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组织纤溶酶原激活物对表面结合的富含组氨酸-脯氨酸的糖蛋白上纤溶酶原激活的促进作用。

Acceleration of plasminogen activation by tissue plasminogen activator on surface-bound histidine-proline-rich glycoprotein.

作者信息

Borza D B, Morgan W T

机构信息

Division of Molecular Biology and Biochemistry, School of Biological Sciences, University of Missouri, Kansas City, Missouri 64110, USA.

出版信息

J Biol Chem. 1997 Feb 28;272(9):5718-26. doi: 10.1074/jbc.272.9.5718.

Abstract

Histidine-proline-rich glycoprotein (HPRG), also known as histidine-rich glycoprotein, is a major plasminogen-binding protein. In this work we characterized extensively the circumstances under which HPRG accelerates plasminogen activation and the specificity of this effect. Soluble HPRG did not significantly influence plasminogen activation. In contrast, native HPRG bound to hydrazide or nickel chelate surfaces strongly stimulated the activation of plasminogen by tissue plasminogen activator, but not by urokinase or streptokinase. The efficiency of activation on surface-bound HPRG was increased for Glu-plasminogen (41-fold), Lys-plasminogen (17-fold), and cross-linked Glu-plasminogen (11-fold) but not for mini-plasminogen, and was mainly due to a decrease in the apparent Km. A reduced susceptibility to inhibition by chloride ions contributed to the higher activation rate of Glu-plasminogen on an HPRG surface. The immobilized N- and C-terminal domains, but not the histidine-proline-rich domain of HPRG, also bound plasminogen and stimulated its activation. HPRG-enhanced plasminogen activation was proportional to the quantity of HPRG immobilized and was abolished by anti-HPRG antiserum, by low concentrations of epsilon-aminocaproic acid, by methylation of lysine residues in HPRG, and by treatment of HPRG with carboxypeptidase B. Soluble HPRG and a plasminogen fragment, kringle 1-2-3, acted as competitive inhibitors by binding to plasminogen and immobilized HPRG, respectively. The interaction of the conserved C-terminal lysine of HPRG with the high affinity lysine binding site of plasminogen is necessary and sufficient to accelerate plasminogen activation. Unlike other stimulators of plasminogen activation, the effect of HPRG on fibrinolysis is modulated by factors that influence the equilibrium between solution and surface-bound HPRG.

摘要

富含组氨酸 - 脯氨酸的糖蛋白(HPRG),也称为富含组氨酸的糖蛋白,是一种主要的纤溶酶原结合蛋白。在这项工作中,我们广泛地研究了HPRG加速纤溶酶原激活的条件及其作用的特异性。可溶性HPRG对纤溶酶原激活没有显著影响。相比之下,结合到酰肼或镍螯合表面的天然HPRG强烈刺激组织型纤溶酶原激活剂对纤溶酶原的激活,但对尿激酶或链激酶则无此作用。对于谷氨酸纤溶酶原(41倍)、赖氨酸纤溶酶原(17倍)和交联谷氨酸纤溶酶原(11倍),表面结合的HPRG上的激活效率增加,但对微型纤溶酶原则没有增加,这主要是由于表观Km的降低。对氯离子抑制的敏感性降低有助于谷氨酸纤溶酶原在HPRG表面的更高激活率。HPRG的固定化N端和C端结构域,而不是富含组氨酸 - 脯氨酸的结构域,也能结合纤溶酶原并刺激其激活。HPRG增强的纤溶酶原激活与固定化HPRG的量成正比,并被抗HPRG抗血清、低浓度的ε - 氨基己酸、HPRG中赖氨酸残基的甲基化以及用羧肽酶B处理HPRG所消除。可溶性HPRG和纤溶酶原片段kringle 1 - 2 - 3分别通过与纤溶酶原和固定化HPRG结合而作为竞争性抑制剂。HPRG保守的C端赖氨酸与纤溶酶原的高亲和力赖氨酸结合位点之间的相互作用对于加速纤溶酶原激活是必要且充分的。与其他纤溶酶原激活刺激剂不同,HPRG对纤维蛋白溶解的作用受到影响溶液和表面结合的HPRG之间平衡的因素的调节。

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