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凝血因子V的C2结构域中一个潜在的磷脂结合环发生突变,影响凝血酶原酶复合物的组装。

Mutations in a potential phospholipid binding loop in the C2 domain of factor V affecting the assembly of the prothrombinase complex.

作者信息

Nicolaes G A, Villoutreix B O, Dahlbäck B

机构信息

The Wallenberg Laboratory, Department of Clinical Chemistry, University Hospital Malmö, Lund University, Sweden.

出版信息

Blood Coagul Fibrinolysis. 2000 Jan;11(1):89-100.

Abstract

Activated factor V (FVa) serves as a cofactor to activated factor X in the prothrombinase complex. FVa is homologous to activated factor VIII (FVIIIa), the light chains of both proteins being formed by similar domains (A3-C1-C2). Interaction of FVa and FVIIIa with negatively charged phospholipid membranes is crucial for the function of both cofactors. In both proteins, the C2 domains are important for membrane binding but a detailed understanding of the binding mechanisms is missing. Recently, knowledge has been gained into the three-dimensional structures of the C domains facilitating studies of structure-function relationships. Structural analysis of the C2 domain in FVa predicted a surface-exposed loop (K2060, K2061, S2062, W2063, W2064) to be involved in membrane binding. Three double mutants were created, K2060Q-K2061Q, W2063Y-W2064Y and W2063A-W2064A, and expressed in a transient expression system. In addition, a FV variant in which all four residues were mutated, K2060Q-K2061Q-W2063A-W2064A, was produced. Mutagenesis of the two lysines showed no functional consequences, whereas mutagenesis of the two tryptophanes yielded FVa with impaired ability to interact with the phospholipid, as demonstrated by a poor functional activity at limiting phospholipid concentrations. A molecular model of FVa, anchored at the surface of a phospholipid membrane, was developed and used as a template for the interpretation of the mutagenesis experiments.

摘要

活化因子V(FVa)在凝血酶原酶复合物中作为活化因子X的辅因子。FVa与活化因子VIII(FVIIIa)同源,这两种蛋白质的轻链由相似的结构域(A3 - C1 - C2)组成。FVa和FVIIIa与带负电荷的磷脂膜的相互作用对于这两种辅因子的功能至关重要。在这两种蛋白质中,C2结构域对膜结合很重要,但对结合机制的详细了解尚缺。最近,已获得了C结构域的三维结构知识,这有助于研究结构 - 功能关系。FVa中C2结构域的结构分析预测一个表面暴露环(K2060、K2061、S2062、W2063、W2064)参与膜结合。构建了三个双突变体,K2060Q - K2061Q、W2063Y - W2064Y和W2063A - W2064A,并在瞬时表达系统中表达。此外,还产生了一个所有四个残基都发生突变的FV变体,K2060Q - K2061Q - W2063A - W2064A。两个赖氨酸的诱变未显示出功能后果,而两个色氨酸的诱变产生了与磷脂相互作用能力受损的FVa,这在有限磷脂浓度下功能活性较差得到了证明。构建了一个锚定在磷脂膜表面的FVa分子模型,并将其用作解释诱变实验的模板。

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