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Biomedical subjects

H Hayatsu

Publications and source records attributed to H Hayatsu.

At least 73 records · Page 4Linked to original sources

8-Hydroxyguanine is not produced by permanganate oxidation of DNA.

Single-stranded M13mp2 DNA was oxidized with 0.8 mM KMnO4 at pH 8.6 and 4 degrees C for 5 min. These are conditions used previously by Akman et al. (Arch. Biochem. Biophys., 1990, 282, 202) for the oxidation of a denatured DNA and the authors reported that 8-hydroxyguanine was formed in the DNA with this treatment. We decomposed the oxidized DNA with heating in formic acid and the resulting bases were analyzed by HPLC. No significant 8-hydroxyguanine formation was detected in this sample. We also investigated the consumption of KMnO4 by nucleosides. Under conditions in which thymidine consumed KMnO4 rapidly, very little consumption was found with deoxyguanosine (less than 1/100, in rate, compared to that by thymidine). These results show that the permanganate oxidation of DNA does not result in the formation of 8-hydroxyguanine.

DNA Damage↗

Nucleoside and nucleobase analog mutagens.

Compounds with structures close to those of normal nucleosides or nucleobases may be incorporated into cells and then become constituents of their DNA. Proliferation of such cells could yield mutants. In this article, the current status of studies on such nucleoside and nucleobase analogs is described. Base mispairing mechanisms for these analogs are discussed in light of recent biochemical and biophysical findings.

Animals↗

Ubiquitous presence of mutagenic and antimutagenic components in air-borne particulates of two Japanese cities.

Previous studies on several samples of urban air-borne particulates showed that the long-chain fatty acids present in these samples can interfere with the measurement of mutagenicity of the particulates with the Salmonella assay. To explore whether this phenomenon is a general, fatty acid contents and the mutagenicity (with Salmonella typhimurium TA98 without S9) were measured for 34 particulate samples collected in the cities of Okayama and Tokyo over a period of 1 year. Palmitic, stearic, oleic and linoleic acids were found in all these samples in this order of amount, and their interference on mutagenicity measurement was eminent, particularly at high doses of the sample. With the use of blue cotton extraction, the mutagenic components can be freed from most of these antimutagenic factors. Significant correlation was found between the number of particulates and the mutagenicity per unit volume of the air. Eight polycyclic aromatic hydrocarbon compounds, including benzo[alpha]pyrene were quantified for these 34 particulate samples. Their contents were too small to account for the observed mutagenicity, suggesting that other polycyclic compounds, possibly involving nitro aromatics, were responsible for the mutagenicity observed. No remarkable differences were noted between Okayama and Tokyo in fatty acid contents, mutagenicity or polycyclic aromatic-hydrocarbon contents of the samples.

Air Pollutants↗

Suppressing effect of Lactobacillus casei administration on the urinary mutagenicity arising from ingestion of fried ground beef in the human.

It is known that the ingestion of cooked meat which contains carcinogenic heterocyclic amines causes increase in urinary mutagenicity in humans. Using 6 healthy non-smokers, we examined the effect of 3-week oral administration of Lactobacillus casei (bacilli commonly present in yoghurt), on the urinary mutagenicity derived from ingestion of fried ground beef. Comparison of the urinary mutagenicity found before and after the L. casei treatment showed that the treatment resulted in a decrease (6-67%, average 47.5%) of the mutagenicity. This suppressing effect is possibly related to the changes in the intestinal microflora population.

Adult↗

Binding of polycyclic planar mutagens to chlorophyllin resulting in inhibition of the mutagenic activity.

Chlorophyllin is known to inhibit the mutagenicity of a variety of compounds. Using highly purified samples of chlorophyllin and its family compounds, we studied the mechanism of the inhibition. Since mutagens with polycyclic planar structures are particularly strongly inhibited, it seemed likely that the inhibition arises by trapping of the mutagens by chlorophyllin through complex formation at the planar surfaces of these molecules. To explore this possibility, we prepared a Sepharose bearing covalently linked chlorophyllin as ligand, and the adsorption of mutagens to this Sepharose was measured. Three different chlorophyllin derivatives were used, i.e., copper-chlorin, iron-chlorin and chlorin, to investigate the role of metal in the center of the chlorophyllin chromophore. Adsorption of 37 different compounds, mostly mutagens, in 0.02 M Tris-HCl buffer at pH 8.0 to these chlorophyllin-Sepharose preparations was studied in a quantitative manner. The results showed that most of the compounds having three or more fused rings were strongly adsorbed with apparent dissociation constants of 10(-5)-10(-6) M, whereas those having two fused rings or one ring were only poorly adsorbed. Since the three Sepharose adsorbents gave similar adsorption profiles, it appeared that the central metal in the chlorophyllin molecule does not play a crucial role in the adsorption. We also measured the inhibitory effect of copper-chlorin against the mutagenicity of some of these compounds using the Salmonella assay. The results showed that those mutagens that were strongly adsorbable to copper-chlorin-Sepharose were subject to efficient inhibition by copper-chlorin, whereas many of those only poorly adsorbed were inhibited only weakly. We concluded that trapping by complex formation plays a role in the antimutagenic actions of chlorophyllin against many mutagens, particularly notable being the actions against ICR-170, quinacrine, aflatoxin B1, Trp-P-1 and Trp-P-2. An unusual behavior of Trp-P-2 in the adsorption process, i.e., a very tight complex formation at an extremely low Trp-P-2 concentration, was found; the implication of this phenomenon in relation to the real environmental setting is discussed.

