Methods for controlling T cell proliferation
The technology relates generally to the field of immunology and relates in part to compositions and methods for controlling the proliferation of T cells, for example, therapeutic T cells. The methods further relate to compositions and methods for inducing an immune response in a subject.
1. An isolated cell, comprising a nucleic acid that comprises a polynucleotide encoding a chimeric signaling molecule, wherein:
a) the cell is selected from the group consisting of T cells, NK T cells, and NK cells; and
b) the chimeric signaling molecule comprises
i) a membrane targeting region,
ii) an intracellular FKBP12 multimerizing region that binds to a multimeric ligand, wherein the multimeric ligand is AP1903 or AP20187,
iii) a first co-stimulatory polypeptide cytoplasmic signaling region selected from the group consisting of CD27, CD28, CD40, ICOS, 4-1BB, CD40, RANK/TRANCE-R, and OX40; and
iv) a second co-stimulatory polypeptide cytoplasmic signaling region selected from the group consisting of CD27, CD28, CD40, ICOS, 4-1BB, CD40, RANK/TRANCE-R, and OX40;
wherein the chimeric signaling molecule does not have a functional extracellular domain.
2. The isolated cell of claim 1 , wherein the membrane-targeting region is a myristoylation-targeting sequence.
3. The isolated cell of claim 1 , wherein the co-stimulatory polypeptide cytoplasmic signaling regions comprise a CD28 cytoplasmic signaling region and a 4-1 BB cytoplasmic signaling region.
4. The isolated cell of claim 1 , wherein the FKBP12 multimerizing region comprises a modified FKBP12 polypeptide comprising an amino acid substitution at position 36 that binds with higher affinity to the multimeric ligand than the wild type FKBP12 polypeptide.
5. The isolated cell of claim 1 , wherein the FKBP12 multimerizing region is Fv′Fvls.
6. The isolated cell of claim 1 , wherein the FKBP12 multimerizing region comprises a FKBP12 polypeptide comprising a valine at position 36.
7. The isolated cell of claim 1 , wherein the FKBP12 multimerizing region comprises two FKBP12v36 regions.
8. The isolated cell of claim 1 , wherein the nucleic acid further comprises a promoter sequence operably linked to the polynucleotide.
9. The isolated cell of claim 4 , wherein the modified FKBP12 polypeptide binds with higher affinity to AP1903 than the wild type FKBP12 polypeptide.
10. The isolated cell of claim 4 , wherein the modified FKBP12 polypeptide binds with higher affinity to AP20187 than the wild type FKBP12 polypeptide.
11. The isolated cell of claim 1 , wherein the cell is a T cell.
12. A method for making a cell comprising a nucleic acid that comprises a polynucleotide that encodes a chimeric signaling molecule, comprising
transfecting or transducing a T cell, an NK T cell, or an NK cell in vitro or ex vivo with a nucleic acid that comprises a polynucleotide that encodes the chimeric signaling molecule, wherein the chimeric signaling molecule comprises
i) a membrane targeting region,
ii) an intracellular FKBP12 multimerizing region that binds to a multimeric ligand, wherein the multimeric ligand is AP1903 or AP20187,
iii) a first co-stimulatory polypeptide cytoplasmic signaling region selected from the group consisting of CD27, CD28, CD40, ICOS, 4-1BB, CD40, RANK/TRANCE-R, and OX40; and
iv) a second co-stimulatory polypeptide cytoplasmic signaling region selected from the group consisting of CD27, CD28, CD40, ICOS, 4-1BB, CD40, RANK/TRANCE-R, and OX40,
wherein the chimeric signaling molecule does not have a functional extracellular domain.
13. The method of claim 12 , wherein the co-stimulatory polypeptide cytoplasmic signaling regions comprise a CD28 cytoplasmic signaling region and a 4-1BB cytoplasmic signaling region.
14. The isolated cell of claim 1 , wherein the chimeric signaling molecule does not have an extracellular domain.
15. The method of claim 12 , wherein the chimeric signaling molecule does not have an extracellular domain.