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The fibrinogenolytic activity of purified tryptase from human lung mast cells
Abstract:
The capacity of purified tryptase from human lung mast cells to metabolize human fibrinogen, fibrin, and plasminogen was evaluated. Tryptase (5 micrograms/ml) inactivated the thrombin-induced clotting activity of fibrinogen (100 micrograms/ml) with essentially similar t 1/2 values of 4.6 min in the absence of heparin and 5.8 min in the presence of heparin (20 micrograms/ml) that were not appreciably different than with lysine-Sepharose-purified plasmin (5 micrograms/ml). Fibrinogen treated with tryptase together with heparin lost all detectable clotting activity by 4 hr at 37 degrees C, whereas fibrinogen treated with tryptase alone resulted in destruction of only 80% of fibrinogen clotting equivalents after 16 hr. Tryptase alone was observed to cleave only the alpha-chains of fibrinogen by electrophoresis of tryptase-treated, denatured, and reduced fibrinogen in polyacrylamide gradient gels. Tryptase together with heparin cleaved first the alpha-chain and then the beta-chain, the latter cleavage corresponding to complete loss of fibrinogen clotting activity by 4 hr. No fibrinogen fragments with anticoagulant activity were generated by tryptase. In contrast, plasmin left no residual clotting activity after 4 hr of incubation and generated fibrinogen fragments with anticoagulant activity. Plasmin sequentially cleaved the alpha, beta, and gamma subunits of fibrinogen. Tryptase alone (6 micrograms/ml) or together with heparin (20 micrograms/ml) failed to activate plasminogen (0.6 mg/ml) after a 60-min incubation at 37 degrees C. Addition of urokinase to tryptase-treated or untreated plasminogen resulted in essentially identical plasmin activities (0.32 and 0.34 U/ml, respectively), indicating that tryptase neither activates nor destroys plasminogen. Tryptase (700 ng) also failed to substantially solubilize cross-linked fibrin (2.6 micrograms) or the corresponding amount of fibrinogen bound to plastic microtiter plates with or without heparin. The failure to solubilize fibrinogen and, possibly, fibrin is consistent with the observation that the apparent m.w. by SDS polyacrylamide gel electrophoresis of unreduced fibrinogen is not appreciably altered by prior treatment with tryptase, even though cleavage of alpha-and beta-chains is revealed after reduction. Fibrinogenolysis by tryptase complements other mast cell mediators with anticoagulant properties such as heparin and suggests a significant prevention of coagulation by activated mast cells.
Insights
Human mast cell tryptase inactivates fibrinogen clotting activity, primarily by cleaving alpha and beta chains. Tryptase does not activate or degrade plasminogen, suggesting a role in preventing coagulation.
Area of Science:
- Biochemistry
- Hematology
- Immunology
Background:
- Human mast cells release tryptase, a serine protease implicated in various physiological and pathological processes.
- Fibrinogen is a key protein in the coagulation cascade, and its proper function is essential for hemostasis.
- Plasminogen is the precursor to plasmin, a crucial enzyme in fibrinolysis.
Purpose of the Study:
- To investigate the capacity of purified human mast cell tryptase to metabolize human fibrinogen, fibrin, and plasminogen.
- To determine the effect of tryptase on the clotting activity of fibrinogen and the potential generation of anticoagulant fragments.
- To assess whether tryptase can activate or degrade plasminogen, and its effect on fibrinolysis.
Main Methods:
- Purified human lung mast cell tryptase was incubated with human fibrinogen, fibrin, and plasminogen under various conditions (with/without heparin).
- Fibrinogen clotting activity was measured over time.
- Protein cleavage was analyzed using SDS-polyacrylamide gel electrophoresis.
- Plasminogen activation was assessed by measuring plasmin activity after urokinase addition.
- Solubilization of fibrin and fibrinogen was evaluated.
Main Results:
- Tryptase inactivated fibrinogen clotting activity with similar kinetics in the presence or absence of heparin.
- Tryptase primarily cleaved the alpha-chain of fibrinogen alone, and both alpha and beta chains in the presence of heparin, leading to loss of clotting activity.
- No anticoagulant fibrinogen fragments were generated by tryptase, unlike plasmin.
- Tryptase did not activate or degrade plasminogen.
- Tryptase showed limited ability to solubilize cross-linked fibrin or fibrinogen.
Conclusions:
- Human mast cell tryptase possesses fibrinogenolytic activity that inactivates its clotting function.
- Tryptase's action on fibrinogen complements other mast cell mediators with anticoagulant properties.
- The findings suggest a significant role for tryptase in preventing coagulation, particularly in activated mast cells.