Calvete J J, Arias J, Alvarez M V, Lopez M M, Henschen A, González-Rodríguez J
Instituto de Química Física, C.S.I.C., Madrid, Spain.
Biochem J. 1991 Mar 1;274 ( Pt 2)(Pt 2):457-63. doi: 10.1042/bj2740457.
The precise localization of the epitopes for six monoclonal antibodies specific for the N-terminal region of human platelet glycoprotein IIIa (GPIIIa) was determined. The epitope for P37, a monoclonal antibody that inhibits platelet aggregation, was found at GPIIIa 101-109, flanked by the epitopes for P23-3 (GPIIIa 16-28), P23-4 (GPIIIa 83-91), P23-5 (GPIIIa 67-73), P23-7 (GPIIIa 114-122) and P40 (GPIIIa 262-302), and very close to the early chymotryptic cleavage site of GPIIIa in whole platelets (Phe-100). When the amino acid sequence of GPIIIa was searched for peptide sequences hydropathically complementary to the fibrinogen gamma-chain C-terminal (gamma 400-411) and A alpha-chain RGD-containing peptides, none was found for the gamma 400-411, two (GPIIIa 128-132 and 380-384) were found complementary to fibrinogen A alpha 571-575 and two (GPIIIa 109-113 and 129-133) were found for A alpha 94-99. Two of these putative fibrinogen-binding sites overlap with each other, and a third one overlaps with the epitope for P37. These findings reinforce the earlier suggestion that the N-terminal region of GPIIIa is involved in fibrinogen binding, and suggest the existence in GPIIIa of either multiple or alternative RGD-binding sites or one RGD-binding domain with several moieties. Finally, early chymotryptic cleavage of GPIIIa in whole platelets liberates to the soluble fraction the peptide stretch Ser-101-Tyr-348, which carries the epitope for P37 and the putative binding sites for fibrinogen. The rest of the molecule, together with the GPIIb-resistant moiety, remains membrane-bound. This leads us to propose that the fibrinogen-binding domain of GPIIIa is not involved in the binding to GPIIb to form the Ca2(+)-dependent GPIIb-GPIIIa complex.
确定了针对人血小板糖蛋白IIIa(GPIIIa)N端区域的六种单克隆抗体的表位的精确定位。抑制血小板聚集的单克隆抗体P37的表位位于GPIIIa 101 - 109,其两侧分别是P23 - 3(GPIIIa 16 - 28)、P23 - 4(GPIIIa 83 - 91)、P23 - 5(GPIIIa 67 - 73)、P23 - 7(GPIIIa 114 - 122)和P40(GPIIIa 262 - 302)的表位,并且非常靠近全血中血小板GPIIIa的早期糜蛋白酶切割位点(苯丙氨酸 - 100)。当在GPIIIa的氨基酸序列中搜索与纤维蛋白原γ链C端(γ400 - 411)和Aα链含RGD肽段具有疏水互补性的肽序列时,未发现与γ400 - 411互补的序列,发现两条(GPIIIa 128 - 132和380 - 384)与纤维蛋白原Aα571 - 575互补,两条(GPIIIa 109 - 113和129 - 133)与Aα94 - 99互补。这些推测的纤维蛋白原结合位点中有两个相互重叠,第三个与P37的表位重叠。这些发现强化了早期的推测,即GPIIIa的N端区域参与纤维蛋白原结合,并提示GPIIIa中存在多个或替代的RGD结合位点,或者存在一个具有多个部分的RGD结合结构域。最后,全血中血小板GPIIIa的早期糜蛋白酶切割将肽段Ser - 101 - Tyr - 348释放到可溶部分,该肽段携带P37的表位和推测的纤维蛋白原结合位点。分子的其余部分与抗GPIIb部分一起仍与膜结合。这使我们提出,GPIIIa的纤维蛋白原结合结构域不参与与GPIIb结合形成Ca2(+)依赖的GPIIb - GPIIIa复合物。