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Structural characterization of the isoenzymatic forms of human myeloperoxidase: evaluation of the iron-containing prosthetic group.

Myeloperoxidase (MPO) from human neutrophils has been purified and found to exist in three isoenzymatic forms, resolved by ion exchange chromatography. In addition to differences in subunit size and cellular compartmentalization of the isoenzymes, differences have been reported in their activity and susceptibility to inhibition. The structural basis of these isoenzymes is unclear; we attempted to further define their functional characteristics and structural identity. First, we measured respective enzymatic activity using a panel of substrates; MPO I was found to have lower activity with some substrates (pyrogallol, guaiacol, potassium iodide [KI]), but similar activity to the other isoenzymes with 4-aminoantipyrine. These studies confirm that MPO I is enzymatically distinct from MPO II and MPO III. Next, we examined the structural basis of these differences by evaluating the iron-containing prosthetic group in each form using electron paramagnetic resonance (EPR) and determination of the pyridine hemochrome. No significant difference between the isoenzymes was noted in these parameters, suggesting that the prosthetic group is the same in each protein. The cause for any difference in enzymatic activity must lie then in variations extrinsic to the heme, and based on previous studies of the gene and protein analysis, the posttranslational modification of MPO must account for these isoenzymatic species.

Electron Spin Resonance Spectroscopy↗

Extradiol cleavage of 3-substituted catechols by an intradiol dioxygenase, pyrocatechase, from a Pseudomonad.

Pyrocatechase (catechol 1,2-oxidoreductase (decyclizing), EC 1.13.11.1), a ferric ion-containing dioxygenase from Pseudomonas arvilla C-1, catalyzes the intradiol cleavage of catechol with insertion of 2 atoms of molecular oxygen to form cis,cis-muconic acid. The enzyme also catalyzed the oxidation of various catechol derivatives, including 4-methylcatechol, 4-chlorocatechol, 4-formylcatechol (protocatechualdehyde), 4,5-dichlorocatechol, 3,5-dichlorocatechol, 3-methylcatechol, 3-methoxycatechol, and 3-hydroxycatechol (pyrogallol). All of these substrates gave products having an absorption maximum at around 260 nm, which is characteristic of cis,cis-muconic acid derivatives. However, when 3-methylcatechol was used as substrate, the product formed showed two absorption maxima at 390 and 260 nm. These two absorption maxima were found to be attributable to two different products, 2-hydroxy-6-oxo-2,4-heptadienoic acid and 5-carboxy-2-methyl-2,4-pentadienoic acid (2-methylmuconic acid). The former was produced by the extradiol cleavage between the carbon atom carrying the hydroxyl group and the carbon atom carrying the hydroxyl group and the carbon atom carrying the methyl group; the latter by an intradiol cleavage between two hydroxyl groups. Since these products were unstable, they were converted to and identified as 6-methylpyridine-2-carboxylic acid and 2-methylmuconic acid dimethylester, respectively. Similarly, 3-methoxycatechol gave two products, namely, 2-hydroxy-5-methoxycarbonyl-2,4-pentadienoic acid and 5-carboxy-2-methoxy-2,4-pentadienoic acid (2-methoxymuconic acid). With 3-methylcatechol as substrate, the ratio of intradiol and extradiol cleavage activities of Pseudomonas pyrocatechase during purification was almost constant and was about 17. The final preparation of the enzyme was homogeneous when examined by disc gel electrophoresis and catalyzed both reactions simultaneously with the same ratio as during purification. All attempts to resolve the enzyme into two components with separate activities, including inactivation of the enzyme with urea or heat, treatment with sulfhydryl-blocking reagents or chelating agents, and inhibition of the enzyme with various inhibitors, proved unsuccessful. These results strongly suggest that Pseudomonas pyrocatechase is a single enzyme, which catalyzes simultaneously both intradiol and extradiol cleavages of some 3-substituted catechols.

1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium ↗

[Polarographic studies on the peroxidase activity of liganded deuterohemin].

