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Heterogeneous nucleation is required for crystallization of the ZnuA domain of pneumococcal AdcA

机译:肺炎球菌AdcA的ZnuA结构域结晶需要异相成核

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摘要

Zn2+ is an essential nutrient for all known forms of life. In the major human pathogen Streptococcus pneumoniae, the acquisition of Zn2+ is facilitated by two Zn2+-specific solute-binding proteins: AdcA and AdcAII. To date, there has been a paucity of structural information on AdcA, which has hindered a deeper understanding of the mechanism underlying pneumococcal Zn2+ acquisition. Native AdcA consists of two domains: an N-terminal ZnuA domain and a C-terminal ZinT domain. In this study, the ZnuA domain of AdcA was crystallized. The initial crystals of the ZnuA-domain protein were obtained using dried seaweed as a heterogeneous nucleating agent. No crystals were obtained in the absence of the heterogeneous nucleating agent. These initial crystals were subsequently used as seeds to produce diffraction-quality crystals. The crystals diffracted to 2.03 angstrom resolution and had the symmetry of space group P1. This study demonstrates the utility of heterogeneous nucleation. The solution of the crystal structures will lead to further understanding of Zn2+ acquisition by S. pneumoniae.
机译:Zn2 +是所有已知生命形式的必需营养素。在主要的人类病原体肺炎链球菌中,两种Zn2 +特异性溶质结合蛋白:AdcA和AdcAII促进了Zn2 +的获取。迄今为止,关于AdcA的结构信息很少,这阻碍了人们对肺炎球菌Zn2 +捕获的潜在机制的更深入的了解。天然AdcA由两个域组成:N端ZnuA域和C端ZinT域。在这项研究中,AdcA的ZnuA域被结晶。 ZnuA域蛋白的初始晶体是使用干燥的海藻作为异质成核剂获得的。在没有异质成核剂的情况下没有获得晶体。这些初始晶体随后被用作晶种以产生衍射质量的晶体。晶体衍射至2.03埃的分辨率并且具有空间群P1的对称性。这项研究证明了异质成核的效用。晶体结构的解决方案将导致人们进一步了解肺炎链球菌对Zn2 +的吸收。

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