Plow E F, Edgington T S
Proc Natl Acad Sci U S A. 1973 Apr;70(4):1169-73. doi: 10.1073/pnas.70.4.1169.
Discrimination between the physiological cleavage fragments of fibrinogen and fibrin offers an approach to differentiation between fibrinogenolytic processes and fibrinolysis after coagulation. By use of the cleavage-associated neoantigen of fibrinogen (fg-D(neo)) as a molecular marker, characteristic differences between the D regions of fibrinogen derivatives and fibrin derivatives can be demonstrated. The expression of fg-D(neo) by X, Y, D:E complex, and D-fragments of fibrinogen or fibrin is shown to be quantitative and unitary. Characteristic differences between fg-D(neo) sites present on fibrinogen cleavage fragments, as contrasted to fibrin cleavage fragments, are indicated by different competitive inhibition slopes, and appear to reflect differential binding affinity of selected anti-fg-D(neo) antibodies for the specific molecular site. There is a linear relationship between the slope of quantitative competitive inhibition and the relative molar ratio of fibrinogen and fibrin derivatives. Identical immunochemical expressions are observed in vitro and in vivo, and support the thesis that cleavage in vivo is produced by plasmin. The differential immunochemical features of fg-D(neo) expression may be the result of stable conformational and/or subtle structural differences between the D region of fibrinogen and fibrin cleavage fragments and suggest that precise changes in the D region are associated with the fibrin transition. These molecular features not only provide additional insight into the molecular immunology and structure of fibrinogen, but also appear to offer a new molecular approach to discrimination between fibrinogenolytic mechanisms as contrasted to fibrinolysis secondary to coagulation.
区分纤维蛋白原和纤维蛋白的生理性裂解片段为区分纤维蛋白原溶解过程和凝血后的纤维蛋白溶解提供了一种方法。通过使用纤维蛋白原的裂解相关新抗原(fg-D(neo))作为分子标记,可以证明纤维蛋白原衍生物和纤维蛋白衍生物的D区之间的特征差异。纤维蛋白原或纤维蛋白的X、Y、D:E复合物和D片段对fg-D(neo)的表达显示为定量且单一的。与纤维蛋白裂解片段相比,纤维蛋白原裂解片段上存在的fg-D(neo)位点之间的特征差异由不同的竞争抑制斜率表示,并且似乎反映了所选抗fg-D(neo)抗体对特定分子位点的不同结合亲和力。定量竞争抑制的斜率与纤维蛋白原和纤维蛋白衍生物的相对摩尔比之间存在线性关系。在体外和体内观察到相同的免疫化学表达,并支持体内裂解是由纤溶酶产生的这一论点。fg-D(neo)表达的差异免疫化学特征可能是纤维蛋白原D区与纤维蛋白裂解片段之间稳定的构象和/或细微结构差异的结果,表明D区的精确变化与纤维蛋白转变有关。这些分子特征不仅为纤维蛋白原的分子免疫学和结构提供了更多见解,而且似乎还提供了一种新的分子方法来区分纤维蛋白原溶解机制与凝血继发的纤维蛋白溶解。