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Biomedical subjects

G Prota

Publications and source records attributed to G Prota.

At least 73 records · Page 4Linked to original sources

Psoralens sensitize glutathione photooxidation in vitro.

In vitro experiments are reported showing that psoralens and other furocoumarins of current pharmacological interest, e.g., angelicin and 4,6,4'-trimethylangelicin, all have, to a variable extent, the ability to sensitize the photooxidation of glutathione in ethanol/phosphate buffer with pyrex-filtered ultraviolet light. Besides substrate concentration and the nature of the furocoumarin used, the rate of the sensitized reaction is markedly dependent on the partial pressure of oxygen and the pH of the medium, being progressively faster on passing from pH 5 to pH 8.5. Scavengers of superoxide ions (superoxide dismutase), hydrogen peroxide (catalase) and singlet oxygen (sodium azide, diazabicyclooctane, sorbic acid) have little or no inhibitory effect on the reaction rate. These and other data suggest that furocoumarins can directly sensitize glutathione photooxidation by forming a charge transfer complex which is driven to the oxidized products in the presence of oxygen. The possible relevance of these results to the mechanisms of skin melanin hyperpigmentation induced by furocoumarins and ultraviolet light is discussed.

Dose-Response Relationship, Drug↗

A new look at the rearrangement of adrenochrome under biomimetic conditions.

At physiological pH values, the rearrangement of adrenochrome leads, besides adrenolutin, to a major dimeric compound consisting of an adrenolutin moiety covalently linked to the angular 9-position of adrenochrome. When the reaction is carried out in air, the initially generated adrenolutin undergoes autoxidation to give 5,6-dihydroxy-1-methyl-isatin (DHMIs), which is smoothly oxidized to the 4,4'-dimer. Under an oxygen-depleted atmosphere, formation of these latter compounds is prevented, and the rearrangement of adrenochrome leads mainly to the adrenochrome dimer (about 50% yield) along with adrenolutin and 5,6-dihydroxy-1-methylindole (DHMI) in about 10% yield each. The product distribution is markedly dependent on the concentration of the aminochrome undergoing rearrangement, the nature of the buffer system used, and the pH of the medium. Heavy metal ions of common occurrence in biological systems, such as Cu2+, Zn2+, Co2+, significantly direct the reaction course towards the formation of adrenolutin, while Fe2+ and other cations with low redox potentials induce the almost exclusive formation of DHMI.

Adrenochrome↗

An unusual case of trimethylaminuria.

A case is reported of trimethylaminuria that first developed in adulthood without any apparent cause. The patient developed a characteristic fish odour of his sweat, urine and to his breath after the consumption of choline-rich foods. Elevated levels of trimethylamine were present in the urine after dietary tests and identified by means of gas chromatography.

Adult↗

Structural modifications in biosynthetic melanins induced by metal ions.

A number of transition metal ions with a wide distribution in biological systems, e.g., Cu2+, Co2+ and Zn2+, are shown to affect markedly the chemical properties of melanins formed by the tyrosinase-catalysed oxidation of dopa. Acid decarboxylation and permanganate degradation provide evidence that melanins prepared in the presence of metal ions contain a high content of carboxyl groups arising from the incorporation of 5,6-dihydroxyindole-2-carboxylic acid (DICA) into the pigment polymer. Naturally occurring melanins from cephalopod ink and B16 mouse melanoma were found to be much more similar to melanins prepared in the presence of metal ions than to standard melanins prepared in the absence of metal ions. These results suggest that the presence of carboxylated indole units in natural melanins is probably due to the intervention in the biochemical pathway of metal ions which, as recently shown, catalyse the formation of DICA versus 5,6-dihydroxyindole in the rearrangement of dopachrome.

Animals↗

Effect of metal ions on the rearrangement of dopachrome.

