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1.
Mutagenesis induced by dimethylnitrosamine (DMN) and N-methyl-N-nitrosourea (NMU) in Salmonella typhimurium TA100 and TA1530 is characterized by biphasic dose and time response curves. At low doses or short incubation times mutagenic response is minimal, but increases rapidly when an apparent threshold dose or threshold incubation time is exceeded. Bacteria pretreated with subthreshold doses of DMN or NMU were many times more sensitive to the mutagenic effects of methylating and ethylating N-nitroso compounds than were untreated bacteria. The growth phase of the bacteria had little effect on the percentage enhancement of mutagenesis caused by pretreatment with NMU although exponentially growing cells were more sensitive to mutagenesis induced by NMU or diethylnitrosamine. Mutagenesis induced by methylmethanesulfonate and N-propyl-N'-nitro-N-nitrosoguanidine was not significantly enhanced by pretreatment of bacteria with NMU or NEU suggesting that the former mutagens act by different mechanisms than NMU or NEU.  相似文献   

2.
Mutagenesis induced by the N-nitroso compounds: N-nitrosomethylurea, N-nitrosoethylurea, N-nitrosodi-n-propylamine and N-nitrosopyrrolidine was measured in Salmonella typhimurium TA100, TA102 and TA104. TA100 detects damage mainly at G-C base pairs while TA102 and TA104 can detect damage at A-T base pairs. In general all strains were similarly sensitive, except that TA104 was much less sensitive to high doses of N-nitroso-N-methylurea. In TA104 a significant percentage of the revertants induced by all agents except NMU resulted from point mutations at A-T base pairs, indicating that adenine or thymine DNA adducts are important premutagenic adducts formed by certain N-nitroso compounds.  相似文献   

3.
Mutations controlling the resistance to 6-mercaptopurine (6-M) and the ability to multiply in a medium with a low concentration of glucose (“glucose-independent” mutants) were induced in cultured Chinese hamster cells by N-nitrosomethylurea (NMU), 5-bromodeoxyuridine (BUdR), UV and X-rays. The chemical agents were found to be very active in induction of mutations to 6-M resistance (NMU and BUdR) and mutations of “glucose independence” (NMU). These agents increase the yield of mutations as compared to the spontaneous mutation rate by about two orders of magnitude. The induced rate of 6-M-resistant mutations by X-rays was 2.0 ? 10−7 per viable cell per roentgen. BUdR approximately equally increases the cell's sensitivity to both inactivating and mutagenic action of X-rays. The maximum induction of mutations to 6-M resistance by UV was observed at 100 erg/mm2. This dose leads to 1 16-fold increase of the mutation frequency as compared to the spontaneous rate. Further increase of the UV dose up to 200 erg/mm2 resulted in a lower yield of mutations per dose unit. The highest yield of mutations to 6-M resistance induced by NMU, BUdR and X-rays was observed if cells were plated in selective medium several generations after the mutagenic treatment. The maximum yield of mutations to 6-M resistance induced by UV and of glucose-independence induced by NMU was recorded if cells were transferred to selective media immediately after treatment. The kinetics of expression of mutations and the decline of their number observed after prolonged incubation of treated cells in nonselective conditions are discussed.  相似文献   

4.
Dimethylnitrosamine (DMN) and diethylnitrosamine (DEN) are not mutagenic by themselves, but they can be converted by mammalian enzymes to highly mutagenic products. As indicators for mutagenic activity, Neurospora crassa and Salmonella typhimurium were used. The ad-3 forward-mutation system was used to detect specific locus mutations; mutants in this system can range from multi-locus deletions to leaky mutations. The induction of mutations in S. typhimurium is detected as induction of histidine revertants of the histidine-requiring strain G46. The activation of DMN is microsomal, inhibited by SKF 525-A, and requires co-factors. The activating enzyme is induced in mice by pretreatment with phenobarbital, 3-methylcholanthrene and butylated hydroxytoluene. The mutagenic activity of the reaction products is directly correlated with the metabolic formation of formaldehyde with and without induction by 3-methylcholanthrene and across strains of mine. Formaldehyde does not contribute to the mutagenic activity of the reaction products. It is clear from the data that the reversion sites in G46 are more sensitive than the ad-3 loci of Neurospora crassa to the mutagenic action of DMN metabolites formed by mammalian liver. The microsomal assay is a few orders of magnitude more sensitive than the intraperitoneal host-mediated assay, and the intrahepatic host-mediated assay is a few orders of magnitude more sensitive than the in vitro microsomal system.  相似文献   

5.
S Neale 《Mutation research》1972,14(2):155-164
N-Nitroso-N-methylurea (NMU) and N-nitroso-N-ethylurea (NEU) induced reversions in four mutant auxotropic strains of E. coli. Among other nitroso compounds tested only N-methyl-N′-nitro-N-nitrosoguanidine (MNG) was an active mutagen in the system used.  相似文献   

