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C1 酯酶抑制剂与 C1s 的米氏复合体的晶体结构揭示了补体调控的新见解。

The Crystal Structure of the Michaelis-Menten Complex of C1 Esterase Inhibitor and C1s Reveals Novel Insights into Complement Regulation.

机构信息

Department of Microbiology and Immunology, Brody School of Medicine, East Carolina University, Greenville, NC.

出版信息

J Immunol. 2024 Sep 1;213(5):718-729. doi: 10.4049/jimmunol.2400194.

Abstract

The ancient arm of innate immunity known as the complement system is a blood proteolytic cascade involving dozens of membrane-bound and solution-phase components. Although many of these components serve as regulatory molecules to facilitate controlled activation of the cascade, C1 esterase inhibitor (C1-INH) is the sole canonical complement regulator belonging to a superfamily of covalent inhibitors known as serine protease inhibitors (SERPINs). In addition to its namesake role in complement regulation, C1-INH also regulates proteases of the coagulation, fibrinolysis, and contact pathways. Despite this, the structural basis for C1-INH recognition of its target proteases has remained elusive. In this study, we present the crystal structure of the Michaelis-Menten (M-M) complex of the catalytic domain of complement component C1s and the SERPIN domain of C1-INH at a limiting resolution of 3.94 Å. Analysis of the structure revealed that nearly half of the protein/protein interface is formed by residues outside of the C1-INH reactive center loop. The contribution of these residues to the affinity of the M-M complex was validated by site-directed mutagenesis using surface plasmon resonance. Parallel analysis confirmed that C1-INH-interfacing residues on C1s surface loops distal from the active site also drive affinity of the M-M complex. Detailed structural comparisons revealed differences in substrate recognition by C1s compared with C1-INH recognition and highlight the importance of exosite interactions across broader SERPIN/protease systems. Collectively, this study improves our understanding of how C1-INH regulates the classical pathway of complement, and it sheds new light on how SERPINs recognize their cognate protease targets.

摘要

先天免疫系统的古老分支——补体系统是一种血液蛋白水解级联反应,涉及数十种膜结合和溶液相成分。虽然这些成分中的许多作为调节分子,以促进级联反应的受控激活,但 C1 酯酶抑制剂(C1-INH)是唯一属于丝氨酸蛋白酶抑制剂(SERPINs)家族的经典补体调节剂。除了在补体调节中的同名作用外,C1-INH 还调节凝血、纤溶和接触途径的蛋白酶。尽管如此,C1-INH 识别其靶蛋白酶的结构基础仍然难以捉摸。在这项研究中,我们以 3.94Å 的极限分辨率呈现了补体成分 C1s 的催化结构域和 C1-INH 的 SERPIN 结构域的米氏复合物(M-M)的晶体结构。结构分析表明,近一半的蛋白质/蛋白质界面是由 C1-INH 反应中心环外的残基形成的。这些残基对 M-M 复合物亲和力的贡献通过使用表面等离子体共振的定点突变得到了验证。平行分析证实,C1s 表面环路中远离活性位点的 C1-INH 相互作用残基也驱动了 M-M 复合物的亲和力。详细的结构比较表明,C1s 对底物的识别与 C1-INH 对底物的识别不同,突出了在更广泛的 SERPIN/蛋白酶系统中,外位相互作用的重要性。总的来说,这项研究提高了我们对 C1-INH 如何调节补体经典途径的理解,并为 SERPINs 如何识别其同源蛋白酶靶标提供了新的线索。

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