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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.

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.

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