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在溶液中,磷脂酰丝氨酸诱导的因子 Xa 二聚化和与因子 Va 的结合是竞争过程。

Phosphatidylserine-induced factor Xa dimerization and binding to factor Va are competing processes in solution.

机构信息

Department of Biochemistry and Biophysics and Program in Molecular and Cellular Biophysics, CB #7260, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7260, USA.

出版信息

Biochemistry. 2013 Jan 8;52(1):143-51. doi: 10.1021/bi301239z. Epub 2012 Dec 27.

Abstract

A soluble, short chain phosphatidylserine, 1,2-dicaproyl-sn-glycero-3-phospho-l-serine (C6PS), binds to discrete sites on FXa, FVa, and prothrombin to alter their conformations, to promote FXa dimerization (K(d) ~ 14 nM), and to enhance both the catalytic activity of FXa and the cofactor activity of FVa. In the presence of calcium, C6PS binds to two sites on FXa, one in the epidermal growth factor-like (EGF) domain and one in the catalytic domain; the latter interaction is sensitive to Na(+) binding and probably represents a protein recognition site. Here we ask whether dimerization of FXa and its binding to FVa in the presence of C6PS are competitive processes. We monitored FXa activity at 5, 20, and 50 nM FXa while titrating with FVa in the presence of 400 μM C6PS and 3 or 5 mM Ca(2+) to show that the apparent K(d) of FVa-FXa interaction increased with an increase in FXa concentration at 5 mM Ca(2+), but the K(d) was only slightly affected at 3 mM Ca(2+). A mixture of 50 nM FXa and 50 nM FVa in the presence of 400 μM C6PS yielded both Xa homodimers and Xa·Va heterodimers, but no FXa dimers bound to FVa. A mutant FXa (R165A) that has reduced prothrombinase activity showed both weakened dimerization (K(d) ~ 147 nM) and weakened FVa binding (apparent K(d) values of 58, 92, and 128 nM for 5, 20, and 50 nM R165A FXa, respectively). Native gel electrophoresis showed that the GLA-EGF(NC) fragment of FXa (lacking the catalytic domain) neither dimerized nor formed a complex with FVa in the presence of 400 μM C6PS and 5 mM Ca(2+). Our results demonstrate that the dimerization site and FVa-binding site are both located in the catalytic domain of FXa and that these sites are linked thermodynamically.

摘要

一种可溶的短链磷脂酰丝氨酸,1,2-二肉豆蔻酰基-sn-甘油-3-磷酸-L-丝氨酸(C6PS),可与 FXa、FVa 和凝血酶原上的离散位点结合,改变它们的构象,促进 FXa 二聚体形成(K(d)14 nM),并增强 FXa 的催化活性和 FVa 的辅因子活性。在钙离子存在的情况下,C6PS 结合到 FXa 的两个位点上,一个在表皮生长因子样(EGF)结构域,另一个在催化结构域;后一种相互作用对 Na(+)结合敏感,可能代表一个蛋白质识别位点。在这里,我们想知道 FXa 在 C6PS 存在下的二聚化及其与 FVa 的结合是否是竞争过程。我们在 5、20 和 50 nM FXa 存在下监测 FXa 活性,同时在 400 μM C6PS 和 3 或 5 mM Ca(2+)存在下用 FVa 滴定,结果表明 FVa-FXa 相互作用的表观 K(d)随着 5 mM Ca(2+)下 FXa 浓度的增加而增加,但在 3 mM Ca(2+)下 K(d) 仅略有影响。在 400 μM C6PS 存在下,50 nM FXa 和 50 nM FVa 的混合物产生了 Xa 同源二聚体和 Xa·Va 异源二聚体,但没有 FXa 二聚体与 FVa 结合。一种突变的 FXa(R165A),其凝血酶原酶活性降低,显示出二聚化减弱(K(d)147 nM)和 FVa 结合减弱(5、20 和 50 nM R165A FXa 的表观 K(d)值分别为 58、92 和 128 nM)。天然凝胶电泳显示,FXa 的 GLA-EGF(NC)片段(缺乏催化结构域)在 400 μM C6PS 和 5 mM Ca(2+)存在下既不二聚化也不与 FVa 形成复合物。我们的结果表明,二聚化位点和 FVa 结合位点都位于 FXa 的催化结构域,并且这些位点在热力学上是相关的。

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