Department of Medical and Molecular Sciences, University of Delaware, Newark, Delaware, USA.
Department of Medical and Molecular Sciences, University of Delaware, Newark, Delaware, USA.
J Biol Chem. 2021 Jan-Jun;296:100771. doi: 10.1016/j.jbc.2021.100771. Epub 2021 May 11.
The KdpDE two-component system regulates potassium homeostasis and virulence in various bacterial species. The KdpD histidine kinases (HK) of this system contain a universal stress protein (USP) domain which binds to the second messenger cyclic-di-adenosine monophosphate (c-di-AMP) for regulating transcriptional output from this two-component system in Firmicutes such as Staphylococcus aureus. However, the structural basis of c-di-AMP specificity within the KdpD-USP domain is not well understood. Here, we resolved a 2.3 Å crystal structure of the S. aureus KdpD-USP domain (USP) complexed with c-di-AMP. Binding affinity analyses of USP mutants targeting the observed USP:c-di-AMP structural interface enabled the identification of the sequence residues that are required for c-di-AMP specificity. Based on the conservation of these residues in other Firmicutes, we identified the binding motif, (A/G/C)XSXSXN(Y/F), which allowed us to predict c-di-AMP binding in other KdpD HKs. Furthermore, we found that the USP domain contains structural features distinct from the canonical standalone USPs that bind ATP as a preferred ligand. These features include inward-facing conformations of its β1-α1 and β4-α4 loops, a short α2 helix, the absence of a triphosphate-binding Walker A motif, and a unique dual phospho-ligand binding mode. It is therefore likely that USP-like domains in KdpD HKs represent a novel subfamily of the USPs.
KdpDE 双组分系统调节各种细菌的钾离子稳态和毒力。该系统的 KdpD 组氨酸激酶 (HK) 含有一个普遍应激蛋白 (USP) 结构域,该结构域与第二信使环二腺苷酸单磷酸 (c-di-AMP) 结合,以调节厚壁菌纲(如金黄色葡萄球菌)中该双组分系统的转录输出。然而,KdpD-USP 结构域内 c-di-AMP 特异性的结构基础尚不清楚。在这里,我们解析了金黄色葡萄球菌 KdpD-USP 结构域 (USP) 与 c-di-AMP 复合物的 2.3 Å 晶体结构。针对观察到的 USP:c-di-AMP 结构界面的 USP 突变体的结合亲和力分析,确定了需要 c-di-AMP 特异性的序列残基。基于这些残基在其他厚壁菌纲中的保守性,我们确定了结合基序 (A/G/C)XSXSXN(Y/F),这使我们能够预测其他 KdpD HK 中的 c-di-AMP 结合。此外,我们发现 USP 结构域包含与作为首选配体结合 ATP 的典型独立 USP 不同的结构特征。这些特征包括其 β1-α1 和 β4-α4 环的向内取向构象、短的 α2 螺旋、缺乏三磷酸结合 Walker A 基序以及独特的双重磷酸配体结合模式。因此,KdpD HK 中的 USP 样结构域可能代表 USP 的一个新亚家族。