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钙通过模板机制增强抗凝血酶与因子Xa反应中的肝素催化作用。有证据表明钙可减轻肝素与因子Xa结合时Gla结构域的拮抗作用。

Calcium enhances heparin catalysis of the antithrombin-factor Xa reaction by a template mechanism. Evidence that calcium alleviates Gla domain antagonism of heparin binding to factor Xa.

作者信息

Rezaie A R

机构信息

Cardiovascular Biology Research Program, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma 73104, USA.

出版信息

J Biol Chem. 1998 Jul 3;273(27):16824-7. doi: 10.1074/jbc.273.27.16824.

Abstract

It is believed that heparin accelerates factor Xa (FXa) inactivation by antithrombin (AT) by conformationally activating the inhibitor rather than by bridging AT and FXa in a ternary complex (template effect). This is derived from kinetic studies done in the absence of Ca2+ or in the presence of EDTA. To test the possibility that the anionic Gla domain of FXa, when not neutralized by Ca2+ ions, prevents heparin binding to FXa, the heparin and pentasaccharide dependence of FXa inactivation by AT in both the absence (100 microM EDTA) and presence of Ca2+ (2.5 mM) was studied using wild-type FXa and a FXa derivative that lacks the Gla domain (GDFXa). AT inactivated both FXa derivatives similarly in both the absence and presence of Ca2+ (k2 = 1.7-2.5 x 10(3) M-1 s-1). The active AT-binding pentasaccharide also accelerated the inactivation rates of both derivatives similarly in both the absence and presence of Ca2+ (k2 = 5.7-8.0 x 10(5) M-1 s-1). However, in the presence of an optimum concentration of heparin ( approximately 50 nM) the inactivation rate constant of FXa in the presence of Ca2+ (k2 = 4.4 x 10(7) M-1 s-1) was 13-fold higher than the rate constant in the absence of Ca2+ (k2 = 3.5 x 10(6) M-1 s-1). Heparin acceleration of GDFXa inactivation by AT was rapid and insensitive to the presence or absence of Ca2+ (k2 = 5.1-5.9 x 10(7) M-1 s-1). The additional cofactor effect of heparin with all FXa derivatives was a bell-shaped curve, which disappeared if the ionic strength of the reaction was increased to approximately 0.4. These results suggest that although the major effect of heparin in acceleration of FXa inactivation is through a heparin-induced conformational change in the reactive site loop of AT, the template effect of heparin, nevertheless, contributes significantly to rapid FXa inactivation at physiological Ca2+.

摘要

据信,肝素通过构象激活抗凝血酶(AT)来加速其对因子Xa(FXa)的灭活,而非通过在三元复合物中桥接AT和FXa(模板效应)。这一结论源于在无Ca2+或存在乙二胺四乙酸(EDTA)的情况下所进行的动力学研究。为了验证在未被Ca2+离子中和时,FXa的阴离子γ-羧基谷氨酸(Gla)结构域会阻止肝素与FXa结合这一可能性,我们使用野生型FXa和一种缺乏Gla结构域的FXa衍生物(GDFXa),研究了在无(100微摩尔/升EDTA)和有Ca2+(2.5毫摩尔/升)存在的情况下,AT对FXa灭活的肝素和五糖依赖性。在无Ca2+和有Ca2+存在的情况下,AT对两种FXa衍生物的灭活作用相似(二级反应速率常数k2 = 1.7 - 2.5×10³ M⁻¹ s⁻¹)。具有活性的AT结合五糖在无Ca2+和有Ca2+存在的情况下,同样加速了两种衍生物的灭活速率(k2 = 5.7 - 8.0×10⁵ M⁻¹ s⁻¹)。然而,在存在最佳浓度肝素(约50纳摩尔/升)的情况下,有Ca2+时FXa的灭活速率常数(k2 = 4.4×10⁷ M⁻¹ s⁻¹)比无Ca2+时的速率常数(k2 = 3.5×10⁶ M⁻¹ s⁻¹)高13倍。肝素对GDFXa被AT灭活的加速作用迅速,且对Ca2+的存在与否不敏感(k2 = 5.1 - 5.9×10⁷ M⁻¹ s⁻¹)。肝素对所有FXa衍生物的额外辅因子效应呈钟形曲线,如果将反应的离子强度增加到约0.4,该曲线消失。这些结果表明,尽管肝素加速FXa灭活的主要作用是通过肝素诱导AT反应位点环的构象变化,但肝素的模板效应在生理Ca2+浓度下对快速灭活FXa也有显著贡献。

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