Cargando…

Wild Type p53 Transcriptionally Represses the SALL2 Transcription Factor under Genotoxic Stress

SALL2- a member of the Spalt gene family- is a poorly characterized transcription factor found deregulated in various cancers, which suggests it plays a role in the disease. We previously identified SALL2 as a novel interacting protein of neurotrophin receptors and showed that it plays a role in neu...

Descripción completa

Detalles Bibliográficos
Autores principales: Farkas, Carlos, Martins, Carla P., Escobar, David, Hepp, Matias I., Donner, David B., Castro, Ariel F., Evan, Gerard, Gutiérrez, José L., Warren, Robert, Pincheira, Roxana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3765348/
https://www.ncbi.nlm.nih.gov/pubmed/24040083
http://dx.doi.org/10.1371/journal.pone.0073817
_version_ 1782283288171249664
author Farkas, Carlos
Martins, Carla P.
Escobar, David
Hepp, Matias I.
Donner, David B.
Castro, Ariel F.
Evan, Gerard
Gutiérrez, José L.
Warren, Robert
Pincheira, Roxana
author_facet Farkas, Carlos
Martins, Carla P.
Escobar, David
Hepp, Matias I.
Donner, David B.
Castro, Ariel F.
Evan, Gerard
Gutiérrez, José L.
Warren, Robert
Pincheira, Roxana
author_sort Farkas, Carlos
collection PubMed
description SALL2- a member of the Spalt gene family- is a poorly characterized transcription factor found deregulated in various cancers, which suggests it plays a role in the disease. We previously identified SALL2 as a novel interacting protein of neurotrophin receptors and showed that it plays a role in neuronal function, which does not necessarily explain why or how SALL2 is deregulated in cancer. Previous evidences indicate that SALL2 gene is regulated by the WT1 and AP4 transcription factors. Here, we identified SALL2 as a novel downstream target of the p53 tumor suppressor protein. Bioinformatic analysis of the SALL2 gene revealed several putative p53 half sites along the promoter region. Either overexpression of wild-type p53 or induction of the endogenous p53 by the genotoxic agent doxorubicin repressed SALL2 promoter activity in various cell lines. However R175H, R249S, and R248W p53 mutants, frequently found in the tumors of cancer patients, were unable to repress SALL2 promoter activity, suggesting that p53 specific binding to DNA is important for the regulation of SALL2. Electrophoretic mobility shift assay demonstrated binding of p53 to one of the identified p53 half sites in the Sall2 promoter, and chromatin immunoprecipitation analysis confirmed in vivo interaction of p53 with the promoter region of Sall2 containing this half site. Importantly, by using a p53ER(TAM) knockin model expressing a variant of p53 that is completely dependent on 4-hydroxy-tamoxifen for its activity, we show that p53 activation diminished SALL2 RNA and protein levels during genotoxic cellular stress in primary mouse embryo fibroblasts (MEFs) and radiosensitive tissues in vivo. Thus, our finding indicates that p53 represses SALL2 expression in a context-specific manner, adding knowledge to the understanding of SALL2 gene regulation, and to a potential mechanism for its deregulation in cancer.
format Online
Article
Text
id pubmed-3765348
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37653482013-09-13 Wild Type p53 Transcriptionally Represses the SALL2 Transcription Factor under Genotoxic Stress Farkas, Carlos Martins, Carla P. Escobar, David Hepp, Matias I. Donner, David B. Castro, Ariel F. Evan, Gerard Gutiérrez, José L. Warren, Robert Pincheira, Roxana PLoS One Research Article SALL2- a member of the Spalt gene family- is a poorly characterized transcription factor found deregulated in various cancers, which suggests it plays a role in the disease. We previously identified SALL2 as a novel interacting protein of neurotrophin receptors and showed that it plays a role in neuronal function, which does not necessarily explain why or how SALL2 is deregulated in cancer. Previous evidences indicate that SALL2 gene is regulated by the WT1 and AP4 transcription factors. Here, we identified SALL2 as a novel downstream target of the p53 tumor suppressor protein. Bioinformatic analysis of the SALL2 gene revealed several putative p53 half sites along the promoter region. Either overexpression of wild-type p53 or induction of the endogenous p53 by the genotoxic agent doxorubicin repressed SALL2 promoter activity in various cell lines. However R175H, R249S, and R248W p53 mutants, frequently found in the tumors of cancer patients, were unable to repress SALL2 promoter activity, suggesting that p53 specific binding to DNA is important for the regulation of SALL2. Electrophoretic mobility shift assay demonstrated binding of p53 to one of the identified p53 half sites in the Sall2 promoter, and chromatin immunoprecipitation analysis confirmed in vivo interaction of p53 with the promoter region of Sall2 containing this half site. Importantly, by using a p53ER(TAM) knockin model expressing a variant of p53 that is completely dependent on 4-hydroxy-tamoxifen for its activity, we show that p53 activation diminished SALL2 RNA and protein levels during genotoxic cellular stress in primary mouse embryo fibroblasts (MEFs) and radiosensitive tissues in vivo. Thus, our finding indicates that p53 represses SALL2 expression in a context-specific manner, adding knowledge to the understanding of SALL2 gene regulation, and to a potential mechanism for its deregulation in cancer. Public Library of Science 2013-09-06 /pmc/articles/PMC3765348/ /pubmed/24040083 http://dx.doi.org/10.1371/journal.pone.0073817 Text en © 2013 Farkas et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Farkas, Carlos
Martins, Carla P.
Escobar, David
Hepp, Matias I.
Donner, David B.
Castro, Ariel F.
Evan, Gerard
Gutiérrez, José L.
Warren, Robert
Pincheira, Roxana
Wild Type p53 Transcriptionally Represses the SALL2 Transcription Factor under Genotoxic Stress
title Wild Type p53 Transcriptionally Represses the SALL2 Transcription Factor under Genotoxic Stress
title_full Wild Type p53 Transcriptionally Represses the SALL2 Transcription Factor under Genotoxic Stress
title_fullStr Wild Type p53 Transcriptionally Represses the SALL2 Transcription Factor under Genotoxic Stress
title_full_unstemmed Wild Type p53 Transcriptionally Represses the SALL2 Transcription Factor under Genotoxic Stress
title_short Wild Type p53 Transcriptionally Represses the SALL2 Transcription Factor under Genotoxic Stress
title_sort wild type p53 transcriptionally represses the sall2 transcription factor under genotoxic stress
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3765348/
https://www.ncbi.nlm.nih.gov/pubmed/24040083
http://dx.doi.org/10.1371/journal.pone.0073817
work_keys_str_mv AT farkascarlos wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT martinscarlap wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT escobardavid wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT heppmatiasi wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT donnerdavidb wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT castroarielf wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT evangerard wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT gutierrezjosel wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT warrenrobert wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress
AT pincheiraroxana wildtypep53transcriptionallyrepressesthesall2transcriptionfactorundergenotoxicstress