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金黄色葡萄球菌 Eap 是一种多效性的中性粒细胞丝氨酸蛋白酶抑制剂。

S. aureus Eap is a polyvalent inhibitor of neutrophil serine proteases.

机构信息

Department of Biochemistry & Molecular Biophysics, Kansas State University, Manhattan, Kansas, USA.

Molecular Biophysics and Integrated Bioimaging, Lawrence Berkeley National Laboratory, Berkeley, California, USA.

出版信息

J Biol Chem. 2024 Sep;300(9):107627. doi: 10.1016/j.jbc.2024.107627. Epub 2024 Aug 3.

Abstract

Staphylococcus aureus expresses three high-affinity neutrophil serine protease (NSP) inhibitors known as the extracellular adherence protein domain (EAPs) proteins. Whereas EapH1 and EapH2 are comprised of a single EAP domain, the modular extracellular adherence protein (Eap) from S. aureus strain Mu50 consists of four EAP domains. We recently reported that EapH2 can simultaneously bind and inhibit cathepsin-G (CG) and neutrophil elastase (NE), which are the two most abundant NSPs. This unusual property of EapH2 arises from independent CG and NE-binding sites that lie on opposing faces of its EAP domain. Here we used X-ray crystallography and enzyme assays to show that all four individual domains of Eap (i.e. Eap1, Eap2, Eap3, and Eap4) exhibit an EapH2-like ability to form ternary complexes with CG and NE that inhibit both enzymes simultaneously. We found that Eap1, Eap2, and Eap3 have similar functional profiles insofar as NSP inhibition is concerned but that Eap4 displays an unexpected ability to inhibit two NE enzymes simultaneously. Using X-ray crystallography, we determined that this second NE-binding site in Eap4 arises through the same region of its EAP domain that also comprises its CG-binding site. Interestingly, small angle X-ray scattering data showed that stable tail-to-tail dimers of the NE/Eap4/NE ternary complex exist in solution. This arrangement is compatible with NSP-binding at all available sites in a two-domain fragment of Eap. Together, our work implies that Eap is a polyvalent inhibitor of NSPs. It also raises the possibility that higher-order structures of NSP-bound Eap may have unique functional properties.

摘要

金黄色葡萄球菌表达三种高亲和力中性粒细胞丝氨酸蛋白酶 (NSP) 抑制剂,称为细胞外黏附蛋白结构域 (EAP) 蛋白。虽然 EapH1 和 EapH2 由单个 EAP 结构域组成,但来自金黄色葡萄球菌 Mu50 株的模块化细胞外黏附蛋白 (Eap) 由四个 EAP 结构域组成。我们最近报道 EapH2 可以同时结合并抑制组织蛋白酶 G (CG) 和中性粒细胞弹性蛋白酶 (NE),这两种酶是两种最丰富的 NSP。EapH2 的这种不寻常特性源于其 EAP 结构域上相对的两面存在独立的 CG 和 NE 结合位点。在这里,我们使用 X 射线晶体学和酶测定法表明,Eap 的所有四个单独结构域(即 Eap1、Eap2、Eap3 和 Eap4)都表现出与 CG 和 NE 形成三元复合物的 EapH2 样能力,同时抑制这两种酶。我们发现 Eap1、Eap2 和 Eap3 在 NSP 抑制方面具有相似的功能谱,但 Eap4 显示出同时抑制两种 NE 酶的意外能力。使用 X 射线晶体学,我们确定 Eap4 中的第二个 NE 结合位点源自其 EAP 结构域的同一区域,该区域还包含其 CG 结合位点。有趣的是,小角度 X 射线散射数据表明,NE/Eap4/NE 三元复合物的稳定尾对尾二聚体存在于溶液中。这种排列与 Eap 的两结构域片段中所有可用位点的 NSP 结合兼容。总的来说,我们的工作表明 Eap 是 NSP 的多价抑制剂。它还提出了 NSP 结合的 Eap 更高阶结构可能具有独特功能特性的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17f3/11420654/bbde21ab340b/gr1.jpg

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