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首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Specific cross-reaction of IgG anti-phospholipid antibody with platelet glycoprotein IIIa.
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Specific cross-reaction of IgG anti-phospholipid antibody with platelet glycoprotein IIIa.

机译:IgG抗磷脂抗体与血小板糖蛋白IIIa的特异性交叉反应。

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To study the pathological functions of anti-phospholipid (anti-PL) antibodies, we have analyzed their effect on platelet function. We identified an IgG anti-PL mAb, designated PSG3, which cross-reacted specifically with glycoprotein (GP) IIIa in human platelets and inhibited platelet aggregation. PSG3 bound also to certain polyanionic substances, such as double-stranded DNA, heparan sulfate, dextran sulfate and acetylated-LDL, but not to other polyanionic substances. The binding of PSG3 to GPIIIa was completely inhibited by heparan sulfate and dextran sulfate, indicating that PSG3 recognizes a particular array of negative charges expressed on both GPIIIa and the specified polyanionic substances. Since neither neuraminidase- nor endoglycopeptidase F-treatment of GPIIIa had any significant effect on the binding of PSG3, this array must be located within the amino acid sequence of GPIIIa but not in the carbohydrate moiety. Reduction of the disulfide bonds in GPIIIa greatly reduced its reactivity, suggesting that the negative charges in the epitope are arranged in a particular conformation. PSG3 inhibited platelet aggregation induced by either ADP or collagen, it also inhibited fibrinogen binding to activated platelets in a dose-dependent fashion. PSG3, however, did not inhibit the binding of GRGDSP peptide to activated platelets. These results suggest that the PSG3 epitope on GPIIIa contains a particular array of negative charges, and possibly affects the fibrinogen binding to GPIIb/IIIa complex necessary for platelet aggregation.
机译:为了研究抗磷脂(anti-PL)抗体的病理功能,我们分析了它们对血小板功能的影响。我们鉴定了一种称为PSG3的IgG抗PL mAb,它与人血小板中的糖蛋白(GP)IIIa特异性交叉反应,并抑制了血小板聚集。 PSG3还与某些聚阴离子物质(例如双链DNA,硫酸乙酰肝素,硫酸葡聚糖和乙酰化LDL)结合,但不与其他聚阴离子物质结合。硫酸乙酰肝素和硫酸葡聚糖完全抑制了PSG3与GPIIIa的结合,表明PSG3可以识别在GPIIIa和指定的聚阴离子物质上表达的特定负电荷阵列。由于GPIIIa的神经氨酸酶或内切肽酶F处理均未对PSG3的结合产生任何显着影响,因此该阵列必须位于GPIIIa的氨基酸序列内,而不位于碳水化合物部分。 GPIIIa中二硫键的还原极大地降低了其反应性,表明表位中的负电荷以特定构象排列。 PSG3抑制ADP或胶原蛋白诱导的血小板凝集,也以剂量依赖的方式抑制纤维蛋白原与活化血小板的结合。但是,PSG3不会抑制GRGDSP肽与活化血小板的结合。这些结果表明,GPIIIa上的PSG3表位包含特定的负电荷阵列,并可能影响血纤蛋白原与血小板聚集所必需的GPIIb / IIIa复合物的结合。

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