Enhancer Reprogramming in Melanoma Immune Checkpoint Therapy Resistance
Maitituoheti, M.; Shi, A.; Tang, M.; Ho, L.-L.; Terranova, C.; Galani, K.; Keung, E.; Creasy, C.; Wu, M.; Chen, J.; Chen, N.; Singh, A.; Chaudhri, A.; Anvar, N.; Tarantino, G.; Yang, J.; Sarkar, S.; Jiang, S.; Malke, J.; Hayudu, L.; Burton, E.; Davies, M.; Gershenwald, J.; Hwu, P.; Lazar, A.; Cheah, J.; Soule, C.; Levine, S.; Bernatchez, C.; Saladi, S.; Liu, D.; Wargo, J.; Boland, G.; Kellis, M.; Rai, K.
Show abstract
Immune checkpoint blockade (ICB) therapy has improved long-term survival for patients with advanced melanoma. However, there is critical need to identify potential biomarkers of response and actionable strategies to improve response rates. Through generation and analysis of 148 chromatin modification maps for 36 melanoma samples from patients treated with anti-PD- 1, we identified significant enrichment of active enhancer states in non-responders at baseline. Analysis of an independent cohort of 20 samples identified a set of 437 enhancers that predicted response to anti-PD-1 therapy (Area Under the Curve of 0.8417). The activated non-responder enhancers marked a group of key regulators of several pathways in melanoma cells (including c- MET, TGF{beta}, EMT and AKT) that are known to mediate resistance to ICB therapy and several checkpoint receptors in T cells. Epigenetic editing experiments implicated involvement of c-MET enhancers in the modulation of immune response. Finally, inhibition of enhancers and repression of these pathways using bromodomain inhibitors along with anti-PD-1 therapy significantly decreased melanoma tumor burden and increased T-cell infiltration. Together, these findings identify a potential enhancer-based biomarker of resistance to anti-PD-1 and suggest enhancer blockade in combination with ICB as a potential strategy to improve responses.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Chromosome 1q amplification perturbs a ceRNA network to promote melanoma metastasis 95%
- A targetable PREX2/RAC1/PI3Kβ signalling axis confers resistance to clinically relevant therapeutic approaches in melanoma 95%
- KDM6 demethylases mediate EWSR1-FLI1-driven oncogenic transformation in Ewing Sarcoma 95%
Similar papers in this journal
- Deactivation of ligand-receptor interactions enhancing lymphocyte infiltration drives melanoma resistance to Immune Checkpoint Blockade 96%
- Single-cell ATAC and RNA sequencing reveal pre-existing and persistent subpopulations of cells associated with relapse of prostate cancer 95%
- Epigenetic modulation reveals differentiation state specificity of oncogene addiction 95%
Similar papers in this journal
Similar papers in this journal
- DUX4 is a common driver of immune evasion and immunotherapy failure in metastatic cancers 96%
- SATB2 induction of a neural crest mesenchyme-like program drives invasion and drug resistance in melanoma 95%
- T cell receptor convergence is an indicator of antigen-specific T cell response in cancer immunotherapies 95%
Similar papers in this journal
- Combined tumor and immune signals from genomes or transcriptomes predict outcomes of checkpoint inhibition in melanoma 95%
- Enhancer profiling identifies epigenetic markers of endocrine resistance and reveals therapeutic options for metastatic castration-resistant prostate cancer patients 93%
- Cell-free multi-omics analysis reveals tumor status-informative signatures in gastrointestinal cancer patients' plasma 93%
"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.