IP Library Granted Patent US 9,464,127
Granted Patent B2
US 9,464,127 · App. 13/946,438 · Granted Oct 11, 2016

Fusion molecules and IL-15 variants

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Quick Facts
Patent No.
US 9,464,127
App. No.
13/946,438
Granted
Oct 11, 2016
Kind
B2
Abstract

The instant invention provides soluble fusion protein complexes and IL-15 variants that have therapeutic and diagnostic use, and methods for making the such proteins. The instant invention additionally provides methods of stimulating or suppressing immune responses in a mammal using the fusion protein complexes and IL-15 variants of the invention.

Claims (37)

1. A soluble fusion protein complex comprising at least two soluble fusion proteins, wherein

the first fusion protein comprises (a) a first antibody covalently linked to (b) interleukin-15 (IL-15) polypeptide; and

the second fusion protein comprises (c) a second antibody covalently linked to (d) soluble interleukin-15 receptor alpha (IL-15Ra) polypeptide;

wherein IL-15 domain of a first fusion protein binds to the soluble IL-15Ra domain of the second fusion protein to form a soluble fusion protein complex.

2. The soluble fusion protein complex of claim 1 , wherein the antibody is specific for recognition of a particular antigen.

3. The soluble fusion protein complex of claim 2 wherein the antigen for the antibody domain comprises a cell surface receptor or ligand.

4. The soluble fusion protein complex of claim 2 , wherein the antigen comprises a CD antigen, cytokine or chemokine receptor or ligand, growth factor receptor or ligand, cell adhesion molecule, MHC/MHC-like molecules, FC receptor, Toll-like receptor, NK receptor, TCR, BCR, positive/negative co-stimulatory receptor or ligand, death receptor or ligand, tumor associated antigen, or virus encoded antigen.

5. The soluble fusion protein complex of claim 1 , wherein the antibody is a single-chain antibody or single-chain Fv.

6. The soluble fusion protein complex of claim 5 , wherein the single-chain antibody comprises an immunoglobulin light chain variable domain covalently linked to immunoglobulin heavy chain variable domain by polypeptide linker sequence.

7. The soluble fusion protein complex of claim 1 , wherein the first antibody is covalently linked to IL-15 polypeptide by a polypeptide linker sequence.

8. The soluble fusion protein complex of claim 1 , wherein the second antibody is covalently linked to IL-15Ra polypeptide by a polypeptide linker sequence.

9. The soluble fusion protein complex of claim 1 , wherein the IL-15Ra polypeptide comprises the extracellular domain of the IL-15 receptor alpha capable of binding IL-15 polypeptide.

10. The soluble fusion protein complex of claim 1 , wherein the IL-15Ra polypeptide comprises either the IL-15a sushi domain or the IL-15aΔE3 domain.

11. A nucleic acid sequence encoding the first fusion protein of claim 1 .

12. The nucleic acid sequence of claim 11 , wherein the nucleic acid sequence further comprises a promoter, translation initiation signal, and leader sequence operably linked to the sequence encoding the fusion protein.

13. A DNA vector comprising the nucleic acid sequence of claim 11 .

14. A nucleic acid sequence encoding the second fusion protein of claim 1 .

15. A DNA vector comprising the nucleic acid sequence of claim 14 .

16. A DNA vector comprising a nucleic acid sequence encoding the first fusion protein of claim 1 and a nucleic acid sequence encoding the second fusion proteins of claim 1 .

17. A method for making a soluble fusion protein complex of claim 1 , the method comprising:

a) introducing into a first host cell a DNA vector comprising a nucleic acid sequence encoding the first fusion protein,

b) culturing the first host cell in media under conditions sufficient to express the first fusion protein in the cell or the media;

c) purifying the first fusion protein from the host cell or media,

d) introducing into a second host cell a DNA vector comprising a nucleic acid sequence encoding the second fusion protein,

e) culturing the second host cell in media under conditions sufficient to express the second fusion protein in the cell or the media; and

f) purifying the second fusion protein from the host cell or media, and

g) mixing the first and second fusion protein under conditions sufficient to allow binding between IL-15 domain of a first fusion protein and the soluble IL-15Ra domain of a second fusion protein to form the soluble fusion protein complex.

18. A method for making a soluble fusion protein complex of claim 1 , the method comprising:

a) introducing into a host cell a DNA vector comprising a nucleic acid sequence encoding the first fusion protein and a DNA vector encoding the second fusion protein,

b) culturing the host cell in media under conditions sufficient to express the fusion proteins in the cell or the media and allow association between IL-15 domain of a first fusion protein and the soluble IL-15Ra domain of a second fusion protein to form the soluble fusion protein complex;

c) purifying the soluble fusion protein complex from the host cell or media.

19. A method for making a soluble fusion protein complex of claim 1 , the method comprising:

a) introducing into a host cell a DNA vector comprising nucleic acid sequences encoding the first and second fusion proteins,

b) culturing the host cell in media under conditions sufficient to express the fusion proteins in the cell or the media and allow association between IL-15 domain of a first fusion protein and the soluble IL-15Ra domain of a second fusion protein to form the soluble fusion protein complex;

c) purifying the soluble fusion protein complex from the host cell or media.

20. The soluble fusion protein complex of claim 1 , wherein at least one of the soluble fusion proteins comprises a detectable label.

21. The soluble fusion protein complex of claim 20 , wherein the detectable label is biotin, streptavidin, an enzyme or catalytically active fragment thereof, a radionuclide, a nanoparticle, a paramagnetic metal ion, or a fluorescent, phosphorescent, or chemiluminescent molecule.

Assignments (3)
SECURITY INTEREST Recorded Jan 2, 2024
From: IMMUNITYBIO, INC.; NANTCELL, INC.; RECEPTOME, INC.; VBC HOLDINGS LLC; ALTOR BIOSCIENCE, LLC; ETUBICS CORPORATION; IGDRASOL, INC.
To: INFINITY SA LLC, AS PURCHASER AGENT
Reel/Frame 066179/0074 →
MERGER Recorded May 31, 2022
From: ALTOR BIOSCIENCE CORPORATION
To: ALTOR BIOSCIENCE LLC
Reel/Frame 060060/0321 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2013
From: WONG, HING C.; RHODE, PETER; ZHU, XIAOYUN; HAN, KAI-PING
To: ALTOR BIOSCIENCE CORPORATION
Reel/Frame 031035/0279 →