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通过增加肝素与纤维蛋白的亲和力,Zn(2+) 促进了肝素-凝血酶-纤维蛋白三元复合物的形成,从而保护凝血酶免受抗凝血酶的抑制。

By increasing the affinity of heparin for fibrin, Zn(2+) promotes the formation of a ternary heparin-thrombin-fibrin complex that protects thrombin from inhibition by antithrombin.

机构信息

Department of Medicine, McMaster University, Hamilton, Ontario, Canada.

出版信息

Biochemistry. 2012 Oct 9;51(40):7964-73. doi: 10.1021/bi301046b. Epub 2012 Sep 28.

Abstract

Heparin binds fibrin and, by bridging thrombin onto fibrin, promotes the formation of a ternary heparin-thrombin-fibrin complex that protects thrombin from inhibition by antithrombin. Because thrombin binds γ(A)/γ'-fibrin, a variant with an extended γ-chain, with higher affinity than the bulk γ(A)/γ(A)-fibrin, γ(A)/γ'-fibrin affords bound thrombin more protection from inhibition by antithrombin-heparin. We examined the effect of Zn(2+) on heparin-thrombin-fibrin complex formation because Zn(2+) modulates heparin-protein interactions. Zn(2+) increased the affinity of heparin for γ(A)/γ(A)- and γ(A)/γ'-fibrin by 4.3- and 3.7-fold, respectively, but had no effect on the affinity of thrombin for either form of fibrin. In contrast, in the presence of heparin, Zn(2+) increased the affinity of thrombin for γ(A)/γ(A)-fibrin 4-fold (from a K(d) value of 0.8 to 0.2 μM) and slowed the rate of thrombin dissociation from γ(A)/γ(A)-fibrin clots. These findings suggest that Zn(2+) enhances the formation of ternary heparin-thrombin-fibrin complexes with γ(A)/γ(A)-fibrin but does not influence the already high affinity interaction of thrombin with γ(A)/γ'-fibrin. Consistent with this concept, in the presence of Zn(2+), γ(A)/γ(A)-fibrin protected thrombin from inhibition by antithrombin-heparin to a similar extent as γ(A)/γ'-fibrin. Therefore, by enhancing the binding of heparin to fibrin, physiological concentrations of Zn(2+) render fibrin-bound thrombin more protected from inhibition by antithrombin. Because fibrin-bound thrombin can trigger thrombus expansion, these findings help to explain why recurrent thrombosis can occur despite heparin treatment.

摘要

肝素结合纤维蛋白,并通过将凝血酶桥接到纤维蛋白上,促进形成三元肝素-凝血酶-纤维蛋白复合物,从而保护凝血酶免受抗凝血酶的抑制。由于凝血酶结合 γ(A)/γ'-纤维蛋白的亲和力高于大量 γ(A)/γ(A)-纤维蛋白,因此 γ(A)/γ'-纤维蛋白赋予结合的凝血酶更多的抗凝血酶-肝素抑制保护。我们研究了 Zn(2+) 对肝素-凝血酶-纤维蛋白复合物形成的影响,因为 Zn(2+) 调节肝素-蛋白相互作用。Zn(2+) 分别使肝素与 γ(A)/γ(A)-和 γ(A)/γ'-纤维蛋白的亲和力增加了 4.3 倍和 3.7 倍,但对凝血酶与任何一种纤维蛋白形式的亲和力没有影响。相比之下,在肝素存在的情况下,Zn(2+) 使凝血酶与 γ(A)/γ(A)-纤维蛋白的亲和力增加了 4 倍(从 K(d) 值 0.8 μM 增加到 0.2 μM),并减缓了凝血酶从 γ(A)/γ(A)-纤维蛋白凝块中的解离速率。这些发现表明,Zn(2+) 增强了与 γ(A)/γ(A)-纤维蛋白形成三元肝素-凝血酶-纤维蛋白复合物的能力,但不影响凝血酶与 γ(A)/γ'-纤维蛋白的高亲和力相互作用。与这一概念一致的是,在 Zn(2+) 存在的情况下,γ(A)/γ(A)-纤维蛋白对凝血酶的保护程度与 γ(A)/γ'-纤维蛋白相似,使其免受抗凝血酶-肝素的抑制。因此,通过增强肝素与纤维蛋白的结合,生理浓度的 Zn(2+) 使纤维蛋白结合的凝血酶更能免受抗凝血酶的抑制。由于纤维蛋白结合的凝血酶可以引发血栓扩张,这些发现有助于解释为什么尽管肝素治疗仍会发生复发性血栓形成。

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