Methods for engineering T cells for immunotherapy by using RNA-guided CAS nuclease system
The present invention relates to methods of developing genetically engineered, preferably non-alloreactive T-cells for immunotherapy. This method involves the use of RNA-guided endonucleases, in particular Cas9/CRISPR system, to specifically target a selection of key genes in T-cells. The engineered T-cells are also intended to express chimeric antigen receptors (CAR) to redirect their immune activity towards malignant or infected cells. The invention opens the way to standard and affordable adoptive immunotherapy strategies using T-Cells for treating cancer and viral infections.
1. A method of preparing T-cells for immunotherapy comprising the step of:
(a) genetically modifying primary T-cells by introduction and/or expression into the cells of at least:
a RNA-guided endonuclease; and
a specific guide RNA that directs said endonuclease to at least one targeted locus in the T-cell genome,
wherein said RNA-guided endonuclease is expressed from transfected mRNA;
wherein said RNA-guided endonuclease comprises the amino acid sequence set forth in SEQ ID NO:1 or SEQ ID NO:2; and
(b) expanding the resulting cells.
2. The method according to claim 1 , wherein the RNA-guided endonuclease is split into at least 2 polypeptides, one comprising RuvC and another comprising HNH, and at least one being expressed from transfected mRNA.
3. The method according to claim 2 , wherein said mRNA RNA-guided endonuclease is expressed under a stabilized or inactive form, which is made active upon activation by an enzyme produced by the T-cell or destabilization of its polypeptide structure inside the T-cell.