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纤溶酶原通过两种不同机制与人血小板相互作用。

Plasminogen interacts with human platelets through two distinct mechanisms.

作者信息

Miles L A, Ginsberg M H, White J G, Plow E F

出版信息

J Clin Invest. 1986 Jun;77(6):2001-9. doi: 10.1172/JCI112529.

Abstract

Glu-plasminogen, the native form of plasminogen, interacts in a specific and saturable manner with unstimulated human platelets, and the binding is enhanced fivefold by thrombin stimulation (Miles and Plow, 1985. J. Biol. Chem. 260:4303). This study characterizes the nature of the Glu-plasminogen binding sites by analyzing platelets deficient in selected proteins and functions. Platelets from patients with afibrinogenemia, Gray platelet syndrome, and the Cam Variant of thrombasthenia, a form of thrombasthenia with near normal levels of glycoprotein IIb/IIIa (GPIIb/IIIa), showed minimal augmentation of plasminogen binding to thrombin-stimulated platelets but normal binding to unstimulated platelets. This selective deficiency indicates that two distinct mechanisms are involved in the interaction of plasminogen with platelets. These abnormal platelets share a deficiency in fibrinogen. Surface expression of platelet fibrinogen, however, was not sufficient for enhanced plasminogen binding to stimulated platelets, and experiments with alpha-thrombin and gamma-thrombin indicated that fibrin formation on the platelet surface is necessary for the augmented plasminogen binding. Unstimulated and stimulated thrombasthenic platelets deficient in GPIIb/IIIa bound markedly reduced levels of plasminogen, which suggests a role for GPIIb/IIIa in plasminogen binding to unstimulated platelets. Treatment of platelets to dissociate the heterodimeric complex of GPIIb/IIIa did not significantly perturb plasminogen binding to unstimulated platelets, but the complex may be necessary for thrombin-stimulated plasminogen binding via its interaction with platelet fibrin.

摘要

谷氨酸纤溶酶原,即纤溶酶原的天然形式,以一种特异且可饱和的方式与未受刺激的人血小板相互作用,并且凝血酶刺激可使这种结合增强五倍(迈尔斯和普洛,1985年。《生物化学杂志》260:4303)。本研究通过分析缺乏特定蛋白质和功能的血小板来表征谷氨酸纤溶酶原结合位点的性质。来自无纤维蛋白原血症患者、灰色血小板综合征患者以及血小板无力症的Cam变异型(一种糖蛋白IIb/IIIa(GPIIb/IIIa)水平接近正常的血小板无力症形式)的血小板,显示纤溶酶原与凝血酶刺激的血小板结合的增强作用最小,但与未受刺激的血小板结合正常。这种选择性缺陷表明纤溶酶原与血小板相互作用涉及两种不同机制。这些异常血小板都缺乏纤维蛋白原。然而,血小板纤维蛋白原的表面表达不足以增强纤溶酶原与受刺激血小板的结合,并且用α-凝血酶和γ-凝血酶进行的实验表明血小板表面纤维蛋白的形成对于增强的纤溶酶原结合是必需的。缺乏GPIIb/IIIa的未受刺激和受刺激的血小板无力症血小板结合的纤溶酶原水平明显降低,这表明GPIIb/IIIa在纤溶酶原与未受刺激血小板的结合中起作用。处理血小板以解离GPIIb/IIIa的异二聚体复合物不会显著干扰纤溶酶原与未受刺激血小板的结合,但该复合物可能通过其与血小板纤维蛋白的相互作用对于凝血酶刺激的纤溶酶原结合是必需的。

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