Genetically modified non-human animal with human or chimeric OX40
The present disclosure relates to the genetically modified non-human animals that express a human or chimeric OX40, and methods of use thereof.
1. A genetically-modified mouse whose genome comprises at least one chromosome comprising a sequence encoding a chimeric TNF receptor superfamily member 4 (OX40) at an endogenous OX40 gene locus, wherein the sequence is operably linked to a regulatory element at the endogenous OX40 gene locus, and the mouse has one or more cells expressing the chimeric OX40, wherein the chimeric OX40 comprises a humanized extracellular region, an endogenous transmembrane region and an endogenous cytoplasmic region, wherein the mouse detectably expresses the chimeric OX40 protein on the surface of activated T cells, wherein the chimeric OX40 comprises an amino acid sequence that is identical to SEQ ID NO: 32.
2. The mouse of claim 1 , wherein the mouse does not express endogenous OX40.
3. The mouse of claim 1 , wherein the mouse further comprises a sequence encoding an additional human or chimeric protein.
4. The mouse of claim 3 , wherein the additional human or chimeric protein is programmed cell death protein 1 (PD-1), CTLA-4, Lymphocyte Activating 3 (LAG-3), T-Cell Immunoglobulin And Mucin Domain-Containing Protein 3 (TIM-3), Programmed Cell Death 1 Ligand 1 (PD-L1), TNF Receptor Superfamily Member 9 (4-1BB), CD27, CD28, CD47, T-Cell Immunoreceptor With Ig And ITIM Domains (TIGIT), CD27, Glucocorticoid-Induced TNFR-Related Protein (GITR), or B And T Lymphocyte Associated (BTLA).
5. A method of determining effectiveness of an anti-OX40 antibody for treating cancer, comprising:
administering the anti-OX40 antibody to the mouse of claim 1 , wherein the mouse has a tumor; and
determining inhibitory effects of the anti-OX40 antibody to the tumor.
6. The method of claim 5 , wherein the tumor comprises one or more human cancer cells that are injected into the mouse.
7. The mouse of claim 1 , wherein the expressed chimeric OX40 can be recognized by an anti-human OX40 antibody.
8. The mouse of claim 1 , wherein the mouse can be used to test effectiveness of an anti-human OX40 antibody for treating cancer.
9. The mouse of claim 1 , wherein an anti-human OX40 antibody can bind to the humanized OX40 protein expressed in the mouse and increase immune response in the mouse.