Cargando…

eIF3 controls cell size independently of S6K1-activity

All multicellular organisms require a life-long regulation of the number and the size of cells, which build up their organs. mTOR acts as a signaling nodule for the regulation of protein synthesis and growth. To activate the translational cascade, mTOR phosphorylates S6 kinase (S6K1), which is liber...

Descripción completa

Detalles Bibliográficos
Autores principales: Schipany, Katharina, Rosner, Margit, Ionce, Loredana, Hengstschläger, Markus, Kovacic, Boris
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4695191/
https://www.ncbi.nlm.nih.gov/pubmed/26172298
_version_ 1782407617612611584
author Schipany, Katharina
Rosner, Margit
Ionce, Loredana
Hengstschläger, Markus
Kovacic, Boris
author_facet Schipany, Katharina
Rosner, Margit
Ionce, Loredana
Hengstschläger, Markus
Kovacic, Boris
author_sort Schipany, Katharina
collection PubMed
description All multicellular organisms require a life-long regulation of the number and the size of cells, which build up their organs. mTOR acts as a signaling nodule for the regulation of protein synthesis and growth. To activate the translational cascade, mTOR phosphorylates S6 kinase (S6K1), which is liberated from the eIF3-complex and mobilized for activation of its downstream targets. How S6K1 regulates cell size remains unclear. Here, we challenged cell size control through S6K1 by specifically depleting its binding partner eIF3 in normal and transformed cell lines. We show that loss of eIF3 leads to a massive reduction of cell size and cell number accompanied with an unexpected increase in S6K1-activity. The hyperactive S6K1-signaling was rapamycin-sensitive, suggesting an upstream mTOR-regulation. A selective S6K1 inhibitor (PF-4708671) was unable to interfere with the reduced size, despite efficiently inhibiting S6K1-activity. Restoration of eIF3 expression recovered size defects, without affecting the p-S6 levels. We further show that two, yet uncharacterized, cancer-associated mutations in the eIF3-complex, have the capacity to recover from reduced size phenotype, suggesting a possible role for eIF3 in regulating cancer cell size. Collectively, our results uncover a role for eIF3-complex in maintenance of normal and neoplastic cell size - independent of S6K1-signaling.
format Online
Article
Text
id pubmed-4695191
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-46951912016-01-26 eIF3 controls cell size independently of S6K1-activity Schipany, Katharina Rosner, Margit Ionce, Loredana Hengstschläger, Markus Kovacic, Boris Oncotarget Research Paper All multicellular organisms require a life-long regulation of the number and the size of cells, which build up their organs. mTOR acts as a signaling nodule for the regulation of protein synthesis and growth. To activate the translational cascade, mTOR phosphorylates S6 kinase (S6K1), which is liberated from the eIF3-complex and mobilized for activation of its downstream targets. How S6K1 regulates cell size remains unclear. Here, we challenged cell size control through S6K1 by specifically depleting its binding partner eIF3 in normal and transformed cell lines. We show that loss of eIF3 leads to a massive reduction of cell size and cell number accompanied with an unexpected increase in S6K1-activity. The hyperactive S6K1-signaling was rapamycin-sensitive, suggesting an upstream mTOR-regulation. A selective S6K1 inhibitor (PF-4708671) was unable to interfere with the reduced size, despite efficiently inhibiting S6K1-activity. Restoration of eIF3 expression recovered size defects, without affecting the p-S6 levels. We further show that two, yet uncharacterized, cancer-associated mutations in the eIF3-complex, have the capacity to recover from reduced size phenotype, suggesting a possible role for eIF3 in regulating cancer cell size. Collectively, our results uncover a role for eIF3-complex in maintenance of normal and neoplastic cell size - independent of S6K1-signaling. Impact Journals LLC 2015-06-29 /pmc/articles/PMC4695191/ /pubmed/26172298 Text en Copyright: © 2015 Schipany et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Schipany, Katharina
Rosner, Margit
Ionce, Loredana
Hengstschläger, Markus
Kovacic, Boris
eIF3 controls cell size independently of S6K1-activity
title eIF3 controls cell size independently of S6K1-activity
title_full eIF3 controls cell size independently of S6K1-activity
title_fullStr eIF3 controls cell size independently of S6K1-activity
title_full_unstemmed eIF3 controls cell size independently of S6K1-activity
title_short eIF3 controls cell size independently of S6K1-activity
title_sort eif3 controls cell size independently of s6k1-activity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4695191/
https://www.ncbi.nlm.nih.gov/pubmed/26172298
work_keys_str_mv AT schipanykatharina eif3controlscellsizeindependentlyofs6k1activity
AT rosnermargit eif3controlscellsizeindependentlyofs6k1activity
AT ionceloredana eif3controlscellsizeindependentlyofs6k1activity
AT hengstschlagermarkus eif3controlscellsizeindependentlyofs6k1activity
AT kovacicboris eif3controlscellsizeindependentlyofs6k1activity