首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Structural and functional studies of SAV1707 from Staphylococcus aureus elucidate its distinct metal-dependent activity and a crucial residue for catalysis
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Structural and functional studies of SAV1707 from Staphylococcus aureus elucidate its distinct metal-dependent activity and a crucial residue for catalysis

机译:SAV1707从结构和功能的研究金黄色葡萄球菌阐明其截然不同metal-dependent活动和一个至关重要的残渣对催化

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摘要

The metallo-beta-lactamase fold is the most abundant metal-binding domain found in two major kingdoms: bacteria and archaea. Despite the rapid growth in genomic information, most of these enzymes, which may play critical roles in cellular metabolism, remain uncharacterized in terms of structure and function. In this study, X-ray crystal structures of SAV1707, a hypothetical metalloenzyme from Staphylococcus aureus, and its complex with cAMP are reported at high resolutions of 2.05 and 1.55 A, respectively, with a detailed atomic description. Through a functional study, it was verified that SAV1707 has Ni2+-dependent phosphodiesterase activity and Mn2+-dependent endonuclease activity, revealing a different metal selectivity depending on the reaction. In addition, the crystal structure of cAMP-bound SAV1707 shows a unique snapshot of cAMP that reveals the binding mode of the intermediate, and a key residue Phe511 that forms pai-pai interactions with cAMP was verified as contributing to substrate recognition by functional studies of its mutant. Overall, these findings characterized the relationship between the structure and function of SAV1707 and may provide further understanding of metalloenzymes possessing the metallo-beta-lactamase fold.
机译:金属-β-内酰胺酶的折叠是最丰富metal-binding域两个主要发现王国:细菌和古生菌。基因信息的增长,大多数的这些酶,它可以扮演关键角色细胞的新陈代谢,保持无特征结构和功能。SAV1707的x射线晶体结构假设金属酶的葡萄球菌葡萄球菌,及其与营地的复杂高分辨率的2.05和1.55,分别详细描述原子。通过功能研究,证实SAV1707 Ni2 +端依赖磷酸二酯酶活动和Mn2 +端依赖核酸内切酶活动,揭示不同金属选择性根据不同的反应。晶体结构的cAMP-bound SAV1707显示了独特的快照显示绑定的营地中间的模式,一个关键的残渣Phe511形成pai-pai与营地的交互被证实是导致底物识别功能研究的突变。总的来说,这些发现为特征结构和功能之间的关系SAV1707和可以提供进一步的理解近年的拥有金属-β-内酰胺酶。

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