首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Hysteresis-like binding of coagulation factors X/Xa to procoagulant activated platelets and phospholipids results from multistep association and membrane-dependent multimerization
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Hysteresis-like binding of coagulation factors X/Xa to procoagulant activated platelets and phospholipids results from multistep association and membrane-dependent multimerization

机译:凝血因子X / Xa与促凝血活化的血小板和磷脂的滞后样结合是多步缔合和膜依赖性多聚作用导致的

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Binding of coagulation factors X (fX) and Xa (fXa) to activated platelets is required for the formation of membrane-dependent enzymatic complexes of intrinsic tenase and prothrombinase. We carried out an in-depth characterization of fX/fXa binding to phospholipids and gel-filtered, thrombin-activated platelets. Flow cytometry, surface plasmon resonance, and computational modeling were used to investigate interactions of fX/fXa with the membranes. Confocal microscopy was employed to study fXa binding to platelet thrombi formed in flowing whole blood under arterial conditions. Binding of DC/fXa to either vesicles or procoagulant platelets did not follow a traditional one-step reversible binding model. Their dissociation was a two-step process resulting in a plateau that was up to 10-fold greater than the saturation value observed in the association experiments. Computational modeling and experimental evidence suggested that this was caused by a combination of two-step association (mainly for DC) and multimerization on the membrane (mainly for fXa). Importantly, DC formed multimers with fXa, thereby improving its retention. The same binding/dissociation hysteresis was observed for annexin V known to form trimers on the membranes. Experiments with platelets from gray syndrome patients showed that alpha-granular factor Va provided an additional high-affinity binding site for fXa that did not affect the hysteresis. Confocal microscopy observation of fXa binding to platelet thrombi in a flow chamber and its wash-out confirmed that this phenomenon persisted under physiologically relevant conditions. This suggests its possible role of "locking" coagulation factors on the membrane and preventing their inhibition in plasma and removal from thrombi by flow. (C) 2016 Published by Elsevier B.V.
机译:凝血因子X(fX)和Xa(fXa)与活化的血小板结合是形成内在肌腱酶和凝血酶原酶的膜依赖性酶复合物所必需的。我们对fX / fXa与磷脂和凝胶过滤的凝血酶激活的血小板的结合进行了深入的表征。流式细胞仪,表面等离振子共振和计算模型被用来调查fX / fXa与膜的相互作用。共聚焦显微镜用于研究fXa与在动脉条件下流动的全血中形成的血小板血栓的结合。 DC / fXa与囊泡或促凝血小板的结合未遵循传统的一步可逆结合模型。它们的解离是两步过程,导致平稳期比在缔合实验中观察到的饱和度值大10倍。计算模型和实验证据表明,这是由两步缔合(主要用于DC)和膜上的多聚化(主要用于fXa)共同引起的。重要的是,DC与fXa形成了多聚体,从而提高了其保留率。对于膜联蛋白V已知观察到相同的结合/解离滞后。用灰色综合症患者的血小板进行的实验表明,α-颗粒因子Va可为fXa提供一个额外的高亲和力结合位点,而不会影响磁滞现象。共聚焦显微镜观察fXa在流动室中与血小板血栓的结合及其洗脱,证实了该现象在生理相关条件下仍然存在。这表明其“锁定”凝血因子在膜上并防止其在血浆中的抑制和通过流动从血栓中去除的可能作用。 (C)2016由Elsevier B.V.发布

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