FVII激活蛋白酶裂解单链纤溶酶原激活物。

Haemostasis Pub Date : 1999-01-01 DOI:10.1159/000022515
J Römisch, S Vermöhlen, A Feussner, H Stöhr
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引用次数: 123

摘要

从血浆中分离的丝氨酸蛋白酶与肝细胞生长因子激活因子样蛋白酶具有相同的结构特征,最近已被证明可以激活FVII。因此,被命名为“FVII活化剂”。到目前为止,这种蛋白酶对纤溶系统的影响还没有报道。我们通过离子交换层析和固定化肝素和/或抑酶蛋白吸附从低温血浆中分离出蛋白酶。单链纤溶酶原激活剂(sc-PAs)与FVII激活剂孵育后发现,体外对尿激酶sc-PA (scu-PA)和组织sc-PA (sct-PA)具有显著的激活作用。它在钙和肝素的存在下增强。与kallikrein相比,scu-PA的激活效率更高,而sct-PA似乎是FVI激活剂的较差底物。在低蛋白酶浓度和肝素存在的情况下,scu-PA的活化与纤溶酶相当。采用再钙化全血血栓造影术,在加入scu-PA和FVII活化剂的组合后,观察到最初形成的纤维蛋白的溶解,而单独使用scu-PA在使用的浓度下影响可以忽略不计。研究结果表明,FVII激活剂是体外sc-PAs的有效激活剂。它是否在纤溶中起生理作用还有待进一步研究。其相对较高的亲和力肝素假定在细胞表面或基质事件的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The FVII activating protease cleaves single-chain plasminogen activators.
A serine protease isolated from plasma sharing structural characteristics with a hepatocyte growth factor activator-like protease has been demonstrated recently to activate FVII. Accordingly, it was named ‘FVII activator’. Until now an impact of this protease on the fibrinolytic system has not been reported. We islolated the protease from cryo-poor plasma by subsequent ion exchange chromatography and adsorption to immobilized heparin and/or aprotinin. Incubation of single-chain plasminogen activators (sc-PAs) with the FVII activator revealed significant activation of urokinase sc-PA (scu-PA) and tissue sc-PA (sct-PA) in vitro. It was enhanced in the presence of calcium and heparin. Compared to kallikrein, a more efficient activation of scu-PA was observed, whereas sct-PA appeared to be a poorer substrate for the FVI activator. At low protease concentrations and in the presence of heparin the scu-PA activation was comparable to plasmin. Employing recalcified whole blood thrombelastography, the lysis of initially formed fibrin was observed after addition of a combination of scu-PA and the FVII activator, whereas the scu-PA alone had a negligible effect at the concentration used. The study results as presented demonstrate that the FVII activator is a potent activator of sc-PAs in vitro. Whether it plays a physiological role in fibrinolysis deserves further investigation. Its comparatively high affinity to heparin assumes a function in cell surface or matrix events.
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