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凝血因子Xa与牛主动脉内皮细胞之间相互作用的表征

Characterization of the interaction between factor Xa and bovine aortic endothelial cells.

作者信息

Rodgers G M, Shuman M A

出版信息

Biochim Biophys Acta. 1985 Mar 21;844(3):320-9. doi: 10.1016/0167-4889(85)90133-8.

Abstract

Cultured bovine aortic endothelial cells incubated with Factor Xa activate prothrombin. Factor V, synthesized by the endothelial cells, or plasma Factor V and calcium are required for the reaction. In the present study, it has been demonstrated that 125I-Factor Xa binds specifically to endothelial cells. In addition, the activation of prothrombin by Factor Xa and aortic endothelial cells has been further characterized. The binding of 125I-Factor Xa to endothelial cells was saturable and reversible. The equilibrium dissociation constant (Kd) for 125I-Factor Xa binding was 3.6 X 10(-9) M, with 39000 molecules bound per cell. 125I-Factor Xa, inactivated by diisopropylfluorophosphate did not bind specifically to endothelial cells, indicating that the active site of Factor Xa was required for binding. Factor Xa, but not activated protein C, competed with 125I-Factor Xa for binding. Autoradiograms of sodium dodecyl sulfate-polyacrylamide gels of cell lysates indicated that the radiolabeled material that bound to the cells had electrophoretic mobility identical to Factors Xa alpha and Xa beta. Although Factor X partially inhibited the binding of 125I-Factor Xa, Factor Xa did not inhibit the binding of 125I-Factor X, indicating that the zymogen and enzyme bound to different receptors. The relationship of the 125I-Factor Xa binding which was measured in these studies to aortic endothelial cell prothrombin activation is unclear since an anti-Factor V IgG blocked prothrombin activation but not Factor Xa binding. Additionally, 125I-Factor Xa binds to nonvascular cells; these cells do not activate prothrombin in the presence of Factor Xa. Moreover, the calcium requirements for each reaction and the saturation curves of 125I-Factor Xa binding and prothrombin activation differ. Although these data do not exclude a relationship between Factor Xa binding and prothrombin activation, the binding of 125I-Factor Xa to aortic endothelium measured in these studies may be related to a separate cellular function. To further characterize prothrombin activation by Factor Xa and endothelial cells, the rates of thrombin generation by intact bovine aorta or endothelial cells derived from this tissue were compared and were found to be equivalent. These data indicate that vascular endothelium may serve as a physiologic surface for hemostasis.

摘要

与凝血因子Xa一起孵育的培养牛主动脉内皮细胞可激活凝血酶原。该反应需要内皮细胞合成的因子V或血浆因子V以及钙。在本研究中,已证明125I-凝血因子Xa能特异性结合内皮细胞。此外,对凝血因子Xa和主动脉内皮细胞激活凝血酶原的过程进行了进一步的特性分析。125I-凝血因子Xa与内皮细胞的结合具有饱和性且可逆。125I-凝血因子Xa结合的平衡解离常数(Kd)为3.6×10^(-9)M,每个细胞结合39000个分子。被二异丙基氟磷酸灭活的125I-凝血因子Xa不能特异性结合内皮细胞,这表明凝血因子Xa的活性位点是结合所必需的。凝血因子Xa而非活化蛋白C能与125I-凝血因子Xa竞争结合。细胞裂解物的十二烷基硫酸钠-聚丙烯酰胺凝胶放射自显影片表明,与细胞结合的放射性标记物质的电泳迁移率与凝血因子Xaα和Xaβ相同。尽管凝血因子X部分抑制125I-凝血因子Xa的结合,但凝血因子Xa不抑制125I-凝血因子X的结合,这表明酶原和酶结合到不同的受体上。由于抗因子V IgG可阻断凝血酶原激活但不阻断凝血因子Xa结合,因此这些研究中测定的125I-凝血因子Xa结合与主动脉内皮细胞凝血酶原激活之间的关系尚不清楚。此外,125I-凝血因子Xa可结合到非血管细胞;这些细胞在凝血因子Xa存在时不激活凝血酶原。而且,每个反应对钙的需求以及125I-凝血因子Xa结合和凝血酶原激活的饱和曲线不同。尽管这些数据不排除凝血因子Xa结合与凝血酶原激活之间的关系,但这些研究中测定的125I-凝血因子Xa与主动脉内皮的结合可能与一种独立的细胞功能有关。为了进一步分析凝血因子Xa和内皮细胞对凝血酶原的激活作用,比较了完整牛主动脉或源自该组织的内皮细胞产生凝血酶的速率,发现二者相当。这些数据表明血管内皮可能作为止血的生理表面。

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