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在凝血酶激活血小板的过程中,人血小板因子V通过因子XIIIa与肌动蛋白交联。

Human platelet factor V is crosslinked to actin by FXIIIa during platelet activation by thrombin.

作者信息

Wang D L, Annamalai A E, Ghosh S, Gewirtz A M, Colman R W

机构信息

Thrombosis Research Center, Temple University School of Medicine, Philadelphia, PA 19140.

出版信息

Thromb Res. 1990 Jan 1;57(1):39-57. doi: 10.1016/0049-3848(90)90194-h.

Abstract

Although it has been established that factor V (FV) becomes associated irreversibly with the platelet cytoskeleton after stimulation with thrombin, the chemical nature of this complex is not known. Factor V has recently been demonstrated to be a substrate for factor XIIIa and to form factor V oligomers. We now show that thrombin-activated 125I-FV specifically links to a single protein (43 kDa) of the solubilized platelet membrane in a reaction which requires Ca++ and factor XIIIa. In a purified system, FV, activated by thrombin, forms covalently linked high molecular complexes with 125I-actin catalyzed by factor XIIIa. The site of crosslinking of actin was the factor V fragments, 150 kDa (connecting peptide, C1) and its parent molecule 200 kDa (B). Using radiolabeled actin and unlabeled FV, factor XIIIa catalysed the formation of both homopolymers and heteropolymers. Unlabeled actin was found to compete with radiolabeled FV as a substrate for FXIIIa. To evaluate the biological significance of the crosslinking of factor V to actin, intact platelets were treated with B10 (monoclonal antibody to C1), or monospecific polyclonal antibodies to actin or FXIII. After stimulation with thrombin, the cytoskeleton (material insoluble in Triton X-100) showed markedly decreased 125I-FV in the crosslinked complexes. FV coagulant activity associated with platelet cytoskeleton was also diminished following incubation with an antibody to actin, factor XIII, or B10. These data suggest that FV, through the C1 domain, is crosslinked to actin in the cytoskeleton of thrombin-treated platelets. Activated factor XIII may play a role in plasma FV-platelet interaction as well as the expression of FV derived from the alpha-granules on the cytoskeleton during platelet stimulation.

摘要

尽管已经确定凝血因子V(FV)在凝血酶刺激后会与血小板细胞骨架不可逆地结合,但其复合物的化学性质尚不清楚。最近已证明FV是凝血因子XIIIa的底物并能形成FV寡聚体。我们现在发现,凝血酶激活的125I-FV在需要Ca++和凝血因子XIIIa的反应中,特异性地与溶解的血小板膜中的一种单一蛋白质(43 kDa)相连。在纯化系统中,由凝血酶激活的FV与凝血因子XIIIa催化的125I-肌动蛋白形成共价连接的高分子复合物。肌动蛋白的交联位点是FV片段、150 kDa(连接肽,C1)及其母体分子200 kDa(B)。使用放射性标记的肌动蛋白和未标记的FV,凝血因子XIIIa催化形成同聚物和异聚物。发现未标记的肌动蛋白作为凝血因子XIIIa的底物与放射性标记的FV竞争。为了评估FV与肌动蛋白交联的生物学意义,用B10(针对C1的单克隆抗体)或针对肌动蛋白或凝血因子XIII的单特异性多克隆抗体处理完整血小板。用凝血酶刺激后,细胞骨架(不溶于Triton X-100的物质)在交联复合物中显示出125I-FV明显减少。与血小板细胞骨架相关的FV凝血活性在与抗肌动蛋白、凝血因子XIII或B10抗体孵育后也降低。这些数据表明,FV通过C1结构域在凝血酶处理的血小板细胞骨架中与肌动蛋白交联。活化的凝血因子XIII可能在血浆FV-血小板相互作用以及血小板刺激期间α-颗粒衍生的FV在细胞骨架上的表达中发挥作用。

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