BCMA chimeric antigen receptors
The invention provides improved compositions for adoptive T cell therapies for B cell related conditions.
1. A nucleic acid comprising a polynucleotide encoding a chimeric antigen receptor (CAR) consisting of the amino acid sequence set forth in SEQ ID NO: 9.
2. A vector comprising the nucleic acid of claim 1 .
3. The vector of claim 2 , wherein the vector is an expression vector, an episomal vector, a viral vector, a retroviral vector, or a lentiviral vector.
4. The vector of claim 3 , wherein the lentiviral vector is selected from the group consisting of: human immunodeficiency virus 1 (HIV-1), human immunodeficiency virus 2 (HIV-2), visna-maedi virus (VMV) virus, caprine arthritis-encephalitis virus (CAEV), equine infectious anemia virus (EIAV), feline immunodeficiency virus (FIV), bovine immune deficiency virus (BIV), and simian immunodeficiency virus (SIV).
5. The vector of claim 4 , comprising a left (5′) retroviral LTR, a Psi (Ψ) packaging signal, a central polypurine tract/DNA flap (cPPT/FLAP), a retroviral export element, a promoter operably linked to the polynucleotide encoding the CAR and a right (3′) retroviral LTR.
6. The vector of claim 5 , further comprising a heterologous polyadenylation sequence.
7. The vector of claim 6 , wherein the heterologous polyadenylation sequence is a bovine growth hormone polyadenylation or a rabbit β-globin polyadenylation sequence.
8. An immune effector cell comprising the vector of claim 2 .
9. The immune effector cell of claim 8 , wherein the immune effector cell is selected from the group consisting of: a T lymphocyte and a natural killer (NK) cell.
10. A composition comprising the immune effector cell of claim 9 and a physiologically acceptable excipient.
11. The immune effector cell of claim 9 , wherein the immune effector cell is a T lymphocyte.
12. The immune effector cell of claim 11 , wherein the immune effector cell is a human T cell.
13. The vector of claim 5 , wherein the promoter of the 5′ LTR is replaced with a heterologous promoter.
14. The vector of claim 13 , wherein the heterologous promoter is a cytomegalovirus (CMV) promoter, a Rous Sarcoma Virus (RSV) promoter, or a Simian Virus 40 (SV40) promoter.
15. The vector of claim 5 , wherein the 5′ LTR or 3′ LTR is a lentivirus LTR.
16. The vector of claim 5 , wherein the 3′ LTR comprises one or more modifications.
17. The vector of claim 5 , wherein the 3′ LTR comprises one or more deletions.
18. The vector of claim 5 , wherein the 3′ LTR is a self-inactivating (SIN) LTR.
19. The vector of claim 5 , wherein the promoter operably linked to the polynucleotide encoding the CAR is selected from the group consisting of: a cytomegalovirus immediate early gene promoter (CMV), an elongation factor 1 alpha promoter (EF1-α), a phosphoglycerate kinase-1 promoter (PGK), a ubiquitin-C promoter (UBQ-C), a cytomegalovirus enhancer/chicken beta-actin promoter (CAG), polyoma enhancer/herpes simplex thymidine kinase promoter (MC1), a beta actin promoter (β-ACT), a simian virus 40 promoter (SV40), and a myeloproliferative sarcoma virus enhancer, negative control region deleted, d1587rev primer-binding site substituted (MND) promoter.
20. An immune effector cell comprising the nucleic acid of claim 1 .
21. The immune effector cell of claim 20 , wherein the immune effector cell is selected from the group consisting of: a T lymphocyte and a natural killer (NK) cell.
22. A composition comprising the immune effector cell of claim 21 and a physiologically acceptable excipient.
23. The immune effector cell of claim 21 , wherein the immune effector cell is a T lymphocyte.
24. The immune effector cell of claim 23 , wherein the immune effector cell is a human T cell.