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April 5, 2026Cancer Research0 citations

Abstract 1463: DNA methylation driven clonal splicing neoantigens predict immunotherapy response in lung cancer.

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SSSadegh SaghafiniaCCCarla CastignaniAGAmirhossein Ghorbanpour

Key Points

  • The aim is to explore how DNA methylation-driven splicing can create neoantigens that may predict responses to immunotherapy in lung cancer.
  • Developed an integrated multi-omics framework combining methylome and transcriptome analysis.
  • Analyzed multi-region paired RRBS and RNA-seq data from non-small cell lung cancer patients.
  • Identified recurrent clonal splicing-derived neoantigens linked to DNA methylation changes.
  • Uncovered a collection of clonal splicing-derived neoantigens associated with DNA methylation alterations.
  • Identified several neoantigens that predict clinical benefit from immune checkpoint inhibitors.
  • Demonstrated the role of splicing regulation by DNA methylation as a source of neoantigens in lung cancer.

Abstract

Abstract Immunotherapy has transformed the treatment landscape for previously untreatable cancers, yet its effectiveness is typically associated with high tumour mutational burden. However, additional biological processes can generate immunogenic antigens independently of DNA mutations. Alternative splicing, a major mechanism of transcriptome diversification, can produce cancer-specific isoforms that give rise to neoantigens. Emerging evidence suggests that splicing-derived neoantigens may arise from coordinated dysregulation of splicing factors, including epigenetic alterations such as DNA methylation. Here, we developed an integrated multi-omics framework that combines paired methylome and transcriptome data to identify cancer-specific, splicing-derived epitopes driven by DNA-methylation changes at gene loci. We applied this framework to the DARWIN II cohort of non-small cell lung cancer (NSCLC) patients treated with immune checkpoint inhibitors (CPI), leveraging multi-region paired RRBS and RNA-seq data from 256 tumour regions across 72 patients. Using this approach, we uncovered a compendium of recurrent clonal splicing-derived neoantigens linked to DNA-methylation alterations, several of which were predictive of clinical benefit from CPI therapy. Our findings demonstrate that DNA methylation-mediated splicing regulation represents a source of clonal neoantigens in lung cancer, providing new avenues for patient stratification and informing future vaccine and immunotherapy development. Citation Format: Sadegh Saghafinia, Carla Castignani, Amirhossein Ghorbanpour, Carlos Marínez-Ruiz, Francisco Gimeno-Valiente, Ariana Huebner, Cristina Naceur-Lombardelli2, Raju Veeriah, Mariam Jamal-Hanjani, Alan Hackshaw, Nnennaya Kanu, Charles Swanton, Crispin Hiley. DNA methylation driven clonal splicing neoantigens predict immunotherapy response in lung cancer abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 1463.

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Saghafinia et al. (2026) studied this question.

synapsesocial.com/papers/69d1fd29a79560c99a0a30f3https://doi.org/10.1158/1538-7445.am2026-1463
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract 1611: DNA methylation co-operates with genomic alterations during non-small cell lung cancer evolution2024
  2. 2Abstract 5888: Novel immune-therapeutic target for lung cancer uncovered by SpliceIO™, an innovative platform that identifies disease-specific alternative splicing2024
  3. 3Abstract 3907: Novel public and tumor-wide neoantigens arising from clonal aberrant splicing events drive tumor-specific T-cell responses across diverse cancer types2024
  4. 4Abstract 6551: Comprehensive genomic and transcriptomic analyses capture the effects of epigenetic therapy priming on immune checkpoint blockade response in non-small cell lung cancer2024
  5. 5Abstract 2600: Investigating treatment response and resistance in non-small cell lung cancer patients through epigenetic profiling of plasma nucleosomes2026