Haas T A, Plow E F
Joseph J. Jacobs Center for Thrombosis and Vascular Biology, Department of Molecular Cardiology, Cleveland Clinic Foundation, Ohio 44195, USA.
J Biol Chem. 1996 Mar 15;271(11):6017-26. doi: 10.1074/jbc.271.11.6017.
Peptides corresponding to the cytoplasmic tails of the alphaIIb (alphaIIb (985-1008)) and beta3 (beta3 (713-762)) subunits of the integrin receptor alphaIIb beta3 (glycoprotein IIb-IIIa) were synthesized and used to characterize their interaction with cations and with one another. alphaIIb (985-1008) was found to contain a functional cation binding site as assessed by both terbium luminescence and electrospray ionization mass spectroscopy. The binding of Tb3+ to alphaIIb (985-1008) was of high affinity (Kd = 8.8 +/- 5.2 nM), occurred with a 1:1 stoichiometry, and was mediated by its acidic carboxy] terminus (alphaIIb (999-1008), PLEEDDEEGE). The affinity of this site for divalent cations was in the micromolar range, suggesting that this site would be constitutively occupied in the intracellular environment. Incubation of alphaIIb (999-1008) with beta3 (713-762) resulted in the formation of a complex, both in the presence and absence of cations. The interactive site for alphaIIb (999-1008) in beta3 was mapped to beta3 (721-740), and complex formation was associated with a stabilization of secondary structure as assessed by circular dichroism. Both a binary (alphaIIb (985-1008).beta3 (721-740)) and a ternary (Tb3+.alphaIIIb (999-1008).beta3 (721-740)) complex were detected by mass spectroscopy, but the distribution and intensity of the mass/charge peaks were distinct. These difference may reflect the involvement of distinct cation coordination sites and the formation of salt bridges in stabilizing the ternary complex. These data demonstrate the formation of a novel entity composed of the cytoplasmic tails of alphaIIb and beta3 and a cation which may constitute a functional intracellular domain.
合成了与整合素受体αIIbβ3(糖蛋白IIb - IIIa)的αIIb亚基(αIIb (985 - 1008))和β3亚基(β3 (713 - 762))的胞质尾相对应的肽段,并用于表征它们与阳离子以及彼此之间的相互作用。通过铽发光和电喷雾电离质谱评估发现,αIIb (985 - 1008)含有一个功能性阳离子结合位点。Tb3 +与αIIb (985 - 1008)的结合具有高亲和力(Kd = 8.8 +/- 5.2 nM),以1:1化学计量比发生,并且由其酸性羧基末端(αIIb (999 - 1008),PLEEDDEEGE)介导。该位点对二价阳离子的亲和力在微摩尔范围内,表明该位点在细胞内环境中会持续被占据。在有和没有阳离子存在的情况下,将αIIb (999 - 1008)与β3 (713 - 762)一起孵育都会导致复合物的形成。β3中αIIb (999 - 1008)的相互作用位点被定位到β3 (721 - 740),并且通过圆二色性评估发现复合物的形成与二级结构的稳定有关。通过质谱检测到了二元复合物(αIIb (985 - 1008).β3 (721 - 740))和三元复合物(Tb3 +.αIIb (999 - 1008).β3 (721 - 740)),但质荷比峰的分布和强度有所不同。这些差异可能反映了不同阳离子配位位点的参与以及盐桥的形成对三元复合物的稳定作用。这些数据证明了由αIIb和β3的胞质尾以及一个阳离子组成的新型实体的形成,该实体可能构成一个功能性细胞内结构域。