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Inhibition of beta-glucuronidase by chlorinated hydroquinones and benzoquinones.

An earlier study of the metabolism of pentachlorophenol has shown that a metabolite, tetrachloro-p-hydroquinone, possessed pronounced inhibitory action on the activity of beta-glucuronidase from bacterial origin. Several other chlorinated hydroquinones and benzoquinones have now been studied with regard to their ability to inhibit beta-glucuronidase of various origin in vitro and in vivo. All the studied chlorinated hydroquinones and benzoquinones were found to be potent inhibitors of beta-glucuronidase of bacterial origin. D-glucaric acid-1.4-lactone was included for comparison and was found to be less active than the other studied compounds. The inhibition was found to be competitive in nature. No inhibitory effect of the benzo- and hydroquinones studied in vitro or in vivo could be demonstrated on beta-glucuronidase from livers. The result calls for precaution when using bacterial beta-glucuronidase to split urinary conjugates of glucuronic acid.

Animals

Substituent effects on the electron transfer reactivity of hydroquinones with laccase blue copper.

Stopped-flow kinetic studies of the anaerobic reduction of Rhus vernicifera laccase (monophenol, dihydroxyphenylalanine:oxygen oxidoreductase, EC 1.14.18.1) type 1 copper by 25 mono- and disubstituted hydroquinones (H2Q-X) have been performed at 25 degrees C and pH 7.0 in 0.5 M phosphate. All of the data are compatible with a mechanism involving rapid enzyme-substrate complex formation followed by rate-limiting intra-complex electron transfer. ES complex formation constants (Qp) for many substrates are strikingly insensitive to the electronic characteristics of the substituent X, falling within the range 5--50 M-1. It is shown that this result may be accounted for if only the singly ionized forms of the substituted hydroquinones are bound by the enzyme. All of the substrates exhibiting exceptionally high Qp values (greater than 50 M-1) have X groups capable of functioning as ligands; substituents with lone pairs of electrons may facilitate enzyme-substrate complex formation by enabling hydroquinone to function as a bidentate bridging ligand between the type 2 and type 3 copper sites. Intra-complex electron transfer rate constants for most substrates are remarkably insensitive to the thermodynamic driving force for the oxidation of H2Q-X to the corresponding semiquinone, the average value for ten substrates being 30 +/- 10 s-1. The electron transfer reactivity of polyphenols with laccase blue copper therefore appears to be controlled largely by protein-dependent activation requirements rather than by the oxidizability of the substrate.

Binding Sites

Influence of amino acids, thiourea and hydroquinone on cellulolytic activity in some Fusarium strains.

Studies were carried out on the influence of various amino acids: cysteine, cystine, methionine, alanine, serine, tryptophan, and of thiourea and hydroquinone on the activity of cellulase synthesized by four strains of Fusarium. It follows from the results obtained that the addition of amino acids, thiourea or hydroquinone to the culture media stimulates or inhibits the activity of the enzyme studied. The effect of this action depended both on the compound and the strain studied.

Amino Acids

[Photochemical reaction of chlorophyll a and pheophytin a with low concentrations of hydroquinone].

It has been shown that when illuminating chlorophyll a solution (approximately 10(-5) M) in ethanol containing small concentrations of hydroquinone at pH higher than 7, a markable negative photopotential (-PhP) is initiated. Similar picture is also observed both in the presence of 2 . 10(-5) M parabenzoquinone and when using pheophytin a instead of chlorophyll. The data obtained are in favour of the idea that when illuminating the solutions of these pigments in ethanol containing pure p-benzoquinone at pH higher than the definite value, PhP initiation is conditioned by photochemical reaction of pigments with equilibrium amounts of hydroquinones or semiquinone always present in quinone solutions.

Chemical Phenomena

Topical tretinoin, hydroquinone, and betamethasone valerate in the therapy of melasma.

Twenty adult female patients with melasma were followed over a ten week clinical trial in which a combination of depigmenting agents was used daily. Past clinical experience and objective assessment point to enhanced efficacy of this simple depigmenting combination. Certainly, most of depigmenting agents at our command to date have been relatively ineffective. Even this new combination is not the final answer. The purpose of this study is to provide the clinician with a simple yet effective and readily accessible combination of commercially-formulated and available depigmentary agents. A stable combination in a single vehicle with greater efficacy remains to be perfected.

Administration, Topical

The effect of altered ergosterol content on the transport of various amino acids in Candida albicans.

