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Transcriptome-wide mapping reveals a diverse dihydrouridine landscape including mRNA

Author(s)
Draycott, Austin S; Schaening-Burgos, Cassandra; Rojas-Duran, Maria F; Wilson, Loren; Schärfen, Leonard; Neugebauer, Karla M; Nachtergaele, Sigrid; Gilbert, Wendy V; ... Show more Show less
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Abstract
Dihydrouridine is a modified nucleotide universally present in tRNAs, but the complete dihydrouridine landscape is unknown in any organism. We introduce dihydrouridine sequencing (D-seq) for transcriptome-wide mapping of D with single-nucleotide resolution and use it to uncover novel classes of dihydrouridine-containing RNA in yeast which include mRNA and small nucleolar RNA (snoRNA). The novel D sites are concentrated in conserved stem-loop regions consistent with a role for D in folding many functional RNA structures. We demonstrate dihydrouridine synthase (DUS)-dependent changes in splicing of a D-containing pre-mRNA in cells and show that D-modified mRNAs can be efficiently translated by eukaryotic ribosomes in vitro. This work establishes D as a new functional component of the mRNA epitranscriptome and paves the way for identifying the RNA targets of multiple DUS enzymes that are dysregulated in human disease.
Date issued
2022-05-24
URI
https://hdl.handle.net/1721.1/165314
Department
Massachusetts Institute of Technology. Department of Biology
Journal
PLOS Biology
Publisher
Public Library of Science (PLoS)
Citation
Draycott AS, Schaening-Burgos C, Rojas-Duran MF, Wilson L, Schärfen L, Neugebauer KM, et al. (2022) Transcriptome-wide mapping reveals a diverse dihydrouridine landscape including mRNA. PLoS Biol 20(5): e3001622.
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