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Biomedical subjects

G Rotilio

Publications and source records attributed to G Rotilio.

At least 217 records · Page 12Linked to original sources

Nuclear magnetic relaxation of 19F as a novel assay method of superoxide dismutase.

The 19F longitudinal nuclear magnetic relaxation rate (T-1(1p)) of F- solutions is greatly enhanced by copper, zinc or manganese superoxide dismutase. The measured T-1(1p) values are at least an order of magnitude, and in most cases 2 orders of magnitude, higher than those of other metal-containing proteins and low molecular weight complexes. This property is suitable for a direct, specific, and sensitive assay of superoxide dismutase, free of interference by other molecules. For mixtures of the copper, zinc and manganese enzymes, addition of CN- permits quantification of the relative amounts of each enzyme. In the case of copper, zinc enzyme, the method proved exquisitely sensitive to the native state of the active site. Results are reported to show that the 19F relaxation method can be used to assay biological fluids and crude homogenates for copper, zinc and manganese superoxide dismutases, under conditions that offer considerable advantages in comparison to other assay methods.

Animals↗

Differential sensitivity of tumor cells to externally generated hydrogen peroxide. Role of glutathione and related enzymes.

(1) Oxygen uptake and lactate production of different strains of ascites tumor cells were assayed after exposure to an extracellular photochemical system known to produce reactive oxygen derivatives. The various cells tested showed differential sensitivity to the treatment, ranging from nearly full inactivation of Ehrlich cells to nearly full resistance of Yoshida cells. (2) Glucose plus succinate added after the treatment reestablished basal oxygen uptake capacity suggesting that the cell membrane was the primary site of damage. This was confirmed by dye-permeabilization and protein leakage in sensitive cells. (3) H2O2 was shown to be the only relevant oxygen derivative in the production of cell damage: catalase was the only externally added agent that protected sensitive cells, and H2O2 (congruent to 10(-3) M) had the same effects as the photochemical treatment. (4) While the absence of catalase is a feature common to all tumors tested, sensitivity to H2O2 appears to be related to cellular levels of glutathione peroxidase and of its subsidiary enzymes glucose-6-phosphate dehydrogenase, glutathione reductase and glutathione synthetase.

Animals↗

Effect of drugs on oxidation and precipitation of the isolated chains of human hemoglobin.

The paper deals with the action of: primaquine, epinephrine, adrenochrome, acetylphenylhydrazine and sulphanilamide on the autoxidation of the isolated chains from human hemoglobin and on the precipitation which follows. The effect of superoxide dismutase and catalase on the drug induced autoxidation allows the assessment of the possible role of O2 derivatives (notably superoxide or peroxide) in the overall reaction mechanism. It is also shown that primaquine and acetylphenylhydrazine enhance precipitation of the isolated oxidized chains, while epinephrine and adrenochrome display a small inhibitory effect on precipitation. These effects do not involve O2 radicals, but have presumably to be related to a destabilizing (or stabilizing) action of the drugs on the structure of the protein.

Adrenochrome↗

The binding of copper ions to copper-free bovine superoxide dismutase. Kinetic aspects.

The kinetics of reconstitution of bovine superoxide dismutase from Cu2+ and the copper-free enzyme have been studied by activity, u.v.-absorption, electron-paramagnetic-resonance and pulsed-nuclear-magnetic-resonance measurements. The process appears to be first-order up to 80% completion in most conditions, and is pH-dependent, with an apparent pK of 6.5. U.v.-absorption and solvent proton relaxation rate measurements show that fast binding of Cu2+ occurs, and the initial ligands are likely to be, at least in part, those of the native active site. The recovery of the native activity and spectroscopic properties is a slow process with activation energies of 92 kJ/mol at pH 5.3 and 8.4kJ/mol at pH 8.1 and can be described as a rearrangement of the site around the bound metal. The rate of this process is lower in partially recombined protein samples, probably because of intersubunit interactions.

Acetates↗

An electron spin resonance study of high spin forms of cobalt(II) bovine carbonic anhydrase.

The ESR spectra of bovine Co(II) carbonic anhydrase at 7 K at low and high pH and of the iodide derivative have been analyzed. The spectrum of the low pH form shows axial symmetry whilst that at high pH is rhombically distorted. This anisotropy is still more accentuated in the iodide derivative. The high pH (hydroxyl) form and the iodide derivative are thought to have a tetracoordinate trigonal pyramidal structure, with a fifth more distant axial ligand. The low pH form is consistent with a pseudotetrahedral geometry previously postulated.

Journal Article↗

Determination of red blood cell superoxide dismutase and glutathione peroxidase in newborns in relation to neonatal hemolysis.

Superoxide dismutase and glutathione peroxidase activities have been determined in newborns. Their mean values are approximately the same as in normal adults. In some cases a low content of superoxide dismutase and/or a high (superoxide dismutase/glutathione peroxidase) ratio are associated with hematological symptoms. In addition, a low superoxide dismutase activity is associated with hyperbilirubinemia and is present in two of the three cases showing maximal acetylphenylhdrazine-induced hemoloysis.

Adult↗

The involvement of the bridging imidazolate in the catalytic mechanism of action of bovine superoxide dismutase.

The pulse-radiolysis method has been used to study the catalytic mechanism of O2 leads to dismutation by the Co(II)-substituted bovine erythrocuprein (superoxide dismutase, EC 1.15.1.1). Catalysis is accompanied by spectral changes that may be interpreted in terms of rapid protonation and deprotonation of the Cu-facing nitrogen atom of the imidazolate that bridges the Cu(II) and the Co(II) [or Zn(II)] in the oxidized enzyme. This rapid change permits the possibility that the imidazole is a proton donor in the catalytic reduction of O2 leads to.

Animals↗