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Extracellular DNA Containing (dG)n Motifs Penetrates into MCF7 Breast Cancer Cells, Induces the Adaptive Response, and Can Be Expressed

BACKGROUND: Oxidized human DNA or plasmid DNAs containing human ribosomal genes can easily penetrate into the breast cancer cells MCF7 and stimulate the adaptive response induction. Plasmid DNA containing a CMV promoter, gene EGFP, and the insertion of the human ribosomal genes can be expressed. A h...

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Autores principales: Kozhina, Ekaterina A., Ershova, Elizaveta S., Okorokova, Natalya A., Veiko, Vladimir P., Malinovskaya, Elena M., Sergeeva, Vasilina A., Konkova, Marina S., Kutsev, Serguey I., Veiko, Nataly N., Kostyuk, Svetlana V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6874983/
https://www.ncbi.nlm.nih.gov/pubmed/31781350
http://dx.doi.org/10.1155/2019/7853492
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author Kozhina, Ekaterina A.
Ershova, Elizaveta S.
Okorokova, Natalya A.
Veiko, Vladimir P.
Malinovskaya, Elena M.
Sergeeva, Vasilina A.
Konkova, Marina S.
Kutsev, Serguey I.
Veiko, Nataly N.
Kostyuk, Svetlana V.
author_facet Kozhina, Ekaterina A.
Ershova, Elizaveta S.
Okorokova, Natalya A.
Veiko, Vladimir P.
Malinovskaya, Elena M.
Sergeeva, Vasilina A.
Konkova, Marina S.
Kutsev, Serguey I.
Veiko, Nataly N.
Kostyuk, Svetlana V.
author_sort Kozhina, Ekaterina A.
collection PubMed
description BACKGROUND: Oxidized human DNA or plasmid DNAs containing human ribosomal genes can easily penetrate into the breast cancer cells MCF7 and stimulate the adaptive response induction. Plasmid DNA containing a CMV promoter, gene EGFP, and the insertion of the human ribosomal genes can be expressed. A hypothesis is proposed: these features of the ribosomal DNA are due to the presence of dGn motifs that are prone to oxidize. METHODS: Cells of MCF7 line were cultured with plasmids which contained a CMV promoter and gene of fluorescent protein EGFP. Genetic construction pEGFP-Gn contains pEGFP vector and a small insertion with dG(11) and dG(13) motifs that are inclined to oxidation. The accumulation of pEGFP and pEGFP-Gn in MCF7 (qPCR), the levels of ROS in the cells, the content of 8-oxodG in plasmids and cellular DNA (flow cytometry, immunoassay, and fluorescent microscopy), the expression of NOX4 and EGFP, the localization of NOX4 and EGFP in MCF7 (qPCR, flow cytometry, and fluorescent microscopy), and the levels of the cell DNA damage (comet assay) were analyzed. RESULTS: (dG)n insertions in the plasmid pEGFP increase the levels of ROS, the cell DNA oxidation and DNA damage, and the level of transfection of plasmid into the MCF7 cells. NOX4 participates in the oxidation of pEGFP-Gn and pEGFP. The expression of EGFP gene in MCF7 is significantly increased in case of pEGFP-Gn. Stimulation of ROS synthesis (H(2)O(2) 40 μM or 10 cGy IR) increases the level of expression of EGFP. CONCLUSIONS: GC-rich DNA fragments containing dGn motifs that are inclined to oxidation penetrate into MCF7 cancer cells, stimulate the adaptive response, and can be expressed. This property of GC-rich cell-free DNA should be considered and/or could potentially be used in therapy of tumors.
