Claims
- 1. An isolated polypeptide having the amino acid sequence X—Y—Z, wherein
X is a polypeptide having the amino acid sequence, or portion thereof, comprising the amino acid sequence of a glycosylated interferon-beta; Y is an optional linker moiety; and Z is a polypeptide comprising at least a portion of a polypeptide other than glycosylated interferon-beta.
- 2. The isolated polypeptide of claim 1, wherein X is interferon-beta-1a.
- 3. The isolated polypeptide of claim 1, wherein X is a mutant having at least one of the following properties: (a) the mutant has a higher antiviral activity than wild type interferon beta 1a, wherein the antiviral activity is measured by viral induced lysis of cells; (b) the mutant has, relative to wild type interferon-beta-1a, greater antiviral activity than antiproliferative activity; (c) the mutant binds interferon receptor but has, when compared to wild type interferon-beta-1a, lowered antiviral activity and lowered antiproliferative activity relative to its receptor binding activity.
- 4. The isolated polypeptide of claim 2, wherein the interferon beta-1a is derivatized.
- 5. The isolated polypeptide of claim 4, wherein the derivative is a polyalkylglycol polymer.
- 6. The isolated polypeptide of claim 1, wherein Z is at least a portion of a constant region. of an immunoglobulin.
- 7. The isolated polypeptide of claim 6, wherein said at least a portion of the constant region is derived from an immunoglobulin of the class selected from classes IgM, IgG, IgD, IgA, and IgE.
- 8. The isolated polypeptide of claim 7, wherein the class is IgG.
- 9. The isolated polypeptide of claim 6, wherein the at least a portion of the constant region comprises at least a hinge, CH2 and CH3 domains.
- 10. A fusion protein having an amino terminal region consisting of the amino acid sequence of a glycosylated interferon-beta or a portion thereof and having a carboxy terminal region comprising at least a portion of a protein other than glycosylated interferon-beta.
- 11. The isolated protein of claim 10, wherein X is interferon-beta-1a.
- 12. The isolated protein of claim 10, wherein X is a mutant having at least one of the following properties: (a) the mutant has a higher antiviral activity than wild type inteferon beta 1a, wherein the antiviral activity is measured by viral induced lysis of cells; (b) the mutant has, relative to wild type interferon-beta-1a, greater antiviral activity than antiproliferative activity; (c) the mutant binds interferon receptor but has, compared to wild type interferon-beta-1a, lowered antiviral activity and lowered antiproliferative activity relative to its receptor binding activity.
- 13. The isolated protein of claim 11, wherein the interferon-beta-1a is derivatized.
- 14. The isolated protein of claim 13, wherein the derivative is a polyalkylglycol polymer.
- 15. The isolated protein of claim 10, wherein the at least a portion of the protein other than interferon beta is at least a portion of a constant region of an immunoglobulin.
- 16. The isolated protein of claim 15, wherein said at least a portion of the constant region is derived from an immunoglobulin of the class selected from classes IgM, IgG, IgD, IgA, and IgE.
- 17. The isolated protein of claim 16, wherein the class is IgG.
- 18. The isolated protein of claim 15, wherein the at least a portion of the constant region is comprises at least a hinge, CH2 and CH3 domains.
- 19. An isolated DNA sequence encoding for the protein of claims 1 and 10.
- 20. A recombinant DNA comprising the DNA sequence of claim 19 and an expression control sequence, wherein the expression control sequence is operatively linked to the DNA.
- 21. A host cell transformed with the recombinant DNA sequence of claim 20.
- 22. A method of producing a recombinant polypeptide comprising:
(a) providing a population of host cells according to claim 21; (b) growing said population of cells under conditions whereby the polypeptide encoded by said recombinant DNA is expressed; and (c) isolating the expressed polypeptide.
- 23. An interferon-beta fusion protein comprising a glycosylated interferon beta and additional polypeptide with which it is not natively associated, in substantially purified form
- 24. The fusion protein of claim 23, wherein said interferon beta is human interferon-beta-1a.
- 25. The fusion protein of claim 24, wherein said fusion has an antiviral activity that is selected from the group consisting of: (a) a higher antiviral activity than wild type inteferon beta 1a, wherein the antiviral activity is measured by viral induced lysis of cells, (b) a greater antiviral activity than antiproliferative activity, relative to wild type interferon-beta-1a; (c) an activity that includes receptor binding activity but, compared to wild type interferon-beta-1a, a lowered antiviral activity and lowered antiproliferative activity relative to said receptor binding activity.
- 26. A pharmaceutical composition comprising a therapeutically effective amount of the interferon beta fusion protein of claims 1, 10 and 23.
- 27. A method of inhibiting angiogenesis in a subject, comprising administering to a subject an effective amount of the composition of claim 26.
- 28. The isolated polypeptide of claim 3, wherein the mutant is derivatized.
- 29. The isolated polypeptide of claim 27, wherein the derivative is a polyalklyglycol polymer.
- 30. The isolated protein of claim 12, wherein the mutant is derivatized.
- 31. The isolated protein of claim 29, wherein the derivative is a polyalkylglycol polymer.
RELATED APPLICATIONS
[0001] This is a continuation of PCT/US99/24200, filed on Oct. 15, 1999 as a continuation-in-part of prior U.S. Provisional Ser. No. 60/104,491 filed Oct. 16, 1998 and U.S. Provisional Ser. No. 60/120,237 filed Feb. 16, 1999. The teachings of the earlier-filed patent applications are incorporated herein by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60104491 |
Oct 1998 |
US |
|
60120237 |
Feb 1999 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/US99/24200 |
Oct 1999 |
US |
Child |
09832659 |
Apr 2001 |
US |