Adsorption↗

Porphyrins as potential inhibitors against exposure to carcinogens and mutagens.

Studies have shown that there are many substances that can interfere with the actions of carcinogens and mutagens. Porphyrins, which often are constituents of diet, are a class of such inhibitors. Hemin can inhibit selectively the activity of mutagens having polycyclic structures by forming complexes with them. These effects were found with the use of bacterial assays and also by in vitro chemical experiments. A survey of porphyrins for similar effects has been done in our laboratory and it was found that chlorophyll and chlorophyllin act like hemin. These green pigments are antimutagenic in Salmonella and in Drosophila. Work from other laboratories also has supported the antimutagenic character of chlorophyllin. The possibility of modifying human exposure to carcinogens by use of these porphyrins is discussed. A porphyrin-like molecule, copper phthalocyanine trisulfonate, has been shown to have strong affinity to polycyclic compounds. Blue cotton, a cotton preparation bearing this blue pigment as a covalently bound ligand, has been demonstrated to be an adsorbent useful for isolating heterocyclic amines from food and other materials.

Animals↗

Mutagenicity of blue rayon extracts of human bile in the Ames test.

The mutagenicity of human bile was examined in the Ames Salmonella/microsome assay. Bile samples were obtained from the gallbladders resected from patients with cholelithiasis, choledocholithiasis, gallbladder cancer, extrahepatic bile duct cancer and other diseases. For extraction of mutagenic components, the bile samples were treated with blue rayon and the adsorbed materials were assayed with Salmonella typhimurium TA98 in the presence of S9 mix. Twenty-four bile samples were tested and positive mutagenic activity was found in 14 samples. A 200-microliter bile equivalent material gave 6.3 times as many revertant colonies as the solvent control. With several samples that had undergone two cycles of blue rayon extraction, clear dose-response relationships in mutagenicity were demonstrated.

Adult↗

[Chemical modification of nucleic acids and the mutagenicity of modified bases, with special reference to permanganate- and bisulfite-mediated modifications].

Methods for modifying nucleic acids and their components with permanganate and with bisulfite are reviewed, with emphasis on work developed by the author's group of investigators. N(4)Aminocytidine, a nucleoside analog obtainable on bisulfite-hydrazine modification of cytidine, is a potent mutagen, and the mechanism of its action in the mutagenesis is discussed.

Manganese↗

Nucleotides bearing a cleavable genotoxic group on the phosphate.

A new class of nucleotide derivatives in which N-nitroso-pyrrolidine (NPYR) is linked to the phosphate group through an ester linkage at the alpha-carbon of the nitrosamine were prepared by a reaction between a nucleoside monophosphate and alpha-acetoxy-NPYR. The NPYR derivatives were prepared from dpT, dpC, dpA, dpG, pA and dpCpT. Treatment of the NPYR-pX with acid, snake venom phosphodiesterase, or near ultraviolet light caused cleavage of the NPYR group, regenerating pX. All of these nucleotide derivatives were directly mutagenic towards Salmonella typhimurium TA1535. When phage M13mp2 double-stranded covalently closed circular DNA was treated with NPYR-dpT with near ultraviolet irradiation, single strand breaks of the DNA took place.

Bacteriophage M13↗

Blockage of polymerase-catalyzed DNA chain elongation by chemically modified cytosine residues in templates and the release of blockage for readthrough.

