Tryptophan depletion results in tryptophan-to-phenylalanine substitutants
Pataskar, Abhijeet; Champagne, Julien; Nagel, Remco; Kenski, Juliana; Laos, Maarja; Michaux, Justine; Pak, Hui Song; Bleijerveld, Onno B.; Mordente, Kelly; Navarro, Jasmine Montenegro; Blommaert, Naomi; Nielsen, Morten M.; Lovecchio, Domenica; Stone, Everett; Georgiou, George; de Gooijer, Mark C.; van Tellingen, Olaf; Altelaar, Maarten; Joosten, Robbie P.; Perrakis, Anastassis; Olweus, Johanna; Bassani-Sternberg, Michal; Peeper, Daniel S.; Agami, Reuven
(2022) Nature, volume 603, issue 7902, pp. 721 - 727
(Article)
Abstract
Activated T cells secrete interferon-γ, which triggers intracellular tryptophan shortage by upregulating the indoleamine 2,3-dioxygenase 1 (IDO1) enzyme1–4. Here we show that despite tryptophan depletion, in-frame protein synthesis continues across tryptophan codons. We identified tryptophan-to-phenylalanine codon reassignment (W>F) as the major event facilitating this process, and pinpointed tryptophanyl-tRNA synthetase (WARS1)
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as its source. We call these W>F peptides ‘substitutants’ to distinguish them from genetically encoded mutants. Using large-scale proteomics analyses, we demonstrate W>F substitutants to be highly abundant in multiple cancer types. W>F substitutants were enriched in tumours relative to matching adjacent normal tissues, and were associated with increased IDO1 expression, oncogenic signalling and the tumour-immune microenvironment. Functionally, W>F substitutants can impair protein activity, but also expand the landscape of antigens presented at the cell surface to activate T cell responses. Thus, substitutants are generated by an alternative decoding mechanism with potential effects on gene function and tumour immunoreactivity.
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Keywords: Codon/metabolism, Indoleamine-Pyrrole 2,3,-Dioxygenase/genetics, Interferon-gamma, Neoplasms/immunology, Phenylalanine, T-Lymphocytes, Tryptophan/metabolism, Tryptophan Oxygenase/genetics, Tryptophan-tRNA Ligase/genetics, General
ISSN: 0028-0836
Publisher: Nature Research
Note: Funding Information: R.A. is supported by the Dutch cancer society (KWF projects 11037 and 13647), the European research council (ERC-2018-ADG - GA 832844), and the AvL Foundation. O.B.B. and M.A. are supported by the Dutch NWO X-omics Initiative. We thank R. Accolla for providing the glioblastoma cells and all members of the Agami laboratory for very fruitful discussions. Publisher Copyright: © 2022, The Author(s).
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