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人α-凝血酶和γ-凝血酶在纤维蛋白原和因子XIII激活中的催化活性

Catalytic competence of human alpha- and gamma-thrombin in the activation of fibrinogen and factor XIII.

作者信息

Lewis S D, Lorand L, Fenton J W, Shafer J A

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor, 48109.

出版信息

Biochemistry. 1987 Dec 1;26(24):7597-603. doi: 10.1021/bi00398a010.

Abstract

Steady-state kinetic parameters were compared for the action of alpha- and gamma-thrombin on the physiologically important thrombin substrates fibrinogen and factor XIII at 37 degrees C, pH 7.4, and 0.14 M NaCl. gamma-Thrombin, an alpha-thrombin derivative proteolytically cleaved at R-B73 and K-B154, was observed to catalyze the release of fibrinopeptide A (FPA) from fibrinogen with a specificity constant (kcat/Km) of 5 X 10(3) M-1 s-1. This value was approximately 2400-fold lower than the specificity constant for the corresponding alpha-thrombin-catalyzed reaction. The low specificity constant was attributed to an increase in Km and a decrease in kcat for gamma-thrombin-catalyzed release of FPA from fibrinogen. Conversion of alpha-thrombin to gamma-thrombin also resulted in an approximately 800-fold reduction in the specificity constant for thrombin-catalyzed release of fibrinopeptide B (FPB) from fibrin I, as well as a loss in discriminatory power. Whereas alpha-thrombin preferentially released FPA from intact fibrinogen, gamma-thrombin released FPA and FPB from intact fibrinogen at similar rates. In contrast to the large difference in specificity constants observed for alpha- and gamma-thrombin catalysis with fibrin(ogen) as substrate, the specificity constant (2.6 X 10(4) M-1 s-1) observed for gamma-thrombin-catalyzed release of activation peptide from factor XIII was only 5-fold lower than the corresponding value for the alpha-thrombin-catalyzed reaction. Additionally, the promotion of factor XIII activation by fibrin characteristic of the alpha-thrombin-catalyzed reaction did not occur in the gamma-thrombin-catalyzed reaction.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在37℃、pH 7.4和0.14 M氯化钠条件下,比较了α-凝血酶和γ-凝血酶对生理上重要的凝血酶底物纤维蛋白原和因子XIII的作用的稳态动力学参数。γ-凝血酶是一种在R-B73和K-B154处被蛋白水解切割的α-凝血酶衍生物,观察到它催化从纤维蛋白原释放纤维蛋白肽A(FPA),其特异性常数(kcat/Km)为5×10³ M⁻¹ s⁻¹。该值比相应的α-凝血酶催化反应的特异性常数低约2400倍。低特异性常数归因于γ-凝血酶催化从纤维蛋白原释放FPA时Km增加和kcat降低。α-凝血酶向γ-凝血酶的转化还导致凝血酶催化从纤维蛋白I释放纤维蛋白肽B(FPB)的特异性常数降低约800倍,以及鉴别能力丧失。α-凝血酶优先从完整的纤维蛋白原释放FPA,而γ-凝血酶以相似的速率从完整的纤维蛋白原释放FPA和FPB。与以纤维蛋白(原)为底物的α-和γ-凝血酶催化反应中观察到的特异性常数的巨大差异相反,γ-凝血酶催化从因子XIII释放激活肽的特异性常数(2.6×10⁴ M⁻¹ s⁻¹)仅比α-凝血酶催化反应的相应值低5倍。此外,α-凝血酶催化反应中纤维蛋白对因子XIII激活的促进作用在γ-凝血酶催化反应中未出现。(摘要截断于250字)

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