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α-凝血酶与纤维蛋白的结合取决于纤维蛋白网络的质量。

Binding of alpha-thrombin to fibrin depends on the quality of the fibrin network.

作者信息

Bänninger H, Lämmle B, Furlan M

机构信息

Central Haematology Laboratory, The University, Inselspital, Bern, Switzerland.

出版信息

Biochem J. 1994 Feb 15;298 ( Pt 1)(Pt 1):157-63. doi: 10.1042/bj2980157.

Abstract

Binding of human alpha-thrombin to fibrin was studied in a purified system at pH 7.35, I 0.08 and 37 degrees C. Binding experiments with active thrombin resulted in fibrin clots of variable quality, depending on the thrombin concentration: opaque gels composed of 'coarse' network were produced at low thrombin concentrations, while increasing concentrations of thrombin led to more translucent 'fine' gels. Scatchard analysis showed a non-linear dependence of thrombin binding to fibrin, suggesting the existence in fibrin(ogen) of multiple classes of binding sites for thrombin. Binding of catalytic-site-inhibited thrombin was investigated in clots of defined quality produced with three different concentrations of a thrombin-like enzyme, batroxobin (EC 3.4.21.29). Straight lines of different slopes were established by Scatchard analysis of binding data at each fixed batroxobin concentration. These results favour a model according to which binding affinity for thrombin depends on the thickness of fibrin bundles. Labelled active-site-inactivated thrombin incorporated in batroxobin-induced clots was only sparingly released during incubation for 24 h in the presence of a 200-fold excess of unlabelled thrombin, indicating that thrombin binding to fibrin is not reversible and that Scatchard analysis is not appropriate for quantification of binding parameters. Irreversible binding of thrombin appears to reflect trapping of thrombin molecules within fibrin fibres. The amount of trapped thrombin depends on the quality of the fibrin fibres, which in turn is determined by the concentration of the clotting enzyme.

摘要

在pH 7.35、离子强度0.08和37℃的纯化体系中研究了人α-凝血酶与纤维蛋白的结合。用活性凝血酶进行的结合实验产生了质量各异的纤维蛋白凝块,这取决于凝血酶的浓度:低凝血酶浓度时会产生由“粗糙”网络组成的不透明凝胶,而凝血酶浓度增加会导致形成更半透明的“精细”凝胶。Scatchard分析表明凝血酶与纤维蛋白的结合呈非线性依赖关系,提示纤维蛋白(原)中存在多种凝血酶结合位点。在由三种不同浓度的类凝血酶巴曲酶(EC 3.4.21.29)产生的特定质量的凝块中研究了催化位点被抑制的凝血酶的结合。通过对每个固定巴曲酶浓度下结合数据的Scatchard分析建立了不同斜率的直线。这些结果支持这样一种模型,即对凝血酶的结合亲和力取决于纤维蛋白束的厚度。掺入巴曲酶诱导凝块中的标记活性位点失活的凝血酶在存在200倍过量未标记凝血酶的情况下孵育24小时期间仅少量释放,这表明凝血酶与纤维蛋白的结合是不可逆的,并且Scatchard分析不适用于结合参数的定量。凝血酶的不可逆结合似乎反映了凝血酶分子被困在纤维蛋白纤维中。被困凝血酶的量取决于纤维蛋白纤维的质量,而纤维蛋白纤维的质量又由凝血酶的浓度决定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0737/1137996/ead28c7e2490/biochemj00093-0153-a.jpg

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