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A Rigo

Publications and source records attributed to A Rigo.

At least 73 records · Page 4Linked to original sources

Electrostatic control of the rate-determining step of the copper, zinc superoxide dismutase catalytic reaction.

The dependence of the activity of bovine Cu,Zn superoxide dismutase on pH and ionic strength was extensively investigated in the ranges of pH 7.4-pH 12.3 and of ionic strength of 0.02-0.25 M. The results obtained indicate that two positively charged groups having pK values of approximately 10.1 and 10.8 are involved in the control of the activity. On the basis of previous work on the three-dimensional structure and on the chemically modified enzyme, these groups are likely to be lysine side chains, in particular Lys-120 and Lys-134. The oxidation state of the enzyme-bound copper ion at the steady state was found to be the same at either pH 7.4 or pH 11.5. The diffusion of superoxide ion into the active site, which is controlled by the positive charges around the active site itself, appears to be the rate-determining step of the dismutation reaction. NMR measurements of the relaxation rates of F- showed that this control also applies to the access of F- to the active site. Comparison of the nuclear relaxation rates of F- with the enzyme activity indicates that F- relaxation is controlled by the deprotonation of the group with pK approximately 10.8, which appears to be responsible for about 50% of the total activity measured at neutral pH.

Animals↗

The active site of manganese-containing superoxide dismutase from Bacillus stearothermophilus studied by 1H and 19F magnetic relaxation.

The dependence of the magnetic relaxation rates of 1H and 19F- on temperature, frequency, pH and N-3 concentration, were measured in solutions of Manganese-containing superoxide dismutase of Bacillus stearothermophilus, and were compared to activity measurements, in order to obtain some information on the structure and dynamics at Mn(III) present in the active site of the enzyme. The experimental data lead us to hypothesize the presence of two binding sites in the coordination sphere of the enzyme bound Mn(III), which are accessible to water and anions and have different chemical and spectroscopic properties. NMR measurements carried out in the presence of competitive inhibitors and the pH dependence of both NMR relaxation rates suggest that F-, N-3 and OH- ions bind to one site, while a water molecule binds to the other one. The stability constant values of the complexes between these anions and the enzyme are reported. The influence of the anions on activity and the pH dependence of NMR parameters are discussed.

Bacterial Proteins↗

Metabolic aspects of aging brain and related disorders.

In this report we summarize some of our findings obtained with single photon emission computed tomography (SPECT) in man and with 19F nuclear magnetic relaxation (19FNMR) and (14C) deoxyglucose ([14C]DG) techniques in animals. 99Tc-hexamethyl-propyleneamineoxime (99Tc-HM-PAO) SPECT showed a pattern of decreased cerebral perfusion in Alzheimer and Parkinson patients without clinical and instrumental signs of cerebrovascular diseases. Rat cerebral cortex superoxide dismutases (SODs) concentrations, as detected with 19FNMR, increased in an age-related fashion. These increases may constitute a self-protecting mechanism of the brain against the parallel elevations of free radical reactions observed during aging. The specific neurotoxin 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) elevated ([14C]DG) uptake in catecholaminergic regions of the mouse brain. These effects could be prevented by pretreatment with l-deprenyl. Our results suggest that excitotoxic mechanisms may participate in the neurotoxic effect of MPTP and they can be abolished by the monoamine-oxidase B (MAO-B) inhibitor.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Age dependence of the level of the enzymes involved in the protection against active oxygen species in the rat brain.

Levels of Cu, Zn superoxide dismutase (CuSOD), Mn superoxide dismutase (MnSOD), catalase, and glutathione peroxidase (GPx) were assessed in the rat brain cortex. The concentrations of Cu- and MnSOD were found to increase linearly with the logarithm of the age of the animal from 3 days before birth to 30 months, both in the whole cortex tissue and in its cytoplasmic fraction. Catalase and GPx levels showed different trends; in particular, GPx, which appears to play a key role in detoxification of hydrogen peroxide, after an initial fall increases steadily with age. The enhancement of the levels of SOD and GPx could be related to protection against an increased production of reactive oxygen species in the aging process.

Age Factors↗

Oxidation of reduced Cu,Zn superoxide dismutase by molecular oxygen. A kinetic study.

The rate of oxidation of reduced bovine Cu,Zn superoxide dismutase [ECu(I)] by molecular O2 was studied by magnetic-resonance techniques and was found to be low under physiological conditions. The analysis of the kinetic data and of the experiments carried out in the presence of tetranitromethane confirms that O2.- is a product of the oxidation process. At [ECu(I)]/([ECu(I)] + [ECu(II)]) greater than 0.5 the O2.- produced reacts mainly with ECu(I), increasing the oxidation rate of the enzyme, whereas at [ECu(I)]/([ECu(I)] + [ECu(II)]) less than 0.5 it reacts mainly with ECu(II), decreasing the oxidation rate, the kinetics, at constant O2 concentration, being an apparent second-order process. The oxidation rate increased linearly with both O2 and OH- concentration, indicating that only a deprotonated form of the ECu(I) reacts with O2.-.

