Targeting a CAR to the TRAC locus with CRISPR/Cas9 enhances tumour rejection
Justin Eyquem,Jorge Mansilla-Soto,Theodoros Giavridis,Sjoukje J. C. van der Stegen,Mohamad Hamieh,Kristen M. Cunanan,Ashlesha Odak,Mithat Gonen,Michel Sadelain +8 more
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TL;DR: It is demonstrated that directing a CD19-specific CAR to the T- cell receptor α constant (TRAC) locus not only results in uniform CAR expression in human peripheral blood T cells, but also enhances T-cell potency, with edited cells vastly outperforming conventionally generated CAR T cells in a mouse model of acute lymphoblastic leukaemia.
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Abstract: Chimeric antigen receptors (CARs) are synthetic receptors that redirect and reprogram T cells to mediate tumour rejection. The most successful CARs used to date are those targeting CD19 (ref. 2), which offer the prospect of complete remission in patients with chemorefractory or relapsed B-cell malignancies. CARs are typically transduced into the T cells of a patient using γ-retroviral vectors or other randomly integrating vectors, which may result in clonal expansion, oncogenic transformation, variegated transgene expression and transcriptional silencing. Recent advances in genome editing enable efficient sequence-specific interventions in human cells, including targeted gene delivery to the CCR5 and AAVS1 loci. Here we show that directing a CD19-specific CAR to the T-cell receptor α constant (TRAC) locus not only results in uniform CAR expression in human peripheral blood T cells, but also enhances T-cell potency, with edited cells vastly outperforming conventionally generated CAR T cells in a mouse model of acute lymphoblastic leukaemia. We further demonstrate that targeting the CAR to the TRAC locus averts tonic CAR signalling and establishes effective internalization and re-expression of the CAR following single or repeated exposure to antigen, delaying effector T-cell differentiation and exhaustion. These findings uncover facets of CAR immunobiology and underscore the potential of CRISPR/Cas9 genome editing to advance immunotherapies.
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TL;DR: Recent advances that provide a clearer molecular understanding of T cell exhaustion are reviewed and reveal new therapeutic targets for persisting infections and cancer.
CD19-Targeted T Cells Rapidly Induce Molecular Remissions in Adults with Chemotherapy-Refractory Acute Lymphoblastic Leukemia
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Adrienne H. Long,Waleed Haso,Jack F. Shern,Kelsey Wanhainen,Meera Murgai,Maria Ingaramo,Jillian P. Smith,Alec J. Walker,M. Eric Kohler,Vikas R Venkateshwara,Rosandra N. Kaplan,George H. Patterson,Terry J. Fry,Rimas J. Orentas,Crystal L. Mackall +14 more
TL;DR: It is shown that tonic CAR CD3-ζ phosphorylation, triggered by antigen-independent clustering of CAR single-chain variable fragments, can induce early exhaustion of CAR T cells that limits antitumor efficacy, and that CD28 costimulation augments, whereas 4-1BB costimulations reduces, exhaustion induced by persistent CAR signaling.
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