In vitro experiments are reported showing that a number of transition metal ions exert a profound influence on both the kinetics and chemical course of the rearrangement of dopachrome, a key step in the biosynthesis of melanins. HPLC analysis shows that Cu2+, Ni2+ and Co2+ are particularly effective in inducing the non-decarboxylative rearrangement of dopachrome at physiological pH values, leading mainly to 5,6-dihydroxyindole-2-carboxylic acid, whereas in the absence of metal ions the reaction proceeds with concomitant loss of carbon dioxide to give almost exclusively 5,6-dihydroxyindole. Kinetic experiments provide evidence that the rate of the metal-promoted rearrangement is first order with respect to both aminochrome and metal concentration and decreases in the presence of increasing concentrations of EDTA, consistent with a mechanism involving a direct 1:1 dopachrome-metal ion interaction in the transition state. When considered in the light of the known metal accumulation in pigmented tissues, the results of this study provide a new entry into the regulatory mechanisms involved in the biosynthesis of melanins.

Cations↗

Tyrosinase-catalyzed conjugation of dopa with glutathione.

A convenient method is described for the preparation of 5-S- and 2-S-glutathionyldopa, based on tyrosinase oxidation of dopa in the presence of glutathione. The yields of 5-S, 2-S, and 6-S isomers produced were about 76, 12, and 5%, respectively.

Cysteinyldopa↗

Effect of metal ions on the kinetics of tyrosine oxidation catalysed by tyrosinase.

The conversion of tyrosine into dopa [3-(3,4-dihydroxyphenyl)alanine] is the rate limiting step in the biosynthesis of melanins catalysed by tyrosinase. This hydroxylation reaction is characterized by a lag period, the extent of which depends on various parameters, notably the presence of a suitable hydrogen donor such as dopa or tetrahydropterin. We have now found that catalytic amounts of Fe2+ ions have the same effect as dopa in stimulating the tyrosine hydroxylase activity of the enzyme. Kinetic experiments showed that the shortening of the induction time depends on the concentration of the added metal and the nature of the buffer system used and is not suppressed by superoxide dismutase, catalase, formate or mannitol. Notably, Fe3+ ions showed only a small delaying effect on tyrosinase activity. Among the other metals which were tested, Zn2+, Co2+, Cd2+ and Ni2+ had no detectable influence, whereas Cu2+ and Mn2+ exhibited a marked inhibitory effect on the kinetics of tyrosine oxidation. These findings are discussed in the light of the commonly accepted mechanism of action of tyrosinase.

Animals↗

Dielectrophoresis of malignant human melanocytes.

Dielectrophoretic experiments on pearl-chain formation and collection of human melanocytes were performed as a function of the frequency of the applied nonuniform electric field. Evidence is reported showing that the behavior of malignant melanocytes is markedly dependent upon the type of established cell line (pigmented or achromic), age, and drug treatment (e.g., chlorpromazine).

Cell Line↗

Non-enzymic oxidation of cysteinyldopa catalyzed by metallic ions.

1. Evidence is presented that under physiological conditions cysteinyldopa behaves similarly to catecholamines, e.g. adrenaline, in forming reversible complexes with various metallic cations. 2. As a rule, these complexes are stable under anaerobic conditions, but readily autoxidize in the presence of O2 to give the 1,4-benzothiazine acid (II) corresponding to one of the postulated intermediates in the biosynthesis of phaeomelanic pigments. 3. Copper catalyzed oxidation of cysteinyldopa proceeds differently to give the red-purple trichochrome F presumably via decarboxylation and oxidative coupling of the same benzothiazine intermediate. 4. The relevance of these in vitro experiments to the metabolism of cysteinyldopa is briefly discussed.

Catecholamines↗

Specific incorporation of penicillamine into the epidermis of mice: an autoradiographic study.

[3H]-D-penicillamine was injected intra-peritoneally in mice. The highest concentration of the drug was found in the skin, particularly in the epidermis, and a well-defined kinetic sequence of appearance in the epidermis was shown. This finding is consistent with the hypothesis that penicillamine, by virtue of its chemical similarity to cysteine, can replace the latter during keratogenesis by a competition phenomenon, which could provoke acantholytic splitting both biochemically and immunologically.

Animals↗

Eumelanins and pheomelanins: characterization by electron spin resonance spectroscopy.

