Cargando…

eIF3 mRNA selectivity profiling reveals eIF3k as a cancer‐relevant regulator of ribosome content

eIF3, whose subunits are frequently overexpressed in cancer, regulates mRNA translation from initiation to termination, but mRNA‐selective functions of individual subunits remain poorly defined. Using multiomic profiling upon acute depletion of eIF3 subunits, we observed that while eIF3a, b, e, and...

Descripción completa

Detalles Bibliográficos
Autores principales: Duan, Haoran, Zhang, Siqiong, Zarai, Yoram, Öllinger, Rupert, Wu, Yanmeng, Sun, Li, Hu, Cheng, He, Yaohui, Tian, Guiyou, Rad, Roland, Kong, Xiangquan, Cheng, Yabin, Tuller, Tamir, Wolf, Dieter A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10267700/
https://www.ncbi.nlm.nih.gov/pubmed/37155573
http://dx.doi.org/10.15252/embj.2022112362
_version_ 1785058980017471488
author Duan, Haoran
Zhang, Siqiong
Zarai, Yoram
Öllinger, Rupert
Wu, Yanmeng
Sun, Li
Hu, Cheng
He, Yaohui
Tian, Guiyou
Rad, Roland
Kong, Xiangquan
Cheng, Yabin
Tuller, Tamir
Wolf, Dieter A
author_facet Duan, Haoran
Zhang, Siqiong
Zarai, Yoram
Öllinger, Rupert
Wu, Yanmeng
Sun, Li
Hu, Cheng
He, Yaohui
Tian, Guiyou
Rad, Roland
Kong, Xiangquan
Cheng, Yabin
Tuller, Tamir
Wolf, Dieter A
author_sort Duan, Haoran
collection PubMed
description eIF3, whose subunits are frequently overexpressed in cancer, regulates mRNA translation from initiation to termination, but mRNA‐selective functions of individual subunits remain poorly defined. Using multiomic profiling upon acute depletion of eIF3 subunits, we observed that while eIF3a, b, e, and f markedly differed in their impact on eIF3 holo‐complex formation and translation, they were each required for cancer cell proliferation and tumor growth. Remarkably, eIF3k showed the opposite pattern with depletion promoting global translation, cell proliferation, tumor growth, and stress resistance through repressing the synthesis of ribosomal proteins, especially RPS15A. Whereas ectopic expression of RPS15A mimicked the anabolic effects of eIF3k depletion, disruption of eIF3 binding to the 5′‐UTR of RSP15A mRNA negated them. eIF3k and eIF3l are selectively downregulated in response to endoplasmic reticulum and oxidative stress. Supported by mathematical modeling, our data uncover eIF3k‐l as a mRNA‐specific module which, through controlling RPS15A translation, serves as a rheostat of ribosome content, possibly to secure spare translational capacity that can be mobilized during stress.
format Online
Article
Text
id pubmed-10267700
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-102677002023-06-15 eIF3 mRNA selectivity profiling reveals eIF3k as a cancer‐relevant regulator of ribosome content Duan, Haoran Zhang, Siqiong Zarai, Yoram Öllinger, Rupert Wu, Yanmeng Sun, Li Hu, Cheng He, Yaohui Tian, Guiyou Rad, Roland Kong, Xiangquan Cheng, Yabin Tuller, Tamir Wolf, Dieter A EMBO J Articles eIF3, whose subunits are frequently overexpressed in cancer, regulates mRNA translation from initiation to termination, but mRNA‐selective functions of individual subunits remain poorly defined. Using multiomic profiling upon acute depletion of eIF3 subunits, we observed that while eIF3a, b, e, and f markedly differed in their impact on eIF3 holo‐complex formation and translation, they were each required for cancer cell proliferation and tumor growth. Remarkably, eIF3k showed the opposite pattern with depletion promoting global translation, cell proliferation, tumor growth, and stress resistance through repressing the synthesis of ribosomal proteins, especially RPS15A. Whereas ectopic expression of RPS15A mimicked the anabolic effects of eIF3k depletion, disruption of eIF3 binding to the 5′‐UTR of RSP15A mRNA negated them. eIF3k and eIF3l are selectively downregulated in response to endoplasmic reticulum and oxidative stress. Supported by mathematical modeling, our data uncover eIF3k‐l as a mRNA‐specific module which, through controlling RPS15A translation, serves as a rheostat of ribosome content, possibly to secure spare translational capacity that can be mobilized during stress. John Wiley and Sons Inc. 2023-05-08 /pmc/articles/PMC10267700/ /pubmed/37155573 http://dx.doi.org/10.15252/embj.2022112362 Text en © 2023 The Authors. Published under the terms of the CC BY NC ND 4.0 license. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Duan, Haoran
Zhang, Siqiong
Zarai, Yoram
Öllinger, Rupert
Wu, Yanmeng
Sun, Li
Hu, Cheng
He, Yaohui
Tian, Guiyou
Rad, Roland
Kong, Xiangquan
Cheng, Yabin
Tuller, Tamir
Wolf, Dieter A
eIF3 mRNA selectivity profiling reveals eIF3k as a cancer‐relevant regulator of ribosome content
title eIF3 mRNA selectivity profiling reveals eIF3k as a cancer‐relevant regulator of ribosome content
title_full eIF3 mRNA selectivity profiling reveals eIF3k as a cancer‐relevant regulator of ribosome content
title_fullStr eIF3 mRNA selectivity profiling reveals eIF3k as a cancer‐relevant regulator of ribosome content
title_full_unstemmed eIF3 mRNA selectivity profiling reveals eIF3k as a cancer‐relevant regulator of ribosome content
title_short eIF3 mRNA selectivity profiling reveals eIF3k as a cancer‐relevant regulator of ribosome content
title_sort eif3 mrna selectivity profiling reveals eif3k as a cancer‐relevant regulator of ribosome content
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10267700/
https://www.ncbi.nlm.nih.gov/pubmed/37155573
http://dx.doi.org/10.15252/embj.2022112362
work_keys_str_mv AT duanhaoran eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT zhangsiqiong eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT zaraiyoram eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT ollingerrupert eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT wuyanmeng eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT sunli eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT hucheng eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT heyaohui eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT tianguiyou eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT radroland eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT kongxiangquan eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT chengyabin eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT tullertamir eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent
AT wolfdietera eif3mrnaselectivityprofilingrevealseif3kasacancerrelevantregulatorofribosomecontent