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表面糖蛋白在人类血小板功能中的作用。

Role of surface glycoproteins in human platelet function.

作者信息

Nurden A T, Caen J P

出版信息

Thromb Haemost. 1976 Feb 29;35(1):139-50.

PMID:989185
Abstract

Glycoproteins present at the external surface of cells probably play specific roles in cellular function. Increasing evidence suggests that the glycoproteins span the plasma membrane with the bulk of the bound carbohydrate asymmetrically distributed on the outer surface. Micellar association of glycoproteins in membranes leads to pore formation and functional roles in transport through the membrane, while surface glycoproteins have been shown to be enzymes, to determine cell specificity and contribute to the cell surface change. The platelet plasma membrane contains 3 major glycoproteins, glycoproteins I, II and III as characterized in order of their decreasing molecular weight. Glycoprotein I appears to have the highest sialic acid content and to give rise to a platelet specific acidic macroglycopeptide on trypsin digestion. Specific glycoprotein abnormalities in the platelets of patients with Glanzmann's thrombasthenia suggest that the glycoproteins play a role in the mechanism of platelet aggregation. A much reduced content of glycoprotein I in the platelets of 2 patients with the Bernard Soulier syndrome may be associated with their defective adhesion to subendothelium and indicates a possible relationship on the platelet surface with the von Willebrand factor protein. Preliminary evidence suggests that in common with other plasma membranes the platelet membrane has a fluid structure and that the organization of the glycoproteins on the platelet surface is extremely sensitive to stimuli and susceptible to change.

摘要

存在于细胞外表面的糖蛋白可能在细胞功能中发挥特定作用。越来越多的证据表明,糖蛋白跨越质膜,大部分结合的碳水化合物不对称地分布在外表面。膜中糖蛋白的胶束缔合导致孔形成并在跨膜运输中发挥功能作用,而表面糖蛋白已被证明是酶,可决定细胞特异性并有助于细胞表面变化。血小板质膜含有3种主要糖蛋白,即糖蛋白I、II和III,按分子量递减顺序表征。糖蛋白I似乎具有最高的唾液酸含量,并且在胰蛋白酶消化时会产生血小板特异性酸性大糖肽。Glanzmann血小板无力症患者血小板中的特定糖蛋白异常表明这些糖蛋白在血小板聚集机制中起作用。2例Bernard Soulier综合征患者血小板中糖蛋白I的含量大幅降低,这可能与它们对内皮下层的黏附缺陷有关,并表明血小板表面与血管性血友病因子蛋白之间可能存在关联。初步证据表明,与其他质膜一样,血小板膜具有流体结构,并且血小板表面糖蛋白的组织对刺激极为敏感且易于变化。

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