The peroxidase activity of deuterohemin and deuterohemin complexes relative to the substrates pyrogallol and ascorbic acid was studied using d.c. polarography in aqueous solution. Imidazole and pyridine served as complex ligands. In the absence of the ligands, a continual rise in the substrate conversion rate with increasing H2O2 initial concentration is observed. Imidazole or pyridine were found to considerably increase the peroxidase activity of deuterohemin at low H2O2 concentrations. At high H2O2 concentrations, the dependence of the reaction rate on H2O2 concentration shows a bend, the reaction rate being in each case higher than that of free hemin under the same conditions. The reason of this fact is discussed to be a retarded formation of activated H2O2 hemin-ligand complexes at high H2O2 concentrations.

Deuteroporphyrins↗

Prevention of myocardial reperfusion injury with free radical scavengers. An experimental study.

The changes in endogenous superoxide dismutase (ESOD) during myocardial ischemia and reperfusion and the efficacy of oxygen free radical scavengers in myocardial protection were investigated in an isolated heart model connected with the recirculating nonpulsatile perfusion circuit. Subjected to a 2-hour period of global ischemia (27 C), the heart was reperfused with 37 C oxygen diluted auto-blood for 60 minutes. Superoxide dismutase plus catalase was added into the cardioplegic solution and reperfusates. ESOD activity was measured by pyrogallol method. The results of the experiment showed that ESOD activity after ischemia and reperfusion was decreased and the addition of oxygen free radical scavengers (SOD and CAT) to the cardioplegic solution and the reperfusates greatly reduced the leakage of myocardial enzymes, coronary vascular resistance, and the ultrastructural damages of the myocardium. These results suggest that the use of SOD and CAT may inhibit myocardial reperfusion injury by scavenging oxygen-derived free radicals.

Animals↗

Human DNA damage induced by 1,2,4-benzenetriol, a benzene metabolite.

Reactivities of benzene metabolites (phenol, catechol, hydroquinone, 1,4-benzoquinone, 1,2,4-benzenetriol) and related polyphenols (resorcinol, pyrogallol, phloroglucinol) with DNA were investigated by a DNA sequencing technique using 32P 5'-end-labeled DNA fragments obtained from human c-Ha-ras-1 protooncogene, and the reaction mechanism was studied by UV-visible and electron-spin resonance spectroscopies. 1,2,4-Benzenetriol caused strong DNA damage even without alkali treatment. Alkali-labile sites induced by 1,2,4-benzenetriol were base residues of guanine and adjacent thymine. Catalase, superoxide dismutase and methional inhibited the DNA damage completely, but sodium formate did not inhibit it. 1,2,4-Benzenetriol-induced DNA damage was inhibited by the addition of a Cu(I)-specific chelating agent, bathocuproine, and was accelerated by the addition of Cu(II). The addition of Fe(III) did not create any significant effects on 1,2,4-benzenetriol-induced DNA damage. Electron-spin resonance studies using spin traps demonstrated that addition of Fe(III) increased hydroxyl radical production during the autoxidation of 1,2,4-benzenetriol, whereas the addition of Cu(II) did not. The results suggest that DNA damage was caused by an unidentified active species which was produced by the autoxidation of 1,2,4-benzenetriol in the presence of Cu(II), rather than by hydroxyl radicals. The possibility that 1,2,4-benzenetriol-induced DNA damage is one of the primary reactions in carcinogenesis induced by benzene is discussed.

Chelating Agents↗

[Final stages of the preliminary metabolism of 2,4,6-trinitrotoluene in Pseudomonas fluorescens].

The work was aimed at studying the transformation of 2,4-diamino-6-nitrotoluene (2,4-DA), an intermediate product in 2,4,6-trinitrotoluene catabolism by microorganisms. The results allow one to propose the following scheme for the terminal steps of TNT preparatory metabolism: 2,4-DA----[phloroglucinol carboxylic acid]----phloroglucinol----pyrogallol----ring cleavage.