6.
Pretreatment of mice with acetone enhances the microsomal N-demethylation of dimethylnitrosamine (DMN) at low substrate concentrations (<5 mM), while pretreatment with Aroclor 1254 represses this activity at low, but enhances it at high (> 35 mM) DMN concentrations. To relate the activity of DMN demethylase with the mutagenicity of DMN, liver microsomes were isolated aseptically from mice 18 h after acetone (3 ml/kg, ip), 5 days after Aroclor 1254 treatment (500 mg/kg, ip), or after treatment with the appropriate injection vehicles, and incubated with S. typhimurium (TA 1535), NADPH and DMN (1, 3 or 70 mM) for 5 to 60 min. After a 48-h incubation on minimal media, revertants per plate were determined. Microsomes from acetone pretreated mice bioactivated DMN to a mutagen at significantly higher (p < 0.001) levels when incubations were performed at 1 mM DMN. Aroclor-1254 microsomes exhibited a decreased ability to convert DMN to a mutagen at both 1 and 3 mM DMN (p < 0.05) and a significantly higher (p < 0.05) ability at 70 mM DMN. These data and published reports suggest multiple microsomal enzymes for DMN bioactivation and that acetone may enhance the enzyme that operates at environmentally important levels of DMN.  相似文献   

7.
Summary Reverse mutation experiments were performed with the site ad6-45 in Saccharomyces cerevisiae and two gene loci of Neurospora crassa ad (38701) and inos (37401). The mutant in yeast could be reverted with nitroso-methyl- (NMU) and nitroso-ethylurethane (NEU) but was refractory to methyl methanesulfonate (MMS) and diethylsulfate (DES). In Neurospora NMU reverted both requirements, DES only the adenine requirement, NEU reverted neither one. Thus the mutagenic specificity of an agent depends on the structure of the entire molecule, transport-form, rather than on its ability to methylate or ethylate.  相似文献   

8.
The hair-dye component N-methylamino-2-nitro-4-N′,N′-bis(2-hydroxyethyl)aminobenzene was investigated for mutagenic activity in Salmonella typhimurium strains TA1535, TA100, TA1537, TA1538 and TA98. The testing was performed in the absence and in the presence of a rat-liver microsomal activation system induced by Aroclor 1254. Our results indicate that N-methylamino-2-nitro-4-N′,N′-bis(2-hydroxyethyl)aminobenzene does not induce mutations in Salmonella typhimurium strains, either in the absence or in the presence of the metabolic activation system. The purity of the compound was controlled by utilizing high-pressure liquid chromatography (HPLC) and thin-layer chromatography (TLC).  相似文献   

9.
Low doses of -cysteine (CYS), cysteinyl-glycine (CYSGLY) and reduced glutathione (GSH) activated by γ-glutamyl transpeptidase (GGT) were mutagenic in strain IC203 (oxyR), whereas higher doses were required to observe a weak mutagenicity in the oxyR+ strain WP2 uvrA/pKM101 (denoted IC188). This indicates that thiol mutagenesis is suppressed by OxyR-regulated antioxidant defenses and confirms its oxidative character. The mutagenesis by low doses of CYS, CYSGLY and GSH+GGT detected in IC203 was abolished by rat liver S9, through the activity of catalase, as well as by the metal chelator diethyldithiocarbamate (DETC), supporting the dependence of this mutagenesis on H2O2 production, probably in thiol autoxidation reactions in which transition metals are involved. Surprisingly, low DETC concentrations greatly potentiate the mutagenicity of low CYS doses. Mutagenesis by high doses of CYS and CYSGLY occurred in both IC203 and IC188 in the presence of liver S9, and was resistant to inhibition by catalase, although it was prevented by DETC. Mutagenesis by GSH activated by rat kidney S9, rich in GGT, was detected in IC203 and IC188 only at high doses since catalase and glutathione peroxidase, both present in kidney S9, might inhibit its induction by low GSH doses. In the presence of liver S9, almost deficient in GGT, GSH was not mutagenic. The mutagenicity of a high GSH dose occurring in the presence either of GGT plus liver S9 or of kidney S9 was weakly prevented by DETC.  相似文献   

