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Macromolecular binding of the thyroid carcinogen 3-amino-1,2,4-triazole (amitrole) catalyzed by prostaglandin H synthase, lactoperoxidase and thyroid peroxidase.

3-Amino-1,2,4-triazole, a thyroid carcinogen and goitrogen, is negative in a wide variety of short-term mutagenicity assays. However, amitrole induces gene mutations and morphological transformation in Syrian hamster embryo fibroblasts, cells known to carry out the prostaglandin H synthase (PHS)-mediated peroxidative metabolism of other carcinogens. Therefore, we have investigated the peroxidase-mediated binding of [14C]amitrole to macromolecules in vitro. We report here the PHS- and lactoperoxidase-catalyzed binding of [14C]amitrole to protein and tRNA, as well as protein binding by rat and hog thyroid peroxidase. PHS was an order of magnitude more active than lactoperoxidase and two orders of magnitude more active than thyroid peroxidase. The low levels of binding observed with thyroid peroxidase could be explained by the rapid and potent inhibition of this enzyme by amitrole. Although the thyroid peroxidase-mediated binding of amitrole was quite low, it was not inhibitable by compounds that would be expected to be competing substrates in vivo (i.e. I-, monoiodotyrosine, diiodotyrosine). Neither catalase nor horseradish peroxidase catalyzed binding of [14C]amitrole. It was also observed that an interaction between amitrole and protein and/or nucleic acid resulted in the slow generation of hydrogen peroxide, which then served as a substrate to drive peroxidase-mediated binding of [14C]amitrole. These data suggest that PHS may be responsible for conversion of amitrole to a mutagenic intermediate in Syrian hamster embryo cells. Furthermore, the generation of reactive metabolites of amitrole by thyroid peroxidase and/or PHS may contribute to the complete carcinogenicity of this compound by adding a mutagenic response to its potent hormonal effects.

Amitrole

Mutangenicity and toxicity of amitrole. I. Drosophila tests.

Amitrole was highly toxic at early larval stages of Drosophila (LD50 is 40 ppm in medium). Toxicity of amitrole was also revealed by prolongation of development time even at 10 ppm. However, no mutagenic effects of amitrole were observed either in the sex chromosome non-disjunction test (females reared on medium containing amitrole at 10 ppm) or in the sex-linked recessive lethal test (males reared on medium containing amitrole at 10 ppm).

Amitrole

Evaluation of amitrole mutagenicity in Salmonella typhimurium using prostaglandin synthase activation.

Amitrole is a herbicide which has been found to induce thyroid and liver tumours in rodents, yet demonstrates limited genotoxic activity. The lack of mutagenicity of this compound in Salmonella typhimurium when employing a standard liver microsomal fraction, combined with evidence of activation of amitrole by peroxidases, warranted an investigation employing this other pathway of metabolic activation. Using prostaglandin H synthase as the activating system, the aromatic amine 2-aminofluorene provided a convenient positive control for optimisation of the metabolising system. Under such conditions, amitrole did not induce elevated numbers of revertant colonies in Salmonella typhimurium TA98, neither did it display evidence of interference with histidine biosynthesis as had been reported. Amitrole also remained nonmutagenic when preincubated at varying pHs. Thus, it has been shown that the alternative activation system, prostaglandin H synthase, does not produce metabolites which are mutagenic in the Ames test.

Amitrole

Mutagenicity and toxicity of amitrole. III. Microbial tests.

Amitrole (3-amino-1,2,4-triazole) inhibits bacterial growth both in Escherichia coli and Salmonella typhimurium at a concentration of 0.5% in minimal medium. Repression of growth already occurs at a concentration of 0.1% of amitrole in this medium. In complete medium the bacteria tolerate concentrations of amitrole as high as 1.7-2.4% before growth ceases. Mutagenicity was tested by differential growth comparisons on E. coli strains W 3110 thy pol A1, defective in DNA polymerase I, and its revertant pol A+. Known mutagens (MMS, NTG, mitomycin C) were used as positive controls. Analogous negative results were also obtained in a revertant test when several trp mutant strains of Salmonella were used.

