Queuosine is incorporated into precursor tRNA before splicing.

Guo, Wei; Kaczmarczyk, Igor; Kopietz, Kevin; Flegler, Florian; Russo, Stefano; Cigirgan, Ege; Chramiec-Głąbik, Andrzej; Koziej, Łukasz et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Each newly transcribed tRNA molecule must undergo processing and receive modifications to become functional. Queuosine (Q) is a tRNA modification present at position 34 of four tRNAs with "GUN" anticodons. Among these, the precursor of tRNA<sup>Tyr</sup> carries an intronic sequence within the anticodon loop that is removed by an essential non-canonical splicing event. The functional and temporal coupling between tRNA-splicing and Q-incorporation remains elusive. Here, we demonstrate in vitro and in vivo that intron-containing precursors of tRNA<sup>Tyr</sup> are modified with Q or with the Q-derivative galactosyl-queuosine (galQ) before being spliced. We show that this order of events is conserved in mouse, human, flies and worms. Using single particle cryo-EM, we confirm that pre-tRNA<sup>Tyr</sup> is a bona fide substrate of the QTRT1/2 complex, which catalyzes the incorporation of Q into the tRNA. Our results elucidate the hierarchical interplay that coordinates Q-incorporation and splicing in eukaryotic tRNAs, providing a relevant but unappreciated aspect of the cellular tRNA maturation process.

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