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首页> 外文期刊>Journal of thrombosis and haemostasis: JTH >Role of the gamma-carboxyglutamic acid domain of activated factor X in the presence of calcium during inhibition by antithrombin-heparin.
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Role of the gamma-carboxyglutamic acid domain of activated factor X in the presence of calcium during inhibition by antithrombin-heparin.

机译:在抗凝血酶-肝素抑制作用下,钙存在下活化因子X的γ-羧基谷氨酸结构域的作用。

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BACKGROUND: Factor (F)Xa has 11 gamma-carboxylated glutamic acid (Gla) residues that are involved in calcium-dependent membrane binding. The serpin antithrombin (AT) is an important physiological regulator of FXa activity in an inhibition reaction that is enhanced by heparin. Recently, Rezaie showed that calcium further enhanced the heparin-catalyzed AT inhibition of FXa by promoting 'ternary complex' formation, and these results showed a role for the gamma-carboxyl-glutamate (Gla)-domain of FXa. OBJECTIVES: In this study, we used recombinant FXa mutants to assess the role of individual Gla residues in augmenting or antagonizing the AT-heparin inhibition reaction in the presence of calcium. RESULTS AND CONCLUSIONS: In the absence of heparin, AT inhibition of plasma and the recombinant FXas were essentially equivalent. Similar to plasma-derived FXa, calcium increased about 3-fold the inhibition rate of wild-type recombinant FXa by AT-heparin over that in the presence of EDTA. Interestingly, three different effects were found with the recombinant FXa Gla-mutants for AT-heparin inhibition: (i) Gla-->Asp 14 and 29 were enhanced without calcium; (ii) Gla-->Asp 16 and 26 were not enhanced by calcium; and (iii) Gla-->Asp 19 was essentially the same as wild-type recombinant FXa. These results support a theory that mutating individual Gla residues in FXa alters the calcium-induced conformational changes in the Gla region and affects the antithrombin-heparin inhibition reaction.
机译:背景:(F)Xa因子具有11个γ-羧基化的谷氨酸(Gla)残基,它们与钙依赖性膜结合有关。丝氨酸蛋白酶抑制剂抗凝血酶(AT)是由肝素增强的抑制反应中FXa活性的重要生理调节剂。最近,Rezaie显示钙通过促进“三元复合物”的形成进一步增强了肝素催化的FXa对AT的抑制作用,这些结果表明了FXa的γ-羧基-谷氨酸(Gla)结构域的作用。目的:在这项研究中,我们使用重组FXa突变体评估了钙存在下单个Gla残基在增强或拮抗AT-肝素抑制反应中的作用。结果与结论:在缺乏肝素的情况下,AT对血浆的抑制作用和重组FXas的作用基本相同。与血浆来源的FXa相似,钙与AT-肝素相比,在存在EDTA的情况下,其对野生型重组FXa的抑制率增加了约3倍。有趣的是,重组FXa Gla突变体对AT-肝素的抑制作用发现了三种不同的作用:(i)Gla-> Asp 14和29在没有钙的情况下得到增强; (ii)Gla-> Asp 16和26没有被钙增强; (iii)Gla-> Asp 19与野生型重组FXa基本相同。这些结果支持了这样的理论:突变FXa中的单个Gla残基会改变Gla区域中钙诱导的构象变化,并影响抗凝血酶-肝素抑制反应。

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