Biodegradation, Environmental↗

[Transformation of 2,4,6-trinitrotoluene during oxygen and nitrate respiration in Pseudomonas fluorescens].

A study of the metabolic pathway and the rate of 2,4,6-trinitrotoluene (TNT) transformation depending on the nature of the electron acceptor in the electron transport chain of Pseudomonas fluorescens B-3468 revealed that the first reaction of nitroreduction of TNT resulting in formation of 2-amino-4,6-dinitrotoluene (2A) and 4-amino-2,6-dinitrotoluene (4A) became more active in case of nitrate respiration as compared to oxygen respiration; a TNT decrease was 100 and 66%, respectively. The same tendency but much more pronounced was observed at the next stage of nitroreduction that lead to 2,4-diamino-6-nitrotoluene (2,4DA). On the contrary, aerobic conditions are more preferable for the subsequent destruction of 2,4DA. Thus monoamino derivatives, 2A and 4A, predominated under anaerobic conditions, whereas 2,4DA under anaerobic ones (85 and 69% of the total nitrogen-containing metabolites), respectively. Phloroglucinol and pyrogallol accumulated in the culture liquid when the bacteria were grown on a medium containing 2,4DA as a sole source of nitrogen. Their role as intermediates was proved by the results obtained by studying oxidative activity of the cells grown in the presence of 2,4DA and phloroglucinol.

Aerobiosis↗

Purification and characterization of a catalase-peroxidase from the photosynthetic bacterium Rhodopseudomonas capsulata.

Catalase-peroxidase was isolated from aerobically grown Rhodopseudomonas capsulata. The enzyme resembles typical catalases in some of its physicochemical properties. It has an apparent molecular weight of 236,000 and is composed of four identical subunits. It shows a typical high spin ferric heme spectrum with absorption maxima at 403 and 635 nm and shoulders at 503 and 535 nm. Upon binding of cyanide, the enzyme is converted to the low spin state, as shown by the shift of the Soret maximum to 418 nm and the band at 532 nm. It has an isoelectric point at pH 4.5. The enzyme differs from typical catalases in also having a strong peroxidatic activity with dianisidine, pyrogallol, and diaminobenzidine as electron donors. Both the catalatic and the peroxidatic activities are similarly inactivated by treatment with 1 mM H2O2, heating to 50 degrees C, exposure to ethanol/chloroform, and photooxidative conditions. In contrast to typical catalases, but similarly to peroxidases, the enzyme is reduced by sodium dithionite. The pH optimum of the peroxidatic activity is 5-5.3 (in contrast to 6-6.5 of the catalatic activity). 50% of the apparent maximal activities are reached at 0.3 and 4.2 mM H2O2 for the peroxidatic and catalatic activities, respectively. Both enzymic activities are equally inhibited by cyanide, 50% inhibition being achieved with 2.2 X 10(-5) M KCN. Contrarily, the two activities differ in their response to hydroxylamine and azide. 50% inhibition of the catalatic activity is obtained with 1.5 X 10(-4) M azide or 2.15 X 10(-6) M hydroxylamine; 50% inhibition of the peroxidatic activity requires 7.3 X 10(-4) M azide or 7.8 X 10(-5) M hydroxylamine. The activation energies of the catalatic and the peroxidatic activities are 1.9 and 1.7 kcal/mol, respectively.

Azides↗

Spectrophotometric determination of ascorbic acid in canned fruit juices, cordials, and soft drinks with iron(III) and 1,10-phenanthroline as reagents.

A simple and accurate spectrophotometric method has been developed for the determination of ascorbic acid in canned fruit juices, cordials, and soft drinks, based on the reduction of iron(III) by ascorbic acid to iron(II), which is then complexed with 1,10-phenanthroline. Background correction is necessary for most samples and can be achieved by copper(II)-catalyzed oxidation of the acid. The calibration graph was linear from 0 to 8 micrograms/mL of ascorbic acid with a slope of 0.12/ppm. The precision for the determination of ascorbic acid in a lemon drink containing 210 micrograms/mL of the acid was 0.9%. Many ingredients commonly found in fruit juices, cordials, and soft drinks do not interfere; however, tannic acid, pyrogallol, and sulfite interfere with the method. A wide range of samples was analyzed for ascorbic acid content by the proposed method. The samples included mango and lemon tea drinks and also grapefruit juices, for which no background correction is needed.

