IP Library Granted Patent US 11,234,421
Granted Patent B2
US 11,234,421 · App. 17/012,696 · Granted Feb 1, 2022

Genetically modified non-human animal with human or chimeric IL15

Inventors: Yuelei Shen (Beijing, CN); Meiling Zhang (Beijing, CN); Jiawei Yao (Beijing, CN); Chaoshe Guo (Beijing, CN); Yanan Guo (Beijing, CN); Yang Bai (Beijing, CN); Rui Huang (Beijing, CN); Lei Zhao (Beijing, CN)
Assignees: Biocytogen JiangSu Co., Ltd.; Biocytogen Pharmaceuticals (Beijing) Co., Ltd.
A01K67/0278A61K49/0008C07K14/5443C12N15/8509A01K2207/15A01K2227/105A01K2267/0325A01K2267/0331C12N2015/8563C12N2015/8572C12N2830/48
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Quick Facts
Patent No.
US 11,234,421
App. No.
17/012,696
Granted
Feb 1, 2022
Kind
B2
Abstract

The present disclosure relates to genetically modified non-human animals that express a human or chimeric (e.g., humanized) IL15, and methods of use thereof.

Claims (29)

1. A genetically-modified, non-human animal, wherein the genome of the animal comprises an endogenous IL15 gene locus, wherein the endogenous IL15 gene locus comprises:

an insertion of an exogenous sequence comprising a human IL15 polypeptide coding sequence; and

exons 4-8 of the endogenous IL15 gene, wherein the animal has one or more cells expressing the human IL15 polypeptide, wherein the animal in its genome comprises a sequence that is at least 80% identical to SEQ ID NO: 6.

2. The animal of claim 1 , wherein the human IL15 polypeptide coding sequence encodes an amino acid sequence that is at least 90% identical to SEQ ID NO: 4.

3. The animal of claim 1 , wherein the exogenous sequence comprises a Woodchuck Hepatitis Virus (WHP) Posttranscriptional Regulatory Element (WPRE) sequence and a polyA (polyadenylation) signal sequence.

4. The animal of claim 1 , wherein the exogenous sequence is operably linked to an endogenous regulatory element at the endogenous IL15 gene locus.

5. The animal of claim 1 , wherein the exogenous sequence is operably linked to an endogenous 5′-UTR at the endogenous IL15 gene locus.

6. The animal of claim 1 , wherein the animal is a mammal.

7. The animal of claim 1 , wherein the animal does not express endogenous IL15.

8. The animal of claim 1 , wherein the animal in its genome comprises from 5′ to 3′ mouse exon 1, mouse intron 1, mouse exon 2, mouse intron 2, a part of mouse exon 3, a sequence encoding the human IL15 polypeptide, a part of mouse intron 3, mouse exon 4, mouse intron 4, mouse exon 5, mouse intron 5, mouse exon 6, mouse intron 6, mouse exon 7, mouse intron 7, and mouse exon 8.

9. The animal of claim 1 , wherein the animal is a NOD-Prkdc scid IL-2rg null mouse.

10. The animal of claim 1 , wherein the animal further comprises a sequence encoding an additional human or chimeric protein.

11. The animal of claim 10 , wherein the additional human or chimeric protein is programmed cell death protein 1 (PD-1), cytotoxic T-lymphocyte-associated protein 4 (CTLA-4), Lymphocyte Activating 3 (LAG-3), IL15 receptor, B And T Lymphocyte Associated (BTLA), Programmed Cell Death 1 Ligand 1 (PD-L1), CD3, CD27, CD28, CD47, CD137, CD154, T-Cell Immunoreceptor With Ig And ITIM Domains (TIGIT), T-cell Immunoglobulin and Mucin-Domain Containing-3 (TIM-3), Glucocorticoid-Induced TNFR-Related Protein (GITR), Signal regulatory protein α (SIRPα) or TNF Receptor Superfamily Member 4 (OX40).

12. A method of determining effectiveness of an anti-IL15 antibody in treating an immune disorder, comprising:

administering the anti-IL15 antibody to the animal of claim 1 ; and

determining effects of the anti-IL15 antibody in treating the immune disorder.

13. A method of determining effectiveness of an agent or a combination of agents for treating cancer, comprising:

engrafting tumor cells to the animal of claim 1 , thereby forming one or more tumors in the animal;

administering the agent or the combination of agents to the animal; and

determining inhibitory effects on the tumors.

14. A genetically-modified, non-human animal whose genome comprises at least one chromosome comprising an exogenous sequence encoding a human IL15 polypeptide, wherein the human IL15 polypeptide comprises a sequence that is a least 80% identical to SEQ ID NO: 4, wherein the animal has one or more cells expressing the human IL15 polypeptide, wherein the animal in its genome comprises a sequence that is at least 80% identical to SEQ ID NO: 6.

15. The animal of claim 14 , wherein the animal in its genome comprises a sequence that is at least 90% identical to SEQ ID NO: 6.

16. The animal of claim 14 , wherein the animal in its genome comprises SEQ ID NO: 6.

17. The animal of claim 1 , wherein the human IL15 polypeptide comprises a human signal peptide sequence.

18. The animal of claim 1 , wherein the exogenous sequence is inserted at exon 3 of the endogenous IL15 gene.

19. The animal of claim 1 , wherein the endogenous IL15 gene locus comprises a deletion of one or more nucleotides at exon 3 or intron 3 of the endogenous IL15 gene.

20. The animal of claim 1 , wherein the animal in its genome comprises a sequence that is at least 90% identical to SEQ ID NO: 6.

21. The animal of claim 1 , wherein the animal in its genome comprises SEQ ID NO: 6.

22. The animal of claim 1 , wherein the animal is a mouse.

Assignments (2)
CHANGE OF NAME Recorded Jan 22, 2021
From: BEIJING BIOCYTOGEN CO., LTD
To: BIOCYTOGEN PHARMACEUTICALS (BEIJING) CO., LTD.
Reel/Frame 055087/0015 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2020
From: SHEN, YUELEI; ZHANG, MEILING; YAO, JIAWEI; GUO, CHAOSHE; GUO, YANAN; BAI, YANG; HUANG, RUI; ZHAO, LEI
To: BIOCYTOGEN JIANGSU CO.,LTD.; BEIJING BIOCYTOGEN CO., LTD.
Reel/Frame 053758/0372 →
Priority Claims (2)
CN 201811598044.3 · Dec 25, 2018 · national
CN 201910560144.5 · Jun 26, 2019 · national
Continuity (2)
Continuation PCTCN2019128358 · Dec 25, 2019
Related Publication 20210051928A1 · Feb 25, 2021