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Role of the thrombin insertion loop 144-155. Study of thrombin mutations W148G, K154E and a thrombin-based synthetic
M C Bouton1, J L Plantier, M Dembak
1Laboratoire de Recherche sur l'Hémostase et la Thrombose, Faculté Xavier Bichat, Paris, France.
Abstract:
Thrombin is a multifunctional serine protease that plays a critical role in hemostasis. Crystallographic studies revealed that the insertion loop, residues 144-155 (human thrombin B chain numbering) located on the surface of thrombin, might be involved in the access of substrates to the active-site of the enzyme. This loop has also been proposed as a potential candidate for a binding site for thrombomodulin and selected thrombin substrates. In order to examine this hypothesis, we have introduced single amino acid substitutions into the loop 144-155 (W148G, K154E). These point mutations did not result in major changes in thrombin specificity. However, the mutant thrombins presented slight modifications in their catalytic activity on the tripeptidic substrate H-D-Lys-(epsilon-benzyloxycarbonyl)-Pro-Arg-NH-nitroanilide ([K154E]thrombin) or tosyl-Gly-Pro-Arg-NH-nitroanilide ([W148G]thrombin), and in the second-order rate constants of inhibition by antithrombin III ([K154E]thrombin) and ([W148G]thrombin) compared to recombinant wild-type thrombin. Kinetics of fibrinogen hydrolysis were minimally affected by the K154E mutation and were not affected by the W148G mutation. Neither of the mutations affected thrombin interaction with hirudin or its C-terminal tail, protein C activation by thrombin or thrombin-thrombomodulin, or platelet activation. We also examined the properties of a synthetic peptide corresponding to the sequence T147-S158. The synthetic peptide T147-S158 did not inhibit thrombin interaction with fibrin, thrombomodulin or protein C. Together, our results indicate that the thrombin loop 144-155 is indirectly involved in the catalytic function of the enzyme, most probably by limiting the access of the substrates to the catalytic site, and argue against the presence of a recognition exosite for fibrin(ogen), thrombomodulin or platelets within the loop.
Insights
Mutations in thrombin
Area of Science:
- Biochemistry
- Enzymology
- Molecular Biology
Background:
- Thrombin, a serine protease, is crucial for hemostasis.
- The surface-exposed insertion loop (residues 144-155) is hypothesized to influence substrate access and binding interactions.
- This loop has been proposed as a binding site for thrombomodulin and certain thrombin substrates.
Purpose of the Study:
- To investigate the role of the thrombin insertion loop (residues 144-155) in enzyme function and substrate interactions.
- To examine the effects of specific point mutations (W148G, K154E) within this loop on thrombin's catalytic activity and binding properties.
Main Methods:
- Site-directed mutagenesis was used to create W148G and K154E thrombin mutants.
- Enzyme kinetics were analyzed using various substrates and inhibitors, including tripeptide substrates and antithrombin III.
- Interactions with fibrinogen, hirudin, thrombomodulin, and protein C were assessed.
- A synthetic peptide representing the loop sequence was tested for inhibitory activity.
Main Results:
- Point mutations W148G and K154E did not significantly alter thrombin specificity.
- Minor modifications in catalytic activity and inhibition rates by antithrombin III were observed for the mutants.
- Fibrinogen hydrolysis kinetics were largely unaffected by the mutations.
- Interactions with hirudin, protein C activation, thrombin-thrombomodulin complex, and platelet activation remained unchanged.
- A synthetic peptide of the loop sequence did not inhibit key thrombin interactions.
Conclusions:
- The thrombin loop 144-155 appears indirectly involved in catalytic function, potentially by modulating substrate access.
- The results argue against the presence of a recognition exosite for fibrinogen, thrombomodulin, or platelets within this specific loop.