Literature DB >> 11198928

Targeting the human mdr1 gene by 125I-labeled triplex-forming oligonucleotides.

O A Sedelnikova1, I G Panyutin, A N Luu, M W Reed, T Licht, M M Gottesman, R D Neumann.   

Abstract

Antigene radiotherapy is our approach to targeting specific sites in the genome by combining the highly localized DNA damage produced by the decay of Auger electron emitters, such as 125I, with the sequence-specific action of triplex-forming oligonucleotides (TFO). As a model, we used the multidrug resistance gene (mdr1) overexpressed and amplified nearly 100 times in the human KB-V1 carcinoma cell line. Phosphodiester pyrrazolopyrimidine dG (PPG)-modified TFO complementary to the polypurine-polypyrimidine region of the mdr1 gene were synthesized and labeled with 125I-dCTP at the C5 position of two cytosines by the primer extension method. 125I-TFO were delivered into KB-V1 cells with several delivery systems. DNA from the 125I-TFO-treated cells was recovered and analyzed for sequence-specific cleavage in the mdr1 target by Southern hybridization. Experiments with plasmid DNA containing the mdr1 polypurine-polypyrimidine region and with purified genomic DNA confirmed the ability of the designed 125I-TFO to bind to and introduce double-strand breaks into the target sequence. We showed that 125I-TFO in nanomolar concentrations can recognize and cleave a target sequence in the mdr1 gene in situ, that is, within isolated nuclei and intact digitonin-permeabilized cells. Our results demonstrate the ability of 125I-TFO to target specific sequences in their natural environment, that is, within the eukaryotic nucleus. The nearly 100-fold amplification of the mdr1 gene in KB-V1 cells affords a very useful cell culture model for evaluation of methods to produce sequence-specific DNA double-strand breaks for gene-specific radiotherapy.

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Year:  2000        PMID: 11198928     DOI: 10.1089/oli.1.2000.10.443

Source DB:  PubMed          Journal:  Antisense Nucleic Acid Drug Dev        ISSN: 1087-2906


  6 in total

1.  Effect of distance between decaying (125)I and DNA on Auger-electron induced double-strand break yield.

Authors:  Pichumani Balagurumoorthy; Xiang Xu; Ketai Wang; S James Adelstein; Amin I Kassis
Journal:  Int J Radiat Biol       Date:  2012-07-24       Impact factor: 2.694

Review 2.  Oligo/polynucleotide-based gene modification: strategies and therapeutic potential.

Authors:  R Geoffrey Sargent; Soya Kim; Dieter C Gruenert
Journal:  Oligonucleotides       Date:  2011-03-21

3.  Characterization of complex apurinic/apyrimidinic-site clustering associated with an authentic site-specific radiation-induced DNA double-strand break.

Authors:  Kamal Datta; Ronald D Neumann; Thomas A Winters
Journal:  Proc Natl Acad Sci U S A       Date:  2005-07-15       Impact factor: 11.205

4.  Sequence-specific DNA strand cleavage by 111In-labeled peptide nucleic acids.

Authors:  Yujian He; Igor G Panyutin; Alex Karavanov; Vadim V Demidov; Ronald D Neumann
Journal:  Eur J Nucl Med Mol Imaging       Date:  2004-02-05       Impact factor: 9.236

5.  Cytotoxic effects and specific gene expression alterations induced by I-125-labeled triplex-forming oligonucleotides.

Authors:  Volker Dahmen; Ralf Kriehuber
Journal:  Int J Radiat Biol       Date:  2012-08-02       Impact factor: 2.694

6.  Targeting chromosomal sites with locked nucleic acid-modified triplex-forming oligonucleotides: study of efficiency dependence on DNA nuclear environment.

Authors:  Erika Brunet; Maddalena Corgnali; Fabio Cannata; Loïc Perrouault; Carine Giovannangeli
Journal:  Nucleic Acids Res       Date:  2006-09-01       Impact factor: 16.971

  6 in total

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