Alkjaersig N, Davies A, Fletcher A
Thromb Haemost. 1977 Aug 31;38(2):524-5.
The proteolysis of purified human fibrinogen, stabilized and non-stabilized fibrin by plasmin were investigated by gel filtration analysis and SDS polyacrylamide electrophoresis of the reaction products. Plasmin proteolysis of fibrinogen followed the sequential steps previously reported and the two analytical methods yielded concordant results. Large molecular weight proteolysis products, of substantially greater molecular weight than native fibrinogen, were identified by gel filtration analysis following dissolution of stabilized and non-stabilized fibrin clots; with further incubation with plasmin, these proteolysis products gradually diminished in size. On the other hand, SDS polyacrylamide electrophoresis of these fibrin digests demonstrated that while non-stabilized fibrin yielded breakdown products similar in size to those obtained after proteolysis of fibrinogen, stabilized fibrin digests showed moieties of greater molecular size estimated to be of molecular weight 400,000 to 800,000. The final breakdown products of stabilized fibrin differed from those of fibrinogen and nonstabilized fibrin in that fragment D was present in the "double D" cross-linked form.
通过对反应产物进行凝胶过滤分析和SDS聚丙烯酰胺电泳,研究了纤溶酶对纯化的人纤维蛋白原、稳定和不稳定纤维蛋白的蛋白水解作用。纤维蛋白原的纤溶酶蛋白水解作用遵循先前报道的顺序步骤,两种分析方法得出了一致的结果。通过对稳定和不稳定纤维蛋白凝块溶解后的凝胶过滤分析,鉴定出了分子量比天然纤维蛋白原大得多的大分子蛋白水解产物;随着与纤溶酶的进一步孵育,这些蛋白水解产物的尺寸逐渐减小。另一方面,这些纤维蛋白消化产物的SDS聚丙烯酰胺电泳表明,虽然不稳定纤维蛋白产生的降解产物大小与纤维蛋白原蛋白水解后获得的产物相似,但稳定纤维蛋白消化产物显示出估计分子量为400,000至800,000的更大分子尺寸的部分。稳定纤维蛋白的最终降解产物与纤维蛋白原和不稳定纤维蛋白的降解产物不同,在于片段D以“双D”交联形式存在。