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Sources of Cancer Neoantigens beyond Single-Nucleotide Variants
Aude-Hélène Capietto1, Reyhane Hoshyar1, Lélia Delamarre1
1Cancer Immunology Department, Genentech, South San Francisco, CA 94080, USA.
Abstract:
The success of checkpoint blockade therapy against cancer has unequivocally shown that cancer cells can be effectively recognized by the immune system and eliminated. However, the identity of the cancer antigens that elicit protective immunity remains to be fully explored. Over the last decade, most of the focus has been on somatic mutations derived from non-synonymous single-nucleotide variants (SNVs) and small insertion/deletion mutations (indels) that accumulate during cancer progression. Mutated peptides can be presented on MHC molecules and give rise to novel antigens or neoantigens, which have been shown to induce potent anti-tumor immune responses. A limitation with SNV-neoantigens is that they are patient-specific and their accurate prediction is critical for the development of effective immunotherapies. In addition, cancer types with low mutation burden may not display sufficient high-quality [SNV/small indels] neoantigens to alone stimulate effective T cell responses. Accumulating evidence suggests the existence of alternative sources of cancer neoantigens, such as gene fusions, alternative splicing variants, post-translational modifications, and transposable elements, which may be attractive novel targets for immunotherapy. In this review, we describe the recent technological advances in the identification of these novel sources of neoantigens, the experimental evidence for their presentation on MHC molecules and their immunogenicity, as well as the current clinical development stage of immunotherapy targeting these neoantigens.
Insights
Checkpoint blockade therapy harnesses the immune system against cancer. This review explores novel cancer neoantigens beyond mutations, such as gene fusions and alternative splicing, for improved immunotherapies.
Area of Science:
- Immunology
- Oncology
- Genetics
Background:
- Checkpoint blockade therapy highlights the immune system's role in cancer elimination.
- Identifying cancer-specific antigens is crucial for effective cancer immunotherapies.
- Current focus on neoantigens from single-nucleotide variants (SNVs) and indels has limitations.
Purpose of the Study:
- To review alternative sources of cancer neoantigens beyond SNVs and indels.
- To discuss technological advances in identifying novel neoantigen sources.
- To evaluate the immunogenicity and clinical development of immunotherapies targeting these neoantigens.
Main Methods:
- Literature review of recent technological advances.
- Analysis of experimental evidence for neoantigen presentation and immunogenicity.
- Assessment of the clinical development status of novel neoantigen-targeted immunotherapies.
Main Results:
- Neoantigens can arise from gene fusions, alternative splicing, post-translational modifications, and transposable elements.
- These alternative neoantigens offer potential therapeutic targets, especially in low-mutation cancers.
- Technological advancements facilitate the identification and validation of these novel antigens.
Conclusions:
- Alternative neoantigen sources represent promising targets for cancer immunotherapy.
- Further research and technological development are needed to fully exploit these targets.
- Targeting novel neoantigens may overcome limitations of current SNV/indel-based approaches.
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