Rahman S, Lu X, Kakkar V V, Authi K S
Platelet Section, Thrombosis Research Institute, London, U.K.
Biochem J. 1995 Nov 15;312 ( Pt 1)(Pt 1):223-32. doi: 10.1042/bj3120223.
We have previously demonstrated [Lu, Williams, Deadman, Salmon, Kakkar, Wilkinson, Baruch, Authi and Rahman (1994) Biochem. J. 304, 929-936] the preferential antagonism of the interactions of the integrin alpha IIb beta 3 on activated platelets with three immobilized glycoprotein ligands (fibrinogen, fibronectin and von Willebrand factor) by a selected panel of snake-venom RGD (Arg-Gly-Asp)-containing proteins including the disintegrins kistrin and elegantin, and the neurotoxin variant dendroaspin. Kistrin and dendroaspin, although structurally unrelated, contain similar amino acids flanking the tripeptide RGD and behaved as identical antagonists preferentially inhibiting platelet adhesion to immobilized fibrinogen as opposed to fibronectin. In contrast, elegantin, which shares extensive sequence similarity with kistrin but has different amino acids around the tripeptide RGD, preferentially inhibited platelet adhesion to immobilized fibronectin as opposed to fibrinogen. To develop further insights into the mechanisms underlying the preferential antagonism shown by the venom proteins in the adhesion studies, we, in the present study, sought to determine the binding properties of kistrin, elegantin and dendroaspin to the alpha IIb beta 3 complex by radioligand kinetic and competition studies. In direct binding experiments, both kistrin and dendroaspin were observed to bind to a single class of binding site on ADP-activated platelets with apparent equilibrium dissociation constant (Kdapp) values of 42 +/- 2 nM and 21 +/- 6 nM respectively. In competition studies, dendroaspin blocked the binding of 125I-labelled kistrin to ADP-activated platelets in a simple competitive manner, with an apparent equilibrium inhibition constant (Kiapp) of 143 +/- 14 nM, from which an indirect Kdapp = 22 nM for dendroaspin was determined. This result suggests that kistrin and dendroaspin bind to the same site on the integrin alpha IIb beta 3 consistent with their similar inhibitory properties. In contrast, elegantin recognized two classes of binding sites on the alpha IIb beta 3 complex with Kdapp values of 10.5 +/- 0.8 nM and 175 +/- 10 nM, and, unlike dendroaspin, did not inhibit the binding of 125I-labelled kistrin to ADP-activated platelets. However, in reciprocal experiments both kistrin and dendroaspin inhibited the binding of 125I-elegantin to ADP-activated platelets in a non-competitive manner, with Kiapp values of 34 +/- 3 nM and 21 +/- 2 nM respectively. Thus elegantin appears to interact with distinct but interacting sites on the alpha IIb beta 3 complex from the binding site of kistrin and dendroaspin, consistent with its distinctive inhibitory preferences as shown in platelet adhesion studies.(ABSTRACT TRUNCATED AT 400 WORDS)
我们之前已经证明[陆、威廉姆斯、迪德曼、萨尔蒙、卡卡尔、威尔金森、巴鲁克、奥蒂和拉赫曼(1994年),《生物化学杂志》第304卷,929 - 936页],通过一组选定的含蛇毒RGD(精氨酸 - 甘氨酸 - 天冬氨酸)的蛋白质,包括去整合素吻蛭素和优雅素,以及神经毒素变体树眼镜蛇素,可优先拮抗整合素αIIbβ3在活化血小板上与三种固定化糖蛋白配体(纤维蛋白原、纤连蛋白和血管性血友病因子)的相互作用。吻蛭素和树眼镜蛇素虽然结构不相关,但在三肽RGD两侧含有相似的氨基酸,并且表现为相同的拮抗剂,优先抑制血小板与固定化纤维蛋白原而非纤连蛋白的黏附。相比之下,优雅素与吻蛭素具有广泛的序列相似性,但在三肽RGD周围有不同的氨基酸,优先抑制血小板与固定化纤连蛋白而非纤维蛋白原的黏附。为了进一步深入了解在黏附研究中蛇毒蛋白所表现出的优先拮抗作用的潜在机制,在本研究中,我们试图通过放射性配体动力学和竞争研究来确定吻蛭素、优雅素和树眼镜蛇素与αIIbβ3复合物的结合特性。在直接结合实验中,观察到吻蛭素和树眼镜蛇素均与ADP活化血小板上的一类结合位点结合,表观平衡解离常数(Kdapp)值分别为42±2 nM和21±6 nM。在竞争研究中,树眼镜蛇素以简单竞争方式阻断125I标记的吻蛭素与ADP活化血小板的结合,表观平衡抑制常数(Kiapp)为143±14 nM,由此确定树眼镜蛇素的间接Kdapp = 22 nM。该结果表明,吻蛭素和树眼镜蛇素与整合素αIIbβ3上的同一位点结合,这与其相似的抑制特性一致。相比之下,优雅素在αIIbβ3复合物上识别两类结合位点,Kdapp值分别为10.5±0.8 nM和175±10 nM,并且与树眼镜蛇素不同,它不抑制125I标记的吻蛭素与ADP活化血小板的结合。然而,在反向实验中,吻蛭素和树眼镜蛇素均以非竞争方式抑制125I - 优雅素与ADP活化血小板的结合,Kiapp值分别为34±3 nM和21±2 nM。因此,优雅素似乎与吻蛭素和树眼镜蛇素的结合位点在αIIbβ3复合物上不同但相互作用的位点相互作用,这与其在血小板黏附研究中表现出的独特抑制偏好一致。(摘要截断于400字)