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1.
Biochemistry (Mosc) ; 74(3): 301-7, 2009 Mar.
Article in English | MEDLINE | ID: mdl-19364325

ABSTRACT

Formation of free radicals in mitochondria plays a key role in the development of apoptosis, which includes formation of superoxide by the respiratory chain, formation of radicals by cytochrome c-cardiolipin complex in the presence of hydrogen peroxide or lipids, and chain lipid peroxidation resulting in cytochrome c release from mitochondria and initiation of the apoptotic cascade. In this work the effect of taxifolin (dihydroquercetin) and some other antioxidants on these three radical-producing reactions was studied. Peroxidase activity of the complex of cytochrome c with dioleyl cardiolipin estimated by chemiluminescence with luminol decreased by 50% with quercetin, taxifolin, rutin, Trolox, and ionol at concentrations 0.7, 0.7, 0.8, 3, and 10 microM, respectively. The lipid radical production detected by coumarin C-525-activated chemiluminescence decreased under the action of rutin and taxifolin in a dose-dependent manner, so that a 50% inhibition of chemiluminescence was observed at the antioxidant concentrations of 3.7 and 10 microM, respectively. Thus, these two radical-producing reactions responsible for apoptosis onset are inhibited by antioxidants at rather low concentrations. Experiments performed on liver slices and mash showed that taxifolin, quercetin, naringenin, and Trolox have low inhibitory effect on the lucigenin-dependent chemiluminescence in the tissue only at concentrations higher than 100 microM.


Subject(s)
Apoptosis/drug effects , Flavonoids/pharmacology , Free Radicals/antagonists & inhibitors , Free Radicals/metabolism , Quercetin/analogs & derivatives , Animals , Antioxidants/chemistry , Antioxidants/pharmacology , Chromans/chemistry , Chromans/pharmacology , Cytochromes c/metabolism , Dose-Response Relationship, Drug , Flavonoids/chemistry , Liver/cytology , Liver/drug effects , Liver/metabolism , Molecular Structure , Peroxidase/antagonists & inhibitors , Peroxidase/metabolism , Quercetin/chemistry , Quercetin/pharmacology , Rutin/chemistry , Rutin/pharmacology , Superoxides/antagonists & inhibitors , Superoxides/metabolism
2.
Biochemistry (Mosc) ; 71(9): 989-97, 2006 Sep.
Article in English | MEDLINE | ID: mdl-17009953

ABSTRACT

In this work, the actions of bovine heart cardiolipin, synthetic tetraoleyl cardiolipin, and a nonspecific anionic detergent sodium dodecyl sulfate (SDS) on cytochrome c (Cyt c) peroxidase activity recorded by chemiluminescence in the presence of luminol and on the Fe...S(Met80) bond whose presence was estimated by a weak absorption band amplitude with peak at 695-700 nm (A(695)) were compared. A strict concurrency between Fe...S(Met80) breaking (A(695)) and cytochrome peroxidase activity enhancement was shown to exist at cardiolipin/Cyt c and SDS/Cyt c molar ratios of 0 : 1 to 50 : 1 (by chemiluminescence). Nevertheless, when A(695) completely disappeared, Cyt c peroxidase activity under the action of cardiolipin was 20 times more than that under the action of SDS, and at low ligand/protein molar ratios (=4), SDS failed to activate peroxidase activity while cardiolipin enhanced Cyt c peroxidase activity 16-20-fold. A(695) did not change on Cyt c binding with liposomes consisting of tetraoleyl cardiolipin and phosphatidylcholine (1 : 10 : 10), while peroxidase activity was enhanced by a factor of 8. Breaking of 70% of the Fe...S(Met80) bonds resulted in only threefold enhancement of peroxidase activity. Cardiolipin-activated Cyt c peroxidase activity was reduced by high ionic strength solution (1 M KCl). The aggregated data suggest that cardiolipin activating action is caused, first, by a nonspecific effect of Fe...S(Met80) breaking as the result of conformational changes in the protein globule caused by the protein surface electrostatic recharging by an anionic amphiphilic molecule, and second, by a specific acceleration of the peroxidation reaction which is most likely due to enhanced heme accessibility for H(2)O(2) as a result of the hydrophobic interaction between cardiolipin and cytochrome.


Subject(s)
Cardiolipins/pharmacology , Cytochrome-c Peroxidase/metabolism , Animals , Cattle , Enzyme Activation , Hydrogen Peroxide/metabolism , Iron/chemistry , Liposomes/metabolism , Luminescent Measurements , Methionine/chemistry , Osmolar Concentration , Sodium Dodecyl Sulfate/pharmacology , Spectrophotometry
3.
Biochemistry (Mosc) ; 71(9): 998-1005, 2006 Sep.
Article in English | MEDLINE | ID: mdl-17009954

ABSTRACT

In this work, the effect of liposomes consisting of tetraoleyl cardiolipin and dioleyl phosphatidylcholine (1 : 1, mol/mol) on the rate of three more reactions of Cyt c heme with H2O2 was studied: (i) Cyt c (Fe2+) oxidation to Cyt c (Fe3+), (ii) Fe...S(Met80) bond breaking, and (iii) heme porphyrin ring decomposition. It was revealed that the rates of all those reactions increased greatly in the presence of liposomes containing cardiolipin and not of those consisting of only phosphatidylcholine, and approximately to the same extent as peroxidase activity. These data suggest that cardiolipin activates specifically Cyt c peroxidase activity not only because it promotes Fe...S(Met80) bond breaking but also facilitates H2O2 penetration to the reaction center.


Subject(s)
Cardiolipins/pharmacology , Cytochrome-c Peroxidase/metabolism , Heme/metabolism , Hydrogen Peroxide/metabolism , Animals , Binding Sites , Enzyme Activation , Ferrous Compounds/metabolism , Iron/chemistry , Liposomes , Methionine/chemistry , Oxidation-Reduction
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