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p53 Specifically Binds Triplex DNA In Vitro and in Cells

Triplex DNA is implicated in a wide range of biological activities, including regulation of gene expression and genomic instability leading to cancer. The tumor suppressor p53 is a central regulator of cell fate in response to different type of insults. Sequence and structure specific modes of DNA r...

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Autores principales: Brázdová, Marie, Tichý, Vlastimil, Helma, Robert, Bažantová, Pavla, Polášková, Alena, Krejčí, Aneta, Petr, Marek, Navrátilová, Lucie, Tichá, Olga, Nejedlý, Karel, Bennink, Martin L., Subramaniam, Vinod, Bábková, Zuzana, Martínek, Tomáš, Lexa, Matej, Adámik, Matej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5131957/
https://www.ncbi.nlm.nih.gov/pubmed/27907175
http://dx.doi.org/10.1371/journal.pone.0167439
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author Brázdová, Marie
Tichý, Vlastimil
Helma, Robert
Bažantová, Pavla
Polášková, Alena
Krejčí, Aneta
Petr, Marek
Navrátilová, Lucie
Tichá, Olga
Nejedlý, Karel
Bennink, Martin L.
Subramaniam, Vinod
Bábková, Zuzana
Martínek, Tomáš
Lexa, Matej
Adámik, Matej
author_facet Brázdová, Marie
Tichý, Vlastimil
Helma, Robert
Bažantová, Pavla
Polášková, Alena
Krejčí, Aneta
Petr, Marek
Navrátilová, Lucie
Tichá, Olga
Nejedlý, Karel
Bennink, Martin L.
Subramaniam, Vinod
Bábková, Zuzana
Martínek, Tomáš
Lexa, Matej
Adámik, Matej
author_sort Brázdová, Marie
collection PubMed
description Triplex DNA is implicated in a wide range of biological activities, including regulation of gene expression and genomic instability leading to cancer. The tumor suppressor p53 is a central regulator of cell fate in response to different type of insults. Sequence and structure specific modes of DNA recognition are core attributes of the p53 protein. The focus of this work is the structure-specific binding of p53 to DNA containing triplex-forming sequences in vitro and in cells and the effect on p53-driven transcription. This is the first DNA binding study of full-length p53 and its deletion variants to both intermolecular and intramolecular T.A.T triplexes. We demonstrate that the interaction of p53 with intermolecular T.A.T triplex is comparable to the recognition of CTG-hairpin non-B DNA structure. Using deletion mutants we determined the C-terminal DNA binding domain of p53 to be crucial for triplex recognition. Furthermore, strong p53 recognition of intramolecular T.A.T triplexes (H-DNA), stabilized by negative superhelicity in plasmid DNA, was detected by competition and immunoprecipitation experiments, and visualized by AFM. Moreover, chromatin immunoprecipitation revealed p53 binding T.A.T forming sequence in vivo. Enhanced reporter transactivation by p53 on insertion of triplex forming sequence into plasmid with p53 consensus sequence was observed by luciferase reporter assays. In-silico scan of human regulatory regions for the simultaneous presence of both consensus sequence and T.A.T motifs identified a set of candidate p53 target genes and p53-dependent activation of several of them (ABCG5, ENOX1, INSR, MCC, NFAT5) was confirmed by RT-qPCR. Our results show that T.A.T triplex comprises a new class of p53 binding sites targeted by p53 in a DNA structure-dependent mode in vitro and in cells. The contribution of p53 DNA structure-dependent binding to the regulation of transcription is discussed.
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spelling pubmed-51319572016-12-21 p53 Specifically Binds Triplex DNA In Vitro and in Cells Brázdová, Marie Tichý, Vlastimil Helma, Robert Bažantová, Pavla Polášková, Alena Krejčí, Aneta Petr, Marek Navrátilová, Lucie Tichá, Olga Nejedlý, Karel Bennink, Martin L. Subramaniam, Vinod Bábková, Zuzana Martínek, Tomáš Lexa, Matej Adámik, Matej PLoS One Research Article Triplex DNA is implicated in a wide range of biological activities, including regulation of gene expression and genomic instability leading to cancer. The tumor suppressor p53 is a central regulator of cell fate in response to different type of insults. Sequence and structure specific modes of DNA recognition are core attributes of the p53 protein. The focus of this work is the structure-specific binding of p53 to DNA containing triplex-forming sequences in vitro and in cells and the effect on p53-driven transcription. This is the first DNA binding study of full-length p53 and its deletion variants to both intermolecular and intramolecular T.A.T triplexes. We demonstrate that the interaction of p53 with intermolecular T.A.T triplex is comparable to the recognition of CTG-hairpin non-B DNA structure. Using deletion mutants we determined the C-terminal DNA binding domain of p53 to be crucial for triplex recognition. Furthermore, strong p53 recognition of intramolecular T.A.T triplexes (H-DNA), stabilized by negative superhelicity in plasmid DNA, was detected by competition and immunoprecipitation experiments, and visualized by AFM. Moreover, chromatin immunoprecipitation revealed p53 binding T.A.T forming sequence in vivo. Enhanced reporter transactivation by p53 on insertion of triplex forming sequence into plasmid with p53 consensus sequence was observed by luciferase reporter assays. In-silico scan of human regulatory regions for the simultaneous presence of both consensus sequence and T.A.T motifs identified a set of candidate p53 target genes and p53-dependent activation of several of them (ABCG5, ENOX1, INSR, MCC, NFAT5) was confirmed by RT-qPCR. Our results show that T.A.T triplex comprises a new class of p53 binding sites targeted by p53 in a DNA structure-dependent mode in vitro and in cells. The contribution of p53 DNA structure-dependent binding to the regulation of transcription is discussed. Public Library of Science 2016-12-01 /pmc/articles/PMC5131957/ /pubmed/27907175 http://dx.doi.org/10.1371/journal.pone.0167439 Text en © 2016 Brázdová 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Brázdová, Marie
Tichý, Vlastimil
Helma, Robert
Bažantová, Pavla
Polášková, Alena
Krejčí, Aneta
Petr, Marek
Navrátilová, Lucie
Tichá, Olga
Nejedlý, Karel
Bennink, Martin L.
Subramaniam, Vinod
Bábková, Zuzana
Martínek, Tomáš
Lexa, Matej
Adámik, Matej
p53 Specifically Binds Triplex DNA In Vitro and in Cells
title p53 Specifically Binds Triplex DNA In Vitro and in Cells
title_full p53 Specifically Binds Triplex DNA In Vitro and in Cells
title_fullStr p53 Specifically Binds Triplex DNA In Vitro and in Cells
title_full_unstemmed p53 Specifically Binds Triplex DNA In Vitro and in Cells
title_short p53 Specifically Binds Triplex DNA In Vitro and in Cells
title_sort p53 specifically binds triplex dna in vitro and in cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5131957/
https://www.ncbi.nlm.nih.gov/pubmed/27907175
http://dx.doi.org/10.1371/journal.pone.0167439
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