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G Solaini

Publications and source records attributed to G Solaini.

50 records · Page 3Linked to original sources

Temperature dependence of mitochondrial oligomycin-sensitive proton transport ATPase.

The temperature dependence of the oligomycin-sensitive ATPase (complex V) kinetic parameters has been investigated in enzyme preparations of different phospholipid composition. In submitochondrial particles, isolated complex V, and complex V reconstituted in dimyristoyl lecithin vesicles, the Arrhenius plots show discontinuities in the range 18-28 degrees C, while no discontinuity is detected with dioleoyl lecithin recombinant. Van't Hoff plots of Km also show breaks in the same temperature interval, with the exception of the dioleoyl-enzyme vesicles, where Km is unchanged. Thermodynamic analysis of the ATPase reaction shows that DMPC-complex V has rather larger values of activation enthalpy and activation entropy below the transition temperature (24 degrees C) than those of the other preparations, while all enzyme preparations show similar free energies of activation (14.3-18.5 kcal/mol). The results indicate that temperature and lipid composition influence to a different extent both kinetic and thermodynamic parameters of ATP hydrolysis catalyzed by the mitochondrial ATPase.

Animals↗

Temperature-dependent conformational changes in isolated oligomycin-sensitive ATPase.

Isolated oligomycin-sensitive ATPase undergoes a kinetic change at 20-25 degrees C with a higher activation energy and a lower Km for ATP below this temperature range. This observation has been correlated with temperature-dependent structural changes detected by circular dichroism in the UV region in the isolated enzyme. The negative ellipticities in the 208-225 nm region, which are proportional to the alpha-helix content, increase with rise in temperature to a maximum above 25 degrees C.

Adenosine Triphosphatases↗

Effects of niridazole and 5-nitroimidazoles on heart mitochondrial respiration.

2.3 micromoles/mg protein of MFNI induced a 60% decrease in the heart mitochondrial ADP-stimulated oxygen uptake using glutamate-malate as substrate. The same amount of niridazole, ipronidazole, DA 3851 and ornidazole led to falls of less than 20% in the oxygen uptake, whilst metronidazole was ineffective. State 3 and state 3 mu (uncoupled) respiration were affected to the same extent. Oxygen-uptake using succinate as substrate was not inhibited indicating that the action was exerted at the NADH oxidation level. The relationship between electroreduction potentials of the test compounds and inhibition of respiration has been studied.

Adenosine Diphosphate↗

Purification and properties of pig brain guanine deaminase.

Guanine deaminase (guanine aminohydrolase, EC 3.5.4.3) from pig brain was purified to homogeneity by column chromatography and ammonium sulphate fractionation. Homogeneity was established by polyacrylamide gel electrophoresis in the presence and absence of sodium dodecyl sulphate (SDS). The molecular weight of 110 000 was determined by gel filtration and sucrose density gradient centrifugation. SDS polyacrylamide gel electrophoresis indicated subunits of a molecular weight of 50 000. The amino acid composition, the isoelectric point and the number of -SH groups were determined. 5.5'-Dithiobis-(2-nitrobenzoic acid) reacts with about seven -SH groups in the native enzyme, but upon denaturation with SDS, 10 -SH groups react with this former reagent. Using electrolytic reduction, 44 half-cystines were determined in accordance with the number of cysteic acid residues determined by amino acid analysis after performic acid oxidation. The Km values determined for substrates of the enzyme were 1.1 . 10(-5) M for guanine in 0.1 M Tris. HCl buffer (pH 8.0) and 3.3 . 10(-4) M for 8-azaguanine in 0.1 M phosphate buffer, pH 6.4. The pKa values determined for ionizable groups of the active site of the enzyme were near pH 6.2 and pH 8.2. The chemical and kinetic evidence suggests that cysteine and histidine may be essential for the catalysis.

Amino Acids↗

Mechanisms for reduction of endothelial activation by oleate: inhibition of nuclear factor-kappaB through antioxidant effects.

In a model of early atherogenesis based on cultured endothelial cells, we observed that the incorporation of oleic acid in cellular lipids decreases the stimulated expression of several endothelial adhesion molecules and soluble products typically expressed during endothelial activation and involved in monocyte recruitment. We investigated possible mechanisms for this effect assessing the stimulated induction of nuclear factor-kappaB. In parallel, we also measured glutathione (GSH) content and the activity of antioxidant enzymes after oleate treatment and cytokine stimulation. Oleate prevented the stimulated depletion of GSH without any change in the activity of antioxidant enzymes. These results suggest an antioxidant mechanism by which oleate may exert direct vascular atheroprotective effects.

Animals↗

Effects of 4'-O-tetrahydropyranyl-doxorubicin on isolated perfused rat heart and cardiac mitochondrial cytochrome C oxidase activity.

The acute cardiac effects of the antitumour anthracycline 4'-O-tetrahydropyranyl-doxorubicin (THP) were studied on isolated, perfused, spontaneously beating rat hearts and on cardiac mitochondrial cytochrome c oxidase activity. Perfusion for 1 hour with 2.5 or 5.0 micrograms/ml of THP was associated with a marked widening of the QRS complex and the S alpha T segment, as well as with a reduction of the R- and T-wave amplitude, the heart rate, the isometric systolic tension and the coronary flow. Heart perfusion with equimolar doses of doxorubicin (2.2 or 4.4 micrograms/ml) induced a significant enlargement of the SaT segment and a reduction in the heart rate and the coronary flow. Both anthracyclines inhibited the cytochrome c oxidase activity in a dose-dependent manner; however, THP exerted a significant inhibition at concentrations higher than doxorubicin (20 microM). Results demonstrate that THP induces a higher degree of acute cardiotoxicity on isolated rat hearts compared with doxorubicin. The reduced inhibitory effect of THP on the cytochrome c oxidase activity of isolated heart mitochondria is consistent with the lower degree of chronic cardiotoxicity displayed by THP in animals and humans.

Animals↗

Activity loss and histidine modification in guanine deaminase.

Photooxidation of guanine deaminase (E.C.3.5.4.3.) in the presence of rose bengal as sensitizer resulted in decay in enzyme activity. The pH profile of inhibition suggests modification of histidyl residue(s). Amino acid analysis during photooxidation showed a decrease in unmodified hystidine. Diethylpyrocarbonate inhibits the enzyme activity whilst 5-aminoimidazole-4-carboxamide, a competitive inhibitor of guanine deaminase, partially protects against Et2PC action. Hydroxylamine partially reverses inhibition. These results are consistent with the presence of the imidazole moiety of the putative histidyl residue(s) at or near the active site of guanine deaminase.

Aminohydrolases↗