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spelling pubmed-68749832019-11-28 Extracellular DNA Containing (dG)n Motifs Penetrates into MCF7 Breast Cancer Cells, Induces the Adaptive Response, and Can Be Expressed Kozhina, Ekaterina A. Ershova, Elizaveta S. Okorokova, Natalya A. Veiko, Vladimir P. Malinovskaya, Elena M. Sergeeva, Vasilina A. Konkova, Marina S. Kutsev, Serguey I. Veiko, Nataly N. Kostyuk, Svetlana V. Oxid Med Cell Longev Research Article BACKGROUND: Oxidized human DNA or plasmid DNAs containing human ribosomal genes can easily penetrate into the breast cancer cells MCF7 and stimulate the adaptive response induction. Plasmid DNA containing a CMV promoter, gene EGFP, and the insertion of the human ribosomal genes can be expressed. A hypothesis is proposed: these features of the ribosomal DNA are due to the presence of dGn motifs that are prone to oxidize. METHODS: Cells of MCF7 line were cultured with plasmids which contained a CMV promoter and gene of fluorescent protein EGFP. Genetic construction pEGFP-Gn contains pEGFP vector and a small insertion with dG(11) and dG(13) motifs that are inclined to oxidation. The accumulation of pEGFP and pEGFP-Gn in MCF7 (qPCR), the levels of ROS in the cells, the content of 8-oxodG in plasmids and cellular DNA (flow cytometry, immunoassay, and fluorescent microscopy), the expression of NOX4 and EGFP, the localization of NOX4 and EGFP in MCF7 (qPCR, flow cytometry, and fluorescent microscopy), and the levels of the cell DNA damage (comet assay) were analyzed. RESULTS: (dG)n insertions in the plasmid pEGFP increase the levels of ROS, the cell DNA oxidation and DNA damage, and the level of transfection of plasmid into the MCF7 cells. NOX4 participates in the oxidation of pEGFP-Gn and pEGFP. The expression of EGFP gene in MCF7 is significantly increased in case of pEGFP-Gn. Stimulation of ROS synthesis (H(2)O(2) 40 μM or 10 cGy IR) increases the level of expression of EGFP. CONCLUSIONS: GC-rich DNA fragments containing dGn motifs that are inclined to oxidation penetrate into MCF7 cancer cells, stimulate the adaptive response, and can be expressed. This property of GC-rich cell-free DNA should be considered and/or could potentially be used in therapy of tumors. Hindawi 2019-11-03 /pmc/articles/PMC6874983/ /pubmed/31781350 http://dx.doi.org/10.1155/2019/7853492 Text en Copyright © 2019 Ekaterina A. Kozhina et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Kozhina, Ekaterina A.
Ershova, Elizaveta S.
Okorokova, Natalya A.
Veiko, Vladimir P.
Malinovskaya, Elena M.
Sergeeva, Vasilina A.
Konkova, Marina S.
Kutsev, Serguey I.
Veiko, Nataly N.
Kostyuk, Svetlana V.
Extracellular DNA Containing (dG)n Motifs Penetrates into MCF7 Breast Cancer Cells, Induces the Adaptive Response, and Can Be Expressed
title Extracellular DNA Containing (dG)n Motifs Penetrates into MCF7 Breast Cancer Cells, Induces the Adaptive Response, and Can Be Expressed
title_full Extracellular DNA Containing (dG)n Motifs Penetrates into MCF7 Breast Cancer Cells, Induces the Adaptive Response, and Can Be Expressed
title_fullStr Extracellular DNA Containing (dG)n Motifs Penetrates into MCF7 Breast Cancer Cells, Induces the Adaptive Response, and Can Be Expressed
title_full_unstemmed Extracellular DNA Containing (dG)n Motifs Penetrates into MCF7 Breast Cancer Cells, Induces the Adaptive Response, and Can Be Expressed
title_short Extracellular DNA Containing (dG)n Motifs Penetrates into MCF7 Breast Cancer Cells, Induces the Adaptive Response, and Can Be Expressed
title_sort extracellular dna containing (dg)n motifs penetrates into mcf7 breast cancer cells, induces the adaptive response, and can be expressed
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6874983/
https://www.ncbi.nlm.nih.gov/pubmed/31781350
http://dx.doi.org/10.1155/2019/7853492
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