Orthogonal CRISPR screens to identify transcriptional and epigenetic regulators of human CD8 T cell function
McCutcheon, S.; Swartz, A.; Brown, M.; Barrera, A.; McRoberts Amador, C.; Siklenka, K.; Humayun, L.; Isaacs, J.; Reddy, T. E.; Nair, S.; Antonia, S.; Gersbach, C. A.
Show abstract
The clinical response to adoptive T cell therapies is strongly associated with transcriptional and epigenetic state. Thus, technologies to discover regulators of T cell gene networks and their corresponding phenotypes have great potential to improve the efficacy of T cell therapies. We developed pooled CRISPR screening approaches with compact epigenome editors to systematically profile the effects of activation and repression of 120 transcription factors and epigenetic modifiers on human CD8+ T cell state. These screens nominated known and novel regulators of T cell phenotypes with BATF3 emerging as a high confidence gene in both screens. We found that BATF3 overexpression promoted specific features of memory T cells such as increased IL7R expression and glycolytic capacity, while attenuating gene programs associated with cytotoxicity, regulatory T cell function, and T cell exhaustion. In the context of chronic antigen stimulation, BATF3 overexpression countered phenotypic and epigenetic signatures of T cell exhaustion. CAR T cells overexpressing BATF3 significantly outperformed control CAR T cells in both in vitro and in vivo tumor models. Moreover, we found that BATF3 programmed a transcriptional profile that correlated with positive clinical response to adoptive T cell therapy. Finally, we performed CRISPR knockout screens with and without BATF3 overexpression to define co-factors and downstream factors of BATF3, as well as other therapeutic targets. These screens pointed to a model where BATF3 interacts with JUNB and IRF4 to regulate gene expression and illuminated several other novel targets for further investigation.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- LAG-3 blockade reactivates the CD8+ T cell expansion program to re-expand contracted clones in the tumor 98%
- Programmable epigenome editing by transient delivery of CRISPR epigenome editor ribonucleoproteins 98%
- APMAT analysis reveals the association between CD8 T cell receptors, cognate antigen, and T cell phenotype and persistence 97%
Similar papers in this journal
Similar papers in this journal
- Reproducible single cell annotation of programs underlying T-cell subsets, activation states, and functions 97%
- Efficient combinatorial targeting of RNA transcripts in single cells with Cas13 RNA Perturb-seq 97%
- NEAT-seq: Simultaneous profiling of intra-nuclear proteins, chromatin accessibility, and gene expression in single cells 97%
Similar papers in this journal
- Linking candidate causal autoimmune variants to T cell networks using genetic and epigenetic screens in primary human T cells. 97%
- Prioritization of autoimmune disease-associated genetic variants that perturb regulatory element activity in T cells 97%
- Genome-wide CRISPR screens identify PTGES3 as a novel AR modulator 97%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.