Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/121611
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Type: Journal article
Title: Translational offsetting as a mode of estrogen receptor α-dependent regulation of gene expression
Other Titles: Translational offsetting as a mode of estrogen receptor alpha-dependent regulation of gene expression
Author: Lorent, J.
Kusnadi, E.P.
van Hoef, V.
Rebello, R.J.
Leibovitch, M.
Ristau, J.
Chen, S.
Lawrence, M.G.
Szkop, K.J.
Samreen, B.
Balanathan, P.
Rapino, F.
Close, P.
Bukczynska, P.
Scharmann, K.
Takizawa, I.
Risbridger, G.P.
Selth, L.A.
Leidel, S.A.
Lin, Q.
et al.
Citation: The EMBO Journal, 2019; 38(23):e101323-1-e101323-19
Publisher: EMBO Press
Issue Date: 2019
ISSN: 0261-4189
1460-2075
Statement of
Responsibility: 
Julie Lorent, Eric P Kusnadi, Vincent van Hoef, Richard J Rebello, Matthew Leibovitch, Johannes Ristau, Shan Chen, Mitchell G Lawrence, Krzysztof J Szkop, Baila Samreen, Preetika Balanathan, Francesca Rapino, Pierre Close, Patricia Bukczynska, Karin Scharmann, Itsuhiro Takizawa, Gail P Risbridger, Luke A Selth, Sebastian A Leidel, Qishan Lin, Ivan Topisirovic, Ola Larsson, Luc Furic
Abstract: Estrogen receptor alpha (ERα) activity is associated with increased cancer cell proliferation. Studies aiming to understand the impact of ERα on cancer-associated phenotypes have largely been limited to its transcriptional activity. Herein, we demonstrate that ERα coordinates its transcriptional output with selective modulation of mRNA translation. Importantly, translational perturbations caused by depletion of ERα largely manifest as "translational offsetting" of the transcriptome, whereby amounts of translated mRNAs and corresponding protein levels are maintained constant despite changes in mRNA abundance. Transcripts whose levels, but not polysome association, are reduced following ERα depletion lack features which limit translation efficiency including structured 5'UTRs and miRNA target sites. In contrast, mRNAs induced upon ERα depletion whose polysome association remains unaltered are enriched in codons requiring U34-modified tRNAs for efficient decoding. Consistently, ERα regulates levels of U34-modifying enzymes and thereby controls levels of U34-modified tRNAs. These findings unravel a hitherto unprecedented mechanism of ERα-dependent orchestration of transcriptional and translational programs that may be a pervasive mechanism of proteome maintenance in hormone-dependent cancers.
Keywords: 5‘ UTR; estrogen receptor; hormone-dependent cancer; mRNA translation; U34 tRNA modification
Rights: © 2019 The Authors
DOI: 10.15252/embj.2018101323
Grant ID: http://purl.org/au-research/grants/nhmrc/1141339
http://purl.org/au-research/grants/nhmrc/1102752
http://purl.org/au-research/grants/nhmrc/1145777
Published version: http://dx.doi.org/10.15252/embj.2018101323
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