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Insertion-and-deletion-derived tumour-specific neoantigens and the immunogenic phenotype: a pan-cancer analysis
Samra Turajlic1, Kevin Litchfield2, Hang Xu2
1Translational Cancer Therapeutics Laboratory, The Francis Crick Institute, London, UK; Renal and Skin Units, The Royal Marsden Hospital National Health Service Foundation Trust, London, UK.
Background:
The focus of tumour-specific antigen analyses has been on single nucleotide variants (SNVs), with the contribution of small insertions and deletions (indels) less well characterised. We investigated whether the frameshift nature of indel mutations, which create novel open reading frames and a large quantity of mutagenic peptides highly distinct from self, might contribute to the immunogenic phenotype.
Methods:
We analysed whole-exome sequencing data from 5777 solid tumours, spanning 19 cancer types from The Cancer Genome Atlas. We compared the proportion and number of indels across the cohort, with a subset of results replicated in two independent datasets. We assessed in-silico tumour-specific neoantigen predictions by mutation type with pan-cancer analysis, together with RNAseq profiling in renal clear cell carcinoma cases (n=392), to compare immune gene expression across patient subgroups. Associations between indel burden and treatment response were assessed across four checkpoint inhibitor datasets.
Findings:
We observed renal cell carcinomas to have the highest proportion (0·12) and number of indel mutations across the pan-cancer cohort (p<2·2 × 10-16), more than double the median proportion of indel mutations in all other cancer types examined. Analysis of tumour-specific neoantigens showed that enrichment of indel mutations for high-affinity binders was three times that of non-synonymous SNV mutations. Furthermore, neoantigens derived from indel mutations were nine times enriched for mutant specific binding, as compared with non-synonymous SNV derived neoantigens. Immune gene expression analysis in the renal clear cell carcinoma cohort showed that the presence of mutant-specific neoantigens was associated with upregulation of antigen presentation genes, which correlated (r=0·78) with T-cell activation as measured by CD8-positive expression. Finally, analysis of checkpoint inhibitor response data revealed frameshift indel count to be significantly associated with checkpoint inhibitor response across three separate melanoma cohorts (p=4·7 × 10-4).
Interpretation:
Renal cell carcinomas have the highest pan-cancer proportion and number of indel mutations. Evidence suggests indels are a highly immunogenic mutational class, which can trigger an increased abundance of neoantigens and greater mutant-binding specificity.
Funding:
Cancer Research UK, UK National Institute for Health Research (NIHR) at the Royal Marsden Hospital National Health Service Foundation Trust, Institute of Cancer Research and University College London Hospitals Biomedical Research Centres, the UK Medical Research Council, the Rosetrees Trust, Novo Nordisk Foundation, the Prostate Cancer Foundation, the Breast Cancer Research Foundation, the European Research Council.
Insights
Small insertions and deletions (indels) drive a strong immune response in cancer, leading to more neoantigens and better checkpoint inhibitor therapy outcomes, especially in renal cell carcinoma.
Area of Science:
- Genomics
- Immunology
- Cancer Research
Background:
- Single nucleotide variants (SNVs) are the primary focus of tumor antigen analysis.
- The immunogenic potential of small insertions and deletions (indels) remains less characterized.
Purpose of the Study:
- To investigate the contribution of indel mutations to the immunogenic phenotype of tumors.
- To compare the neoantigenic and immunomodulatory effects of indels versus SNVs.
Main Methods:
- Analysis of whole-exome sequencing data from 5777 solid tumors across 19 cancer types.
- In-silico neoantigen prediction, RNA sequencing, and assessment of treatment response to checkpoint inhibitors.
Main Results:
- Renal cell carcinomas exhibit the highest proportion and number of indel mutations.
- Indel mutations result in a three-fold enrichment of high-affinity neoantigen binders and a nine-fold enrichment of mutant-specific binding compared to SNVs.
- Indel burden correlates with increased antigen presentation and T-cell activation, and predicts response to checkpoint inhibitors.
Conclusions:
- Indels represent a highly immunogenic class of mutations.
- Indel-driven neoantigens enhance anti-tumor immunity and predict therapeutic response.
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