Cargando…

nanoCAGE reveals 5′ UTR features that define specific modes of translation of functionally related MTOR-sensitive mRNAs

The diversity of MTOR-regulated mRNA translation remains unresolved. Whereas ribosome-profiling suggested that MTOR almost exclusively stimulates translation of the TOP (terminal oligopyrimidine motif) and TOP-like mRNAs, polysome-profiling indicated that MTOR also modulates translation of mRNAs wit...

Descripción completa

Detalles Bibliográficos
Autores principales: Gandin, Valentina, Masvidal, Laia, Hulea, Laura, Gravel, Simon-Pierre, Cargnello, Marie, McLaughlan, Shannon, Cai, Yutian, Balanathan, Preetika, Morita, Masahiro, Rajakumar, Arjuna, Furic, Luc, Pollak, Michael, Porco, John A., St-Pierre, Julie, Pelletier, Jerry, Larsson, Ola, Topisirovic, Ivan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4864462/
https://www.ncbi.nlm.nih.gov/pubmed/26984228
http://dx.doi.org/10.1101/gr.197566.115
_version_ 1782431631473115136
author Gandin, Valentina
Masvidal, Laia
Hulea, Laura
Gravel, Simon-Pierre
Cargnello, Marie
McLaughlan, Shannon
Cai, Yutian
Balanathan, Preetika
Morita, Masahiro
Rajakumar, Arjuna
Furic, Luc
Pollak, Michael
Porco, John A.
St-Pierre, Julie
Pelletier, Jerry
Larsson, Ola
Topisirovic, Ivan
author_facet Gandin, Valentina
Masvidal, Laia
Hulea, Laura
Gravel, Simon-Pierre
Cargnello, Marie
McLaughlan, Shannon
Cai, Yutian
Balanathan, Preetika
Morita, Masahiro
Rajakumar, Arjuna
Furic, Luc
Pollak, Michael
Porco, John A.
St-Pierre, Julie
Pelletier, Jerry
Larsson, Ola
Topisirovic, Ivan
author_sort Gandin, Valentina
collection PubMed
description The diversity of MTOR-regulated mRNA translation remains unresolved. Whereas ribosome-profiling suggested that MTOR almost exclusively stimulates translation of the TOP (terminal oligopyrimidine motif) and TOP-like mRNAs, polysome-profiling indicated that MTOR also modulates translation of mRNAs without the 5′ TOP motif (non-TOP mRNAs). We demonstrate that in ribosome-profiling studies, detection of MTOR-dependent changes in non-TOP mRNA translation was obscured by low sensitivity and methodology biases. Transcription start site profiling using nano-cap analysis of gene expression (nanoCAGE) revealed that not only do many MTOR-sensitive mRNAs lack the 5′ TOP motif but that 5′ UTR features distinguish two functionally and translationally distinct subsets of MTOR-sensitive mRNAs: (1) mRNAs with short 5′ UTRs enriched for mitochondrial functions, which require EIF4E but are less EIF4A1-sensitive; and (2) long 5′ UTR mRNAs encoding proliferation- and survival-promoting proteins, which are both EIF4E- and EIF4A1-sensitive. Selective inhibition of translation of mRNAs harboring long 5′ UTRs via EIF4A1 suppression leads to sustained expression of proteins involved in respiration but concomitant loss of those protecting mitochondrial structural integrity, resulting in apoptosis. Conversely, simultaneous suppression of translation of both long and short 5′ UTR mRNAs by MTOR inhibitors results in metabolic dormancy and a predominantly cytostatic effect. Thus, 5′ UTR features define different modes of MTOR-sensitive translation of functionally distinct subsets of mRNAs, which may explain the diverse impact of MTOR and EIF4A inhibitors on neoplastic cells.
format Online
Article
Text
id pubmed-4864462
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Cold Spring Harbor Laboratory Press
record_format MEDLINE/PubMed
spelling pubmed-48644622016-05-24 nanoCAGE reveals 5′ UTR features that define specific modes of translation of functionally related MTOR-sensitive mRNAs Gandin, Valentina Masvidal, Laia Hulea, Laura Gravel, Simon-Pierre Cargnello, Marie McLaughlan, Shannon Cai, Yutian Balanathan, Preetika Morita, Masahiro Rajakumar, Arjuna Furic, Luc Pollak, Michael Porco, John A. St-Pierre, Julie Pelletier, Jerry Larsson, Ola Topisirovic, Ivan Genome Res Research The diversity of MTOR-regulated mRNA translation remains unresolved. Whereas ribosome-profiling suggested that MTOR almost exclusively stimulates translation of the TOP (terminal oligopyrimidine motif) and TOP-like mRNAs, polysome-profiling indicated that MTOR also modulates translation of mRNAs without the 5′ TOP motif (non-TOP mRNAs). We demonstrate that in ribosome-profiling