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一种含有凝血酶原Gla结构域的嵌合蛋白C表现出增强的抗凝活性和改变的磷脂特异性。

A chimeric protein C containing the prothrombin Gla domain exhibits increased anticoagulant activity and altered phospholipid specificity.

作者信息

Smirnov M D, Safa O, Regan L, Mather T, Stearns-Kurosawa D J, Kurosawa S, Rezaie A R, Esmon N L, Esmon C T

机构信息

Cardiovascular Biology Research Program, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma 73104, USA.

出版信息

J Biol Chem. 1998 Apr 10;273(15):9031-40. doi: 10.1074/jbc.273.15.9031.

Abstract

To determine the structural basis of phosphatidylethanolamine (PE)-dependent activated protein C (APC) activity, we prepared a chimeric molecule in which the Gla domain and hydrophobic stack of protein C were replaced with the corresponding region of prothrombin. APC inactivation of factor Va was enhanced 10-20-fold by PE. Protein S enhanced inactivation 2-fold and independently of PE. PE and protein S had little effect on the activity of the chimera. Factor Va inactivation by APC was approximately 5-fold less efficient than with the chimera on vesicles lacking PE and slightly more efficient on vesicles containing PE. The cleavage patterns of factor Va by APC and the chimera were similar, and PE enhanced the rate of Arg506 and Arg306 cleavage by APC but not the chimera. APC and the chimera bound to phosphatidylserine:phosphatidylcholine vesicles with similar affinity (Kd approximately 500 nM), and PE increased affinity 2-3-fold. Factor Va and protein S synergistically increased the affinity of APC on vesicles without PE to 140 nM and with PE to 14 nM, but they were less effective in enhancing chimera binding to either vesicle. In a factor Xa one-stage plasma clotting assay, the chimera had approximately 5 times more anticoagulant activity than APC on PE-containing vesicles. Unlike APC, which showed a 10 fold dependence on protein S, the chimera was insensitive to protein S. To map the site of the PE and protein S dependence further, we prepared a chimera in which residues 1-22 were derived from prothrombin and the remainder were derived from protein C. This protein exhibited PE and protein S dependence. Thus, these special properties of the protein C Gla domain are resident outside of the region normally hypothesized to be critical for membrane interaction. We conclude that the protein C Gla domain possesses unique properties allowing synergistic interaction with factor Va and protein S on PE-containing membranes.

摘要

为了确定磷脂酰乙醇胺(PE)依赖性活化蛋白C(APC)活性的结构基础,我们制备了一种嵌合分子,其中蛋白C的Gla结构域和疏水堆积被凝血酶原的相应区域所取代。PE使APC对因子Va的失活作用增强了10至20倍。蛋白S使失活作用增强了2倍,且与PE无关。PE和蛋白S对嵌合体的活性影响很小。在缺乏PE的囊泡上,APC对因子Va的失活效率比嵌合体低约5倍,而在含有PE的囊泡上则略高。APC和嵌合体对因子Va的切割模式相似,PE增强了APC对Arg506和Arg306的切割速率,但对嵌合体没有影响。APC和嵌合体以相似的亲和力(解离常数Kd约为500 nM)结合磷脂酰丝氨酸:磷脂酰胆碱囊泡,PE使亲和力增加了2至3倍。因子Va和蛋白S协同将APC在无PE囊泡上的亲和力提高到140 nM,在有PE囊泡上提高到14 nM,但它们在增强嵌合体与任何一种囊泡的结合方面效果较差。在因子Xa一步血浆凝血试验中,嵌合体在含PE的囊泡上的抗凝活性比APC高约5倍。与对蛋白S有10倍依赖性的APC不同,嵌合体对蛋白S不敏感。为了进一步确定PE和蛋白S依赖性的位点,我们制备了一种嵌合体,其中第1至22位残基来自凝血酶原,其余部分来自蛋白C。这种蛋白表现出PE和蛋白S依赖性。因此,蛋白C Gla结构域的这些特殊性质存在于通常被认为对膜相互作用至关重要的区域之外。我们得出结论,蛋白C Gla结构域具有独特的性质,允许在含PE的膜上与因子Va和蛋白S进行协同相互作用。

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