10.
Various E. coli mutants, deficient in DNA repair, differed in their response to increasing concentrations of N-nitroso-N-methylurea (NMU).Loss of viability due to exposure to NMU was greatest in those strains with a reduced capacity for repair of single-strand breaks. Viability of wild-type and uvrA? strains was not affected by NMU concentrations up to 3.0 mM. Some loss of viability occurred, at the higher NMU concentrations, in both strains carrying exrA? while strains carrying uvrA?polA? or recA? were the most sensitive. The results support the hypothesis that the lethal effect of NMU on repair-deficient E. coli was due to its ability to induce single-strand breaks.Induction of mutations by NMU was observed in all the strains used and the results suggested that NMU damage per se was the major mutational event. The dose response curve for induction of revertants by NMU was, however, influenced by the repair system(s) present. The number of revertants scored at the higher NMU concentrations was greater in those strains lacking the recA and polA dependent repair functions than in the wild-type strain. However, at NMU concentrations below 2.0 mM the numbers of revertants induced in exrA? carrying strains, prossessing accurate rec-dependent repair, were lower than the comparable wild-type values. The evidence suggests that the uvrA gene product also acts on some, possibly non-mutagenic, types of NMU damage and that error-prone repair of these lesions increases the number of potential revertants.  相似文献   

11.
The effects of treatment with the chemical mutagen N-nitroso-N-methylurea (NMU) on the survival rate, morphological variability, and the level of production of cyclosporine A (CyA) in the Tolypocladium inflatum subsporum blastosporum strain VKM F-3630D were studied. The range of exposure to the dose of the mutagen (incubation time and concentration of HMU) was determined. The lethal and sublethal doses, as well as the conditions under which the highest variability in the levels of CyA production was observed, were determined. It was shown that the most efficient method to further increase CyA production in the studied high-producer T. inflatum strain is mutagenic treatment with 0.1% HMU for 2 h. In this case, we observed a relatively high level of survival of clones (80–85%), a low level of their morphological variability (10–15%), and a wide range in the CyA production level (80–170%) as compared to the original strain. This enabled us to select a number of clones with an increased CyA production level. The yield of the target metabolite was maximal in clone no. 13-27, where the CyA production level increased by 1.6–1.7 times.  相似文献   

12.
The effects of caffeine (2 mg/ml) and the protease inhibitor antipain (1.75 mb/ml) in the plating agar medium on the yields of prototrophic revertants induced by 10 mutagens in E. coli uvrA? strains were tested. Mutagenesis by 4-nitroquinoline 1-oxide was greatly diminished by both caffeine and antipain. UV mutagenesis was decreased moderately by caffeine, and greatly by antipain. X-Ray mutagenesis was decreased very slightly by both caffeine and antipain. Mutagenesis by N-hydroxyurethan was inhibited moderately by caffeine, and greatly by antipain; that by methyl methanesulfonate was inhibited moderately by both caffeine and antipain, and that by N-methyl-N′-nitro-N-nitrosoguanidine wa was not suppressed by caffeine but was inhibited moderately by antipain. Mutagenesis by ethyl methanesulfonate was inhibited greatly by caffeine, but only slightly by antipain. The antimutagenic effect of caffeine was strong on furylfuramide (AF-2) mutagenesis, moderate on that of mitomycin C (tested with B/r type strain) and negligible on that of N-methyl-N-nitrosourea. These diverse antimutagenesis patterns are briefly discussed in relation to the current idea that antipain antimutagenesis is due to inhibition of inducible error-prone repair.  相似文献   

13.
The commercially available volatile anesthetic fluroxene (2,2,2-trifluoroethyl vinyl ether) which contains the stabilizer N-phenyl-1-napthylamine, was tested for mutagenicity using four strains of S. typhimurium, TA1535, TA1537, TA98 and TA100, and one strain of E. coli, WP2. In addition, purified fluroxene; N-phenyl-1-napthylamine; trifluoroethanol, a major metabolite of fluoroxene; and urine from rats anesthetized with fluroxene were tested. Several procedures were utilized including exposure of bacteria to vapor in desiccators and in liquid suspension. Results indicate that fluroxene, but not its stabilizer, was mutagenic to strains TA1535, TA100 and WP2 only in liquid suspension and only in the presence of a rat-liver enzyme system. Trifluoroethanol and urine from fluroxene-treated rat were not mutagenic to any strain of bacteria. These findings indicate that fluroxene is a promutagen which requires preincubation before it is recognized. Further experiments were performed with enzymes prepared from mouse, hamster and human liver. Fluroxene was mutagenic only in the presence of enzymes prepared from Aroclor 1254 pretreated rodents. Since fluroxene was not mutagenic in the presence of enzymes prepared from three human livers, the significance of these findings to man are unclear.  相似文献   

