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The eIF2α serine 51 phosphorylation-ATF4 arm promotes HIPPO signaling and cell death under oxidative stress

The HIPPO pathway is an evolutionary conserved regulator of organ size that controls both cell proliferation and death. This pathway has an important role in mediating cell death in response to oxidative stress through the inactivation of Yes-associated protein (YAP) and inhibition of anti-oxidant g...

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Autores principales: Rajesh, Kamindla, Krishnamoorthy, Jothilatha, Gupta, Jyotsana, Kazimierczak, Urszula, Papadakis, Andreas I., Deng, Zhilin, Wang, Shuo, Kuninaka, Shinji, Koromilas, Antonis E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5239457/
https://www.ncbi.nlm.nih.gov/pubmed/27409837
http://dx.doi.org/10.18632/oncotarget.10480
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author Rajesh, Kamindla
Krishnamoorthy, Jothilatha
Gupta, Jyotsana
Kazimierczak, Urszula
Papadakis, Andreas I.
Deng, Zhilin
Wang, Shuo
Kuninaka, Shinji
Koromilas, Antonis E.
author_facet Rajesh, Kamindla
Krishnamoorthy, Jothilatha
Gupta, Jyotsana
Kazimierczak, Urszula
Papadakis, Andreas I.
Deng, Zhilin
Wang, Shuo
Kuninaka, Shinji
Koromilas, Antonis E.
author_sort Rajesh, Kamindla
collection PubMed
description The HIPPO pathway is an evolutionary conserved regulator of organ size that controls both cell proliferation and death. This pathway has an important role in mediating cell death in response to oxidative stress through the inactivation of Yes-associated protein (YAP) and inhibition of anti-oxidant gene expression. Cells exposed to oxidative stress induce the phosphorylation of the alpha (α) subunit of the translation initiation factor eIF2 at serine 51 (eIF2αP), a modification that leads to the general inhibition of mRNA translation initiation. Under these conditions, increased eIF2αP facilitates the mRNA translation of activating transcription factor 4 (ATF4), which mediates either cell survival and adaptation or cell death under conditions of severe stress. Herein, we demonstrate a functional connection between the HIPPO and eIF2αP-ATF4 pathways under oxidative stress. We demonstrate that ATF4 promotes the stabilization of the large tumor suppressor 1 (LATS1), which inactivates YAP by phosphorylation. ATF4 inhibits the expression of NEDD4.2 and WWP1 mRNAs under pro-oxidant conditions, which encode ubiquitin ligases mediating the proteasomal degradation of LATS1. Increased LATS1 stability is required for the induction of cell death under oxidative stress. Our data reveal a previously unidentified ATF4-dependent pathway in the induction of cell death under oxidative stress via the activation of LATS1 and HIPPO pathway.
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spelling pubmed-52394572017-01-24 The eIF2α serine 51 phosphorylation-ATF4 arm promotes HIPPO signaling and cell death under oxidative stress Rajesh, Kamindla Krishnamoorthy, Jothilatha Gupta, Jyotsana Kazimierczak, Urszula Papadakis, Andreas I. Deng, Zhilin Wang, Shuo Kuninaka, Shinji Koromilas, Antonis E. Oncotarget Research Paper The HIPPO pathway is an evolutionary conserved regulator of organ size that controls both cell proliferation and death. This pathway has an important role in mediating cell death in response to oxidative stress through the inactivation of Yes-associated protein (YAP) and inhibition of anti-oxidant gene expression. Cells exposed to oxidative stress induce the phosphorylation of the alpha (α) subunit of the translation initiation factor eIF2 at serine 51 (eIF2αP), a modification that leads to the general inhibition of mRNA translation initiation. Under these conditions, increased eIF2αP facilitates the mRNA translation of activating transcription factor 4 (ATF4), which mediates either cell survival and adaptation or cell death under conditions of severe stress. Herein, we demonstrate a functional connection between the HIPPO and eIF2αP-ATF4 pathways under oxidative stress. We demonstrate that ATF4 promotes the stabilization of the large tumor suppressor 1 (LATS1), which inactivates YAP by phosphorylation. ATF4 inhibits the expression of NEDD4.2 and WWP1 mRNAs under pro-oxidant conditions, which encode ubiquitin ligases mediating the proteasomal degradation of LATS1. Increased LATS1 stability is required for the induction of cell death under oxidative stress. Our data reveal a previously unidentified ATF4-dependent pathway in the induction of cell death under oxidative stress via the activation of LATS1 and HIPPO pathway. Impact Journals LLC 2016-07-07 /pmc/articles/PMC5239457/ /pubmed/27409837 http://dx.doi.org/10.18632/oncotarget.10480 Text en Copyright: © 2016 Rajesh 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
Rajesh, Kamindla
Krishnamoorthy, Jothilatha
Gupta, Jyotsana
Kazimierczak, Urszula
Papadakis, Andreas I.
Deng, Zhilin
Wang, Shuo
Kuninaka, Shinji
Koromilas, Antonis E.
The eIF2α serine 51 phosphorylation-ATF4 arm promotes HIPPO signaling and cell death under oxidative stress
title The eIF2α serine 51 phosphorylation-ATF4 arm promotes HIPPO signaling and cell death under oxidative stress
title_full The eIF2α serine 51 phosphorylation-ATF4 arm promotes HIPPO signaling and cell death under oxidative stress
title_fullStr The eIF2α serine 51 phosphorylation-ATF4 arm promotes HIPPO signaling and cell death under oxidative stress
title_full_unstemmed The eIF2α serine 51 phosphorylation-ATF4 arm promotes HIPPO signaling and cell death under oxidative stress
title_short The eIF2α serine 51 phosphorylation-ATF4 arm promotes HIPPO signaling and cell death under oxidative stress
title_sort eif2α serine 51 phosphorylation-atf4 arm promotes hippo signaling and cell death under oxidative stress
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5239457/
https://www.ncbi.nlm.nih.gov/pubmed/27409837
http://dx.doi.org/10.18632/oncotarget.10480
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