Candida albicans cells have low levels of ergosterol when grown in ascorbic acid-supplemented media. When cells are grown in hydroquinone-supplemented media, the ergosterol levels became higher as compared to normal cells. The uptake of lysine, glycine, glutamic acid, proline, methionine and serine is reduced in hydroquinone-supplemented cells. In contrast to hydroquinone-supplemented cells, the rate and level of accumulation of these amino acids are higher in ascorbic acid-supplemented cells. Nystatin-resistant isolates of C. albicans with low ergosterol contents also exhibit an increased rate and level of accumulation of these amino acids. The uptake of phenylalanine and leucine remained unaffected by such a change in ergosterol levels brought about by different supplementation of the media. The results demonstrate a correlation between ergosterol levels and amino acids uptake. Contrary to various reports, the rate of K+ efflux does not seem to correlate with the amino acid uptake in C. albicans cells.

Amino Acids

On the mode of action and biochemical properties of anti-inflammatory drugs-II.

The inhibition of prostaglandin (PG) synthetase by nonsteroidal anti-inflammatory drugs (NSAID) is not well understood. Co-factors (glutathione and hydroquinone) are needed for maximum enzymatic activity in vitro, and we suggest that NSAID might inhibit PG synthetase partly by interfering with co-factor induced stimulation of the enzyme. This hypothesis was tested by: A) Examining the effect of glutathione, noradrenaline and hydroquinone on bull seminal vesicle (BSV) PG synthetase in vitro. The stimulatory effects were concentration-dependent. B) Three structurally distinct NSAID, indomethacin, aspirin and paracetamol, inhibited the stimulation by each co-factor in a concentration-related manner. Drug effectiveness also depended on the concentration of co-factor.

Acetaminophen

A study of tobacco carcinogenesis. XIII. Tumor-promoting subfractions of the weakly acidic fraction.

The weakly acidic fraction (WAF) of cigarette smoke particulate matter was fractioned by silica get chromatography. We assayed the various primary subfractions for potential tumor-promoting activity by measuring the incorporation of tritiated thymidine into mouse epidermal DNA as induced by these subfractions. Based on these results and on chemical composition, the primary subfractions, were then combined into four major subfractions and tested on initiated mouse skin for tumor-promoting activity by long-term application. Two of these subfractions (40% of WAF) were inactive, whereas the other two (18 and 35% of WAF) showed tumor-promoting activity. The two active portions were then further chromatographed and tested by the short-term bioassay. Some major components of the resulting active fractions included alkyl-2-cyclopenten-2-ol-1-ones, catechols, hydroquinone, fatty acids, and 3-hydroxypyridines. Among these components, catechol, hydroquinone, 3-hydroxypyridine, 6-methyl-3-hydroxypyridine, linolenic acid, and linoleic acid were inactive as tumor promoters in the experimental animal. The activity of the alkyl-2-cyclopenten-2-ol-1-ones is unknown. Other components remain to be identified.

Animals

Vitamin K-dependent carboxylase. Requirements of the rat liver microsomal enzyme system.

Vitamin K is required in an enzymatic reaction which carboxylates glutamyl residues in a microsomal protein precursor of plasma prothrombin to form gamma-carboxyglutamic acid residues. The partial requirements of this microsomal, vitamin K-dependent carboxylase system have been determined. A requirement of the system for cytosolic factors appears to be due primarily to the presence of reduced pyridine nucleotides or a reduced pyridine nucleotide-generating system in the cytosol. The hydroquinone of vitamin K has been demonstrated to be the enzymatically active form of the vitamin. When vitamin K1 hydroquinone is added to the carboxylase system, no NAD(P)H is needed for maximum activity. The carboxylase activity is half-maximally stimulated by 0.25 mug of vitamin K1/ml in the presence of cytosolic components but requires at least 10 times as much vitamin when microsomes are incubated in a cytosol-free buffer. Menadione is inactive as a vitamin source in this system, and the carboxylase activity is inhibited by the 2-chloro analog of vitamin K1 and by Warfarin. The ATP analog, AMP-P(NH)P, inhibited the carboxylase activity, but a dependence on exogenous ATP or an ATP-generating system could not be demonstrated. Carboxylase activity was found to be dependent on an O2-containing gas phase, and upon the HCO3- concentration.

Animals

[Studies on the antimicrobial effect of natural and synthetic humic acids (author's transl)].

Preparations of humic acids extracted from different soils by various methods and model humus substances obtained synthetically by oxidation of hydroquinone and pyrocatechin are tested for growth inhibition of representative strains of human pathogenic microorganisms using a micro serial dilution technique. Within the concentration range of less than or equal to 2500 micrograms/ml 57 of 81 natural and also the two synthetic humic acids show antimicrobial activity with differing spectra. These substances inhibit St. epidermidis, St. aureus, Str. pyogenes, S. typhimurium, Prot. vulgaris, Ent. cloacae, Ps. aeruginosa and C. albicans, but not Str. faecalis and E. coli. The degree of activity or the sensitivity of test organisms, respectively, amounts to 2500--1250 micrograms/ml predominantly, partially 625--312 micrograms/ml and can reach values of up to 39 micrograms/ml with synthetic hydroquinone humic acid. The spectrum and degree of activity vary according to the origin and extraction mode of the natural humic acids. The in vitro evidence of efficiacy against human pathogenic microorganisms gives a rational basis of therapeutic use of substances of humic acid type in infectious conditions.

