Genetic engineering of non-human animals for the production of chimeric antibodies
The invention provides non-human cells and mammals having a genome encoding chimeric antibodies and methods of producing transgenic cells and mammals. Certain aspects of the invention include chimeric antibodies, humanized antibodies, pharmaceutical compositions and kits. Certain aspects of the invention also relate to diagnostic and treatment methods using the antibodies of the invention.
1. A mouse whose genome comprises a synthetic transgene encoding a chimeric immunoglobulin heavy chain, wherein said chimeric immunoglobulin heavy chain comprises a human immunoglobulin heavy chain variable domain and a chimeric immunoglobulin heavy chain constant region comprising a human CH1 domain, a human upper hinge region, a non-human CH2 domain, and a non-human CH3 domain, wherein the synthetic transgene is capable of undergoing gene arrangement and thereby upon expression to produce a chimeric immunoglobulin heavy chain.
2. The mouse according to claim 1 , wherein said genome further comprises a second transgene encoding a non-endogenous immunoglobulin light chain.
3. The mouse according to claim 2 , wherein said second transgene encodes a non-endogenous Igκ light chain or a non-endogenous Igλ, light chain.
4. The mouse according to claim 1 , wherein the genome comprises an inactivated endogenous immunoglobulin locus.
5. The mouse according to claim 4 , wherein the inactivated endogenous immunoglobulin locus comprises a deletion that impairs formation of a functional variable domain and formation of a constant region capable of driving primary B cell development.
6. The mouse according to claim 4 , wherein said endogenous immunoglobulin locus is a heavy chain locus.
7. The mouse according to claim 4 , wherein said endogenous immunoglobulin locus is a light chain locus.
8. The mouse according to claim 1 , wherein the synthetic transgene comprises a non-coding region.
9. The mouse according to claim 8 , wherein the non-coding region is selected from an intron and a cis regulatory element.
10. The mouse according to claim 9 , wherein the cis regulatory element is selected from a promoter, an enhancer, a recombination signal sequence, a 5′ untranslated region, a 3′ untranslated region, and a polyadenylation site.
11. The mouse according to claim 8 , wherein the non-coding region is human.
12. The mouse according to claim 8 , wherein the non-coding region is syngeneic.