Alcoholic Beverages↗

Purification of the o-dianisidine peroxidase from Escherichia coli B. Physicochemical characterization and analysis of its dual catalatic and peroxidatic activities.

Extracts of aerobically grown Escherichia coli B exhibit both catalase and dianisidine peroxidase activities. Polyacrylamide gel electrophoresis demonstrates two distinct catalases which have been designated hydroperoxidases I and II (HP-I and HP-II) in order of increasing anodic mobility. HP-I has been purified to essential homogeneity and found to be composed of four subunits of equal size. Its molecular weight is 337,000, and it contains two molecules of protoheme IX per tetramer. Its amino acid composition is unusual, for so large a protein, in lacking half-cystine. HP-I is a very efficient catalase with an activity optimum at pH 7.5, a Km for H2O2 of 3.9 mM, and a turnover number of 9.8 x 10(5) per min. It is also a broad specificity peroxidase capable of acting upon dianisidine, guaiacol, p-phenylenediamine, and pyrogallol. Dianisidine acted as a powerful reversible inhibitor of the catalatic activity of HP-I and as a suicide substrate when HP-I functioned in its peroxidatic mode.

Amino Acids↗

[In vitro malondialdehyde formation in brain structure: a method to characterize antihypoxic properties].

In vitro generated free radicals (ascorbic acid-ferric salt-mixture or hydrogen-peroxide) result in lipid peroxidation on brain cellular fractions and striatum slices an decrease of the stimulated dopamine release from rat striatum slices. Besides cysteamine, alpha-tocopherol, pyrogallol and chelating agents also tisochromide shows an antioxidative activity on lipid peroxidation induced by ascorbic acid-ferric salt-mixture. Nootropic drugs like piracetam, methylglucamine orotate, meclofenoxate hydrochloride and nicergoline are ineffective to mitochondrial malondialdehyde generation. On the other hand, piracetam exhibits a limited effect on oxidative damage of striatum slices. For that reason, the antihypoxic activity of these drugs is not accompanied by any antioxidative component and presumes a relatively high degree of tissular organization.

Animals↗

Short-term screening of promoters of bladder carcinogenesis in N-butyl-N-(4-hydroxybutyl)nitrosamine-initiated, unilaterally ureter-ligated rats.

The modifying effects of 17 environmental chemicals on the development of lesions in the urinary bladder of rats with unilateral ureteric ligation were investigated. Lesions were initiated by treatment of the animals with 0.05% N-butyl-N-(4-hydroxybutyl)nitrosamine (BBN) for 2 weeks, and then test chemicals were given for 22 weeks. The lesions of the urinary bladder found were preneoplastic papillary or nodular hyperplasias (PN hyperplasias) and papillomas. Additions of sodium saccharin (5%), sodium o-phenylphenate (2%), butylated hydroxyanisole (2%), and sodium L-ascorbate (5%) to the diet had significant promoting effects on the incidences and numbers of PN hyperplasias and papillomas per 10 cm of basement membrane of the urinary bladder in this system. Sodium erythorbate (5%), ethoxyquin (0.8%) and carbazole (0.6%) significantly increased the incidence of PN hyperplasias. N-Nitrosopyrrolidine (0.02%) did not affect the incidence or number of PN hyperplasias but increased those of papillomas. Sodium o-phenylphenate also induced PN hyperplasias in rats without BBN-initiation. Ascorbic acid, ascorbic stearate, three dihydroxyphenols, methylhydroquinone, pyrogallol, quinoline, and uric acid did not show promoting activity in this test system. Thus, 8 of 17 chemicals tested had various promoting effects on urinary bladder carcinogenesis. These results show that this test system of BBN-initiated, unilaterally ureter-ligated rats should be useful for the detection of new bladder carcinogens and promoters.

