Targeted gene insertion for improved immune cells therapy
The invention pertains to the field of adaptive cell immunotherapy. It provides with the genetic insertion of exogenous coding sequence(s) that help the immune cells to direct their immune response against infected or malignant cells. These exogenous coding sequences are more particularly inserted under the transcriptional control of endogenous gene promoters that are sensitive to immune cells activation. Such method allows the production of safer immune primary cells of higher therapeutic potential.
1. A population of engineered primary human NK or T cells, comprising an exogenous coding sequence encoding an interleukin selected from IL-15, IL-12, or IL-2 inserted into an endogenous gene such that said interleukin is under transcriptional control of an endogenous gene promoter locus, while disrupting the coding sequence of the endogenous gene,
wherein the endogenous gene encodes PD1;
wherein said primary human NK or T cells further comprise an exogenous coding sequence encoding a chimeric antigen receptor (CAR) or a recombinant TCR; and
wherein said primary human NK or T cells secrete a level of the interleukin sufficient to enhance the antitumor activity of the cells.
2. The population of engineered primary human T cells according to claim 1 , wherein said interleukin is IL-2.
3. The population of engineered primary human T cells according to claim 1 , wherein said interleukin is IL-12.
4. The population of engineered primary human T cells according to claim 1 , wherein said interleukin is IL-15.
5. The population of engineered primary human NK or T cells according to claim 1 , wherein more than 50% of said cells are TCR negative T-cells and/or more than 50% of said cells are CAR positive cells.
6. The population of engineered primary human NK or T cells according to claim 1 , wherein the CAR is an antiCD22 CAR.
7. The population of engineered primary human NK or T cells according to claim 2 , wherein the CAR is an antiCD22 CAR.
8. The population of engineered primary human NK or T cells according to claim 3 , wherein the CAR is an antiCD22 CAR.
9. The population of engineered primary human NK or T cells according to claim 1 , wherein the CAR is an antiCD22 CAR.
10. The population of engineered primary human NK or T cells according to claim 1 , wherein the CAR is inserted at the TRAC locus using TALENS having the sequence of SEQ ID NO:16 and 17.
11. The population of engineered primary human NK or T cells according to claim 2 , wherein the CAR is inserted at the TRAC locus using TALENS having the sequence of SEQ ID NO:16 and 17.
12. The population of engineered primary human NK or T cells according to claim 3 , wherein the CAR is inserted at the TRAC locus using TALENS having the sequence of SEQ ID NO:16 and 17.
13. The population of engineered primary human NK or T cells according to claim 4 , wherein the CAR is inserted at the TRAC locus using TALENS having the sequence of SEQ ID NO:16 and 17.
14. The population of engineered primary human NK or T cells according to claim 7 , wherein the CAR is inserted at the TRAC locus using TALENS having the sequence of SEQ ID NO:16 and 17.
15. The population of engineered primary human NK or T cells according to claim 8 , wherein the CAR is inserted at the TRAC locus using TALENS having the sequence of SEQ ID NO:16 and 17.
16. The population of engineered primary human NK or T cells according to claim 9 , wherein the CAR is inserted at the TRAC locus using TALENS having the sequence of SEQ ID NO:16 and 17.
17. The population of engineered primary human NK or T cells according to claim 7 , wherein the exogenous coding sequence encoding an interleukin is inserted into the middle of the PD1 open reading frame using TALENS having the sequence of SEQ ID NO:20 and 21.
18. The population of engineered primary human NK or T cells according to claim 8 , wherein the exogenous coding sequence encoding an interleukin is inserted into the middle of the PD1 open reading frame using TALENS having the sequence of SEQ ID NO:20 and 21.
19. The population of engineered primary human NK or T cells according to claim 9 , wherein the exogenous coding sequence encoding an interleukin is inserted into the middle of the PD1 open reading frame using TALENS having the sequence of SEQ ID NO:20 and 21.