The Klenow fragment-mediated in vitro DNA elongation was inhibited by the presence of a class of modified cytosines in the template DNA, i.e., the N4-amino(and -methoxy)-5,6-dihydrocytosine-6-sulfonate residues. We have studied the mechanism of the blockage, using as templates bisulfite-hydrazine (and -methoxyamine)- modified single strand phage-M13mp2 DNA and synthetic oligonucleotides. Both N4-amino-5,6-dihydrocytosine-6-sulfonate and N4-methoxy-5,6-dihydrocytosine-6-sulfonate residues blocked the elongation at one nucleotide before these sites. In this blockage, the idling of polymerase at the lesion site due to its 3'-5' exonuclease action appears not to play a major role, because Sequenase that lacks the 3'-5' exonuclease activity still could not readthrough these sites. It seems possible that conformational distortion of the template near these sites is responsible for the blockage, because on conversion of this 5,6-dihydropyrimidine-6-sulfonate structure into a planar pyrimidine, a complete restoration of polymerase-readthrough resulted. In the presence of RecA and SSB proteins, the Klenow fragment was able to partially readthrough these sites. Since there was no decrease in the 3'-5' exonuclease activity during this readthrough, it seems that the binding of these proteins relaxes the distortion in the modified template to allow the polymerase to readthrough the lesion site. These sites on phage DNA can be lethal but also are capable of inducing C-to-T transitions. This observation suggests that these sites can be read by E. coli DNA polymerases in vivo with accompanying errors.

Bacteriophages↗

Cellulose bearing covalently linked copper phthalocyanine trisulphonate as an adsorbent selective for polycyclic compounds and its use in studies of environmental mutagens and carcinogens.

A method useful as a preconcentration technique for isolating mutagens and carcinogens is described. Cotton bearing covalently linked copper phthalocyanine trisulphonate as ligand (blue cotton) can adsorb selectively compounds having three or more fused rings. The adsorption takes place in aqueous media, involving 1:1 complex formation between the ligand and the polycyclic compound. The desorption can be done by elution with organic solvents, most effectively with methanol containing ammonia. As many important environmental mutagens and carcinogens are polycyclics, this adsorption is useful as a means of extracting this class of materials from crude samples such as food, urine and river waters. The use of copper phthalocyanine as a ligand for chromatographic supports has recently been initiated, yielding promising results for the effective separation of polycyclic aromatic compounds from each other.

Adsorption↗

Potentiation of the antitumor activity of 5-trifluoromethyl-2'-deoxyuridine by the use of depot forms of the parent compound.

5-Trifluoromethyl-2'-deoxyuridine (CF3dUrd), an antitumor agent, is known to be short-lived in human plasma. Since its rapid elimination from the bloodstream seems to have descouraged the clinical evaluation of this drug, we explored the potential use of masked derivatives of CF3dUrd as "depot" forms of the parent compound. First, we observed that the toxicity of CF3dUrd against HeLA cells in culture was 10(4) times greater for a 24-h treatment as compared with a 1-h treatment at identical concentrations of the drug, which suggests the importance of using a prolonged treatment period. In fact, the divided dosing of CF3dUrd to L1210-bearing mice was markedly more effective than its single administration. 5'-O-Hexanoyl-, N3-p-butylbenzoyl-, 5'-O-benzyloxy-methyl-, and 3'-O-benzyl-CF3dUrd were found to be effective in maintaining the CF3dUrd concentration in plasma. The oral doses of these agents required to achieve 50% growth inhibition (ED50) in mice bearing sarcoma 180 tumors were 19, 34, 10, and 13 mg kg-1 day-1, respectively, whereas that of CF3dUrd was 63 mg kg-1 day-1. The ED50 values for these compounds were inversely correlated with the residence time of CF3dUrd in plasma. The therapeutic indices of these compounds, calculated as the dose producing a 50% inhibition of body-weight gain (IB50) divided by the ED50 value (1.89, 1.21, 1.40, and 2.15, respectively), were significantly higher than that of CF3dUrd (0.78). Consequently, these depot forms of CF3dUrd, particularly 3'-O-benzyl-CF3dUrd, are expected to be more useful than the parent compound as antitumor agents.

Animals↗

Analysis of phage M13mp2 mutants produced from transfection of phage DNA having N4-aminocytosines at defined sequence positions.

N4-Aminocytidine is mutagenic in various organisms. In the cell, this cytidine analog is metabolized into N4-aminodeoxycytidine 5'-triphosphate, which will then be incorporated into DNA and mutation will result during the replication of the DNA. To prove that the N4-aminocytosine residue in DNA is indeed the site of mutagenesis, we prepared a series of phage M13mp2 DNA samples that bear N4-aminocytosine residues at a few defined positions in the lacZ alpha region, by carrying out in vitro limited extension of primed phage DNA. We then transfected the DNAs to Escherichia coli and examined the progeny phages for the forward mutations. The M13mp2 DNAs bearing N4-aminocytosines produced mutant phages at high frequencies. Furthermore, DNA sequencing of the resulting mutants demonstrated that both AT-to-GC and GC-to-AT mutations took place at those positions where N4-aminocytosine residues were originally present.

