首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Coagulation factors bound to procoagulant platelets concentrate in cap structures to promote clotting
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Coagulation factors bound to procoagulant platelets concentrate in cap structures to promote clotting

机译:与促凝血剂血小板结合的凝血因子浓缩在帽结构中以促进凝血

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Binding of coagulation factors to phosphatidylserine (PS)-exposing procoagulant-activated platelets followed by formation of the membrane-dependent enzyme complexes is critical for blood coagulation. Procoagulant platelets formed upon strong platelet stimulation, usually with thrombin plus collagen, are large "balloons" with a small (similar to 1 mu m radius) "cap"-like convex region that is enriched with adhesive proteins. Spatial distribution of blood coagulation factors on the surface of procoagulant platelets was investigated using confocal microscopy. All of them, including factors IXa (FIXa), FXa/FX, FVa, FVIII, prothrombin, and PS-sensitive marker Annexin V were distributed nonhomogeneously: they were primarily localized in the "cap," where their mean concentration was by at least an order of magnitude, higher than on the "balloon." Assembly of intrinsic tenase on liposomes with various PS densities while keeping the PS content constant demonstrated that such enrichment can accelerate this reaction by 2 orders of magnitude. The mechanisms of such acceleration were investigated using a 3-dimensional computer simulation model of intrinsic tenase based on these data. Transmission electron microscopy and focal ion beam-scanning electron microscopy with Annexin V immunogold-labeling revealed a complex organization of the "caps." In platelet thrombi formed in whole blood on collagen under arterial shear conditions, ubiquitous "caps" with increased Annexin V, FX, and FXa binding were observed, indicating relevance of this mechanism for surface-attached platelets under physiological flow. These results reveal an essential heterogeneity in the surface distribution of major coagulation factors on the surface of procoagulant platelets and suggest its importance in promoting membrane-dependent coagulation reactions.
机译:凝血因子与磷脂酰丝氨酸(PS)的结合 - 折合胰腺活性血小板,然后形成膜依赖性酶复合物对于血液凝结至关重要。在强血小板刺激上形成的促血血管血小板,通常用凝血酶加上胶原蛋白是大的“气球”,其具有富含粘合剂蛋白的小(类似于1μm半径)“盖子”的凸形区域。采用共聚焦显微镜研究了促凝血剂血小板表面上的血液凝血因子的空间分布。所有这些,包括因子IXA(FIXA),FXA / FX,FVA,FVIII,凝血酶原和PS敏感标记膜蛋白V是非均可衍生的:它们主要是在“帽子”中的局部定位,其中它们的平均浓度至少为一个数量级,高于“气球”。在具有各种PS密度的脂质体上组装固有的脂质体,同时保持PS含量常数表明这种富集可以通过2个级别加速该反应。采用基于这些数据的三维计算机仿真模型研究了这种加速度的机制。透射电子显微镜和焦极离子束扫描电子显微镜与Annexin V免疫标记显示“盖子”的复杂组织。在动脉剪切条件下的胶原蛋白的全血上形成的血小板血栓,观察到具有增加的膜蛋白V,FX和FXA结合的普发上“盖子”,表明该机制在生理流动下的表面连接血小板的相关性。这些结果揭示了促凝血血小板表面的主要凝血因子的表面分布中的必要性,并表明其在促进依赖膜依赖性凝血反应方面的重要性。

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