An integrated study of fibrinogen during blood coagulation

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Abstract

The rate of conversion of fibrinogen (Fg) to the insoluble product fibrin (Fn) is a key factor in hemostasis. We have developed methods to quantitate fibrinopeptides (FPs) and soluble and insoluble Fg/Fn products during the tissue factor induced clotting of whole blood. Significant FPA generation (>50%) occurs prior to visible clotting (4 ± 0.2 min) coincident with factor XIII activation. At this time Fg is mostly in solution along with high molecular weight cross-linked products. Cross-linking of γ-chains is virtually complete (5 min) prior to the release of FPB, a process that does not occur until after clot formation. FPB is detected still attached to the β-chain throughout the time course demonstrating release of only low levels of FPB from the clot. After release of FPB a carboxypeptidase-B-like enzyme removes the carboxyl-terminal arginine resulting exclusively in des-Arg FPB by the 20-min time point. This process is inhibited by ε-aminocaproic acid. These results demonstrate that transglutaminase and carboxypeptidase enzymes are activated simultaneously with Fn formation. The initial clot is a composite of Fn I and Fg already displaying γ-γ cross-linking prior to the formation of Fn II with Bβ-chain remaining mostly intact followed by the selective degradation of FPB to des-Arg FPB.

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Brummel, K. E., Butenas, S., & Mann, K. G. (1999). An integrated study of fibrinogen during blood coagulation. Journal of Biological Chemistry, 274(32), 22862–22870. https://doi.org/10.1074/jbc.274.32.22862

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