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凝血酶催化的重组人因子V激活。

Thrombin-catalyzed activation of recombinant human factor V.

作者信息

Keller F G, Ortel T L, Quinn-Allen M A, Kane W H

机构信息

Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

Biochemistry. 1995 Mar 28;34(12):4118-24. doi: 10.1021/bi00012a030.

Abstract

Proteolytic activation of human factor V by thrombin results from the cleavage of three peptide bonds at Arg709, Arg1018, and Arg1545. In order to define the functional importance of these sites, mutants with isoleucine substitutions blocking thrombin cleavage at one, two, or all three activation sites were expressed in COS-7 cells. The wild type protein is activated approximately 10-fold by thrombin or Russell's viper venom (RVV-V). Thrombin cleavage at Arg709 alone did not result in an increase in procoagulant activity. Cleavage at both Arg709 and Arg1018 resulted in an approximately 3.4-fold increase in activity. Cleavage at these sites was required for rapid cleavage by thrombin at Arg1545, however, which resulted in maximal activation of the factor V molecule. In contrast, isolated cleavage at Arg1545 by RVV-V was sufficient for efficient and complete activation of factor V. The effect of isoleucine substitutions at one or both thrombin cleavage sites in a B-domain deletion mutant lacking amino acids 811-1491 was also investigated. The specific activity of all four mutants was approximately 30% compared to thrombin activated factor V, indicating that these isoleucine substitutions do not drastically alter the structure of the protein and that cleavage at these sites is not required for the expression of partial procoagulant activity.

摘要

凝血酶对人因子V的蛋白水解激活作用源于在精氨酸709、精氨酸1018和精氨酸1545处三个肽键的裂解。为了确定这些位点的功能重要性,在COS - 7细胞中表达了在一个、两个或所有三个激活位点阻断凝血酶裂解的异亮氨酸替代突变体。野生型蛋白被凝血酶或罗素蝰蛇毒(RVV - V)激活约10倍。仅在精氨酸709处的凝血酶裂解不会导致促凝活性增加。在精氨酸709和精氨酸1018处的裂解导致活性增加约3.4倍。然而,凝血酶在精氨酸1545处的快速裂解需要在这些位点的裂解,这导致因子V分子的最大激活。相比之下,RVV - V在精氨酸1545处的单独裂解足以有效且完全激活因子V。还研究了在缺乏氨基酸811 - 1491的B结构域缺失突变体中一个或两个凝血酶裂解位点的异亮氨酸替代的影响。与凝血酶激活的因子V相比,所有四个突变体的比活性约为30%,表明这些异亮氨酸替代不会显著改变蛋白质的结构,并且这些位点的裂解对于部分促凝活性的表达不是必需的。

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