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An in vitro assay of MCTS1-DENR-dependent re-initiation and ribosome profiling uncover the activity of MCTS2 and distinct function of eIF2D

Meurs, R.; De Matos, M.; Bothe, A.; Guex, N.; Weber, T.; Teleman, A. A.; Ban, N.; Gatfield, D.

2024-06-05 molecular biology
10.1101/2024.06.05.597545 bioRxiv
Show abstract

Ribosomes scanning from the mRNA 5' cap to the start codon may initiate at upstream open reading frames (uORFs), decreasing protein biosynthesis. Termination at a uORF can lead to re-initiation, where the 40S subunit resumes scanning and initiates another translation event downstream. In mammals, the noncanonical translation factors MCTS1-DENR participate in re-initiation at specific uORFs, but knowledge of other trans-acting factors and uORF features influencing re-initiation is limited. Here, we describe a cell-free re-initiation assay using HeLa cell lysates. Comparing in vivo and in vitro re-initiation activities on uORF-containing model reporters, we validate that MCTS1-DENR-dependent re-initiation is accurately recapitulated in vitro. Using this system and ribosome profiling in cultured cells, we found that knockdown of the homolog eIF2D causes widespread gene expression deregulation unrelated to uORF translation, suggesting distinct functions from MCTS1-DENR. Additionally, we identified MCTS2, encoded by a retrogene copy of Mcts1, as an alternative DENR partner that promotes re-initiation in vitro, providing a plausible explanation for the striking clinical differences associated with Denr vs. Mcts1 mutations in humans. Our findings on re-initiation and the new assay provide valuable insights and a powerful tool for future research on uORF features and trans-acting factors.

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