Literature DB >> 16028364

Nitric oxide enhances catechol estrogen-induced oxidative stress in LNCaP cells.

Kaampwe Muzandu1, Zein Shaban, Mayumi Ishizuka, Akio Kazusaka, Shoichi Fujita.   

Abstract

Catechol estrogens (CEs), such as 4-hydroxyestradiol (4-OHE2), undergo redox cycling during which reactive oxygen species (ROS) such as superoxide (O2*-) and the chemically reactive estrogen semiquinone (CE-SQ) and quinone (CE-Q) intermediates are produced. The quinone's putative mutagenicity may be enhanced by ROS and/or reactive nitrogen species. High concentrations of nitric oxide (NO) present during inflammatory conditions may react with (O2*-) to form peroxynitrite (ONOO-), a potent oxidant implicated in many pathological conditions. In this study, the possible generation of peroxynitrite from the interaction of CEs and NO and its effect on plasmid DNA and intact cells were investigated. A combination of 4-OHE2 and NO increased the level of single strand breaks (SSB) in plasmid DNA by more than 60% compared to vehicle controls in a metal-free buffer system. 4-OHE2 alone or NO alone had no effect. Results obtained from use of different antioxidants and ROS scavengers suggested a role of peroxynitrite in oxidative stress. In cells, 4-OHE2 or NO alone induced dose-dependent DNA damage as assessed by single cell gel electrophoresis. Co-treatment with 4-OHE2 and NO had an additive effect at lower doses. Generation of intracellular ROS was measured by the oxidation of carboxy-2',7'-dichlorofluorescein diacetate to the fluorescent compound carboxy-2',7'-dichlorofluorescein. NO alone, in oxygenated media, generated little ROS whereas 4-OHE2 produced approximately 70% increase in fluorescence. When added together 4-OHE2 and NO, produced a 2-fold increase in ROS. The generation and involvement ofperoxynitrite to this increase was implied since uric acid inhibited it. Generation ofperoxynitrite was also observed by use of dihydrorhodamine 123. Therefore, we conclude that combined treatments with 4-OHE2 and NO generated peroxynitrite seen from increased fluorescence and its inhibition by uric acid or combined SOD and catalase treatments. Results reported here suggest a role of peroxynitrite in causing damage to biomolecules when CEs and NO are present simultaneously. This may have biological relevance as high concentrations of NO formed during inflammatory conditions may exacerbate cancers due to estrogens.

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Year:  2005        PMID: 16028364     DOI: 10.1080/10715760400029710

Source DB:  PubMed          Journal:  Free Radic Res        ISSN: 1029-2470


  7 in total

1.  Genetics, novel weapons and rhizospheric microcosmal signaling in the invasion of Phragmites australis.

Authors:  Thimmaraju Rudrappa; Harsh P Bais
Journal:  Plant Signal Behav       Date:  2008-01

2.  Iron intake, oxidative stress-related genes (MnSOD and MPO) and prostate cancer risk in CARET cohort.

Authors:  Ji-Yeob Choi; Marian L Neuhouser; Matt J Barnett; Chi-Chen Hong; Alan R Kristal; Mark D Thornquist; Irena B King; Gary E Goodman; Christine B Ambrosone
Journal:  Carcinogenesis       Date:  2008-02-22       Impact factor: 4.944

3.  Arabidopsis thaliana Root Surface Chemistry Regulates in Planta Biofilm Formation of Bacillus subtilis.

Authors:  Thimmaraju Rudrappa; Harsh P Bais
Journal:  Plant Signal Behav       Date:  2007-09

4.  Root-secreted allelochemical in the noxious weed Phragmites australis deploys a reactive oxygen species response and microtubule assembly disruption to execute rhizotoxicity.

Authors:  Thimmaraju Rudrappa; Justin Bonsall; John L Gallagher; Denise M Seliskar; Harsh P Bais
Journal:  J Chem Ecol       Date:  2007-10       Impact factor: 2.626

5.  Exposure to 17β-Oestradiol Induces Oxidative Stress in the Non-Oestrogen Receptor Invertebrate Species Eisenia fetida.

Authors:  Zbynek Heger; Petr Michalek; Roman Guran; Barbora Havelkova; Marketa Kominkova; Natalia Cernei; Lukas Richtera; Miroslava Beklova; Vojtech Adam; Rene Kizek
Journal:  PLoS One       Date:  2015-12-22       Impact factor: 3.240

6.  A degradation product of the salicylic acid pathway triggers oxidative stress resulting in down-regulation of Bacillus subtilis biofilm formation on Arabidopsis thaliana roots.

Authors:  Thimmaraju Rudrappa; William J Quinn; Nicola R Stanley-Wall; Harsh P Bais
Journal:  Planta       Date:  2007-02-15       Impact factor: 4.540

7.  Colonization efficiency of Pseudomonas putida is influenced by Fis-controlled transcription of nuoA-N operon.

Authors:  Annika Teppo; Andrio Lahesaare; Hanna Ainelo; Kadri Samuel; Maia Kivisaar; Riho Teras
Journal:  PLoS One       Date:  2018-08-02       Impact factor: 3.240

  7 in total

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