Queuosine is incorporated into precursor tRNA before splicing

W Wei Guo I Igor Kaczmarczyk K Kevin Kopietz F Florian Flegler S Stefano Russo E Ege Cigirgan A Andrzej Chramiec-Głąbik Łukasz Koziej C Cansu Cirzi J Jirka Peschek K Klaus Reuter M Mark Helm S Sebastian Glatt F Francesca Tuorto

Abstract

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 tRNATyr 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 tRNATyr 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-tRNATyr 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.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 31, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

W

Wei Guo

I

Igor Kaczmarczyk

K

Kevin Kopietz

F

Florian Flegler

S

Stefano Russo

E

Ege Cigirgan

A

Andrzej Chramiec-Głąbik

Łukasz Koziej

C

Cansu Cirzi

J

Jirka Peschek

K

Klaus Reuter

M

Mark Helm

S

Sebastian Glatt

F

Francesca Tuorto