Animals↗

[Dopamine-stimulated glycosylation of rat hippocampal proteins in vitro: structure-response relationship].

Dopamine, but also other catecholamines (noradrenaline, adrenaline and isoprenaline), as well as L-dopa and alpha-methyl-dopa increase the incorporation of L-[1-3H]fucose into proteins of rat hippocampal slices. Among all substances that have been tested, dopamine exhibited the highest activity. Other non- or monohydroxylated phenylethylamine-derivatives (tyramine, octopamine, beta-phenylethylamine, metamphetamine) and pyrogallol had no effect on the fucosylation of hippocampal proteins. alpha-Methyl-dopa was less active than L-dopa. However, under the influence of alpha-methyl-dopa, an inhibitor of the dopadecarboxylase (aromatic L-amino acid decarboxylase, EC 4.1.1.28) the stimulatory effect of L-dopa on protein fucosylation was attenuated. From these results it is concluded that the dopamine-stimulated glycosylation of hippocampal proteins is triggered by (at least) two mechanisms, i.e. (1) via an activation of adenylate cyclase coupled dopamine receptor sites, and (2) via a mechanism which appears to be not related to an activation of transmitter-receptor sites but linked to the 3,4-dihydroxy-phenylethylamine-structure.

Animals↗

In vivo inhibition of superoxide dismutase in mice by diethyldithiocarbamate.

Superoxide dismutase was assayed by a method which takes advantage of the inhibitory action of superoxide dismutase (or tissues which contain superoxide dismutase) on the rate of autooxidation of 6-hydroxydopamine. Incubation of pure superoxide dismutase of homogenates of brain or liver with 10(-3) M diethyldithiocarbamate for 1.5 hours resulted in total loss of superoxide dismutase activity. Inhibition of superoxide dismutase was not reversed by dialysis, but after dialysis, enzymatic activity was restored with CuSO4. When 1.5 g of diethyldithiocarbamate/kg were injected into mice, the superoxide dismutase activity at 3 hours was decreased by 86%, 71%, and 48%, respectively, in whole blood, liver, and brain. A dose of 0.5 g of diethyldithiocarbamate/kg lowered the superoxide dismutase activity by 42% in liver at 3 hours. A study of the time course for inhibiton of superoxide dismutase in liver after 1.5 g of diethyldithiocarbamate/kg, showed a maximum decrease (81%) within 1 hour, with a slow return to 64% of normal by 24 hours. Inhibition of superoxide dismutase in vivo and in vitro was confirmed with other assay systems based on the autooxidation of pyrogallol or epinephrine or on reduction of cytochrome c or intro blue tetrazolium. Treatment of animals with diethyldithiocarbamate may provide a useful experimental model to study the role of superoxide dismutase in various tissues.

Animals↗

Local and systemic effects of commonly used cutaneous agents: lifetime studies of 16 compounds in mice and rabbits.

A number of commonly used external agents were applied repeatedly on the skin of the mouse and rabbit. These chemicals, components of commercially available products included 4-hydroxyanisole, benzalkonium chloride, bromodeoxyuridine, iododeoxyuridine, 5-nitroacenaphthene, N-N-diethyltoluamide, hexachlorophene, para-aminobenzole acid, benzophenone, isopropylmyristate, pyrogallol, resorcinol and ethylhexanediol. Also tested were a commercial hairspray, a dandruff shampoo and an anti-dandruff agent. Local and systemic changes were studied and the tumour incidence compared with that of an effective carcinogen, 9,10-dimethylbenz(a)anthracene. The mice showed no local toxic changes or tumour formation and the systemic tumour incidence, i.e., tumours of the liver, lungs, lymphatic system and other organs, was similar to that of control animals. In rabbits, a number of proliferative, benign and malignant ear tumours were observed in the positive controls, thereby demonstrating the efficacy of this model. Local toxic changes were seen in benzalkonium- and hexachlorophene-treated animals, but no skin tumours. Four animals had uterine tumours. In addition, one lung and one kidney tumour, unrelated to the method of treatment, were seen.

