IP Library Granted Patent US 7,172,880
Granted Patent B2
US 7,172,880 · App. 10/041,859 · Granted Feb 6, 2007

Inhibitor of apoptosis proteins and nucleic acids and methods for making and using them

Assignees: The Burnham Institute for Medical Research; The Regents of the University of California
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Quick Facts
Patent No.
US 7,172,880
App. No.
10/041,859
Granted
Feb 6, 2007
Kind
B2
Abstract

The invention provides polypeptides comprising inhibitor of apoptosis protein (IAP) family members, such as BmIAP initially derived from Bombyx mori BmN cells, and nucleic acids encoding them, and methods for making and using these compositions, including their use for inhibiting apoptosis.

Claims (29)

1. An isolated nucleic acid encoding a polypeptide having at least 95% sequence identity to SEQ ID NO:2, wherein said polypeptide is capable of inhibiting caspase 9 .

2. The isolated nucleic acid of claim 1 , wherein the polypeptide is capable of inhibiting Bax-induced apoptosis in Spodoptera frugipera or Bombyx mori cells.

3. The isolated nucleic acid of claim 1 , wherein the polypeptide is capable of inhibiting Bax -induced apoptosis in mammalian cells.

4. An isolated nucleic acid encoding a polypeptide comprising SEQ ID NO:2.

5. An isolated nucleic acid comprising SEQ ID NO:1.

6. An isolated expression cassette comprising at least one nucleic acid operably linked to a promoter, wherein the nucleic acid encodes a polypeptide having at least 95% sequence identity to SEQ ID NO:2, wherein said polypeptide is capable of inhibiting caspase 9 .

7. The isolated expression cassette of claim 6 , wherein the promoter is a constitutive promoter.

8. The isolated expression cassette of claim 6 , wherein the promoter is a developmentally regulated or a tissue specific promoter.

9. The isolated expression cassette of claim 6 , wherein the polypeptide comprises SEQ ID NO:2.

10. An isolated cell transformed with an expression vector comprising a nucleic acid encoding a polypeptide having at least 95% sequence identity to SEQ ID NO:2, wherein said polypeptide is capable of inhibiting caspase 9 .

11. The isolated cell of claim 10 , wherein the cell is a mammalian cell.

12. The isolated cell of claim 10 , wherein the cell is an insect cell.

13. The isolated cell of claim 12 , wherein the insect cell is a Spodoptera frugipera cell or a Bombyx mori cell.

14. The isolated cell of claim 10 , wherein the cell is a plant cell.

15. The isolated cell of claim 10 , wherein the cell is a yeast cell.

16. The isolated cell of claim 10 , wherein the polypeptide comprises SEQ ID NO:2.

17. An array comprising a nucleic acid encoding a polypeptide having at least 95% sequence identity to SEQ ID NO:2, wherein said polypeptide is capable of inhibiting caspase 9 .

18. A method of making a polypeptide having at least 95% sequence identity to SEQ ID NO:2 comprising culturing a cell comprising an expression vector comprising a nucleic acid encoding said polypeptide wherein said polypeptide is capable of inhibiting caspase 9 .

19. The isolated nucleic acid of claim 1 , wherein the polypeptide comprises a BIR1 domain having the amino acid sequence of residues 74 to 140 of SEQ ID NO:2, BIR2 domain having the amino acid sequence of residues 182 to 249 of SEQ ID NO:2, and a RING domain having the amino acid sequence of residues 298 to 314 of SEQ ID NO:2.

20. The isolated expression cassette of claim 6 , wherein the nucleic acid comprises SEQ ID NO:1.

21. The isolated expression cassette of claim 6 , wherein the polypeptide comprises a BIR1 domain having the amino acid sequence of residues 74 to 140 of SEQ ID NO:2, a BIR2 domain having the amino acid sequence of residues 182 to 249 of SEQ ID NO:2, and a RING domain having the amino acid sequence of residues 298 to 314 of SEQ ID NO:2.

22. The isolated cell of claim 10 , wherein the nucleic acid comprises SEQ ID NO:1.

23. The isolated cell of claim 10 , wherein the polypeptide comprises a BIR1 domain having the amino acid sequence of residues 74 to 140 of SEQ ID NO:2, a BIR2 domain having the amino acid sequence of residues 182 to 249 of SEQ ID NO:2, and a RING domain having the amino acid sequence of residues 298 to 314 of SEQ ID NO:2.

24. The array of claim 17 , wherein the polypeptide comprises SEQ ID NO:2.

25. The array of claim 24 , wherein the nucleic acid comprises SEQ ID NO:1.

26. The array of claim 17 , wherein the polypeptide comprises a BIR1 domain having the amino acid sequence of residues 74 to 140 of SEQ ID NO:2, a BIR2 domain having the amino acid sequence of residues 182 to 249 of SEQ ID NO:2, and a RING domain having the amino acid sequence of residues 298 to 314 of SEQ ID NO:2.

27. The method of claim 18 , wherein the polypeptide comprises SEQ ID NO:2.

28. The array of claim 27 , wherein the nucleic acid comprises SEQ ID NO:1.

29. The method of claim 18 , wherein the polypeptide comprises a BIR1 domain having the amino acid sequence of residues 74 to 140 of SEQ ID NO:2, a BIR2 domain having the amino acid sequence of residues 182 to 249 of SEQ ID NO:2, and a RING domain having the amino acid sequence of residues 298 to 314 of SEQ ID NO:2.

Assignments (5)
CHANGE OF NAME Recorded Dec 1, 2010
From: THE BURNHAM INSTITUTE
To: BURNHAM INSTITUTE FOR MEDICAL RESEARCH
Reel/Frame 025434/0034 →
CHANGE OF NAME Recorded Dec 1, 2010
From: BURNHAM INSTITUTE FOR MEDICAL RESEARCH
To: SANFORD-BURNHAM MEDICAL RESEARCH INSTITUTE
Reel/Frame 025434/0054 →
CONFIRMATORY LICENSE Recorded Jun 4, 2008
From: THE BURNHAM INSTITUTE
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 021037/0915 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 13, 2007
From: HUANG, QIHONG
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 018999/0840 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2005
From: REED, JOHN C.; DEVERAUX, QUINN L.; HAMMOCK, BRUCE D.; MAEDA, HIROKO, AS LEGAL HEIR TO DR. SUSUMU MAEDA
To: THE BURNHAM INSTITUTE; THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 016070/0493 →
Continuity (2)
Provisional Application 6026047800 · Jan 8, 2001
Related Publication 20030049796A1 · Mar 13, 2003