Aug 2026· Bioinformatics· Vol 42· 0 citations· 26 references
Medicine
TL;DR
Dipeptide composition and conservation analyses showed that these MPs differ from a size-matched human coding proteome, supporting their potential as neoantigens, highlighting their promise as biomarkers and targets for immunotherapy.
Abstract
Abstract Motivation Long non-coding RNAs (lncRNAs) regulate gene expression, chromatin organization, and cellular signaling. Recent studies indicate that ∼20% of the ∼36 000 human lncRNA genes harbor small open reading frames (sORFs) capable of producing micropeptides (MPs), whose functions remain largely unknown. Whether these peptides contribute to the cancer immunopeptidome is largely unexplored. Results We systematically analyzed lncRNAs with strong experimental and computational evidence of MP-encoding potential (∼13% of the initial MP collection). Using The Cancer Genome Atlas (TCGA), we identified 2606 high-confidence lncRNA-derived MPs encoded by 647 genes across 16 cancer types. We then focused on 501 MPs from 124 lncRNA genes whose expression changes significantly across tumor stages and metastatic transitions, representing cancer transitional lncRNAs (Tr-lncRNAs). Dipeptide composition and conservation analyses showed that these MPs differ from a size-matched human coding proteome, supporting their potential as neoantigens. All possible 9-mer peptides were evaluated for predicted binding to prevalent European HLA class I alleles. Approximately 60% of Tr-lncRNA genes and 184 (37%) of derived peptides exhibited strong predicted HLA binding. Peptides from XIST, PCAT7, PVT1, HAND2-AS1 showed broad HLA coverage. Notably, TTN-AS1, encoded an MP (79 aa) generated 33 predicted distinct epitopes spanning all 27 HLA alleles. Our analysis identifies lncRNA-derived MPs as a previously underexplored source of potential cancer neoantigens, highlighting their promise as biomarkers and targets for immunotherapy. Availability Data, code and supplementary materials are available in https://doi.org/10.5281/zenodo.20167452 and GitHub: https://github.com/stavzok1/lncrna_peptide_analysis.
Tr-lncRNA-derived MPs represent a previously underexplored class of potentially functional molecules associated with cancer clinical annotation and may serve as biomarkers for disease progression.
Stav Zok, M. Linial· British Journal of Cancer· 1 citation
A mechanism wherein SChLAP1 modulates AR signaling to promote PCa growth and progression is suggested, suggesting its molecular mechanism and potential to be used as a therapeutic target or biomarker.
It is proposed that the upregulated lncRNA ENSG00000265613 may enhance malignancy by stabilizing the RNA target ENSG00000582008 in luminal A breast cancer, particularly given its established role in oncogenesis.
Chittibabu Guda, Sankarasubramanian Jagadesan, Avinash M. Veerappa· Methods in molecular biology· 0 citations
These findings call for a revised molecular dogma in which the noncoding genome is recognized as a major regulator of cellular function, oncogenic transformation, and immune surveillance.
Maria Lteif, Assia Hijazi, E. Morgand et al.· Oncoimmunology· 0 citations
The human genome contains hundreds of thousands of short open reading frames (sORFs), yet their translational products, hereafter referred to as sORF-encoded microproteins (also historically termed micropeptides), have long remained overlooked in conventional genome annotation. Increasing evidence demonstrates that the...
Ayman M. Mustafa, Rebaz M. Ali, S. Omar et al.· Epigenomics· 0 citations
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