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凝血外源性途径的启动。因子VIIa与表达组织因子的细胞系的结合。

Initiation of the extrinsic pathway of coagulation. Association of factor VIIa with a cell line expressing tissue factor.

作者信息

Ploplis V A, Edgington T S, Fair D S

出版信息

J Biol Chem. 1987 Jul 15;262(20):9503-8.

PMID:3496335
Abstract

We have examined initial assembly of the extrinsic pathway of blood coagulation on cell surfaces with radiolabeled human factor VIIa and a human fetal lung cell line possessing abundant functional tissue factor activity. Binding of factor VIIa to these cells was observed and was time- and temperature-dependent. Binding of factor VIIa was quantitatively equivalent at 37 and 6 degrees C, although the kinetics of binding differed. The radiolabeled ligand bound by the cell was indistinguishable by sodium dodecyl sulfate-polyacrylamide gel analysis from the factor VIIa offered. Factor VIIa binding was influenced by calcium ions. The binding appears to involve at least two classes of calcium-dependent binding sites. Optimal binding occurred at 2 mM calcium for both classes of sites, and there was inhibition of binding to the high affinity sites at higher calcium. Association of factor VIIa was specific, saturable, had a Kd of 123 +/- 37 pm, and factor VIIa interacted with about 100,000 binding sites per cell. Once established, specific binding was rapidly reversible. Direct cellular binding of human factor X also was observed and was calcium, time- and temperature-dependent. Factor X binding was specific and saturable with half-maximal binding at 87.6 +/- 27.4 nM to 6.03 +/- 1.03 X 10(6) sites per cell. Specific high affinity binding of factor VIIa correlated with generation of factor Xa. A direct linear relationship was observed at low factor VIIa binding; however, at higher bound factor VIIa, the relationship was nonstoichiometric, i.e. less factor Xa was formed per mole of factor VIIa. Expression of specific binding sites for factors VIIa and X provides further substantiation for the molecular assembly hypothesized to initiate the extrinsic coagulation protease cascade on cells.

摘要

我们用放射性标记的人因子VIIa和具有丰富功能性组织因子活性的人胎肺细胞系,研究了凝血外源性途径在细胞表面的初始组装。观察到因子VIIa与这些细胞的结合,且这种结合具有时间和温度依赖性。尽管结合动力学不同,但因子VIIa在37℃和6℃时的结合量在数量上是相当的。经十二烷基硫酸钠-聚丙烯酰胺凝胶分析,细胞结合的放射性标记配体与所提供的因子VIIa无法区分。因子VIIa的结合受钙离子影响。这种结合似乎涉及至少两类钙离子依赖性结合位点。两类位点在2 mM钙离子浓度下均出现最佳结合,且在更高钙离子浓度下,高亲和力位点的结合受到抑制。因子VIIa的结合具有特异性、可饱和性,解离常数为123±37 pm,且每个细胞约有100,000个结合位点与因子VIIa相互作用。一旦形成,特异性结合可迅速逆转。还观察到了人因子X与细胞的直接结合,且这种结合具有钙依赖性、时间依赖性和温度依赖性。因子X的结合具有特异性且可饱和,半数最大结合浓度为87.6±27.4 nM,每个细胞有6.03±1.03×10(6)个位点。因子VIIa的特异性高亲和力结合与因子Xa的生成相关。在低因子VIIa结合水平下观察到直接的线性关系;然而,在较高的因子VIIa结合水平下,这种关系是非化学计量的,即每摩尔因子VIIa形成的因子Xa较少。因子VIIa和X特异性结合位点的表达,为假设在细胞上启动外源性凝血蛋白酶级联反应的分子组装提供了进一步的证据。

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