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首页> 外文期刊>Biochemistry >Calcium enhances heparin catalysis of the antithrombin-factor Xa reaction by promoting the assembly of an intermediate heparin-antithrombin-factor Xa bridging complex. Demonstration by rapid kinetics studies
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Calcium enhances heparin catalysis of the antithrombin-factor Xa reaction by promoting the assembly of an intermediate heparin-antithrombin-factor Xa bridging complex. Demonstration by rapid kinetics studies

机译:钙通过促进中间肝素-抗凝血酶-因子Xa桥接复合物的组装来增强抗凝血酶-Xa反应的肝素催化。通过快速动力学研究论证

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摘要

Heparin catalyzes the inhibition of factor Xa by antithrombin mainly through an allosteric activation of the serpin inhibitor, but an alternative heparin bridging mechanism has been suggested to enhance the catalysis in the presence of physiologic calcium levels due to calcium interactions with the Gla domain exposing a heparin binding exosite in factor Xa. To provide direct evidence for this bridging mechanism, we studied the heparin-catalyzed reaction of antithrombin with factor Xa, Gla-domainless factor Xa (GDFXa), and a heparin binding exosite mutant of GDFXa in the absence and presence of calcium using rapid kinetic methods. The pseudo-first-order rate constant for factor Xa inhibition by antithrombin complexed with a long-chain similar to 70-saccharide heparin showed a saturable dependence on inhibitor concentration in the presence but not in the absence of 2.5 mM Ca2+, indicating the formation of an intermediate heparin-serpin-proteinase encounter complex with a dissociation constant of similar to 90 nM prior to formation of the stable serpin-proteinase complex with a rate constant of similar to 20 s(-1). Similar saturation kinetics were observed for the inhibition of GDFXa by the antithrombin-heparin complex, except that Ca2+ was not required for the effect. By contrast, no Ca2+-dependent saturation of the inhibition rate constant was detectable over the same range of inhibitor concentrations for reactions of either a short-chain similar to 26-saccharide high-affinity heparin-antithrombin complex with factor Xa or the long-chain heparin-antithrombin complex with the heparin binding exosite mutant, GDFXa R240A. These findings suggest that binding of full-length heparin chains to an exosite of factor Xa in the presence of Ca2+ produces a chain-length-dependent lowering of the dissociation constant for assembly of the intermediate heparin-antithrombin-factor Xa encounter complex, resulting in a several 100-fold rate enhancement by a heparin bridging mechanism. [References: 45]
机译:肝素主要通过丝氨酸蛋白酶抑制剂的变构激活来催化抗凝血酶对因子Xa的抑制作用,但是由于存在生理性钙水平,由于与与肝素接触的Gla结构域之间的钙相互作用,人们提出了一种替代性肝素桥联机制来增强催化作用。在因子Xa中结合异位点。为了为这种桥接机制提供直接的证据,我们使用快速动力学方法研究了钙不存在和存在下肝素催化抗凝血酶与因子Xa,Gla-domainless Xa(GDFXa)和肝素结合型GDFXa异位突变体的反应。 。抗凝血酶与类似于70个糖的肝素的长链复合的抗凝血酶抑制因子Xa的假一级速率常数显示在存在或不存在2.5 mM Ca2 +的情况下对抑制剂浓度的饱和依赖性,表明形成了一个中间的肝素-丝氨酸蛋白酶蛋白酶遇到复合物,其解离常数类似于90 nM,然后形成速率近似于20 s(-1)的稳定的丝氨酸蛋白酶-蛋白酶复合物。观察到抗凝血酶-肝素复合物对GDFXa的抑制具有相似的饱和动力学,只是该作用不需要Ca2 +。相比之下,在相同浓度的抑制剂浓度范围内,对于类似于26糖的高亲和力肝素-抗凝血酶复合物的短链与Xa因子或长链的反应,均未检测到Ca2 +依赖性的抑制率常数饱和肝素-抗凝血酶复合物与肝素结合异位突变体GDFXa R240A。这些发现表明,在存在Ca 2+的情况下,全长肝素链与因子Xa的外位结合会导致解链常数的链长依赖性降低,从而使中间肝素与抗凝血酶因子Xa的复合体组装变得复杂。肝素桥联机制可将速率提高几百倍。 [参考:45]

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