Synthetic dopa melanin and cysteinyldopa melanin have different electron spin resonance spectra. Data are reported for mixtures of these melanins and for dopa-cysteinyldopa copolymers, which are spectroscopically similar. A simple parameterization of the spectra allows estimation of the relative amounts of (i) dopa melanin and cysteinyldopa melanin in mixtures and of (ii) dopa and cysteinyldopa incorporated into copolymers. Several natural eumelanins and pheomelanins have been characterized and shown to be copolymers.

Animals↗

On the interaction between anthralin and DNA: a revision.

The interaction between anthralin and DNA in vitro was examined. According to our data, there is no evidence for a specific interaction between these substances. However, we found that the addition of small quantities of DNA or albumin significantly enhanced the stability of aqueous solutions of anthralin and markedly affected the rate of anthralin decomposition.

Animals↗

Amelanotic changes in B 16 melanoma after transplantation to 'Yellow' Ay/a mice.

B 16 mouse melanoma maintained on nonagouti a/a mice (C 57 Bl 6j subline) was transplanted to 'Yellow' Ay/a mutants. B 16 melanoma has now been maintained for 1 year on the 'Yellow' strain. A microscopic and ultrastructural study of transplanted tumors is described. Several enzymatic activities including tyrosinases are investigated. A marked depigmentation of the B 16 melanoma is noted after its transplantation to the 'Yellow' strain, and melanogenic characteristics of the tumor are modified.

Animals↗

Novel free radicals in synthetic and natural pheomelanins: distinction between dopa melanins and cysteinyldopa melanins by ESR spectroscopy.

Synthetic pheomelanins from enzymic oxidation of the 3,4-dihydroxyphenylalanine (dopa) derivative 5-S-cysteinyldopa have been examined by ESR spectroscopy. These alkalisoluble polymers contain a novel kind of free radical that is spectroscopically distinct from that found in eumelanins. Delocalization of the unpaired electron onto a nitrogen atom and the ability of the radical to chelate complexing metal ions strongly suggest an o-semiquinonimine structure. The synthetic pheomelanin was compared with natural red pigments extracted from human red hair and from red chicken feathers. Spectroscopically, the chicken feather pheomelanin is almost identical to synthetic cysteinyldopa pheomelanin. In contrast, the pigment from red hair has a major spectral component very similar to that found in dopa melanin, with a smaller component corresponding to that found in cysteinyldopa melanin.

Cysteinyldopa↗

Role of thiol compounds in mammalian melanin pigmentation. II. Glutathione and related enzymatic activities.

Previously, we reported evidence suggesting that, in addition to tyrosinase, glutathione-reductase plays an important role in the regulation and control of the biosynthetic activity of melanocytes. Further investigations were performed on a mammal presenting a well-defined genotype for coat pigmentation, the mutant mouse [subline C57 BL (6J)], namely the nonagouti black (a/a) mutant and the yellow (Ay/a) mutant showing, respectively, pure uniform eumelanin and phaeomelanin pigmentation. Analysis of thiol compounds and glutathione-related enzyme levels in mouse skin gave similar results to those found in tortoise-shell guinea pig skin. The observed differences in the glutathione and glutathione-related enzyme content between black and yellow (or red) skin provide evidence that the increase of glutathione-reductase activity in the environment of the melanocytes may stimulate the pigment cells to produce phaeomelanin instead of eumelanin pigment.

Animals↗

Role of thiol compounds in mammalian melanin pigmentation: Part I. Reduced and oxidized glutathione.

Evidence for the postulated role of glutathione reductase in melanin pigmentation has been obtained by determinations of the glutathione concentrations in Tortoiseshell guinea pig skin of different colors (black, yellow, red, and white). As expected, the lowest levels of reduced glutathione (GSH) were found associated with eumelanin type pigmentation, whereas the highest ones were found in the skin with phaeomelanin producing melanocytes. On the other hand, white skin of guinea pig having no active melanocytes showed GSH levels which were intermediate between those of the black and yellow areas. These results are consistent with the view that the activity of the enzyme glutathione reductase, though not primarily related to pigmentation, plays an important role in the regulation and control of the biosynthetic activity of melanocytes leading to various types of melanin pigments.

Animals↗