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Long Non-Coding RNA-Derived Peptides as a Novel Source of Tumor Neoantigens: Expanding the Immunopeptidome Beyond
Ismael López-Calvo1,2,3, Inés Bao-Camacho1,2,3, Samuel Martín-Revuelta1,2,4
1Centro Interdisciplinar de Química e Bioloxía (CICA), Universidade da Coruña, Campus de Elviña, As Carballeiras, s/n, 15071 A Coruña, Spain.
Abstract:
Cancer immunotherapy has transformed the clinical management of several malignancies; however, its efficacy remains limited in tumors with low mutational burden and restricted availability of classical mutation-derived neoantigens. In this context, increasing evidence indicates that the tumor immunopeptidome extends far beyond canonical protein-coding regions, incorporating peptides derived from non-coding transcripts through non-canonical translation mechanisms. Long non-coding RNAs (lncRNAs), traditionally regarded as transcriptional or post-transcriptional regulators, have recently emerged as an unexpected source of small open reading frame-encoded peptides (lncPEPs). A subset of these peptides is processed and presented by major histocompatibility complex class I molecules, generating tumor-specific neoantigens capable of eliciting CD8+ T cell responses. Owing to the high tissue and context specificity of lncRNA expression, lncRNA-derived neoantigens offer unique advantages over mutation-based targets, including increased tumor selectivity and potential recurrence across patient subsets. In this review, we synthesize current knowledge on the biogenesis, detection, and immunogenic potential of lncRNA-derived peptides, highlighting experimental and computational strategies for their identification within the cancer immunopeptidome. We discuss the challenges associated with their validation and clinical translation, as well as their relevance for the development of vaccines and adoptive T cell-based therapies. Finally, we illustrate these concepts using epithelial ovarian cancer as a representative model of low-mutational-burden tumors, where lncRNA-derived neoantigens may help overcome current limitations of immunotherapy and enable patient stratification for personalized treatment approaches.
Insights
Long non-coding RNAs (lncRNAs) can generate novel cancer neoantigens (lncPEPs) from non-coding regions. These lncPEPs offer promising new targets for cancer immunotherapy, especially in tumors with low mutation rates.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Cancer immunotherapy efficacy is limited in tumors with low mutational burden.
- Tumor neoantigens are typically derived from protein-coding regions.
- Non-coding transcripts are an underappreciated source of tumor antigens.
Purpose of the Study:
- To review the biogenesis, detection, and immunogenic potential of long non-coding RNA-derived peptides (lncPEPs).
- To highlight strategies for identifying lncPEPs in the cancer immunopeptidome.
- To discuss the clinical translation of lncPEPs for cancer treatment.
Main Methods:
- Literature review of studies on lncRNA translation and immunogenicity.
- Analysis of experimental and computational strategies for lncPEP identification.
- Case study using epithelial ovarian cancer as a model.
Main Results:
- Long non-coding RNAs (lncRNAs) can be translated into small peptides (lncPEPs).
- A subset of lncPEPs are presented as neoantigens by MHC class I molecules, eliciting CD8+ T cell responses.
- lncRNA-derived neoantigens offer tumor selectivity and potential recurrence across patient subsets.
Conclusions:
- lncPEPs represent a novel class of tumor-specific neoantigens.
- lncRNA-derived neoantigens hold significant potential for overcoming limitations in current cancer immunotherapies.
- These neoantigens may enable patient stratification and personalized treatment approaches, particularly in low-mutational-burden tumors.
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