Bacteriophages↗

Suppression of genotoxicity of carcinogens by (-)-epigallocatechin gallate.

Epidemiological evidence shows that green tea may be a factor in lowering cancer risk. We have investigated the possibility that (-)-epigallocatechin gallate (EGCG), a major polyphenol in green tea, might be an antimutagenic substance. In the Ames Salmonella test, EGCG suppressed the direct-acting mutagenicity of 3-hydroxyamino-1-methyl-5H-pyrido-[4,3-b]indole (Trp-P-2(NHOH)) and 2-hydroxyamino-6-methyldipyrido[1,2-a:3',2'-d]imidazole (Glu-P-1(NHOH)), the activated forms of food-derived carcinogens 3-amino-1-methyl-5H-pyrido[4,3-b]indole and 2-amino-6-methyldipyrido[1,2-a:3',2'-d]imidazole. EGCG was also effective in reducing the mutagenicity of Trp-P-2(NHOH) in mouse FM3A cells in culture. Furthermore, EGCG demonstrated a suppressive effect in the in vivo Drosophila mutation assays, i.e., the wing spot test, and the DNA repair test, on several carcinogens. EGCG was also effective in inhibiting DNA single-strand breaks in vitro caused by Glu-P-1(NHOH). We conclude that the mechanism of inhibition may not have resulted from direct interaction between EGCG and the mutagens, but rather from indirect interception of mutagen action by EGCG.

Animals↗

Modified metabolism of a carcinogen, 3-amino-1-methyl-5H-pyrido[4,3-b]indole (Trp-P-2), by liver S9 from Schistosoma japonicum-infected mice.

Schistosoma japonicum infection has been associated with an increased incidence of liver and colorectal cancers in humans. To explore the mechanisms underlying this association, we investigated the carcinogen-metabolizing properties of liver S9 preparations from S. japonicum-infected mice and compared them with those of S9 from uninfected animals. When the carcinogen 3-amino-1-methyl-5H-pyrido[4,3-b]indole (Trp-P-2) was incubated with these S9s and the products were analyzed by high-performance liquid chromatography, we observed that the S9 from infected mice had a lower ability to convert Trp-P-2 into 3-hydroxyamino-1-methyl-5H-pyrido[4,3-b]indole (Trp-P-2(NHOH)), an activated form of promutagenic Trp-P-2, than the S9 from uninfected mice. We found that both of these S9 preparations have a high ability to reduce Trp-P-2(NHOH) into Trp-P-2; however, the infected-mouse S9 showed a significantly greater reducing power than the control S9. This difference appears to be responsible for the observed lower mutagen-activating potential of the infected mouse S9. These results suggest that hepatic enzyme activities of S. japonicum-infected mice are quantitatively different from those of normal mice.

Animals↗

The genotoxicity of UVA irradiation in Drosophila melanogaster and the synergistic action of 8-methoxypsoralen and UVA.

To study the genotoxicity of near-ultraviolet light (UVA) on a whole body, Drosophila melanogaster larvae were irradiated with UVA and the emerging flies were examined for the mutant wing spot formation. The genotoxicity of UVA was also assayed with the in vivo DNA-repair test using males with repair-deficiency at the mei-9 and mei-41 locus and the matching repair-proficient females. Third-instar larvae were placed in a plastic Petri dish, which was covered with soft glass, and irradiated with black light at 4-5 W/m2. This irradiation resulted in an increase in mutant wing-hair spots. After a 15 h irradiation (approximately 240 kJ/m2), the mutant clone frequencies found in the adult flies (spots/wing) were: 1.68 for the small single spots, 0.38 for the large single spots and 0.11 for the twin spots, while at zero time they were 0.68, 0.06 and 0.02 respectively. On the other hand, the UVA irradiation was negative in the in vivo DNA-repair test, indicating that the UVA-induced DNA lesion may not be subject to repair by the mei-9 and mei-41 functions. The presence of 8-methoxypsoralen (8-MOP) during the irradiation remarkably enhanced somatic mutations, and showed a strong DNA-damaging effect in the repair test. For example, a 15 h UVA irradiation with 26.7 microM 8-MOP resulted in a 14-fold increase in the number of twin spots per wing as compared with the frequency obtained on treatment with UVA alone. Treatment of the larvae with 8-MOP alone gave no mutant clones or DNA damage. A high frequency in twin spot formation was also observed in this UVA + 8-MOP treatment, indicating that extensive chromosomal recombinations took place in the somatic cells.

Animals↗