Transposable elements and homotypic niches drive immune dynamics and resistance in melanoma epigenetic-based immunotherapy.
Melanoma plasticity drives immune evasion and therapy resistance through dynamic cell-state transitions beyond genetic alterations. Although epigenetic remodeling is central to this process, its impact under therapeutic pressure remains unclear. We profiled longitudinal biopsies from patients with melanoma treated in the phase 1b NIBIT-M4 epi-immunotherapy trial [NCT02608437, DNA (cytosine-5)-methyltransferase 1 inhibitor plus anti-CTLA-4] using single-cell multiome and spatial transcriptomics. Seven malignant meta-programs were identified, including a rare Wnt/β-Catenin melanocytic state and a dedifferentiated neural crest-like state enriched in nonresponders. Spatial analyses showed that homotypic clustering stabilizes resistant programs, with neural crest-like cells forming compact niches. Responders displayed enrichment of antigen presentation/interferon program and coordinated T and B cell expansion, whereas nonresponders retained stable neural crest-like clusters. Epigenetic therapy reactivated transposable elements, priming innate immunity and enhancing immunogenicity. Nuclear factor of activated T cells, cytoplasmic 2 (NFATC2) emerged as a master regulator of neural crest-like states and resistance; its perturbation promoted differentiation and immunogenicity. These findings define mechanisms of resistance and nominate β-Catenin and NFATC2 as therapeutic vulnerabilities.
Authors
Ciervo Ciervo, Ceccarelli Ceccarelli, Di Giacomo Di Giacomo, Grisolia Grisolia, Covre Covre, Besharat Besharat, De Falco De Falco, Caruso Caruso, Laezza Laezza, Ferraro Ferraro, Martin Martin, Bilbao Bilbao, Williams Williams, Currall Currall, Lofiego Lofiego, Sani Sani, Ferretti Ferretti, Guo Guo, Holden Holden, Simeone Simeone, Mortarini Mortarini, Anichini Anichini, Maio Maio, Noviello Noviello, Ceccarelli Ceccarelli
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