Codon adaptation by synonymous mutations impacts the functional properties of the estrogen receptor‐alpha protein in breast cancer cells

Author:

Clusan Léa1,Percevault Frederic1,Jullion Emmanuelle2,Le Goff Pascale1,Tiffoche Christophe2,Fernandez‐Calero Tamara34,Métivier Raphaël2,Marin Monica5,Pakdel Farzad1,Michel Denis1,Flouriot Gilles1ORCID

Affiliation:

1. Univ Rennes, Inserm, EHESP, Irset (Institut de Recherche en Santé, Environnement et Travail), UMR_S1085 France

2. Institut de Génétique De Rennes (IGDR), UMR 6290 CNRS, ERL INSERM U1305 Univ Rennes France

3. Departamento de Ciencias Exactas Y Naturales Universidad Catolica del Uruguay Montevideo Uruguay

4. Bioinformatics Unit Institut Pasteur Montevideo Uruguay

5. Biochemistry‐Molecular Biology, Facultad de Ciencias Universidad de la República Montevideo Uruguay

Abstract

Oestrogen receptor‐alpha (ERα) positivity is intimately associated with the development of hormone‐dependent breast cancers. A major challenge in the treatment of these cancers is to understand and overcome the mechanisms of endocrine resistance. Recently, two distinct translation programmes using specific transfer RNA (tRNA) repertoires and codon usage frequencies were evidenced during cell proliferation and differentiation. Considering the phenotype switch of cancer cells to more proliferating and less‐differentiated states, we can speculate that the changes in the tRNA pool and codon usage that likely occur make the ERα coding sequence no longer adapted, impacting translational rate, co‐translational folding and the resulting functional properties of the protein. To verify this hypothesis, we generated an ERα synonymous coding sequence whose codon usage was optimized to the frequencies observed in genes expressed specifically in proliferating cells and then investigated the functional properties of the encoded receptor. We demonstrate that such a codon adaptation restores ERα activities to levels observed in differentiated cells, including: (a) an enhanced contribution exerted by transactivation function 1 (AF1) in ERα transcriptional activity; (b) enhanced interactions with nuclear receptor corepressor 1 and 2 [NCoR1 and NCoR2 (also known as SMRT) respectively], promoting repressive capability; and (c) reduced interactions with SRC proto‐oncogene, non‐receptor tyrosine kinase (Src) and phosphoinositide 3‐kinase (PI3K) p85 kinases, inhibiting MAPK and AKT signalling pathway.

Funder

Ligue Contre le Cancer

Publisher

Wiley

Subject

Cancer Research,Genetics,Molecular Medicine,General Medicine,Oncology

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Translation Rates and Protein Folding;Journal of Molecular Biology;2023-12

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