Effect of Ferrum and Manganese compounds on the glutathione content in cells of sulfurreducing bacteria Desulfuromonas acetoxidans

Desulfuromonas acetoxidans are uncoloured gram-negative obligatory anaerobic sulfurreducing bacteria that are considered to be used as microbial-anode fuel cells with high electron recovery (>80%) from acetate oxidation to electric current as a result of their transfer in the processes of sulfur...

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Main Authors: O. M. Vasyliv, S. O. Hnatush
Format: Article
Language:English
Published: Львівський національний університет імені Івана Франка 2011-04-01
Series:Біологічні студії
Subjects:
Online Access:http://publications.lnu.edu.ua/journals/index.php/biology/article/view/351
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spelling doaj-8604c2e3fb5f44209d7a99ffa4430f7c2021-08-02T15:31:48ZengЛьвівський національний університет імені Івана ФранкаБіологічні студії1996-45362311-07832011-04-015151010.30970/sbi.0501.133Effect of Ferrum and Manganese compounds on the glutathione content in cells of sulfurreducing bacteria Desulfuromonas acetoxidansO. M. Vasyliv0S. O. Hnatush1https://orcid.org/0000-0002-5353-102XIvan Franko National University of Lviv, UkraineIvan Franko National University of Lviv, UkraineDesulfuromonas acetoxidans are uncoloured gram-negative obligatory anaerobic sulfurreducing bacteria that are considered to be used as microbial-anode fuel cells with high electron recovery (>80%) from acetate oxidation to electric current as a result of their transfer in the processes of sulfur and some 3d3 type transition metals reduction, such as Ferrum and Manganese. Glutathione (GSH: l-γ-glutamil-l-cysteinilglicyn) plays the main role in redox buffer and antioxidant. This has a great sense in supporting tiol-disulfide equilibruim in the proteins and also at defense of cells against oxidative stress and the influence of different toxic compounds. The dependence between glutathione content in D. acetoxidans cells and different concentrations of ferrous (ІІ) sulfate, ferrous (III) chloride hexahydrate, manganese (II) chloride tetrahydrate and manganese (IV) oxide in growth medium has been investigated. Maximal concentration of this tripeptide in cells of investigated bacteria has been observed under the influence of 2.5 мМ MnCl2×4H2O and 0.5 mM FeSO4 on the second day of growth and under the influence of 1.0 and 0.5 mM MnO2and FeCl3×6H2O, respectively, on the third day of bacteria growth.http://publications.lnu.edu.ua/journals/index.php/biology/article/view/351glutathionesulfurbacteriadesulfuromonas acetoxidansferrummanganese
collection DOAJ
language English
format Article
sources DOAJ
author O. M. Vasyliv
S. O. Hnatush
spellingShingle O. M. Vasyliv
S. O. Hnatush
Effect of Ferrum and Manganese compounds on the glutathione content in cells of sulfurreducing bacteria Desulfuromonas acetoxidans
Біологічні студії
glutathione
sulfurbacteria
desulfuromonas acetoxidans
ferrum
manganese
author_facet O. M. Vasyliv
S. O. Hnatush
author_sort O. M. Vasyliv
title Effect of Ferrum and Manganese compounds on the glutathione content in cells of sulfurreducing bacteria Desulfuromonas acetoxidans
title_short Effect of Ferrum and Manganese compounds on the glutathione content in cells of sulfurreducing bacteria Desulfuromonas acetoxidans
title_full Effect of Ferrum and Manganese compounds on the glutathione content in cells of sulfurreducing bacteria Desulfuromonas acetoxidans
title_fullStr Effect of Ferrum and Manganese compounds on the glutathione content in cells of sulfurreducing bacteria Desulfuromonas acetoxidans
title_full_unstemmed Effect of Ferrum and Manganese compounds on the glutathione content in cells of sulfurreducing bacteria Desulfuromonas acetoxidans
title_sort effect of ferrum and manganese compounds on the glutathione content in cells of sulfurreducing bacteria desulfuromonas acetoxidans
publisher Львівський національний університет імені Івана Франка
series Біологічні студії
issn 1996-4536
2311-0783
publishDate 2011-04-01
description Desulfuromonas acetoxidans are uncoloured gram-negative obligatory anaerobic sulfurreducing bacteria that are considered to be used as microbial-anode fuel cells with high electron recovery (>80%) from acetate oxidation to electric current as a result of their transfer in the processes of sulfur and some 3d3 type transition metals reduction, such as Ferrum and Manganese. Glutathione (GSH: l-γ-glutamil-l-cysteinilglicyn) plays the main role in redox buffer and antioxidant. This has a great sense in supporting tiol-disulfide equilibruim in the proteins and also at defense of cells against oxidative stress and the influence of different toxic compounds. The dependence between glutathione content in D. acetoxidans cells and different concentrations of ferrous (ІІ) sulfate, ferrous (III) chloride hexahydrate, manganese (II) chloride tetrahydrate and manganese (IV) oxide in growth medium has been investigated. Maximal concentration of this tripeptide in cells of investigated bacteria has been observed under the influence of 2.5 мМ MnCl2×4H2O and 0.5 mM FeSO4 on the second day of growth and under the influence of 1.0 and 0.5 mM MnO2and FeCl3×6H2O, respectively, on the third day of bacteria growth.
topic glutathione
sulfurbacteria
desulfuromonas acetoxidans
ferrum
manganese
url http://publications.lnu.edu.ua/journals/index.php/biology/article/view/351
work_keys_str_mv AT omvasyliv effectofferrumandmanganesecompoundsontheglutathionecontentincellsofsulfurreducingbacteriadesulfuromonasacetoxidans
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