Villegas-Mendez A, Montes R, Ambrose L R, Warrens A N, Laffan M, Lane D A
Department of Haematology, Imperial College London, London, UK.
J Thromb Haemost. 2007 May;5(5):980-8. doi: 10.1111/j.1538-7836.2007.02480.x.
The endothelial cell protein C receptor (EPCR) presents protein C to the thrombin:thrombomodulin complex on the endothelium of large vessels, and enhances the generation of activated protein C (APC) and activation of protease-activated receptor-1. A previous report has demonstrated binding of soluble (s) EPCR to activated neutrophils via surface proteinase 3 (PR3).
We now report further characterization of this interaction. Activated neutrophils and purified PR3 both decrease endothelial cell (EC) surface EPCR, suggestive of its proteolysis.
When added to purified recombinant sEPCR, PR3 produced multiple cleavages, with early products including 20 kDa N-terminal and C-terminal (after Lys(176)) fragments. The binding of active site blocked PR3 to sEPCR was studied by surface plasmon resonance. Estimates of the K(D) of 18.5-102 nM were obtained with heterogeneous binding, suggestive of more than a single interaction site.
This work demonstrates PR3 binding to and proteolysis of EPCR and suggests a mechanism by which anticoagulant and cell protective pathways can be down-regulated during inflammation.
内皮细胞蛋白C受体(EPCR)将蛋白C呈递给大血管内皮上的凝血酶:血栓调节蛋白复合物,并增强活化蛋白C(APC)的生成以及蛋白酶激活受体-1的激活。先前的一份报告已证明可溶性(s)EPCR通过表面蛋白酶3(PR3)与活化的中性粒细胞结合。
我们现在报告这种相互作用的进一步特征。活化的中性粒细胞和纯化的PR3均会降低内皮细胞(EC)表面的EPCR,提示其发生了蛋白水解。
当添加到纯化的重组sEPCR中时,PR3产生了多个切割片段,早期产物包括20 kDa的N端和C端(在Lys(176)之后)片段。通过表面等离子体共振研究了活性位点被阻断的PR3与sEPCR的结合。通过非均相结合获得的K(D)估计值为18.5 - 102 nM,提示存在多个相互作用位点。
这项工作证明了PR3与EPCR的结合及对其的蛋白水解作用,并提示了一种在炎症过程中下调抗凝和细胞保护途径的机制。