Oncogene-dependent sloppiness in mRNA translation

Publication date

2021-11-18

Authors

Champagne, Julien
Pataskar, Abhijeet
Blommaert, Naomi
Nagel, Remco
Wernaart, Demi
Ramalho, Sofia
Kenski, Juliana
Bleijerveld, OnnoISNI 0000000387405969
Zaal, Esther AORCID 0000-0001-9890-7345ISNI 0000000492962943
Berkers, Celia RISNI 000000038703060X

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Advisors

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Document Type

Article
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License

cc_by_nc_nd

Abstract

mRNA translation is a highly conserved and tightly controlled mechanism for protein synthesis. Despite protein quality control mechanisms, amino acid shortage in melanoma induces aberrant proteins by ribosomal frameshifting. The extent and the underlying mechanisms related to this phenomenon are yet unknown. Here, we show that tryptophan depletion-induced ribosomal frameshifting is a widespread phenomenon in cancer. We termed this event sloppiness and strikingly observed its association with MAPK pathway hyperactivation. Sloppiness is stimulated by RAS activation in primary cells, suppressed by pharmacological inhibition of the oncogenic MAPK pathway in sloppy cells, and restored in cells with acquired resistance to MAPK pathway inhibition. Interestingly, sloppiness causes aberrant peptide presentation at the cell surface, allowing recognition and specific killing of drug-resistant cancer cells by T lymphocytes. Thus, while oncogenes empower cancer progression and aggressiveness, they also expose a vulnerability by provoking the production of aberrant peptides through sloppiness.

Keywords

MAPK pathway, T cell killing, T cell recognition, aberrant peptides, acquired drug resistance, antigen presentation, cancer, protein synthesis, ribosomal frameshifting, Molecular Biology, Cell Biology, SDG 3 - Good Health and Well-being

Citation

Champagne, J, Pataskar, A, Blommaert, N, Nagel, R, Wernaart, D, Ramalho, S, Kenski, J, Bleijerveld, O B, Zaal, E A, Berkers, C R, Altelaar, M, Peeper, D S, Faller, W J & Agami, R 2021, 'Oncogene-dependent sloppiness in mRNA translation', Molecular Cell, vol. 81, no. 22, pp. 4709-4721. https://doi.org/10.1016/j.molcel.2021.09.002