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温度对凝血酶-纤维蛋白原相互作用中结合步骤的影响。

Effect of temperature on the association step in thrombin-fibrinogen interaction.

作者信息

Picozzi M, De Cristofaro R

机构信息

Centro Ricerche Fisiopatologia dell'Emostasi, Università Cattolica S. Cuore, Roma, Italy.

出版信息

Biochem J. 1993 Sep 1;294 ( Pt 2)(Pt 2):563-7. doi: 10.1042/bj2940563.

Abstract

Kinetics of fibrinopeptide A release by human alpha-thrombin at low fibrinogen concentration allowed us to measure the specificity constant, i.e. kcat/Km, for the interaction between the enzyme and human fibrinogen. A study of the dependence of the ratio kcat/Km upon the viscosity of the medium revealed that fibrinogen acts as a 'sticky' substrate, or, in other words, as a substrate that dissociates from the Michaelis complex with a rate comparable with that for acylation of the active site. These experiments allowed us also to compute for the first time the second-order rate constant for thrombin-fibrinogen association. A study of the temperature-dependence of the association rate, carried out over the temperature range spanning from 10 degrees C to 37 degrees C (pH 7.50; I0.15) permitted the estimation of the enthalpy and entropy of activation, delta H++ and delta S++, which were found to be equal to 5.69 +/- 0.77 kJ.mol-1 and -80.25 +/- 1.79 kJ.K-1.mol-1 respectively. In addition, the values of Km for thrombin-fibrinogen reaction were measured at different solution viscosities in order to derive the equilibrium dissociation constant, Ks, of this interaction. These experiments showed that the Ks values for thrombin-fibrinogen binding was equal to 1.8 microM at 25 degrees C. Altogether these results indicated that fibrinogen, though interacting with both the catalytic pocket and the fibrinogen recognition site on the thrombin molecule, dissociates from Michaelis complex with a rate comparable with that shown by amide substrates, which interact only with the catalytic site.

摘要

在低纤维蛋白原浓度下,人α-凝血酶释放纤维蛋白肽A的动力学过程使我们能够测定该酶与人类纤维蛋白原相互作用的特异性常数,即kcat/Km。对kcat/Km比值与介质粘度依赖性的研究表明,纤维蛋白原起着“粘性”底物的作用,或者换句话说,它是一种从米氏复合物解离的速率与活性位点酰化速率相当的底物。这些实验还使我们首次计算出凝血酶-纤维蛋白原结合的二级速率常数。在10℃至37℃(pH 7.50;离子强度0.15)的温度范围内对结合速率的温度依赖性进行研究,从而估算出活化焓和活化熵,即ΔH++和ΔS++,结果发现它们分别等于5.69±0.77 kJ·mol-1和-80.25±1.79 kJ·K-1·mol-1。此外,在不同溶液粘度下测量凝血酶-纤维蛋白原反应的Km值,以推导这种相互作用的平衡解离常数Ks。这些实验表明,凝血酶-纤维蛋白原结合的Ks值在25℃时等于1.8 μM。总之,这些结果表明纤维蛋白原虽然与凝血酶分子上的催化口袋和纤维蛋白原识别位点都相互作用,但它从米氏复合物解离的速率与仅与催化位点相互作用的酰胺底物所显示的速率相当。

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本文引用的文献

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