Sinha Dipali, Marcinkiewicz Mariola, Navaneetham Duraiswamy, Walsh Peter N
Sol Sherry Thrombosis Research Center, Temple University School of Medicine, Philadelphia, Pennsylvania 19140, USA.
Biochemistry. 2007 Aug 28;46(34):9830-9. doi: 10.1021/bi062296c. Epub 2007 Aug 4.
Binding of factor IX (FIX) to an exosite on the heavy chain of factor XIa (FXIa) is essential for the optimal activation of FIX (Sinha, D., Seaman, F. S., and Walsh, P. N. (1987) Biochemistry 26, 3768-3775). To gain further insight into the mechanisms of activation of FIX by FXIa, we have investigated the kinetic properties of FXIa-light chain (FXIa-LC) with its active site occupied by either a reversible inhibitor of serine proteases (p-aminobenzamidine, PAB) or a small peptidyl substrate (S-2366) and have examined FIX cleavage products resulting from activation by FXIa or FXIa-LC. PAB inhibited the hydrolysis of S-2366 by FXIa-LC in a classically competitive fashion. In contrast, PAB was found to be a noncompetitive inhibitor of the activation of the macromolecular substrate FIX. Occupancy of the active site of the FXIa-LC by S-2366 also resulted in noncompetitive inhibition of FIX activation. These results demonstrate the presence of an exosite for FIX binding on the FXIa-LC remote from its active site. Furthermore, examination of the cleavage products of FIX indicated that in the absence of either Ca2+ or the heavy chain of FXIa there was substantial accumulation of the inactive intermediate FIXalpha, indicating a slower rate of cleavage of the scissile bond Arg180-Val181. We conclude that binding to two substrate-binding exosites one on the heavy chain and the other on the light chain of FXIa is required to mediate the formation of the Michaelis complex and efficient cleavages of the two spatially separated scissile bonds of FIX.
因子IX(FIX)与因子XIa(FXIa)重链上的一个外位点结合对于FIX的最佳激活至关重要(辛哈,D.,西曼,F. S.,和沃尔什,P. N.(1987年)《生物化学》26,3768 - 3775)。为了进一步深入了解FXIa激活FIX的机制,我们研究了活性位点被丝氨酸蛋白酶的可逆抑制剂(对氨基苯甲脒,PAB)或小肽底物(S - 2366)占据的FXIa轻链(FXIa - LC)的动力学特性,并检查了由FXIa或FXIa - LC激活产生的FIX裂解产物。PAB以经典的竞争性方式抑制FXIa - LC对S - 2366的水解。相比之下,发现PAB是大分子底物FIX激活的非竞争性抑制剂。S - 2366占据FXIa - LC的活性位点也导致FIX激活的非竞争性抑制。这些结果表明在远离其活性位点的FXIa - LC上存在一个FIX结合的外位点。此外,对FIX裂解产物的检查表明,在没有Ca2 +或FXIa重链的情况下,无活性的中间产物FIXα大量积累,表明可裂解键Arg180 - Val181的裂解速率较慢。我们得出结论,需要与两个底物结合外位点结合,一个在FXIa的重链上,另一个在轻链上以介导米氏复合物的形成和FIX两个空间上分离的可裂解键的有效裂解。