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凝血因子Va的C2结构域中的色氨酸2063和色氨酸2064是与磷脂膜高亲和力结合所必需的,但不是凝血酶原酶复合物组装所必需的。

Trp2063 and Trp2064 in the factor Va C2 domain are required for high-affinity binding to phospholipid membranes but not for assembly of the prothrombinase complex.

作者信息

Peng Weimin, Quinn-Allen Mary Ann, Kim Suhng Wook, Alexander Kenneth A, Kane William H

机构信息

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

出版信息

Biochemistry. 2004 Apr 13;43(14):4385-93. doi: 10.1021/bi035763o.

Abstract

Interactions between factor Va and membrane phosphatidylserine (PS) regulate activity of the prothrombinase complex. Two solvent-exposed hydrophobic residues located in the C2 domain, Trp(2063) and Trp(2064), have been proposed to contribute to factor Va membrane interactions by insertion into the hydrophobic membrane bilayer. However, the prothrombinase activity of rHFVa W(2063, 2064)A was found to be significantly impaired only at low concentrations of PS (5 mol %). In this study, we find that 10-fold higher concentrations of mutant factor Va are required for half-maximal prothrombinase activity on membranes containing 25% PS. The ability of the mutant factor Va to interact with factor Xa on a membrane was also impaired since 4-fold higher concentrations of factor Xa were required for half-maximal prothrombinase activity. The interaction of factor Va with 25% PS membranes was also characterized using fluorescence energy transfer and surface plasmon resonance. We found that the affinity of mutant factor Va for membranes containing 25% PS was reduced at least 400-fold with a K(d) > 10(-7) M. The binding of mutant factor Va to 25% PS membranes was markedly enhanced in the presence of factor Xa, indicating stabilization of the factor Va-factor Xa-membrane complex. Our findings indicate that Trp(2063) and Trp(2064) play a critical role in the high-affinity binding of factor Va to PS membranes. It remains to be determined whether occupancy of this PS binding site in factor Va is also required for high-affinity binding to factor Xa.

摘要

因子Va与膜磷脂酰丝氨酸(PS)之间的相互作用调节凝血酶原酶复合物的活性。有人提出,位于C2结构域的两个溶剂暴露的疏水残基Trp(2063)和Trp(2064)通过插入疏水膜双层来促进因子Va与膜的相互作用。然而,发现rHFVa W(2063, 2064)A的凝血酶原酶活性仅在低浓度PS(5 mol%)时显著受损。在本研究中,我们发现,对于含25% PS的膜,半最大凝血酶原酶活性需要10倍浓度更高的突变型因子Va。突变型因子Va在膜上与因子Xa相互作用的能力也受损,因为半最大凝血酶原酶活性需要4倍浓度更高的因子Xa。还使用荧光能量转移和表面等离子体共振对因子Va与含25% PS的膜的相互作用进行了表征。我们发现,突变型因子Va对含25% PS的膜的亲和力降低了至少400倍,K(d) > 10(-7) M。在因子Xa存在的情况下,突变型因子Va与含25% PS的膜的结合明显增强,表明因子Va-因子Xa-膜复合物得到稳定。我们的研究结果表明,Trp(2063)和Trp(2064)在因子Va与PS膜的高亲和力结合中起关键作用。因子Va中这个PS结合位点的占据对于与因子Xa的高亲和力结合是否也是必需的,仍有待确定。

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