Colman R W, Pixley R A, Najamunnisa S, Yan W, Wang J, Mazar A, McCrae K R
The Sol Sherry Thrombosis Research Center, Temple University School of Medicine, Philadelphia, Pennsylvania 19140, USA.
J Clin Invest. 1997 Sep 15;100(6):1481-7. doi: 10.1172/JCI119669.
The urokinase receptor (uPAR) binds urokinase-type plasminogen activator (u-PA) through specific interactions with uPAR domain 1, and vitronectin through interactions with a site within uPAR domains 2 and 3. These interactions promote the expression of cell surface plasminogen activator activity and cellular adhesion to vitronectin, respectively. High molecular weight kininogen (HK) also stimulates the expression of cell surface plasminogen activator activity through its ability to serve as an acquired receptor for prekallikrein, which, after its activation, may directly activate prourokinase. Here, we report that binding of the cleaved form of HK (HKa) to human umbilical vein endothelial cells (HUVEC) is mediated through zinc-dependent interactions with uPAR. These occur through a site within uPAR domains 2 and 3, since the binding of 125I-HKa to HUVEC is inhibited by vitronectin, anti-uPAR domain 2 and 3 antibodies and soluble, recombinant uPAR (suPAR), but not by antibody 7E3, which recognizes the beta chain of the endothelial cell vitronectin receptor (integrin alphavbeta3), or fibrinogen, another alphavbeta3 ligand. We also demonstrate the formation of a zinc-dependent complex between suPAR and HKa. Interactions of HKa with endothelial cell uPAR may underlie its ability to promote kallikrein-dependent cell surface plasmin generation, and also explain, in part, its antiadhesive properties.
尿激酶受体(uPAR)通过与uPAR结构域1的特异性相互作用结合尿激酶型纤溶酶原激活剂(u-PA),并通过与uPAR结构域2和3内的一个位点相互作用结合玻连蛋白。这些相互作用分别促进细胞表面纤溶酶原激活剂活性的表达和细胞与玻连蛋白的黏附。高分子量激肽原(HK)也通过其作为前激肽释放酶的获得性受体的能力刺激细胞表面纤溶酶原激活剂活性的表达,前激肽释放酶激活后可直接激活尿激酶原。在此,我们报告HK的裂解形式(HKa)与人脐静脉内皮细胞(HUVEC)的结合是通过与uPAR的锌依赖性相互作用介导的。这些相互作用通过uPAR结构域2和3内的一个位点发生,因为125I-HKa与HUVEC的结合受到玻连蛋白、抗uPAR结构域2和3抗体以及可溶性重组uPAR(suPAR)的抑制,但不受识别内皮细胞玻连蛋白受体(整合素αvβ3)β链的抗体7E3或另一种αvβ3配体纤维蛋白原的抑制。我们还证明了suPAR和HKa之间形成了锌依赖性复合物。HKa与内皮细胞uPAR的相互作用可能是其促进激肽释放酶依赖性细胞表面纤溶酶生成能力的基础,也部分解释了其抗黏附特性。