Modified vitamin K-dependent polypeptides
The invention provides vitamin K-dependent polypeptides with enhanced membrane binding affinity. These polypeptides can be used to modulate clot formation in mammals. Methods of modulating clot formation in mammals are also described.
1. An isolated protein C or activated protein C polypeptide comprising a modified gamma-carboxyglutamic acid (GLA) domain that enhances membrane binding affinity and anticoagulation activity of said polypeptide relative to a corresponding native protein C or activated protein C polypeptide, said modified GLA domain consisting of the amino acid sequence of SEQ ID NO:1 with three or four amino acid substitutions, wherein said substitutions are at positions including positions 11, 32, and 33 of SEQ ID NO:1, and wherein said substitutions comprise a glycine residue at position 11 of SEQ ID NO:1.
2. The polypeptide of claim 1 , wherein said modified GLA domain comprises a glutamic acid residue at amino acid position 32 and an aspartic acid or glutamic acid residue at amino acid 33 of SEQ ID NO:1.
3. The polypeptide of claim 1 , wherein said modified GLA domain further comprises an aspartic acid or glutamic acid residue at amino acid position 34 of SEQ ID NO:1.
4. The polypeptide of claim 3 , wherein said modified GLA domain further comprises a glutamic acid residue at amino acid position 35 of SEQ ID NO:1.
5. The polypeptide of claim 1 , wherein said modified GLA domain further comprises a glutamine or a glutamic acid residue at amino acid position 10 of SEQ ID NO:1.
6. The polypeptide of claim 1 , wherein said modified GLA domain further comprises a phenylalanine residue at amino acid position 28 of SEQ ID NO:1.