首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Structural and functional insights into the stationary-phase survival protein SurE an important virulence factor of Brucella abortus
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Structural and functional insights into the stationary-phase survival protein SurE an important virulence factor of Brucella abortus

机译:结构和功能方面的洞察力用于稳定期生存蛋白SurE布鲁氏流产的重要毒力因子

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摘要

The stationary-phase survival protein SurE from Brucella abortus (BaSurE) is a metal-dependent phosphatase that is essential for the survival of this bacterium in the stationary phase of its life cycle. Here, BaSurE has been biochemically characterized and its crystal structure has been determined to a resolution of 1.9 Å. BaSurE was found to be a robust enzyme, showing activity over wide ranges of temperature and pH and with various phosphoester substrates. The active biomolecule is a tetramer and each monomer was found to consist of two domains: an N-terminal domain, which forms an approximate α + β fold, and a C-terminal domain that belongs to the α/β class. The active site lies at the junction of these two domains and was identified by the presence of conserved negatively charged residues and a bound Mg2+ ion. Comparisons of BaSurE with its homologues have revealed both common features and differences in this class of enzymes. The number and arrangement of some of the equivalent secondary structures, which are seen to differ between BaSurE and its homologues, are responsible for a difference in the size of the active-site area and the overall oligomeric state of this enzyme in other organisms. As it is absent in mammals, it has the potential to be a drug target.
机译:流产布鲁氏菌的静止期生存蛋白SurE(BaSurE)是一种金属依赖性磷酸酶,对于该细菌在其生命周期的静止期生存至关重要。在这里,BaSurE已进行了生化鉴定,其晶体结构已确定为1.9Å的分辨率。发现BaSurE是一种强健的酶,在很宽的温度和pH范围内以及具有各种磷酸酯底物的情况下均显示出活性。活性生物分子是四聚体,发现每个单体都由两个结构域组成:一个N端结构域,形成约α+β折叠,一个C端结构域,属于α/β类。活性位点位于这两个结构域的交界处,并通过存在保守的带负电荷的残基和结合的Mg 2 + 离子进行鉴定。 BaSurE及其同源物的比较揭示了这类酶的共同特征和差异。 BaSurE及其同系物之间某些等效二级结构的数量和排列方式有所不同,这是造成该酶在其他生物体中活性位点区域大小和整体寡聚状态不同的原因。由于它在哺乳动物中不存在,因此有可能成为药物靶标。

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