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血小板因子Xa受体

Platelet factor Xa receptor.

作者信息

Tracy P B, Nesheim M E, Mann K G

机构信息

Department of Biochemistry, University of Vermont College of Medicine, Burlington 05405.

出版信息

Methods Enzymol. 1992;215:329-60. doi: 10.1016/0076-6879(92)15075-n.

Abstract

The assembly and function of the prothrombinase complex on the bovine and human platelet membrane is mediated through binding interactions in which factor Va bound to the platelet surface forms at least part of the "receptor" for factor Xa in a 1:1 stoichiometric complex. A model depicting these binding interactions is shown in Fig. 12. Data from our laboratory indicate that the prothrombinase catalyst assembles in an analogous manner on the surface of monocytes, lymphocytes, neutrophils, and well-defined phospholipid vesicles employed in model systems. The 74,000-Da subunit of factor Va, component E, which mediates the binding of factor Va to either bovine platelets, human monocytes, or phospholipid vesicles, is shown binding to the cell membrane through its putative "receptor." The 94,000-Da subunit of factor Va, component D, is associated with the membrane surface through its metal ion-dependent interaction with component E. Factor Va forms at least part of the receptor that mediates the binding of factor Xa to an appropriate membrane surface, because component E has been shown to contribute significantly to the interaction of factor Xa with either the platelet, monocyte, or vesicle membrane surface. Our data do not preclude the possibility that component D contributes to the binding of factor Xa and the function of the prothrombinase complex. Component D appears to be important for several reasons. Cleavage of component D by activated protein C results in the complete loss of factor Va cofactor activity. An interaction between factor Xa and component D is implied from the observation that factor Xa protects factor Va from activated protein C inactivation. Furthermore, the binding of factor Xa to platelet-bound factor Va results in the time-dependent cleavage of components D and D'. Because component D is not required absolutely for prothrombinase complex assembly, we would speculate that it may be important in mediating prothrombin binding (depicted as a three-domain molecule) and increasing the catalytic efficiency of the enzymatic complex.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

凝血酶原酶复合物在牛和人血小板膜上的组装及功能是通过结合相互作用介导的,其中结合于血小板表面的因子Va在1:1化学计量复合物中形成因子Xa“受体”的至少一部分。图12展示了描述这些结合相互作用的模型。我们实验室的数据表明,凝血酶原酶催化剂以类似方式在单核细胞、淋巴细胞、嗜中性粒细胞以及模型系统中使用的明确磷脂囊泡表面组装。因子Va的74,000道尔顿亚基,即组分E,介导因子Va与牛血小板、人单核细胞或磷脂囊泡的结合,它通过其假定的“受体”与细胞膜结合。因子Va的94,000道尔顿亚基,即组分D,通过其与组分E的金属离子依赖性相互作用与膜表面相关联。因子Va形成介导因子Xa与合适膜表面结合的受体的至少一部分,因为已表明组分E对因子Xa与血小板、单核细胞或囊泡膜表面的相互作用有显著贡献。我们的数据并不排除组分D对因子Xa结合及凝血酶原酶复合物功能有贡献的可能性。组分D显得重要有几个原因。活化蛋白C对组分D的切割导致因子Va辅因子活性完全丧失。从因子Xa保护因子Va免受活化蛋白C失活这一观察结果暗示了因子Xa与组分D之间的相互作用。此外,因子Xa与结合于血小板的因子Va的结合导致组分D和D'的时间依赖性切割。由于凝血酶原酶复合物组装并非绝对需要组分D,我们推测它可能在介导凝血酶原结合(描绘为三结构域分子)及提高酶复合物的催化效率方面很重要。(摘要截短于400字)

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