Hydrogen-Ion Concentration↗

Increased rate of superoxide ion generation in Fanconi anemia erythrocytes.

The rate of generation of superoxide ion, the concentration of Cu, Zn superoxide dismutase and the hematological parameters were measured in red blood cells obtained from Fanconi anemia patients and from healthy individuals. No significative difference in the superoxide dismutase concentration was found, while the rate of generation of the superoxide ion doubled in Fanconi anemia patients. The steady-state concentration of the superoxide ion was calculated from these data and was found to be 2.3 times higher in Fanconi anemia erythrocytes than in controls. The possible consequences with respect to the alterations in FA are discussed.

Anemia, Aplastic↗

Preparation of reduced bovine Cu,Zn superoxide dismutase.

N.m.r. and e.p.r. were used to measure the oxidation state of copper in Cu,Zn superoxide dismutase treated with reducing agents such as NaBH4, K4Fe(CN)6, Na2S2O4 and H2O2. The activity and the electrophoretic pattern of the treated enzyme were also studied. On the basis of the reducing ability and of the absence of inactivating effects, NaBH4 was the most suitable reducer of those tested. Some characteristics of the reduction of superoxide dismutase by NaBH4 were further investigated. The results obtained indicate that NaBH4 can be used to prepare, in a few minutes, solutions of completely reduced enzyme without any apparent change of the activity and of the structure.

Borohydrides↗

Determination of ascorbic acid with immobilized green zucchini ascorbate oxidase.

Ascorbate oxidase from zucchini squash was immobilized onto CH-Sepharose via carbodiimide. The properties of the immobilized enzyme were found to be similar to those of the free ascorbate oxidase. The immobilized enzyme was utilized in a flow-through system equipped with a polarographic detector which monitors the oxygen depletion due to the reaction ascorbic acid + 1/2 O2----dehydroascorbic acid + H2O. This method, the response of which is linear between 3 X 10(-7) and 5 X 10(-4) M ascorbate, was utilized to measure the ascorbic acid in biological samples such as human plasma and fruit juices at a rate of about 60 determinations every hour with a standard deviation lower than 5%.

Ascorbate Oxidase↗

Coordinate expression of MnSOD and CuZnSOD in human fibroblasts.

The amount of manganese superoxide dismutase (MnSOD) and the activity of copper-zinc superoxide dismutase (CuZnSOD) have been studied in five karyotypically normal human fibroblast strains, using nuclear magnetic resonance (NMR) and polarographic methods. A significant correlation between the two enzyme activities, and a linear increase of MnSOD with the increase of CuZnSOD have been demonstrated. Both enzymes are present in nuclei, mitochondria, lysosome-microsome fraction and cytosol. These findings suggest that the two enzymes dismutate the O-2 cooperatively and that a common genetic control maintains the relative amounts of the two enzymes constant.

Adolescent↗

Coordinate expression of Mn-containing superoxide dismutase and Cu,Zn-containing superoxide dismutase in human fibroblasts with trisomy 21.

The amount of Mn superoxide dismutase (MnSOD) and the activity of Cu,Zn-superoxide dismutase (CuZnSOD) have been studied in human fibroblasts of five subjects with trisomy 21 and five subjects with normal karyotype, using nuclear magnetic relaxation and polarographic methods. In the trisomic fibroblasts we have found a mean molar amount of MnSOD 25.4% lower than in the control, and an amount of CuZnSOD 54.7% higher. A positive significant correlation between the activities of both enzymes has been observed indicating that the two enzymes dismute the O2- cooperatively. However, the increase of MnSOD per unit of CuZnSOD appears significantly lower in the trisomic fibroblasts, an effect that is not due to a diminished inducibility of MnSOD. These findings suggest that the MnSOD and CuZnSOD genes interact to preserve the normal level of total SOD activity.

Adolescent↗

Formation of alpha-tocopherol radical and recycling of alpha-tocopherol by ascorbate during peroxidation of phosphatidylcholine liposomes. An electron paramagnetic resonance study.

The events accompanying the inhibitory effect of alpha-tocopherol and/or ascorbate on the peroxidation of soybean L-alpha-phosphatidylcholine liposomes, which are an accepted model of biological membranes, were investigated by electron paramagnetic resonance, optical and polarographic methods. The presence of alpha-tocopherol radical in the concentration range 10(-8)-10(-7) M was detected from its EPR spectrum during the peroxidation of liposomes, catalysed by the Fe3+-triethylenetatramine complex. The alpha-tocopherol radical, generated in the phosphatidylcholine bilayer, is accessible to ascorbic acid, present in the aqueous phase at physiological concentrations. Ascorbic acid regenerates from it the alpha-tocopherol itself. A kinetic rate constant of about 2 X 10(5) M-1 X s-1 was estimated from the reaction as it occurs under the adopted experimental conditions. The scavenging effect of alpha-tocopherol on lipid peroxidation is maintained as long a ascorbic acid is present.

