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Journal article

Neoantigen landscape dynamics during human melanoma-T cell interactions

From

Leiden University Medical Center1

Netherlands Cancer Institute2

University of Southern Denmark3

National Veterinary Institute, Technical University of Denmark4

Section for Immunology and Vaccinology, National Veterinary Institute, Technical University of Denmark5

AIMM Therapeutics6

Recognition of neoantigens that are formed as a consequence of DNA damage is likely to form a major driving force behind the clinical activity of cancer immunotherapies such as T-cell checkpoint blockade and adoptive T-cell therapy. Therefore, strategies to selectively enhance T-cell reactivity against genetically defined neoantigens are currently under development.

In mouse models, T-cell pressure can sculpt the antigenicity of tumours, resulting in the emergence of tumours that lack defined mutant antigens. However, whether the T-cell-recognized neoantigen repertoire in human cancers is constant over time is unclear. Here we analyse the stability of neoantigen-specific T-cell responses and the antigens they recognize in two patients with stage IV melanoma treated by adoptive T-cell transfer.

The T-cell-recognized neoantigens can be selectively lost from the tumour cell population, either by overall reduced expression of the genes or loss of the mutant alleles. Notably, loss of expression of T-cell-recognized neoantigens was accompanied by development of neoantigen-specific T-cell reactivity in tumour-infiltrating lymphocytes.

These data demonstrate the dynamic interactions between cancer cells and T cells, which suggest that T cells mediate neoantigen immunoediting, and indicate that the therapeutic induction of broad neoantigen-specific T-cell responses should be used to avoid tumour resistance.

Language: English
Publisher: Nature Publishing Group UK
Year: 2016
Pages: 91-95
Journal subtitle: International Weekly Journal of Science
ISSN: 14764687 and 00280836
Types: Journal article
DOI: 10.1038/nature18945
ORCIDs: Hadrup, Sine Reker

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