Literature DB >> 21113490

Extracellular DNA affects NO content in human endothelial cells.

L V Efremova1, A Yu Alekseeva, M S Konkova, S V Kostyuk, E S Ershova, T D Smirnova, I L Konorova, N N Veiko.   

Abstract

Fragments of extracellular DNA are permanently released into the blood flow due to cell apoptosis and possible de novo DNA synthesis. To find out whether extracellular DNA can affect the synthesis of nitric oxide (NO), one of key vascular tone regulators, we studied in vitro effects of three artificial DNA probes with different sequences and 10 samples of extracellular DNA (obtained from healthy people and patients with hypertension and atherosclerosis) on NO synthesis in endothelial cell culture (HUVEC). For detection of NO in live cells and culture medium, we used a NO-specific agent CuFL penetrating into the cells and forming a fluorescent product FL-NO upon interaction with NO. Human genome DNA fragments affected the content of NO in endothelial cells; this effect depended on both the base sequence and concentration of DNA fragments. Addition of artificial DNA and extracellular DNA from healthy people into the cell culture in a low concentration (5 ng/ml) increased the detected NO concentration by 4-fold at most. Cytosine-guanine (CG)-rich fragment of the transcribed sequence of ribosomal repeat was the most powerful NO-inductor. The effect of DNA fragments on NO synthesis was comparable with that of low doses of oxidizing agents, H(2)O(2) and 17β-estradiol. Extracellular DNA samples obtained from patients with hypertension and atherosclerosis decreased NO content in cells and medium by 1.3-28 times compared to the control; the effect correlated with the content of CG-rich sequences.

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Year:  2010        PMID: 21113490     DOI: 10.1007/s10517-010-0906-3

Source DB:  PubMed          Journal:  Bull Exp Biol Med        ISSN: 0007-4888            Impact factor:   0.804


  6 in total

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2.  Endothelial nitric oxide synthase uncoupling: a novel pathway in OSA induced vascular endothelial dysfunction.

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Review 3.  Oxidized extracellular DNA as a stress signal in human cells.

Authors:  Aleksei V Ermakov; Marina S Konkova; Svetlana V Kostyuk; Vera L Izevskaya; Ancha Baranova; Natalya N Veiko
Journal:  Oxid Med Cell Longev       Date:  2013-03-06       Impact factor: 6.543

4.  An exposure to the oxidized DNA enhances both instability of genome and survival in cancer cells.

Authors:  Svetlana V Kostyuk; Marina S Konkova; Elizaveta S Ershova; Anna J Alekseeva; Tatiana D Smirnova; Sergey V Stukalov; Ekaterina A Kozhina; Nadezda V Shilova; Tatiana V Zolotukhina; Zhanna G Markova; Vera L Izhevskaya; Ancha Baranova; Natalia N Veiko
Journal:  PLoS One       Date:  2013-10-17       Impact factor: 3.240

5.  Low-Dose Ionizing Radiation Affects Mesenchymal Stem Cells via Extracellular Oxidized Cell-Free DNA: A Possible Mediator of Bystander Effect and Adaptive Response.

Authors:  V A Sergeeva; E S Ershova; N N Veiko; E M Malinovskaya; A A Kalyanov; L V Kameneva; S V Stukalov; O A Dolgikh; M S Konkova; A V Ermakov; V P Veiko; V L Izhevskaya; S I Kutsev; S V Kostyuk
Journal:  Oxid Med Cell Longev       Date:  2017-08-22       Impact factor: 6.543

6.  In Vitro Analysis of Biological Activity of Circulating Cell-Free DNA Isolated from Blood Plasma of Schizophrenic Patients and Healthy Controls.

Authors:  Elizaveta S Ershova; Galina V Shmarina; Lev N Porokhovnik; Natalia V Zakharova; George P Kostyuk; Pavel E Umriukhin; Sergey I Kutsev; Vasilina A Sergeeva; Natalia N Veiko; Svetlana V Kostyuk
Journal:  Genes (Basel)       Date:  2022-03-20       Impact factor: 4.096

  6 in total

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