Ascorbic Acid↗

Generation of superoxide ion in human red blood cell lysates.

The generation of superoxide ion in human red blood cell lysates was investigated by an experimental method employing Cu,Zn superoxide dismutase as O2- scavenger and EPR to probe the oxidation state of the enzyme. The average value of the O2- flux in the erythrocytes of 8 normal individuals was (2.02 +/- 0.97) X 10(-8) M S-1. A progressive saturation of the rate of O2- production was found increasing PO2, KM = 1.04 X 10(-4) M, while the autoxidation of oxyhemoglobin did not contribute significantly to the measured O2- production.

Adult↗

An NMR study of the oxidation state of Cu,Zn superoxide dismutase in human red blood cells.

The oxidation state of Cu,Zn superoxide dismutase was investigated by 19F-NMR spectroscopy in intact red blood cells and in their lysates. The superoxide dismutase concentration was determined in the red cells both by activity and by F- nuclear relaxation rate measurements and the results obtained showed that the high relaxation rate of F- in erythrocytes is mainly due to the presence of superoxide dismutase. The relaxation rate of F- was unaffected or slightly increased by the addition of a superoxide ion generating system to the cells or to their lysates so indicating that superoxide dismutase is fundamentally in steady state. The results are discussed in terms of the possible reactions of the enzyme in erythrocytes.

Erythrocytes↗

Oxygraphic assay of 3,4-dihydroxyphenylalanine decarboxylase activity by coupled reaction with free and immobilized serum amine oxidase.

An oxygraphic method for the assay of 3,4-dihydroxyphenylalanine (Dopa) decarboxylase activity which makes use of the coupled reactions of Dopa decarboxylase with serum amine oxidase is presented. Both free and immobilized amine oxidases were utilized. The assay is simple, rapid, and allows a continuous monitoring of the reaction. The kinetic parameters for Dopa decarboxylase obtained with the coupled assay do not significantly differ from those obtained by standard methods.

Amine Oxidase (Copper-Containing)↗

Reaction of N,N-diethyldithiocarbamate and other bidentate ligands with Zn, Co and Cu bovine carbonic anhydrases. Inhibition of the enzyme activity and evidence for stable ternary enzyme-metal-ligand complexes.

The reactions with N,N-diethyldithiocarbamate (DDC) of zinc, cobalt and copper carbonic anhydrase from bovine erythrocytes were investigated. The native zinc enzyme was inhibited by DDC, but no removal of zinc could be detected even at a very high [ligand]/[protein] ratio. At identical pH values a larger inhibitory effect was found for the cobalt enzyme. The metal was removed by DDC from the protein at pH less than 7.0. No cobalt removal occurred at pH 10, where a stable ternary complex with the enzyme-bound Co(II) was detected. Its optical and EPR spectra are indicative of five-coordinate Co(II). The reaction of the Cu(II) enzyme with stoichiometric chelating agent was marked by the appearance of an electronic transition at 390 nm (epsilon = 4300 M-1 X cm-1). Metal removal from the copper enzyme readily occurred as the ligand was in excess over the metal, with parallel appearance of a band at 440 nm, which was attributed to the free Cu(II)-DDC complex. Also, in the case of the copper enzyme an alkaline pH was found to stabilize the ternary adduct with the diagnostic 390 nm band. EPR spectra showed that the ternary adduct is a mixture of two species, both characterized by the presence in the EPR spectrum of a superhyperfine structure from two protein nitrogens and by a low g parallel value, indicative of coordination to sulfur ligands. It is suggested that the two species contain the metal as penta- and hexacoordinated, respectively. Measurements of the longitudinal relaxation time, T1, of the water protons suggested that water coordination is retained in the latter case. Hexacoordination with retention of water is also proposed for the Cu(II) derivatives with the bidentate oxalate and bicarbonate anions, unlike the corresponding Co(II) derivatives, which are pentacoordinated. Different coordination of Co(II) and Cu(II) adducts may be relevant to the difference of activity of the two substituted enzymes.

Animals↗

A rotating disk electrode for kinetic studies of superoxide dismutases: applicability in a wide pH range and for continuous monitoring of enzyme inactivation.

A rotating disk electrode coated with a thin mercury film is described. It is suitable for electrochemical determinations of the catalytic constant of superoxide dismutase in a much wider pH range than that accessible to polarographic methods. In particular this is the only direct method, except for pulse radiolysis, that allows mechanistic studies of the enzyme in the physiological pH range. Furthermore, the continuous response of this electrode allows enzyme activity changes characterized by half-lives in the range from a few to 10(3) s. to be followed.

Animals↗