Amitrole

Amitrole: strain differences in morphological response of the liver following subchronic administration to mice.

Strain differences in the induction of hepatocellular preneoplastic lesions by amitrole were examined in NOD, ICR and DS mice. Amitrole was administered to mice in drinking water at a dose of 1% for 6 months. After 3 months, hyperplastic nodules (HN) and severe fibrosis were prominent in NOD mice but not in other strains. On examination at 6 months, both number and size of HN were greatest in the NOD strain. Furthermore, a hepatocellular carcinoma was found in a NOD mouse, suggesting that this strain is more susceptible to amitrole-induced hepatocarcinogenesis than are ICR or DS mice.

Amitrole

Induction of multispored asci in two-spored strains of Saccharomyces cerevisiae by amitrole.

Although growth of two yeast strains characterized by consistent production of two diploid spores per ascus was inhibited in complex presporulation media containing amitrole, a fraction of the cells produced were able to form asci with more than two spores after transfer to acetate sporulation medium. Cells grown in a defined presporulation medium containing amitrole did not acquire this ability. The increase in spore numbers per ascus is attributed either to the induction by amitrole in growth medium of cells with more than one nucleus or to the restoration of normal meioses in the multispored asci.

Amitrole

Alveolar damage due to inhalation of amitrole-containing herbicide.

Amitrole-containing herbicides are commonly used by home and cottage owners for spraying grass. They are manufactured and distributed in the United States, Canada and throughout the world by several pharmaceutical/chemical industries under many different trade names, such as Amitrole-T, Amizol, Azolan, Cytrol and Weedazol. They have not been previously associated with pulmonary toxicity in man or laboratory animals. We describe the first case in which inhalation of amitrole herbicide resulted in diffuse, asymmetric, severe alveolar damage, which was reversed after treatment with high-dose corticosteroids.

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The effect of amitrole (3-amino-1H-1,2-4-triazole) on cytokinin activity and sexual reproduction in the yeast Schizosaccharomyces octosporus.

Cytokinin activity in extracts from actively growing cultures of Schizosaccharomyces octosporus was greatly reduced by exposure to amitrole (5 X 10--3M). Amitrole treatment, at the same concentration, stimulated cell enlargment and ascus production in this organism. These data suggest that a relationship may exist between low levels of endogenous cytokinins, cell expansion in preference to cell division, and ascus formation.

Amitrole

Mutagenicity and toxicity of amitrole. II. Human lymphocyte culture tests.

Effects of amitrole (3-amino-1,2,4-triazole) on human leucocytes in culture were investigated. Amitrole interfered with lymphoblast transformation and inhibited cell growth in concentrations of 0.2% w/v and higher. Selected metaphases were examined for the presence of chromosome and chromatid aberrations. No clastogenic effects were observed.

Amitrole

Sporulation in single-spore isolates from amitrole-induced multispored asci of Saccharomyces cerevisiae.

Amitrole treatment causes multispored ascus production by cells of a yeast strain whose asci normally contain two diploid spores. Single spores were isolated from asci containing two to eight spores and their ability to germinate was determined. Cells in colonies grown from single spores sporulated in the same manner as the parent strain indicating that amitrole had not induced meiotic division in the developing asci.

Amitrole

Studies on the action of pesticides upon the endocrines using in vitro human thyroid cells culture and in vivo animal models. I. Herbicides--aminotriasole (amitrol) and atrazine.

The action of aminotriasole (amitrol) and atrazine in doses of 0.001--1 mg and 0.0001--.01 mg/1.5 ml medium, respectively, upon cell cultures of human thyroid was studied in order to find out their influence on cell multiplication, proteic synthesis, enzymatic activity of thyroid cells, and hormonal synthesis. The results varied according to the dose utilized and the type of thyroid cell studied. The acute experiment carried out on rats treated 15 days with 500 ppm amitol and 50 ppm atrazine revealed variations in the T3, T4 and LH synthesis. Amitrol showed a strong inhibitory action on T3 and T4 secretion, whereas atrazine stimulated it.

Amitrole

Amitrole.

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Amitrole