Methods for enhancing efficacy of therapeutic immune cells
The present invention relates to a method of using a receptor (e.g., chimeric antigen receptor—CAR) that activates an immune response upon binding a cancer cell ligand in conjunction with a target-binding molecule that targets a protein or molecule CI for removal or neutralization to generate enhanced anti-cancer immune cells. The present invention also relates to engineered immune cells having enhanced therapeutic efficacy and uses thereof.
1. An engineered NK cell or T cell comprising: a first nucleic acid comprising a nucleotide sequence encoding a chimeric antigen receptor (CAR) and a second nucleic acid comprising a nucleotide sequence encoding a single-chain variable fragment (scFv) linked to a localizing domain,
wherein the scFv binds a target expressed by the cell and selected from the group consisting of killer cell immunoglobulin-like receptors 2DL1 (KIR2DL1) and 2DL2/DL3 (KIR2DL2/DL3), and NKG2A,
wherein the scFv that binds KIR2DL1 and KIR2DL2/DL3 comprises a variable heavy chain of SEQ ID NO:36 and a variable light chain of SEQ ID NO:37, and the scFv that binds NKG2A comprises a variable heavy chain of SEQ ID NO:32 and a variable light chain of SEQ ID NO:33,
wherein the localization domain comprise an endoplasmic reticulum (ER) or Golgi retention sequence comprising an amino acid sequence selected from the group consisting of KKMP, EEKKMP, and AEKDEL, and
wherein the scFv linked to the localizing domain is expressed by the cell, retained within the cell, and downregulates or suppresses surface expression of the target in the engineered cell rendering the target inactive.
2. The engineered NK cell or T cell of claim 1 , wherein the CAR is an anti-CD19-4-1BB-CD3ζ CAR.
3. An engineered NK cell or T cell comprising: a chimeric antigen receptor (CAR) comprising an anti-CD19-4-1BB-CD3ζ CAR, and an anti-NKG2A scFv linked to a localizing domain comprising an ER or Golgi retention sequence comprising EEKKMP,
wherein the scFv comprises a variable heavy chain comprising SEQ ID NO:32 and a variable light chain comprising SEQ ID NO:33, and the scFv linked to the localizing domain is expressed by the cell, retained within the cell, and downregulates or suppresses surface expression of NKG2A in the engineered cell rendering NKG2A inactive.
4. An engineered NK cell or T cell comprising: a chimeric antigen receptor (CAR) comprising an anti-CD19-4-1BB-CD3ζ CAR, and an anti-KIR2DL1 and KIR2DL2/DL3 scFv linked to a localizing domain comprising an ER or Golgi retention sequence comprising EEKKMP or AEKDEL,
wherein the scFv comprises a variable heavy chain comprising SEQ ID NO:36 and a variable light chain comprising SEQ ID NO:37, and the scFv linked to the localizing domain is expressed by the cell, retained within the cell, and downregulates or suppresses surface expression of KIR2DL1 and KIR2DL2/DL3 in the engineered cell rendering KIR2DL1 and KIR2DL2/DL3 inactive.
5. The engineered NK cell or T cell of claim 1 , wherein the scFv binds NKG2A.
6. The engineered NK cell or T cell of claim 1 , wherein the scFv binds KIR2DL1 and KIR2DL2/DL3.
7. The engineered NK cell or T cell of claim 1 , wherein the ER or Golgi retention sequence comprises EEKKMP.
8. The engineered NK cell or T cell of claim 1 , wherein the ER or Golgi retention sequence comprises AEKDEL.
9. The engineered NK cell or T cell of claim 1 , wherein the scFv binds NKG2A and the ER or Golgi retention sequence comprises EEKKMP.
10. The engineered NK cell or T cell of claim 1 , wherein the scFv binds NKG2A and the ER or Golgi retention sequence comprises AEKDEL.
11. The engineered NK cell or T cell of claim 1 , wherein the scFv binds KIR2DL1 and KIR2DL2/DL3 and the ER or Golgi retention sequence comprises EEKKMP.
12. The engineered NK cell or T cell of claim 1 , wherein the scFv binds KIR2DL1 and KIR2DL2/DL3 and the ER or Golgi retention sequence comprises AEKDEL.