studies, detection of MTOR-dependent changes in non-TOP mRNA translation was obscured by low sensitivity and methodology biases. Transcription start site profiling using nano-cap analysis of gene expression (nanoCAGE) revealed that not only do many MTOR-sensitive mRNAs lack the 5′ TOP motif but that 5′ UTR features distinguish two functionally and translationally distinct subsets of MTOR-sensitive mRNAs: (1) mRNAs with short 5′ UTRs enriched for mitochondrial functions, which require EIF4E but are less EIF4A1-sensitive; and (2) long 5′ UTR mRNAs encoding proliferation- and survival-promoting proteins, which are both EIF4E- and EIF4A1-sensitive. Selective inhibition of translation of mRNAs harboring long 5′ UTRs via EIF4A1 suppression leads to sustained expression of proteins involved in respiration but concomitant loss of those protecting mitochondrial structural integrity, resulting in apoptosis. Conversely, simultaneous suppression of translation of both long and short 5′ UTR mRNAs by MTOR inhibitors results in metabolic dormancy and a predominantly cytostatic effect. Thus, 5′ UTR features define different modes of MTOR-sensitive translation of functionally distinct subsets of mRNAs, which may explain the diverse impact of MTOR and EIF4A inhibitors on neoplastic cells. Cold Spring Harbor Laboratory Press 2016-05 /pmc/articles/PMC4864462/ /pubmed/26984228 http://dx.doi.org/10.1101/gr.197566.115 Text en © 2016 Gandin et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by/4.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution 4.0 International), as described at http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research
Gandin, Valentina
Masvidal, Laia
Hulea, Laura
Gravel, Simon-Pierre
Cargnello, Marie
McLaughlan, Shannon
Cai, Yutian
Balanathan, Preetika
Morita, Masahiro
Rajakumar, Arjuna
Furic, Luc
Pollak, Michael
Porco, John A.
St-Pierre, Julie
Pelletier, Jerry
Larsson, Ola
Topisirovic, Ivan
nanoCAGE reveals 5′ UTR features that define specific modes of translation of functionally related MTOR-sensitive mRNAs
title nanoCAGE reveals 5′ UTR features that define specific modes of translation of functionally related MTOR-sensitive mRNAs
title_full nanoCAGE reveals 5′ UTR features that define specific modes of translation of functionally related MTOR-sensitive mRNAs
title_fullStr nanoCAGE reveals 5′ UTR features that define specific modes of translation of functionally related MTOR-sensitive mRNAs
title_full_unstemmed nanoCAGE reveals 5′ UTR features that define specific modes of translation of functionally related MTOR-sensitive mRNAs
title_short nanoCAGE reveals 5′ UTR features that define specific modes of translation of functionally related MTOR-sensitive mRNAs
title_sort nanocage reveals 5′ utr features that define specific modes of translation of functionally related mtor-sensitive mrnas
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4864462/
https://www.ncbi.nlm.nih.gov/pubmed/26984228
http://dx.doi.org/10.1101/gr.197566.115
work_keys_str_mv AT gandinvalentina nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT masvidallaia nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT hulealaura nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT gravelsimonpierre nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT cargnellomarie nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT mclaughlanshannon nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT caiyutian nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT balanathanpreetika nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT moritamasahiro nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT rajakumararjuna nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT furicluc nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT pollakmichael nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT porcojohna nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT stpierrejulie nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT pelletierjerry nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT larssonola nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas
AT topisirovicivan nanocagereveals5utrfeaturesthatdefinespecificmodesoftranslationoffunctionallyrelatedmtorsensitivemrnas