Administration, Topical↗

Human and laboratory studies on the causes and prevention of gastrointestinal cancer.

Neoplasms affecting different subsections of the large bowel appear to have different risk factors. For the major type of neoplastic disease in the large bowel, that in the descending and sigmoid colon, a good association with nutrition and specific nutritional elements has been found. The risk of this type of colon cancer is proportional to the customary dietary fat intake--high in the Western World and low in the Orient. It is inversely proportional to stool bulk, which is itself modulated by cereal fibre intake. Fat and fibre, as the two major elements implicated, are sufficiently secure with regard to underlying scientific data and understanding of mechanisms, to permit utilising them to modify risk. Thus, a dietary regimen low in total fat, 20% of calories, and higher in cereal fibre, of the order of 30 grams/day, is indicated. Such a modified nutritional intake could be expected to reduce risk, not only in the general population, but most likely also in patients who have been treated successfully by conventional means. Additional evidence suggests that regular intake of yellow and green vegetables, of foods containing calcium salts, selenium and other micro-nutrients, lower the risk even more. More research is needed to provide the data necessary for deliberate intervention with these agents. Gastric cancer, on the other hand, has a distinct set of risk factors, namely, intake of pickled and salted fish or beans. Other risk factors are associated with residence in areas where the geochemical or agricultural sources of nitrate intake are not balanced by the presence of vitamin C, vitamin E, or certain phenolic antioxidants and nitrite traps such as pyrogallol, tannins, or peptides. The possible genotoxic carcinogen is not yet known, but it could be an alkyl-nitrosamide type of aryldiazonium chemical. The formation of such compounds is inhibited by vitamin C, vitamin E, and certain antioxidants. This fact can be used to decrease deliberately the risk of gastric cancer.

Alcoholic Beverages↗

Growth of Mycobacterium leprae in a redox system.

Mycobacteria recovered from human lepromatous nodules and presumably M. leprae, have been grown in a medium that ensured a minimal oxygen tension at initiation of growth, and an increasing availability of oxygen as bacillary growth increased requiring marginal increments in oxygen tension. This physicochemical environment was achieved by the addition of strong biological reductants in the medium, and a combination of partial vacuum and alkaline pyrogallol in the culture vessel. In addition, n-tetradecane, a straight chain hydrocarbon, and lipids like Cholesterol and Lecithin, all three substances mixed in the aqueous medium as liposomes, were added and found to be useful. Menadione, or Vitamin K3, added to the medium considerably improved growth efficiency. Growth occurred initially as non-acid fast coccoids and bacilli that gradually changed to acid-fast bacilli and globi, and cell-wall deficient, spherical L-form elements. Appearance of growth in any form was perceptible within 1 to 2 weeks and optimal growth as acid fast bacilli took upto 3 months. Both the acid fast and non-acid fast bacilli could not be grown in conventional media, but the non-acid fast coccoids could be readily isolated from these cultures in a specially enriched liquid medium. The problem of harvesting of the growth free of lipid-hydrocarbon substances has still not been solved, as also an optimum oxidation-reduction potential. The growth is transferable.

Alkanes↗

Selective staining technique for identification of human skin elastic fibers.

The staining methods proposed for the histological detection of elastic fibers are not entirely selective for the elastic fiber system and stain other tissue components also as for example nuclei and collagenous components. We worked out several staining methods which enable us to obtain a selective staining of all the elastic and pre-elastic fibers with no staining of the background by using in the staining solution polyphenols like: pyrogallol, (+) catechin, tannic acid and others. As the background is colourless, our method is suitable for the quantitation of elastic system fibers by automated computerized image analysis.

Adult↗