Sol Sherry Thrombosis Research Center, University School of Medicine, Philadelphia, Pennsylvania 19140, USA.
J Biol Chem. 2012 Feb 24;287(9):6187-95. doi: 10.1074/jbc.M111.291989. Epub 2011 Dec 29.
In the intrinsic pathway of blood coagulation factor XIa (FXIa) activates factor IX (FIX) by cleaving the zymogen at Arg(145)-Ala(146) and Arg(180)-Val(181) bonds releasing an 11-kDa activation peptide. FXIa and its isolated light chain (FXIa-LC) cleave S-2366 at comparable rates, but FXIa-LC is a very poor activator of FIX, possibly because FIX undergoes allosteric modification on binding to an exosite on the heavy chain of FXIa (FXIa-HC) required for optimal cleavage rates of the two scissile bonds of FIX. However preincubation of FIX with a saturating concentration of isolated FXIa-HC did not result in any potentiation in the rate of FIX cleavage by FXIa-LC. Furthermore, if FIX binding via the heavy chain exosite of FXIa determines the affinity of the enzyme-substrate interaction, then the isolated FXIa-HC should inhibit the rate of FIX activation by depleting the substrate. However, whereas FXIa/S557A inhibited FIX activation of by FXIa, FXIa-HC did not. Therefore, we examined FIX binding to FXIa/S557A, FXIa-HC, FXIa-LC, FXIa/C362S/C482S, and FXIa/S557A/C362S/C482S. The heavy and light chains are disulfide-linked in FXIa/S557A but not in FXIa/C362S/C482S and FXIa/S557A/C362S/C482S. In an ELISA assay only FXI/S557A ligated FIX with high affinity. Partial reduction of FXIa/S557A to produce heavy and light chains resulted in decreased FIX binding, and this function was regained upon reformation of the disulfide linkage between the heavy and the light chains. We therefore conclude that substrate recognition by the FXIa exosite(s) requires disulfide-linked heavy and light chains.
在凝血因子 XIa(FXIa)的内在途径中,通过裂解酶原在 Arg(145)-Ala(146) 和 Arg(180)-Val(181) 键上,因子 IX(FIX)被激活,释放 11kDa 的激活肽。FXIa 和其分离的轻链(FXIa-LC)以可比的速率切割 S-2366,但 FXIa-LC 是 FIX 的一个很差的激活剂,可能是因为 FIX 在结合 FXIa 重链上的外位点(FXIa-HC)时经历变构修饰,这对于 FXIa 两个裂解键的最佳切割速率是必需的。然而,FIX 与分离的 FXIa-HC 的饱和浓度预孵育并没有导致 FXIa-LC 切割 FIX 的速率增强。此外,如果 FIX 通过 FXIa 的重链外位点结合来确定酶-底物相互作用的亲和力,那么分离的 FXIa-HC 应该通过耗尽底物来抑制 FIX 的激活速率。然而,尽管 FXIa/S557A 抑制了 FXIa 对 FIX 的激活,但 FXIa-HC 没有。因此,我们检查了 FIX 与 FXIa/S557A、FXIa-HC、FXIa-LC、FXIa/C362S/C482S 和 FXIa/S557A/C362S/C482S 的结合。在 FXIa/S557A 中,重链和轻链是通过二硫键连接的,但在 FXIa/C362S/C482S 和 FXIa/S557A/C362S/C482S 中不是。在 ELISA 测定中,只有 FXI/S557A 以高亲和力连接 FIX。FXIa/S557A 的部分还原产生重链和轻链,导致 FIX 结合减少,并且当重链和轻链之间的二硫键重新形成时,这种功能得以恢复。因此,我们得出结论,FXIa 外位点的底物识别需要二硫键连接的重链和轻链。