DUAL CONTROLS FOR THERAPEUTIC CELL ACTIVATION OR ELIMINATION
The technology relates in part to methods for controlling the activity or elimination of therapeutic cells using molecular switches that employ distinct heterodimerizer ligands, in conjunction with other multimeric ligands. The technology may be used, for example to activate or eliminate cells used to promote engraftment, to treat diseases or condition, or to control or modulate the activity of therapeutic cells that express chimeric antigen receptors or recombinant T cell receptors.
1 . A modified cell, comprising
a) a first polynucleotide encoding a chimeric pro-apoptotic polypeptide, wherein the chimeric pro-apoptotic polypeptide comprises
(i) a pro-apoptotic polypeptide region;
(ii) a FKBP12-Rapamycin-Binding (FRB) domain polypeptide, or FRB variant polypeptide region; and
(iii) a FKBP12 or FKBP12 variant polypeptide region (FKBP12v); and
b) a second polynucleotide encoding a chimeric costimulating polypeptide, wherein the chimeric costimulating polypeptide comprises two FKBP12 variant polypeptide regions and
i) a MyD88 polypeptide region or a truncated MyD88 polypeptide region lacking the TIR domain; or
ii) a MyD88 polypeptide region or a truncated MyD88 polypeptide region lacking the TIR domain, and a CD40 cytoplasmic polypeptide region lacking the CD40 extracellular domain.
2 . The modified cell of claim 1 , wherein the chimeric costimulating polypeptide comprises two FKBP12 variant polypeptide regions, a truncated MyD88 polypeptide region lacking the TIR domain, and a CD40 cytoplasmic polypeptide region lacking the CD40 extracellular domain.
3 . The modified cell of claim 1 , wherein the cell further comprises a third polynucleotide encoding a chimeric antigen receptor or a recombinant T cell receptor.
4 . A nucleic acid comprising a promoter operably linked to
a) a first polynucleotide encoding a chimeric pro-apoptotic polypeptide, wherein the chimeric pro-apoptotic polypeptide comprises
(i) a pro-apoptotic polypeptide region;
(ii) a FKBP12-Rapamycin-Binding (FRB) domain polypeptide, or FRB variant polypeptide region; and
(iii) a FKBP12 or FKBP12 variant polypeptide region (FKBP12v); and
b) a second polynucleotide encoding a chimeric costimulating polypeptide, wherein the chimeric costimulating polypeptide comprises two FKBP12 variant polypeptide regions and
i) a MyD88 polypeptide region or a truncated MyD88 polypeptide region lacking the TIR domain; or
ii) a MyD88 polypeptide region or a truncated MyD88 polypeptide region lacking the TIR domain, and a CD40 cytoplasmic polypeptide region lacking the CD40 extracellular domain.
5 . The nucleic acid of claim 4 , wherein the chimeric costimulating polypeptide comprises a truncated MyD88 polypeptide region lacking the TIR domain and a CD40 cytoplasmic polypeptide region lacking the CD40 extracellular domain.
6 . (canceled)
7 . The nucleic acid of claim 4 , wherein the pro-apoptotic polypeptide is a Caspase-9 polypeptide, wherein the Caspase-9 polypeptide lacks the CARD domain.
8 . The modified cell of claim 1 , wherein the cell is a T cell, tumor infiltrating lymphocyte, NK-T cell, or NK cell.
9 . (canceled)
10 . (canceled)
11 . A method of stimulating an immune response in a subject, comprising:
a) transplanting modified cells of claim 1 into the subject, and
b) after (a), administering an effective amount of a ligand that binds to the FKBP12 variant polypeptide region of the chimeric costimulating polypeptide to stimulate a cell mediated immune response.
12 . A method of administering a ligand to a subject who has undergone cell therapy using modified cells, comprising administering a ligand that binds to the FKBP variant region of the chimeric costimulating polypeptide to the human subject, wherein the modified cells comprise modified cells of claim 1 .
13 . A method for treating a subject having a disease or condition associated with an elevated expression of a target antigen expressed by a target cell, comprising
a) transplanting an effective amount of modified cells into the subject; wherein the modified cells comprise a modified cell of claim 1 , wherein the modified cell comprises a chimeric antigen receptor or a recombinant T cell receptor comprising an antigen recognition moiety that binds to the target antigen, and
b) after a), administering an effective amount of a ligand that binds to the FKBP12 variant polypeptide region of the chimeric costimulating polypeptide to reduce the number or concentration of target antigen or target cells in the subject.
