Mikrobiolohichnyi zhurnal (Kiev, Ukraine : 1993) 2013-01-01

[Influence of transition metal compounds on superoxide dismutase activity of sulfur reducing Desulfuromonas acetoxidans bacteria].

O M Vasyliv, S O Hnatush

Index: Mikrobiol. Z. 75(2) , 37-44, (2013)

Full Text: HTML

Abstract

Superoxide dismutase, as one of the enzymes of cells' antioxidant defensive system, catalyzes superoxide anion-radical (O2-) dismutation with O2 and H2O2 forming. The influence of such transition metal compounds, as FeSO4, FeCl3, MnCl2, NiCl2, and CoCl2 on superoxide dismutase activity of sulfur-reducing Desulfuromonas acetoxidans bacteria has been investigated. Maximal activity of the investigated enzyme has been observed accordingly under the influence of 1.0 mM of NiCl2, 2.0 mM of CoCl2 and MnCl2 on the second day and under the influence of 1.0 mM of FeCl3 and FeSO4 respectively, on the third day of growth in comparison with control samples. An increase of incubation time and concentration of metal compound in the medium caused the inhibition of superoxide dismutase activity.

Related Compounds

Structure Name/CAS No. Articles
Manganese chloride Structure Manganese chloride
CAS:7773-01-5
SOD Structure SOD
CAS:9054-89-1
Ferric chloride Structure Ferric chloride
CAS:7705-08-0
Nickel(II) chloride hexahydrate Structure Nickel(II) chloride hexahydrate
CAS:7791-20-0
Cobalt Structure Cobalt
CAS:7440-48-4
Nickel Structure Nickel
CAS:7440-02-0
Nickel Chloride Structure Nickel Chloride
CAS:7718-54-9
Ferrous sulfate heptahydrate Structure Ferrous sulfate heptahydrate
CAS:7782-63-0
Ferric chloride hexahydrate Structure Ferric chloride hexahydrate
CAS:10025-77-1
Manganese chloride tetrahydrate Structure Manganese chloride tetrahydrate
CAS:13446-34-9