首页> 外文期刊>Biochemistry >Structure/function analyses of recombinant variants of human factor Xa: Factor Xa incorporation into prothrombinase on the thrombin-activated platelet surface is not mimicked by synthetic phospholipid vesicles
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Structure/function analyses of recombinant variants of human factor Xa: Factor Xa incorporation into prothrombinase on the thrombin-activated platelet surface is not mimicked by synthetic phospholipid vesicles

机译:人凝血因子Xa重组变体的结构/功能分析:凝血酶激活的血小板表面凝血酶原Xa掺入凝血酶原中不能被合成磷脂囊泡模仿

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This report describes the expression, purification, and characterization of a series of recombinant factor Xa variants bearing aspartate substitutions for each of the glutamate residues which normally undergo gamma-carboxylation. Factor X was expressed in human embryonic kidney cells and purified from conditioned media by immunoaffinity and hydroxylapatite chromatography. Factor X was activated with Russell's viper venom factor X activator, and single-chain unactivated factor X was removed from activated factor X by size-exclusion chromatography. Recombinant wild-type factor Xa had normal activity in a clotting assay, and mutants with aspartate substitutions for glas residues 16, 26, and 29 had no detectable clotting activity. In purified component assays, these gla variants had essentially no detectable activity in the prothrombinase complex assembled on synthetic phospholipid vesicles but had significant activity when the prothrombinase was assembled on thrombin-activated platelets. In addition, the gla 32 variant had normal activity in the platelet prothrombinase but diminished activity in prothrombinase assembled on synthetic PSPC vesicles. These differences were not accounted for by the total phospholipid composition of the thrombin-activated platelet membrane. We have produced fully active recombinant human factor Xa and demonstrated that gla residues 16, 26, and 29 are critical for normal activity of factor Xa. More importantly, this study provides an extensive characterization of macromolecular enzyme complex formation with gla variants of a vitamin K-dependent coagulation protein and provides evidence that prothrombinase complex assembly on thrombin-activated platelets is not equivalent to assembly on synthetic phospholipid vesicles. The data suggest that thrombin-activated platelets possess some element(s) (other than 30% phosphatidyl serine or factor Va), presumably either protein or phospholipid, that serves as a component of the factor Xa binding site. [References: 44]
机译:该报告描述了一系列重组Xa因子变异体的表达,纯化和表征,这些重组Xa变异体对通常经历γ-羧化反应的每个谷氨酸残基进行天冬氨酸取代。因子X在人胚胎肾细胞中表达,并通过免疫亲和和羟磷灰石色谱法从条件培养基中纯化。 X因子用罗素毒蛇毒X因子激活剂激活,单链未激活的X因子通过大小排阻色谱法从激活的X因子中去除。重组野生型因子Xa在凝血试验中具有正常活性,而具有天冬氨酸替代glas残基16、26和29的突变体没有可检测的凝血活性。在纯化的成分测定中,这些gla变体在组装在合成磷脂囊泡上的凝血酶原复合物中基本上没有可检测的活性,但是当凝血酶原组装在凝血酶活化的血小板上时具有显着的活性。另外,gla 32变体在血小板凝血酶原中具有正常活性,但在组装在合成PSPC囊泡上的凝血酶原中具有减弱的活性。凝血酶活化的血小板膜的总磷脂成分不能解释这些差异。我们已经生产了具有完全活性的重组人Xa因子,并证明gla残基16、26和29对Xa因子的正常活性至关重要。更重要的是,这项研究提供了维生素K依赖性凝血蛋白gla变体的大分子酶复合物形成的广泛表征,并提供了凝血酶活化血小板上的凝血酶原酶复合物组装不等同于合成磷脂囊泡上组装的证据。数据表明,凝血酶活化的血小板具有某些成分(30%磷脂酰丝氨酸或因子Va除外),可能是蛋白质或磷脂,它们是因子Xa结合位点的组成部分。 [参考:44]

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