site on Transferrin-binding Protein B TbpB

机译:在转铁蛋白结合蛋白BTbpB上的转铁蛋白结合位点内的结构变异

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摘要

Pathogenic bacteria acquire the essential element iron through specialized uptake pathways that are necessary in the iron-limiting environments of the host. Members of the Gram-negative Neisseriaceae and Pasteurellaceae families have adapted to acquire iron from the host iron binding glycoprotein, transferrin (Tf), through a receptor complex comprised of transferring-binding protein (Tbp) A and B. Because of the critical role they play in the host, these surface-exposed proteins are invariably present in clinical isolates and thus are considered prime vaccine targets. The specific interactions between TbpB and Tf are essential and ultimately might be exploited to create a broad-spectrum vaccine. In this study, we report the structure of TbpBs from two porcine pathogens, Actinobacillus pleuropneumoniae and suis. Paradoxically, despite a common Tf target, these swine related TbpBs show substantial sequence variation in their Tf-binding site. The TbpB structures, supported by docking simulations, surface plasmon resonance and hydrogen/deuterium exchange experiments with wild-type and mutant TbpBs, explain why there are structurally conserved elements within TbpB homologs despite major sequence variation that are required for binding Tf.
机译:病原细菌通过宿主铁限制环境中必需的专门摄取途径获取必需元素铁。革兰氏阴性奈瑟菌科和巴斯德杆菌科的成员已经适应通过包含转运结合蛋白(Tbp)A和B的受体复合物从宿主铁结合糖蛋白转铁蛋白(Tf)中获取铁。由于它们的关键作用,它们在宿主中,这些表面暴露的蛋白质始终存在于临床分离物中,因此被认为是主要的疫苗靶标。 TbpB和Tf之间的特定相互作用是必不可少的,最终可能会被利用来创建广谱疫苗。在这项研究中,我们报告了两种猪病原体胸膜肺炎放线杆菌和猪的TbpBs的结构。矛盾的是,尽管有共同的Tf靶标,但这些与猪相关的TbpBs在其Tf结合位点上显示出明显的序列变异。 TbpB结构得到对接模拟,表面等离振子共振以及野生型和突变型TbpBs的氢/氘交换实验的支持,这说明了尽管绑定Tf所需的主要序列变异,但TbpB同源物中仍存在结构保守的元素。

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