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Untranslated regions (UTRs) are a potential novel source of neoantigens for personalised immunotherapy
Christopher C T Sng1, Ashwin Adrian Kallor2, Benjamin S Simpson1
1Cancer Research UK Lung Cancer Centre of Excellence, University College London (UCL) Cancer Institute, London, United Kingdom.
Background:
Neoantigens, mutated tumour-specific antigens, are key targets of anti-tumour immunity during checkpoint inhibitor (CPI) treatment. Their identification is fundamental to designing neoantigen-directed therapy. Non-canonical neoantigens arising from the untranslated regions (UTR) of the genome are an overlooked source of immunogenic neoantigens. Here, we describe the landscape of UTR-derived neoantigens and release a computational tool, PrimeCUTR, to predict UTR neoantigens generated by start-gain and stop-loss mutations.
Methods:
We applied PrimeCUTR to a whole genome sequencing dataset of pre-treatment tumour samples from CPI-treated patients (n = 341). Cancer immunopeptidomic datasets were interrogated to identify MHC class I presentation of UTR neoantigens.
Results:
Start-gain neoantigens were predicted in 72.7% of patients, while stop-loss mutations were found in 19.3% of patients. While UTR neoantigens only accounted 2.6% of total predicted neoantigen burden, they contributed 12.4% of neoantigens with high dissimilarity to self-proteome. More start-gain neoantigens were found in CPI responders, but this relationship was not significant when correcting for tumour mutational burden. While most UTR neoantigens are private, we identified two recurrent start-gain mutations in melanoma. Using immunopeptidomic datasets, we identify two distinct MHC class I-presented UTR neoantigens: one from a recurrent start-gain mutation in melanoma, and one private to Jurkat cells.
Conclusion:
PrimeCUTR is a novel tool which complements existing neoantigen discovery approaches and has potential to increase the detection yield of neoantigens in personalised therapeutics, particularly for neoantigens with high dissimilarity to self. Further studies are warranted to confirm the expression and immunogenicity of UTR neoantigens.
Insights
Untranslated region (UTR) neoantigens, arising from non-canonical mutations, offer a novel target for cancer immunotherapy. A new tool, PrimeCUTR, identifies these UTR neoantigens, potentially improving personalized cancer therapies.
Area of Science:
- Oncology
- Immunology
- Bioinformatics
Background:
- Neoantigens are crucial for anti-tumour immunity during checkpoint inhibitor (CPI) therapy.
- Untranslated regions (UTR) represent an under-explored source of immunogenic neoantigens.
- Accurate neoantigen identification is vital for developing targeted cancer therapies.
Purpose of the Study:
- To characterize the landscape of UTR-derived neoantigens.
- To develop and validate a computational tool, PrimeCUTR, for predicting UTR neoantigens.
- To assess the potential of UTR neoantigens in CPI treatment response.
Main Methods:
- Applied the PrimeCUTR tool to whole genome sequencing data from 341 CPI-treated patients.
- Analyzed cancer immunopeptidomic datasets to detect MHC class I presentation of UTR neoantigens.
- Investigated UTR neoantigen frequency, contribution to self-proteome dissimilarity, and association with CPI response.
Main Results:
- UTR neoantigens were predicted in 72.7% (start-gain) and 19.3% (stop-loss) of patients.
- UTR neoantigens contributed significantly to neoantigens with high self-proteome dissimilarity (12.4%).
- Identified two recurrent UTR neoantigens in melanoma and two MHC class I-presented UTR neoantigens.
Conclusions:
- PrimeCUTR enhances neoantigen discovery, particularly for those dissimilar to self.
- UTR neoantigens represent a promising avenue for personalized cancer therapeutics.
- Further research is needed to confirm the immunogenicity and clinical utility of UTR neoantigens.
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