Claims
- 1. A variant HGF protein comprising an amino acid modification that disrupts, deletes, or alters a cleavage site for serine protease Factor XIa or kallikrein corresponding to the cleavage site Arg424-His425 of human HGF.
- 2. The variant HGF of claim 1, further comprising a second amino acid modification that disrupts, deletes, or alters a cleavage site for serine protease Factor XIa or kallikrein corresponding to the cleavage site Arg494-His49.
- 3. The variant HGF of claim 1, wherein said modification comprises Arg424Ala.
- 4. The variant HGF of claim 2, wherein said second modification comprises Arg494Glu.
- 5. The variant HGF of claim 1, wherein said modification comprises substitution of Arg424 with a non-basic amino acid.
- 6. A nucleic acid sequence encoding the variant HGF of any of claims 1-5.
- 7. A replicable expression vector comprising the nucleic acid sequence of claim 6.
- 8. A host cell transformed with the vector of claim 7.
- 9. The nucleic acid sequence of claim 6, wherein the HGF protein is a human HGF protein.
- 10. A fragment of a hepatocyte growth factor protein consisting essentially of amino acids 1-424 of wild type human hepatocyte growth factor or variant thereof.
- 11. A nucleic acid sequence encoding the fragment of claim 10.
- 12. A replicable expression vector comprising the nucleic acid sequence of claim 11.
- 13. A host cell transformed with the vector of claim 12.
- 14. A nucleic acid sequence according to claim 11, wherein the hepatocyte growth factor is a human hepatocyte growth factor.
- 15. An HGF polypeptide consisting essentially of amino acids 1-424 in an alpha chain and amino acids 425-494 in an alpha chain, where the amino acids are numbered according to that of human HGF.
- 16. A nucleic acid sequence encoding the HGF polypeptide of claim 15.
- 17. A method for activating HGF comprising contacting said HGF with a serine protease selected from factor XIa or kallikrein.
- 18. An HGF polypeptide consisting essentially of amino acids 425 to 494 of human HGF or variant thereof.
- 19. A polypeptide comprising an HGF fragment having residues 1-424 of HGF fused to a heterologous sequence.
- 20. A polypeptide comprising an HGF fragment having residues 425-494 of HGF fused to a heterologous sequence.
- 21. A polypeptide comprising a first HGF fragment having residues 1-424 of HGF and a second HGF fragment having residues 425-494, wherein the first and second HGF fragments are linked through a non-peptide bond.
- 22. A polypeptide comprising a first HGF fragment having residues 1-424 of HGF and a second HGF fragment having residues 425-494, wherein the first and second HGF fragments are non-contiguous.
- 23. A polypeptide comprising an HGF fragment having residues 425-494 of an alpha chain fused to at least a portion of HGF β chain.
- 24. A polypeptide comprising an HGF fragment having residues 425-494 of an alpha chain linked through a non-peptide bond to at least a portion of HGF β chain.
- 25. A polypeptide consisting essentially of a first HGF fragment having residues 1-424 of HGF and a second HGF fragment having residues 425-494, wherein the first and second HGF fragments are linked through a non-peptide bond.
- 26. A polypeptide consisting essentially of a first HGF fragment having residues 1-424 of HGF and a second HGF fragment having residues 425-494, wherein the first and second HGF fragments are non-contiguous.
- 27. A polypeptide consisting essentially of an HGF fragment having residues 425-494 of an alpha chain fused to at least a portion of HGF β chain.
- 28. A polypeptide consisting essentially of an HGF fragment having residues 425-494 of an alpha chain linked through a non-peptide bond to at least a portion of HGF β chain.
RELATED APPLICATIONS
[0001] This application is a non-provisional application filed under 37 CFR 1.53(b)(1), claiming priority under 35 USC 119(e) to provisional application No. 60/417,026 filed Oct. 7, 2002, the contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60417026 |
Oct 2002 |
US |