Anti-Bacterial Agents

Reduction of blue tetrazolium by corticosteroids.

Pseudo-first-order rate constants were observed for the reaction of corticosteroid or corticosteroid esters with blue tetrazolium. The data indicate that the reactivity of corticosteroids is, in part, a function of their geometry in that corticosteroid reactivity toward blue tetrazolium increases with increasing planarity of the steroid molecule and that corticosteroid esters must be hydrolyzed as a necessary prerequisite to reaction with blue tetrazolium. Evidence is presented indicating that free radicals are not involved in the blue tetrazoliun reaction with corticosteroids. Certain pharmaceutically important compounds such as pyrocatechol derivatives and hydroquinone appear to reduce blue tetrazolium by the anion free radical mechanism proposed previously. A spectrophotometric method for determining the number of reduction units transferred to blue tetrazolium per molecule is described.

Adrenal Cortex Hormones

Kinetic studies of Rhus vernicifera laccase. Role of the metal centers in electron transfer.

The reactions of Rhus vernicifera (monophenol,dihydroxyphenylalanine: oxygen oxidoreductase, EC 1.14.18.1) with the reducing substrates hydroquinone and ascorbic acid have been investigated with the stopped-flow technique. Rhus laccase appears to be present in two molecular forms with a pH-sensitive equilibrium constant regulating the relative concentrations of each species. A model for the reaction of Rhus laccase with reducing substrates has been formulated. The model is similar to one formulated earlier for the anaerobic reduction of laccase from Polyporus versicolor (Andréasson, L.-E., Malström, B.G., Strömberg, C. and Vänngård, T. (1973) Eur. J. Biochem. 34, 434-439) and accounts for the reduction also of this enzyme. The essentials of the model are as follows: Electrons are taken up from reductants one at a time. The type 1 Cu2+ has a central role in mediating the transfer of at least one of the electrons needed for the reduction of the co-operative two-electron acceptor. Intramolecular reactions determine the concentrations of two molecular forms of the enzyme and influence the rate of reduction of the two-electron acceptor. The model, which has been used for successful simulations of the anaerobic reduction of Rhus laccase, is capable of explaining the reduction of laccases also in the presence of the inhibitor F-. In addition, the model gives an explanation of the behaviour of the laccases when reducing substrates and O2 are simultaneously present and is consistent with earlier observations of the post-steady-state reduction of the type 1 Cu2+ and the two-electron accetor (Holwerda, R.A. and Gray, H.B. (1974) J. Am. Chem. Soc. 96, 6008-6022).

Anaerobiosis

Interrelationship of tryptophan pyrrolase with tyrosinase in melanogenesis of Bufo melanostictus.

Tryptophan pyrrolase, a microsomal enzyme responsible for the break-down of tryptophan, has been detected in Bufo melanostictus. The enzyme has been found to be deactivated under influence of antivitiligo drug psoralene and activated by hydroquinone, an inhibitor of tyrosinase. Tryptophan pyrrolase has been found to have an antagonistic relationship with tyrosinase in Bufo melanostictus. The implication of the results has been discussed in relation to melanogenesis in vitiligo.

Animals

Biosynthesis of thromboxane B2: assay, isolation, and properties of the enzyme system in human platelets.

The microsomal fraction of human platelets catalyzed the conversion of arachidonic acid to an unstable platelet-aggregating factor and a hydrolyzed product on the thin-layer chromatography (TLC). This product was isolated on TLC, purified by silica gel column chromatography and identified by combined gas chromatography-mass spectrometry as the hemiacetal derivative of 8-(1-hydroxy-3-oxopropyl)-9, 12L-dihydroxy-5, 10-heptadecatrienoic acid (thromboxane B2). The enzymatic activity was dependent upon methemoglobin and tryptophan as cofactors. Reduced glutathione had no effect either alone or in combination with other cofactors. Methemoglobin could be replaced by hematin or hemin; and tryptophan by 3-indolacetic acid or catecholamines. The apparent requirement for methemoglobin is due to the reductive activity of ferriprotoporphyrin IX. The reaction, however, catalyzed by the ferriprotoporphyrin IX in the thromboxane synthesizing system is different from that described for the decomposition of lipid peroxides. Certain transition metals and hydrogen donors, such as hydroquinone and ascorbate, which have been shown to stimulate the catalytic activity of ferriproroporphyrin IX in the decomposition of 15-hydroperoxy-prostaglandin E1 are inhibitors of thromboxane B2 formation. This enzyme preparation also transformed eicosa-8. 11, 14-trienoic acid to an unknown product on TLC. The enzyme system was rapidly inactivated upon incubation in the reaction mixture.

8,11,14-Eicosatrienoic Acid