From the Division of Hemostasis and Thrombosis, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, Massachusetts 02115.
the Centenary Institute, National Health and Medical Research Council Clinical Trials Centre, Sydney Medical School, University of Sydney, Sydney, New South Wales 2006, Australia, and.
J Biol Chem. 2019 Mar 29;294(13):4878-4888. doi: 10.1074/jbc.RA118.006792. Epub 2019 Jan 22.
ER protein 57 (ERp57), a thiol isomerase secreted from vascular cells, is essential for complete thrombus formation , but other extracellular ERp57 functions remain unexplored. Here, we employed a kinetic substrate-trapping approach to identify extracellular protein substrates of ERp57 in platelet-rich plasma. MS-based identification with immunochemical confirmation combined with gene ontology enrichment analysis revealed that ERp57 targets, among other substrates, components of the lectin pathway of complement activation: mannose-binding lectin, ficolin-2, ficolin-3, collectin-10, collectin-11, mannose-binding lectin-associated serine protease-1, and mannose-binding lectin-associated serine protease-2. Ficolin-3, the most abundant lectin pathway initiator in humans, circulates as disulfide-linked multimers of a monomer. ERp57 attenuated ficolin-3 ligand recognition and complement activation by cleaving intermolecular disulfide bonds in large ficolin-3 multimers, thereby reducing multimer size and ligand-binding affinity. We used MS to identify the disulfide-bonding pattern in ficolin-3 multimers and the disulfide bonds targeted by ERp57 and found that Cys and Cys in the N-terminal region of ficolin-3 form the intermolecular disulfide bonds in ficolin-3 multimers that are reduced by ERp57. Our results not only demonstrate that ERp57 can negatively regulate complement activation, but also identify a control mechanism for lectin pathway initiation in the vasculature. We conclude that extensive multimerization in large ficolin-3 multimers leads to a high affinity for ligands and strong complement-activating potential and that ERp57 suppresses complement activation by cleaving disulfide bonds in ficolin-3 and reducing its multimer size.
内质网蛋白 57(ERp57)是一种从血管细胞分泌的硫醇异构酶,对完全血栓形成至关重要,但其他细胞外 ERp57 功能仍未被探索。在这里,我们采用动力学底物捕获方法在富含血小板的血浆中鉴定 ERp57 的细胞外蛋白底物。基于 MS 的鉴定与免疫化学确证相结合,并结合基因本体富集分析表明,ERp57 的靶标除其他底物外,还包括补体激活凝集素途径的成分:甘露糖结合凝集素、ficolin-2、ficolin-3、胶原 10、胶原 11、甘露糖结合凝集素相关丝氨酸蛋白酶-1 和甘露糖结合凝集素相关丝氨酸蛋白酶-2。ficolin-3 是人类中最丰富的凝集素途径起始物,以二硫键连接的单体多聚体形式循环。ERp57 通过切割大 ficolin-3 多聚体中的分子间二硫键来减弱 ficolin-3 配体识别和补体激活,从而降低多聚体大小和配体结合亲和力。我们使用 MS 鉴定 ficolin-3 多聚体中的二硫键结合模式和 ERp57 靶向的二硫键,并发现 ficolin-3 多聚体中二硫键是由 ficolin-3 N 端区域的 Cys 和 Cys 形成的,这些二硫键被 ERp57 还原。我们的结果不仅表明 ERp57 可以负调控补体激活,而且还确定了血管中凝集素途径起始的控制机制。我们得出结论,ficolin-3 多聚体的广泛多聚化导致对配体的高亲和力和强补体激活潜力,而 ERp57 通过切割 ficolin-3 中的二硫键并降低其多聚体大小来抑制补体激活。