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首页> 外文期刊>Biochemistry >The factor IXa heparin-binding exosite is a cofactor interactive site: Mechanism for antithrombin-independent inhibition of intrinsic tenase by heparin
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The factor IXa heparin-binding exosite is a cofactor interactive site: Mechanism for antithrombin-independent inhibition of intrinsic tenase by heparin

机译:IXa因子与肝素结合的异位点是一个辅因子相互作用位点:肝素抗凝血酶独立抑制固有肌腱酶的机制

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摘要

Therapeutic heparin concentrations selectively inhibit the intrinsic tenase complex in an antithrombin-independent manner. To define the molecular target and mechanism for this inhibition, recombinant human factor IXa with alanine substituted for solvent-exposed basic residues (H92, R170, R233, K241) in the protease domain was characterized with regard to enzymatic activity, heparin affinity, and inhibition by low molecular weight heparin (LMWH). These mutations only had modest effects on chromogenic substrate hydrolysis and the kinetics of factor X activation by factor IXa. Likewise, factor IXa H92A and K241 A showed factor IXa-factor VIIIa affinity similar to factor IXa wild type (WT). In contrast, factor IXa R170A demonstrated a 4-fold increase in apparent factor IXa-factor VIIIa affinity and dramatically increased coagulant activity relative to factor IXa WT. Factor IXa R233A demonstrated a 2.5-fold decrease in cofactor affinity and reduced ability to stabilize cofactor half-life relative to wild type, suggesting that interaction with the factor V111a A2 domain was disrupted. Markedly (R233A) or moderately (H92A, R170A, K241A) reduced binding to immobilized LMWH was observed for the mutant proteases. Solution competition demonstrated that the EC50 for LMWH was increased less than 2-fold for factor IXa H92A and K241 A but over 3.5-fold for factor IXa R170A, indicating that relative heparin affinity was WT > H92A/K241A > R170A R233A. Kinetic analysis of intrinsic tenase inhibition demonstrated that relative affinity for LMWH was WT > K241A > H92A > R170A R233A, correlating with heparin affinity. Thus, LMWH inhibits intrinsic tenase by interacting with the heparin-binding exosite in the factor IXa protease domain, which disrupts interaction with the factor VIIIa A2 domain.
机译:治疗性肝素浓度以抗凝血酶非依赖性方式选择性抑制内在肌腱酶复合物。为了确定这种抑制作用的分子靶标和机理,在蛋白酶活性,肝素亲和力和抑制作用方面对用丙氨酸取代了蛋白酶域中溶剂暴露的碱性残基(H92,R170,R233,K241)的重组人因子IXa进行了表征。由低分子量肝素(LMWH)制成。这些突变仅对生色底物水解和因子IXa激活因子X的动​​力学产生适度影响。同样,因子IXa H92A和K241A显示出因子IXa-因子VIIIa亲和力,类似于因子IXa野生型(WT)。相反,相对于因子IXa WT,因子IXa R170A的表观因子IXa-因子VIIIa亲和力提高了4倍,并且凝集活性大大提高。相对于野生型,因子IXa R233A的辅因子亲和力降低了2.5倍,并且稳定辅因子半衰期的能力降低,表明与因子V111a A2域的相互作用被破坏。对于突变蛋白酶,观察到(R233A)或中度(H92A,R170A,K241A)与固定化LMWH的结合显着降低。溶液竞争表明,对于因子IXa H92A和K241 A,LMWH的EC50增加不到2倍,而对于因子IXa R170A则增加了3.5倍以上,表明相对肝素亲和力为WT> H92A / K241A> R170A R233A。内源性肌腱抑制的动力学分析表明,对LMWH的相对亲和力为WT> K241A> H92A> R170A R233A,与肝素亲和力相关。因此,LMWH通过与因子IXa蛋白酶域中的肝素结合异位蛋白相互作用来抑制固有的肌腱酶,从而破坏了与因子VIIIa A2域的相互作用。

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