Cargando…

Tumor suppressor BTG1 promotes PRMT1-mediated ATF4 function in response to cellular stress

Cancer cells are frequently exposed to physiological stress conditions such as hypoxia and nutrient limitation. Escape from stress-induced apoptosis is one of the mechanisms used by malignant cells to survive unfavorable conditions. B-cell Translocation Gene 1 (BTG1) is a tumor suppressor that is fr...

Descripción completa

Detalles Bibliográficos
Autores principales: Yuniati, Laurensia, van der Meer, Laurens T., Tijchon, Esther, van Ingen Schenau, Dorette, van Emst, Liesbeth, Levers, Marloes, Palit, Sander A.L., Rodenbach, Caroline, Poelmans, Geert, Hoogerbrugge, Peter M., Shan, Jixiu, Kilberg, Michael S., Scheijen, Blanca, van Leeuwen, Frank N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4823095/
https://www.ncbi.nlm.nih.gov/pubmed/26657730
http://dx.doi.org/10.18632/oncotarget.6519
_version_ 1782425857550188544
author Yuniati, Laurensia
van der Meer, Laurens T.
Tijchon, Esther
van Ingen Schenau, Dorette
van Emst, Liesbeth
Levers, Marloes
Palit, Sander A.L.
Rodenbach, Caroline
Poelmans, Geert
Hoogerbrugge, Peter M.
Shan, Jixiu
Kilberg, Michael S.
Scheijen, Blanca
van Leeuwen, Frank N.
author_facet Yuniati, Laurensia
van der Meer, Laurens T.
Tijchon, Esther
van Ingen Schenau, Dorette
van Emst, Liesbeth
Levers, Marloes
Palit, Sander A.L.
Rodenbach, Caroline
Poelmans, Geert
Hoogerbrugge, Peter M.
Shan, Jixiu
Kilberg, Michael S.
Scheijen, Blanca
van Leeuwen, Frank N.
author_sort Yuniati, Laurensia
collection PubMed
description Cancer cells are frequently exposed to physiological stress conditions such as hypoxia and nutrient limitation. Escape from stress-induced apoptosis is one of the mechanisms used by malignant cells to survive unfavorable conditions. B-cell Translocation Gene 1 (BTG1) is a tumor suppressor that is frequently deleted in acute lymphoblastic leukemia and recurrently mutated in diffuse large B cell lymphoma. Moreover, low BTG1 expression levels have been linked to poor outcome in several solid tumors. How loss of BTG1 function contributes to tumor progression is not well understood. Here, using Btg1 knockout mice, we demonstrate that loss of Btg1 provides a survival advantage to primary mouse embryonic fibroblasts (MEFs) under stress conditions. This pro-survival effect involves regulation of Activating Transcription Factor 4 (ATF4), a key mediator of cellular stress responses. We show that BTG1 interacts with ATF4 and positively modulates its activity by recruiting the protein arginine methyl transferase PRMT1 to methylate ATF4 on arginine residue 239. We further extend these findings to B-cell progenitors, by showing that loss of Btg1 expression enhances stress adaptation of mouse bone marrow-derived B cell progenitors. In conclusion, we have identified the BTG1/PRMT1 complex as a new modifier of ATF4 mediated stress responses.
format Online
Article
Text
id pubmed-4823095
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-48230952016-05-03 Tumor suppressor BTG1 promotes PRMT1-mediated ATF4 function in response to cellular stress Yuniati, Laurensia van der Meer, Laurens T. Tijchon, Esther van Ingen Schenau, Dorette van Emst, Liesbeth Levers, Marloes Palit, Sander A.L. Rodenbach, Caroline Poelmans, Geert Hoogerbrugge, Peter M. Shan, Jixiu Kilberg, Michael S. Scheijen, Blanca van Leeuwen, Frank N. Oncotarget Research Paper Cancer cells are frequently exposed to physiological stress conditions such as hypoxia and nutrient limitation. Escape from stress-induced apoptosis is one of the mechanisms used by malignant cells to survive unfavorable conditions. B-cell Translocation Gene 1 (BTG1) is a tumor suppressor that is frequently deleted in acute lymphoblastic leukemia and recurrently mutated in diffuse large B cell lymphoma. Moreover, low BTG1 expression levels have been linked to poor outcome in several solid tumors. How loss of BTG1 function contributes to tumor progression is not well understood. Here, using Btg1 knockout mice, we demonstrate that loss of Btg1 provides a survival advantage to primary mouse embryonic fibroblasts (MEFs) under stress conditions. This pro-survival effect involves regulation of Activating Transcription Factor 4 (ATF4), a key mediator of cellular stress responses. We show that BTG1 interacts with ATF4 and positively modulates its activity by recruiting the protein arginine methyl transferase PRMT1 to methylate ATF4 on arginine residue 239. We further extend these findings to B-cell progenitors, by showing that loss of Btg1 expression enhances stress adaptation of mouse bone marrow-derived B cell progenitors. In conclusion, we have identified the BTG1/PRMT1 complex as a new modifier of ATF4 mediated stress responses. Impact Journals LLC 2015-12-09 /pmc/articles/PMC4823095/ /pubmed/26657730 http://dx.doi.org/10.18632/oncotarget.6519 Text en Copyright: © 2016 Yuniati 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
Yuniati, Laurensia
van der Meer, Laurens T.
Tijchon, Esther
van Ingen Schenau, Dorette
van Emst, Liesbeth
Levers, Marloes
Palit, Sander A.L.
Rodenbach, Caroline
Poelmans, Geert
Hoogerbrugge, Peter M.
Shan, Jixiu
Kilberg, Michael S.
Scheijen, Blanca
van Leeuwen, Frank N.
Tumor suppressor BTG1 promotes PRMT1-mediated ATF4 function in response to cellular stress
title Tumor suppressor BTG1 promotes PRMT1-mediated ATF4 function in response to cellular stress
title_full Tumor suppressor BTG1 promotes PRMT1-mediated ATF4 function in response to cellular stress
title_fullStr Tumor suppressor BTG1 promotes PRMT1-mediated ATF4 function in response to cellular stress
title_full_unstemmed Tumor suppressor BTG1 promotes PRMT1-mediated ATF4 function in response to cellular stress
title_short Tumor suppressor BTG1 promotes PRMT1-mediated ATF4 function in response to cellular stress
title_sort tumor suppressor btg1 promotes prmt1-mediated atf4 function in response to cellular stress
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4823095/
https://www.ncbi.nlm.nih.gov/pubmed/26657730
http://dx.doi.org/10.18632/oncotarget.6519
work_keys_str_mv AT yuniatilaurensia tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT vandermeerlaurenst tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT tijchonesther tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT vaningenschenaudorette tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT vanemstliesbeth tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT leversmarloes tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT palitsanderal tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT rodenbachcaroline tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT poelmansgeert tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT hoogerbruggepeterm tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT shanjixiu tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT kilbergmichaels tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT scheijenblanca tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress
AT vanleeuwenfrankn tumorsuppressorbtg1promotesprmt1mediatedatf4functioninresponsetocellularstress