Cargando…

Targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei

Decoy oligonucleotides have been used for functional sequestering of transcription factors. Efficient introduction into cells is a prerequisite for the oligonucleotides to exert their blocking function. Lipofection is the most widely used technique for that purpose because of its convenience and rel...

Descripción completa

Detalles Bibliográficos
Autores principales: Sakaguchi, Masakiyo, Nukui, Takamasa, Sonegawa, Hiroyuki, Murata, Hitoshi, Futami, Junichiro, Yamada, Hidenori, Huh, Nam-ho
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1140756/
https://www.ncbi.nlm.nih.gov/pubmed/15920103
http://dx.doi.org/10.1093/nar/gni088
_version_ 1782124253355704320
author Sakaguchi, Masakiyo
Nukui, Takamasa
Sonegawa, Hiroyuki
Murata, Hitoshi
Futami, Junichiro
Yamada, Hidenori
Huh, Nam-ho
author_facet Sakaguchi, Masakiyo
Nukui, Takamasa
Sonegawa, Hiroyuki
Murata, Hitoshi
Futami, Junichiro
Yamada, Hidenori
Huh, Nam-ho
author_sort Sakaguchi, Masakiyo
collection PubMed
description Decoy oligonucleotides have been used for functional sequestering of transcription factors. Efficient introduction into cells is a prerequisite for the oligonucleotides to exert their blocking function. Lipofection is the most widely used technique for that purpose because of its convenience and relatively high efficiency. However, the transduction efficiency of lipofection largely depends on cell types and experimental conditions and the introduced nucleotides are not specifically directed to nuclei where they exert their major function. In the present study, we designed a new system for transporting oligonucleotides into cell nuclei. The vehicle is composed of glutathione-S-transferase, 7 arginine residues, the DNA-binding domain of GAL4 and a nuclear localization signal, which are linked with flexible glycine stretches. The p53-responsive element linked to the GAL4 upstream activating sequence was efficiently transferred by the vehicle protein into nuclei of primary cultures of neuronal cells, embryonic stem cells and various human normal cells. Transcriptional activation of p21(WAF1/CIP1) and Bax by p53 on exposure to cisplatin was completely blocked by introducing the p53 decoy oligonucleotide. Thus, the system developed in the present study can be a convenient and powerful tool for specifically disrupting the function of DNA-binding proteins in culture.
format Text
id pubmed-1140756
institution National Center for Biotechnology Information
language English
publishDate 2005
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-11407562005-05-31 Targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei Sakaguchi, Masakiyo Nukui, Takamasa Sonegawa, Hiroyuki Murata, Hitoshi Futami, Junichiro Yamada, Hidenori Huh, Nam-ho Nucleic Acids Res Methods Online Decoy oligonucleotides have been used for functional sequestering of transcription factors. Efficient introduction into cells is a prerequisite for the oligonucleotides to exert their blocking function. Lipofection is the most widely used technique for that purpose because of its convenience and relatively high efficiency. However, the transduction efficiency of lipofection largely depends on cell types and experimental conditions and the introduced nucleotides are not specifically directed to nuclei where they exert their major function. In the present study, we designed a new system for transporting oligonucleotides into cell nuclei. The vehicle is composed of glutathione-S-transferase, 7 arginine residues, the DNA-binding domain of GAL4 and a nuclear localization signal, which are linked with flexible glycine stretches. The p53-responsive element linked to the GAL4 upstream activating sequence was efficiently transferred by the vehicle protein into nuclei of primary cultures of neuronal cells, embryonic stem cells and various human normal cells. Transcriptional activation of p21(WAF1/CIP1) and Bax by p53 on exposure to cisplatin was completely blocked by introducing the p53 decoy oligonucleotide. Thus, the system developed in the present study can be a convenient and powerful tool for specifically disrupting the function of DNA-binding proteins in culture. Oxford University Press 2005 2005-05-26 /pmc/articles/PMC1140756/ /pubmed/15920103 http://dx.doi.org/10.1093/nar/gni088 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Methods Online
Sakaguchi, Masakiyo
Nukui, Takamasa
Sonegawa, Hiroyuki
Murata, Hitoshi
Futami, Junichiro
Yamada, Hidenori
Huh, Nam-ho
Targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei
title Targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei
title_full Targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei
title_fullStr Targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei
title_full_unstemmed Targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei
title_short Targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei
title_sort targeted disruption of transcriptional regulatory function of p53 by a novel efficient method for introducing a decoy oligonucleotide into nuclei
topic Methods Online
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1140756/
https://www.ncbi.nlm.nih.gov/pubmed/15920103
http://dx.doi.org/10.1093/nar/gni088
work_keys_str_mv AT sakaguchimasakiyo targeteddisruptionoftranscriptionalregulatoryfunctionofp53byanovelefficientmethodforintroducingadecoyoligonucleotideintonuclei
AT nukuitakamasa targeteddisruptionoftranscriptionalregulatoryfunctionofp53byanovelefficientmethodforintroducingadecoyoligonucleotideintonuclei
AT sonegawahiroyuki targeteddisruptionoftranscriptionalregulatoryfunctionofp53byanovelefficientmethodforintroducingadecoyoligonucleotideintonuclei
AT muratahitoshi targeteddisruptionoftranscriptionalregulatoryfunctionofp53byanovelefficientmethodforintroducingadecoyoligonucleotideintonuclei
AT futamijunichiro targeteddisruptionoftranscriptionalregulatoryfunctionofp53byanovelefficientmethodforintroducingadecoyoligonucleotideintonuclei
AT yamadahidenori targeteddisruptionoftranscriptionalregulatoryfunctionofp53byanovelefficientmethodforintroducingadecoyoligonucleotideintonuclei
AT huhnamho targeteddisruptionoftranscriptionalregulatoryfunctionofp53byanovelefficientmethodforintroducingadecoyoligonucleotideintonuclei