14 . A method for reducing the size of a tumor in a subject, comprising
a) administering a modified cell of claim 1 to the subject, wherein the cell comprises a chimeric antigen receptor or a recombinant T cell receptor comprising an antigen recognition moiety that binds to an antigen on the tumor; and
b) after a), administering an effective amount of a ligand that binds to the FKBP12 variant polypeptide region of the chimeric costimulating polypeptide to reduce the size of the tumor in the subject.
15 . A method of controlling survival of transplanted modified cells in a subject, comprising
a) transplanting modified cells of claim 1 into the subject; and
b) after a), administering to the subject rapamycin or a rapalog that binds to the FRB polypeptide or FRB variant polypeptide region of the chimeric pro-apoptotic polypeptide in an amount effective to kill at least 30% of the modified cells that express the chimeric pro-apoptotic polypeptide.
16 . A modified cell comprising
a) a first polynucleotide encoding a chimeric pro-apoptotic polypeptide, wherein the chimeric pro-apoptotic polypeptide comprises
i) a pro-apoptotic polypeptide region; and
ii) a FKBP12 variant polypeptide region; and
b) a second polynucleotide encoding a chimeric costimulating polypeptide, wherein the chimeric costimulating polypeptide comprises
i) a FKBP12-Rapamycin Binding (FRB) domain polypeptide or FRB variant polypeptide region;
ii) a FKBP12 polypeptide or FKBP12 variant polypeptide region; and
iii) a MyD88 polypeptide region or a truncated MyD88 polypeptide region lacking the TIR domain, or a MyD88 polypeptide region, or a truncated MyD88 polypeptide region lacking the TIR domain and a CD40 cytoplasmic polypeptide region lacking the CD40 extracellular domain.
17 . The modified cell of claim 16 , wherein the chimeric costimulating polypeptide comprises a truncated MyD88 polypeptide region lacking the TIR domain and a CD40 cytoplasmic polypeptide region lacking the CD40 extracellular domain.
18 . The modified cell of claim 16 , wherein the cell further comprises a third polynucleotide, wherein the third polynucleotide encodes a chimeric antigen receptor or a recombinant T cell receptor.
19 - 22 . (canceled)
23 . The modified cell of claim 16 , wherein the cell is a T cell, tumor infiltrating lymphocyte, NK-T cell, or NK cell.
24 . (canceled)
25 . (canceled)
26 . A method of stimulating an immune response in a subject, comprising:
a) transplanting modified cells of claim 16 into the subject, and
b) after (a), administering an effective amount of a rapamycin or a rapalog that binds to the FRB polypeptide or FRB variant polypeptide region of the chimeric stimulating polypeptide to stimulate a cell mediated immune response.
27 . (canceled)
28 . A method for treating a subject having a disease or condition associated with an elevated expression of a target antigen expressed by a target cell, comprising
a) transplanting an effective amount of modified cells into the subject; wherein the modified cells comprise a modified cell of claim 17 , wherein the modified cell comprises a chimeric antigen receptor or a recombinant T cell receptor comprising an antigen recognition moiety that binds to the target antigen, and
b) after a), administering an effective amount of rapamycin or a rapalog that binds to the FRB polypeptide or FRB variant region of the chimeric stimulating polypeptide to reduce the number or concentration of target antigen or target cells in the subject.
29 . A method for reducing the size of a tumor in a subject, comprising
a) administering a modified cell of claim 17 to the subject, wherein the cell comprises a chimeric antigen receptor or a recombinant T cell receptor comprising an antigen recognition moiety that binds to an antigen on the tumor; and
b) after a), administering an effective amount of rapamycin or a rapalog that binds to the FRB or FRB variant polypeptide region of the chimeric stimulating polypeptide to reduce the size of the tumor in the subject.
30 . A method of controlling survival of transplanted modified cells in a subject, comprising
a) transplanting modified cells of claim 16 into the subject, and
b) after (a), administering to the subject a ligand that binds to the FKBP12 variant polypeptide region of the chimeric pro-apoptotic polypeptide in an amount effective to kill at least 90% of the modified cells that express the chimeric pro-apoptotic polypeptide.
31 - 38 . (canceled)