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The molecular mechanism of Zinc acquisition by the neisserial outer-membrane transporter ZnuD

机译:奈瑟氏菌外膜转运蛋白ZnuD获取锌的分子机理

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摘要

Invading bacteria from the Neisseriaceae, Acinetobacteriaceae, Bordetellaceae and Moraxellaceae families express the conserved outer-membrane zinc transporter zinc-uptake component D (ZnuD) to overcome nutritional restriction imposed by the host organism during infection. Here we demonstrate that ZnuD is required for efficient systemic infections by the causative agent of bacterial meningitis, Neisseria meningitidis, in a mouse model. We also combine X-ray crystallography and molecular dynamics simulations to gain insight into the mechanism of zinc recognition and transport across the bacterial outer-membrane by ZnuD. Because ZnuD is also considered a promising vaccine candidate against N. meningitidis, we use several ZnuD structural intermediates to map potential antigenic epitopes, and propose a mechanism by which ZnuD can maintain high sequence conservation yet avoid immune recognition by altering the conformation of surface-exposed loops.
机译:来自奈瑟氏菌,不动杆菌科,鲍氏藻科和莫拉氏菌科的入侵细菌表达保守的外膜锌转运蛋白锌吸收组分D(ZnuD),以克服宿主生物体在感染过程中施加的营养限制。在这里,我们证明了ZnuD是细菌性脑膜炎的致病因子脑膜炎奈瑟氏菌在小鼠模型中有效的全身感染所必需的。我们还将X射线晶体学和分子动力学模拟相结合,以深入了解锌的识别机制以及ZnuD跨细菌外膜的转运机制。因为ZnuD也被认为是针对脑膜炎奈瑟氏球菌的有前途的疫苗候选者,所以我们使用了几种ZnuD结构中间体来定位潜在的抗原表位,并提出了一种机制,通过该机制ZnuD可以保持高序列保守性,但通过改变表面暴露的构象避免免疫识别循环。

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