Ahmad S S, Rawala R, Cheung W F, Stafford D W, Walsh P N
Sol Sherry Thrombosis Research Center, Temple University School of Medicine, Philadelphia, PA 19140, USA.
Biochem J. 1995 Sep 1;310 ( Pt 2)(Pt 2):427-31. doi: 10.1042/bj3100427.
To study the structural requirements for factor IXa binding to platelets, we have carried out equilibrium binding studies with human factor IXa after replacing the second epidermal growth factor (EGF) domain by the corresponding polypeptide region of factor X. The chimeric protein, factor IX(Xegf2), and the wild-type, factor IXwt, produced in embryonic kidney cells 293 were radiolabelled with 125I and activated with factor XIa. Direct binding studies with thrombin-activated platelets showed normal stoichiometry and affinity of binding of factor IXawt in the presence of factor VIIIa (2 units/ml) and factor X (1.5 microM). However, under similar experimental conditions, factor IXa(Xegf2) was bound to a smaller number of sites (396 sites/platelet) with decreased affinity, i.e. a dissociation constant (Kd) of 1.4 nM, compared with normal factor IXa, factor IXaN (558 sites/platelet; Kd 0.67 nM), or factor IXawt (590 sites/platelet; Kd 0.61 nM). The concentrations of factor IXaN and factor IXawt required for half-maximal rates of factor-X activation were 0.63 nM and 0.7 nM, indicating a close correspondence of the Kd,app. for binding of factor IXawt to the factor-X activating complex on activated platelets to the Kd obtained in equilibrium binding studies. In contrast, kinetic parameters for factor-X activation by factor IXa(Xegf2) showed a decreased affinity (Kd 1.5 nM), in agreement with results of binding studies. These studies with factor IX(Xegf2) suggest that the EGF-2 domain may be important for specific high-affinity factor IXa binding to platelets in the presence of factor VIIIa and factor X.
为研究因子IXa与血小板结合的结构要求,我们在用因子X的相应多肽区域替换第二个表皮生长因子(EGF)结构域后,对人因子IXa进行了平衡结合研究。在胚胎肾细胞293中产生的嵌合蛋白因子IX(Xegf2)和野生型因子IXwt用125I进行放射性标记,并用因子XIa激活。用凝血酶激活的血小板进行的直接结合研究表明,在因子VIIIa(2单位/毫升)和因子X(1.5微摩尔)存在的情况下,因子IXwt的结合化学计量和亲和力正常。然而,在类似的实验条件下,与正常因子IXa、因子IXaN(558个位点/血小板;解离常数Kd为0.67纳摩尔)或因子IXwt(590个位点/血小板;Kd为0.61纳摩尔)相比,因子IXa(Xegf2)结合到较少数量的位点(396个位点/血小板),亲和力降低,即解离常数(Kd)为1.4纳摩尔。因子X激活的半最大速率所需的因子IXaN和因子IXwt的浓度分别为0.63纳摩尔和0.7纳摩尔,表明Kd,app。因子IXwt与活化血小板上的因子X激活复合物结合的Kd与平衡结合研究中获得的Kd密切对应。相比之下,因子IXa(Xegf2)激活因子X的动力学参数显示亲和力降低(Kd为1.5纳摩尔),与结合研究结果一致。这些对因子IX(Xegf2)的研究表明,在因子VIIIa和因子X存在的情况下,EGF-2结构域对于因子IXa与血小板的特异性高亲和力结合可能很重要。