Chimeric receptor with NKG2D specificity for use in cell therapy against cancer and infectious disease
The invention provides a chimeric receptor comprising NKG2D, DAP10 and CD3 zeta. Also disclosed is a composition comprising this chimeric receptor and methods for making and using it to enhance the cytotoxicity and antitumor capacity of NK cells. The invention also encompasses methods for use of NKG2D-DAP10-CD3 zeta polypeptides, vectors and cells in methods for treating cancer and other proliferative disorders, as well as infectious diseases.
1 . A chimeric receptor complex, comprising:
a first polypeptide comprising a Natural killer Group 2 member D (NKG2D) receptor extracellular ligand-binding domain and a CD3zeta signaling domain,
wherein the NKG2D receptor extracellular ligand-binding domain has at least 90% sequence identity to the amino acid sequence of SEQ ID NO: 12,
wherein the CD3zeta signaling domain has at least 90% sequence identity to the amino acid sequence of SEQ ID NO: 10; and
a second polypeptide comprising a DNAX-activating protein 10 (DAP10) stimulatory molecule,
wherein the DAP10 stimulatory molecule has at least 90% sequence identity to the amino acid sequence of SEQ ID NO: 14.
2 . The chimeric receptor complex of claim 1 , wherein the NKG2D receptor extracellular ligand-binding domain comprises the amino acid sequence of SEQ ID NO: 12.
3 . The chimeric receptor complex of claim 1 , wherein the NKG2D receptor extracellular ligand-binding domain is encoded by the nucleic acid sequence of SEQ ID NO: 11.
4 . The chimeric receptor complex of claim 1 , wherein the CD3zeta signaling domain comprises the amino acid sequence of SEQ ID NO: 10.
5 . The chimeric receptor complex of claim 1 , wherein the CD3zeta signaling domain is encoded by the nucleic acid sequence of SEQ ID NO: 9.
6 . The chimeric receptor complex of claim 1 , wherein the DAP10 stimulatory molecule comprises the amino acid sequence of SEQ ID NO: 14.
7 . The chimeric receptor complex of claim 1 , wherein the DAP10 stimulatory molecule is encoded by the nucleic acid sequence of SEQ ID NO: 13.
8 . A chimeric receptor complex, comprising:
a first polypeptide comprising a Natural killer Group 2 member D (NKG2D) receptor extracellular ligand-binding domain and a CD3zeta signaling domain,
wherein the NKG2D receptor extracellular ligand-binding domain comprises the amino acid sequence of SEQ ID NO: 12,
wherein the CD3zeta signaling domain has at least 90% sequence identity to the amino acid sequence of SEQ ID NO: 10; and
a second polypeptide comprising a DNAX-activating protein 10 (DAP10) stimulatory molecule,
wherein the DAP10 stimulatory molecule comprises the amino acid sequence of SEQ ID NO: 14.
9 . The chimeric receptor complex of claim 8 , wherein the NKG2D receptor extracellular ligand-binding domain binds one or more ligands of NKG2D selected from the group consisting of MICA, MICB, ULBPl, ULBP2, ULBP3, ULBP4, ULBP5, and ULBP6.
10 . The chimeric receptor complex of claim 8 , wherein the CD3zeta signaling domain has at least 98% sequence identity to the amino acid sequence of SEQ ID NO: 10.
11 . A vector or plasmid comprising a polynucleotide comprising a nucleotide sequence encoding the chimeric receptor complex of claim 8 .
12 . A method for reducing tumor burden in an mammal, said method comprising administering to a mammal in need of reduction of a tumor burden a therapeutically effective amount of an expanded population of Natural Killer (NK) cells, wherein said NK cells express the chimeric receptor complex of claim 9 .
13 . A chimeric receptor complex, comprising:
a first polypeptide comprising a Natural killer Group 2 member D (NKG2D) receptor extracellular ligand-binding domain and a CD3zeta signaling domain,
wherein the NKG2D receptor extracellular ligand-binding domain comprises the amino acid sequence of SEQ ID NO: 12,
wherein the CD3zeta signaling domain has at least 95% sequence identity to the amino acid sequence of SEQ ID NO: 10; and
a second polypeptide comprising a DNAX-activating protein 10 (DAP10) stimulatory molecule,
wherein the DAP10 stimulatory molecule has at least 95% sequence identity to the amino acid sequence of SEQ ID NO: 14.
14 . The chimeric receptor complex of claim 13 , wherein the NKG2D receptor extracellular ligand-binding domain is encoded by the nucleic acid sequence of SEQ ID NO: 11.
15 . The chimeric receptor complex of claim 13 , wherein the CD3zeta signaling domain has at least 98% sequence identity to the amino acid sequence of SEQ ID NO: 10 and the DAP10 stimulatory molecule has at least 98% sequence identity to the amino acid sequence of SEQ ID NO: 14.
16 . The chimeric receptor complex of claim 13 , wherein the CD3zeta signaling domain is encoded by the nucleic acid sequence of SEQ ID NO: 9.
17 . The chimeric receptor complex of claim 13 , wherein the DAP10 stimulatory molecule is encoded by the nucleic acid sequence of SEQ ID NO: 13.
18 . The chimeric receptor complex of claim 13 , wherein the NKG2D receptor extracellular ligand-binding domain binds one or more ligands of NKG2D selected from the group consisting of MICA, MICB, ULBPl, ULBP2, ULBP3, ULBP4, ULBP5, and ULBP6.
19 . A method for treating, ameliorating, or protecting a mammal against cancer or infectious disease, said method comprising administering to a mammal in need thereof a therapeutically effective amount of an expanded population of immune cells, wherein said immune cells express the chimeric receptor complex of claim 13 .