Modulation of translational decoding by m<sup>6</sup>A modification of mRNA.

Jain, Sakshi; Koziej, Lukasz; Poulis, Panagiotis; Kaczmarczyk, Igor; Gaik, Monika; Rawski, Michal; Ranjan, Namit; Glatt, Sebastian et al. · Nat Commun · 2023

basic_science · Level V

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Abstract

N<sup>6</sup>-methyladenosine (m<sup>6</sup>A) is an abundant, dynamic mRNA modification that regulates key steps of cellular mRNA metabolism. m<sup>6</sup>A in the mRNA coding regions inhibits translation elongation. Here, we show how m<sup>6</sup>A modulates decoding in the bacterial translation system using a combination of rapid kinetics, smFRET and single-particle cryo-EM. We show that, while the modification does not impair the initial binding of aminoacyl-tRNA to the ribosome, in the presence of m<sup>6</sup>A fewer ribosomes complete the decoding process due to the lower stability of the complexes and enhanced tRNA drop-off. The mRNA codon adopts a π-stacked codon conformation that is remodeled upon aminoacyl-tRNA binding. m<sup>6</sup>A does not exclude canonical codon-anticodon geometry, but favors alternative more dynamic conformations that are rejected by the ribosome. These results highlight how modifications outside the Watson-Crick edge can still interfere with codon-anticodon base pairing and complex recognition by the ribosome, thereby modulating the translational efficiency of modified mRNAs.

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