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ecotin 同源二聚体中蛋白酶结合位点的协同作用对于抑制 MASP 酶和阻断凝集素途径的激活至关重要。

Synergy of protease-binding sites within the ecotin homodimer is crucial for inhibition of MASP enzymes and for blocking lectin pathway activation.

机构信息

Department of Biochemistry, ELTE Eötvös Loránd University, Budapest, Hungary.

Department of Biochemistry, ELTE Eötvös Loránd University, Budapest, Hungary; European Molecular Biology Laboratory, Hamburg Unit, Hamburg, Germany.

出版信息

J Biol Chem. 2022 Jun;298(6):101985. doi: 10.1016/j.jbc.2022.101985. Epub 2022 Apr 25.

Abstract

Ecotin is a homodimeric serine protease inhibitor produced by many commensal and pathogenic microbes. It functions as a virulence factor, enabling survival of various pathogens in the blood. The ecotin dimer binds two protease molecules, and each ecotin protomer has two protease-binding sites: site1 occupies the substrate-binding groove, whereas site2 engages a distinct secondary region. Owing to the twofold rotational symmetry within the ecotin dimer, sites 1 and 2 of a protomer bind to different protease molecules within the tetrameric complex. Escherichia coli ecotin inhibits trypsin-like, chymotrypsin-like, and elastase-like enzymes, including pancreatic proteases, leukocyte elastase, key enzymes of blood coagulation, the contact and complement systems, and other antimicrobial cascades. Here, we show that mannan-binding lectin-associated serine protease-1 (MASP-1) and MASP-2, essential activators of the complement lectin pathway, and MASP-3, an essential alternative pathway activator, are all inhibited by ecotin. We decipher in detail how the preorganization of site1 and site2 within the ecotin dimer contributes to the inhibition of each MASP enzyme. In addition, using mutated and monomeric ecotin variants, we show that site1, site2, and dimerization contribute to inhibition in a surprisingly target-dependent manner. We present the first ecotin:MASP-1 and ecotin:MASP-2 crystal structures, which provide additional insights and permit structural interpretation of the observed functional results. Importantly, we reveal that monomerization completely disables the MASP-2-inhibitory, MASP-3-inhibitory, and lectin pathway-inhibitory capacity of ecotin. These findings provide new opportunities to combat dangerous multidrug-resistant pathogens through development of compounds capable of blocking ecotin dimer formation.

摘要

依克多因是一种同源二聚体丝氨酸蛋白酶抑制剂,由许多共生和致病微生物产生。它作为一种毒力因子,使各种病原体能够在血液中存活。依克多因二聚体结合两个蛋白酶分子,每个依克多因蛋白单体具有两个蛋白酶结合位点:位点 1 占据底物结合槽,而位点 2 则与一个不同的二级区域结合。由于依克多因二聚体具有两倍旋转对称性,一个蛋白单体的位点 1 和 2 结合到四聚体复合物中不同的蛋白酶分子上。大肠杆菌依克多因抑制胰蛋白酶样、糜蛋白酶样和弹性蛋白酶样酶,包括胰腺蛋白酶、白细胞弹性蛋白酶、血液凝固的关键酶、接触和补体系统以及其他抗菌级联反应。在这里,我们表明甘露聚糖结合凝集素相关丝氨酸蛋白酶-1 (MASP-1) 和 MASP-2,补体凝集素途径的必需激活剂,以及 MASP-3,一种必需的替代途径激活剂,均被依克多因抑制。我们详细阐明了依克多因二聚体中位点 1 和位点 2 的预组织如何有助于抑制每种 MASP 酶。此外,使用突变和单体依克多因变体,我们表明位点 1、位点 2 和二聚化以一种令人惊讶的靶依赖性方式有助于抑制。我们呈现了第一个依克多因:MASP-1 和依克多因:MASP-2 晶体结构,这些结构提供了额外的见解,并允许对观察到的功能结果进行结构解释。重要的是,我们揭示了单体化完全使依克多因的 MASP-2 抑制、MASP-3 抑制和凝集素途径抑制能力失效。这些发现为通过开发能够阻止依克多因二聚体形成的化合物来对抗危险的多药耐药病原体提供了新的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c69/9136129/40f6d1e338c8/gr1.jpg

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