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在未活化血小板上,血小板糖蛋白IIb-IIIa的精氨酸-甘氨酸-天冬氨酸(RGD)识别位点可被高亲和力大分子识别。

The Arg-Gly-Asp (RGD) recognition site of platelet glycoprotein IIb-IIIa on nonactivated platelets is accessible to high-affinity macromolecules.

作者信息

Tomiyama Y, Tsubakio T, Piotrowicz R S, Kurata Y, Loftus J C, Kunicki T J

机构信息

Blood Center of Southeastern Wisconsin, Milwaukee 53233.

出版信息

Blood. 1992 May 1;79(9):2303-12.

PMID:1373972
Abstract

We have characterized a murine IgG monoclonal antibody, OP-G2, specific for platelet glycoprotein (GP) IIb-IIIa (alpha IIb beta 3). OP-G2 Fab fragments inhibit fibrinogen-mediated platelet aggregation and competitively inhibit adenosine diphosphate-induced binding of 125I-fibrinogen to washed platelets. OP-G2 binding to GPIIb-IIIa is specifically inhibited by RGD-containing peptides but not the fibrinogen gamma-chain carboxy-terminal peptide, and OP-G2 Fab fragments, like RGD-containing peptides, alter the conformation of GPIIb-IIIa resulting in the expression of a ligand-induced binding site (LIBS) recognized by PMI-1. OP-G2 fails to bind to the recombinant Cam variant of GPIIb-IIIa (alpha III beta 3Cam) wherein an Asp119 to Tyr119 substitution in GPIIIa abrogates the ability to recognize RGD. These data indicate that OP-G2 recognizes an epitope at or in very close proximity to the RGD recognition site of GPIIb-IIIa and that, in every aspect tested, OP-G2 behaves like a macromolecular RGD ligand. Interestingly, two-color flow cytometry shows that OP-G2 IgG can bind to nonactivated platelets. Quantitative binding assays indicate that nonactivated platelets bind approximately 50,000 125I-OP-G2 molecules/platelet. Furthermore, the affinity of OP-G2 for platelets activated with thrombin is roughly fivefold higher (nonactivated, kd = 24.8 nmol/L; activated, kd = 4.9 nmol/L). These results suggest that the RGD recognition site of GPIIb-IIIa is available to macromolecules that contain RGD even on nonactivated platelets, provided that the affinity of the ligand is adequate.

摘要

我们已鉴定出一种针对血小板糖蛋白(GP)IIb-IIIa(αIIbβ3)的小鼠IgG单克隆抗体OP-G2。OP-G2 Fab片段可抑制纤维蛋白原介导的血小板聚集,并竞争性抑制二磷酸腺苷诱导的125I-纤维蛋白原与洗涤后血小板的结合。含RGD的肽可特异性抑制OP-G2与GPIIb-IIIa的结合,但纤维蛋白原γ链羧基末端肽则无此作用,并且OP-G2 Fab片段与含RGD的肽一样,可改变GPIIb-IIIa的构象,从而导致由PMI-1识别的配体诱导结合位点(LIBS)的表达。OP-G2无法与GPIIb-IIIa的重组Cam变体(αIIIβ3Cam)结合,其中GPIIIa中Asp119至Tyr119的取代消除了识别RGD的能力。这些数据表明,OP-G2识别GPIIb-IIIa的RGD识别位点处或非常接近该位点的一个表位,并且在测试的各个方面,OP-G2的行为都类似于大分子RGD配体。有趣的是,双色流式细胞术显示OP-G2 IgG可与未活化的血小板结合。定量结合试验表明,未活化的血小板每血小板结合约50,000个125I-OP-G2分子。此外,OP-G2对用凝血酶活化的血小板的亲和力大约高五倍(未活化,kd = 24.8 nmol/L;活化,kd = 4.9 nmol/L)。这些结果表明,只要配体的亲和力足够,GPIIb-IIIa的RGD识别位点即使在未活化的血小板上也可被含RGD的大分子利用。

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