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凝血因子VII的自身激活通过不同的蛋白酶-辅因子和酶原-辅因子复合物之间的相互作用进行。二维酶动力学机制的意义。

Factor VII autoactivation proceeds via interaction of distinct protease-cofactor and zymogen-cofactor complexes. Implications of a two-dimensional enzyme kinetic mechanism.

作者信息

Neuenschwander P F, Fiore M M, Morrissey J H

机构信息

Oklahoma Medical Research Foundation, Oklahoma City 73104.

出版信息

J Biol Chem. 1993 Oct 15;268(29):21489-92.

PMID:8407997
Abstract

Tissue factor (TF), an integral membrane protein, enhances the feedback activation of factor VII by factor VIIa (factor VII autoactivation). We found that, in contrast to the other known membrane-dependent coagulation activation reactions, TF-dependent factor VII autoactivation occurred preferentially on neutral phospholipid vesicles relative to negatively charged vesicles containing phosphatidylserine. This reaction was best described by a novel mechanism in which the enzyme and substrate are each bound to separate cofactor (TF) molecules. This unusual mechanism of substrate presentation to a membrane-bound protease predicts that the reaction rate will be directly dependent on the surface density, and hence lateral diffusion, of factor VII.TF and factor VIIa.TF complexes, obeying obligatorily two-dimensional enzyme kinetics. This prediction was confirmed, yielding a two-dimensional second-order rate constant (k2D) of 4.9 (+/- 0.8) x 10(6) m2 mol-1 s-1. Since intact cells normally sequester acidic phospholipids away from the outer leaflet of the plasma membrane, this reaction mechanism should permit factor VII autoactivation to predominate on unactivated/undamaged cell surfaces when other clotting reactions are dormant.

摘要

组织因子(TF)是一种整合膜蛋白,可增强因子VIIa对因子VII的反馈激活作用(因子VII自身激活)。我们发现,与其他已知的膜依赖性凝血激活反应不同,相对于含有磷脂酰丝氨酸的带负电荷的囊泡,TF依赖性因子VII自身激活在中性磷脂囊泡上优先发生。该反应最适合用一种新机制来描述,即酶和底物分别与不同的辅因子(TF)分子结合。这种将底物呈递给膜结合蛋白酶的不寻常机制预测,反应速率将直接取决于因子VII、TF和因子VIIa.TF复合物的表面密度,进而取决于其侧向扩散,遵循强制性二维酶动力学。这一预测得到了证实,得出二维二级速率常数(k2D)为4.9(±0.8)×10^6 m^2 mol^-1 s^-1。由于完整细胞通常将酸性磷脂隔离在质膜外小叶之外,当其他凝血反应处于休眠状态时,这种反应机制应使因子VII自身激活在未激活/未受损的细胞表面占主导地位。

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