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May 7, 2026Nucleic Acids Research0 citationsOpen Access

Yield and fidelity of early steps of ribosome-free translation depend on the RNA anchoring

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NGNikolaos GiannakopoulosPHPatrick HaasCRClemens Richert

Key Points

  • This research aims to explore the early steps of translation involving ribosome-free synthesis and the impact of RNA anchoring.
  • Investigated C-terminal chain growth in ribosome-free translation.
  • Assessed yields of dipeptide formation and translation fidelity.
  • Compared results with N-terminally anchored peptide synthesis.
  • Yield for C-terminally anchored dipeptides was 6%-46%, lower than N-terminally linked dipeptides at 60%-99%.
  • Translation fidelity for C-terminally anchored dipeptides was 55%-84%, compared to 64%-92% for N-terminally linked dipeptides.
  • The variation in yield and fidelity indicates a potential bias towards N-terminal anchoring in early translation steps.

Abstract

Abstract Before the translational machinery came into being, a simpler form of reading RNA sequences to instruct peptide synthesis must have existed. What this earliest form of translation was is unclear. Ribosome-free synthesis, relying solely on Watson–Crick base pairing and chemical reactivity, is a likely candidate. The established version of this process involves chain growth at the C-terminus of N-terminally anchored peptides. Here, we show that ribosome- and enzyme-free translation via chain growth at the N-terminus of C-terminally anchored peptides is also feasible. Yields for the formation of dipeptides via the latter process were between 6% and 46%, though, as compared to 60%–99% for dipeptides with opposite strand growth orientation. Translation fidelity to dipeptides was also lower, with just 55%–84% correct incorporation, versus 64%–92% for N-terminally linked dipeptides. On the tripeptide level, the preference for C-terminal chain growth was smaller, suggesting that only the very first step has a strong bias for N-terminal anchoring. Finally, mixed anhydride pre-activation was found to be an alternative to in situ activation for peptidyl RNAs. This data sheds light on putative early steps in the evolution of translation.

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Cite This Study

Giannakopoulos et al. (2026) studied this question.

synapsesocial.com/papers/69fbefef164b5133a91a406ehttps://doi.org/10.1093/nar/gkag404
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