14.
We have previously reported the isolation of an Escherichia coli K12 mutant that is extremely sensitive to mutagenesis by low doses of ethylating agents. We now show by Southern analysis that the mutation involves a gross deletion covering at least the ogt and fnr genes and that no O6-alkylguanine-DNA-alkyltransferase activity is present in cell-free extracts of an ada::Tn10 derivative of these bacteria. Confirmation that sensitisation to ethylation-induced mutagenesis was attributable to ogt and not to any other loci covered by the deletion was obtained by constructing derivatives. Thus an ogt::kanr disruption mutation was introduced into the parental ogt + bacteria, and the ogt::kanr mutation was then eliminated by cotransduction of ogt + with the closely linked Tet r marker (zcj::Tn10). The Δ(ogt-fnr) deletion or ogt::kanr disruption mutants were highly sensitive to ethyl methanesulphonate-induced mutagenesis, as measured by the induction of forward mutations to l-arabinose resistance (Ara1). Furthermore, the number of Arar mutants increased linearly with dose, unlike the case in ogt + bacteria, which had a threshold dose below which no mutants accumulated. Differences in mutability were even greater with propyl methanesulphonate. Overproduction of the ogt alkyltransferase from a multicopy plasmid reduced ethylmethanesulphonate-induced mutagenesis in the ogt mutant strains and also methylmethanesulphonate mutagenesis in ada ? bacteria. A sample of AB 1157 obtained from the E. coli K12 genetic stock centre also had a deletion covering the ogt and fnr genes. Since such deletions greatly influence the mutagenic responses to alkylating agents, a survey of the presence of the ogt gene in the E. coli K12 strain being used is advisable.  相似文献   

15.
C C Huang 《Mutation research》1987,187(3):133-140
When the Chinese hamster cell line V79 and the tester strain of Salmonella typhimurium TA100 were treated with the precarcinogens dimethylnitrosamine (DMN) or diethylnitrosamine (DEN) in the presence of S9 mix, a dose-dependent increase of sister-chromatid exchanges (SCE) in V79 cells and His+ revertants in TA100 resulted. DMN was a far more efficient SCE inducer than DEN, while DEN was a more efficient inducer of His+ revertants than DMN. Retinol (Rol) effectively inhibited DMN and DEN induced SCE in V79 cells and His+ revertants in TA100. Concurrent treatment of V79 cells with Rol at various doses and one dose of DMN or DEN in the presence of S9 mix caused a significant reduction of SCE as compared to SCE induced by DMN or DEN without Rol. Rol inhibition of DMN-induced SCE was dose-dependent. Rol was less efficient in inhibiting DEN-induced SCE, and no consistent dose-dependent inhibition was observed. At all doses, Rol significantly inhibited DMN and DEN induced mutation frequencies in TA100. At the highest dose of Rol (40 micrograms/plate), the inhibition of DMN and DEN induced His+ revertants reached about 90% and 60%, respectively. The possibility that Rol exerts its antimutagenic activities by inhibiting certain forms of the cytochrome P-450 isoenzymes required for activation of precarcinogens such as DMN and DEN is discussed.  相似文献   

16.
The genetic properties of the hepatocarcinogen N,N-dimethylnitrosamine (DMN) were examined in Drosophila for the assessment of the role of dose, cellular metabolism and genic target in its mutagenicity. Genetic activity was assayed with respect to the induction of the non-specific X-chromosome recessives (lethals and visibles) relative to the effects on specific genic sites, especially rDNA, which yields bobbed (bb) mutations.Dose dependence followed a quadratic course for all mutational classes and germ cell types, which indicated that DMN induced at least some multiple-hit mutagenic events. The genetic activity of DMN was favoured by cellular metabolism for all mutational classes, as was indicated by the progressive increase in mutation yield during spermatogenesis — from the metabolically inert mature sperm to the actively metabolizing spermatocytes and spermatogonia.The role of DNA methylation in the mutagenicity of DMN was deduced from quantitative assays of its genetic activity relative to the methylating nitrosamide — N-methyl-N-nitrosourethane (MNUr) — over the same dose range (1–10 mM) and on identical cell types and genic targets. In the metabolically inert cells (mature sperm), the two compounds were equally active with respect to the non-specific effects (X-recessives), but MNUr was considerably more effective on rDNA (bb's). Conversely, in the metabolically active cells (spermatocytes and spermatogonia), DMN exerted a much higher non-specific mutagenicity than MNUr, but the two compounds were equally effective on rDNA. These results could not be entirely interpreted by the methylation hypothesis and indicated that a DMN aldehydic metabolite, structurally analogous to MNUr, might be responsible for the induction of the rDNA mutations.The rDNA selectivity index of DMN was significantly lower than for MNUr, which paralleled their relative carcinogenic versatilities. However, DMN was comparatively more effective on the tRNA genes, a feature which might be associated with its oncogenic specificity.  相似文献   

17.
Mutagnic and growth-inhibitory effects of 2-amino-N6-hydroxyadenine, 2-amino-N6-methoxyadenine and 2-amino-N6-methyl-N6-hydroxyadenine were examined on S. typhimurium TA1530. All compounds showed strong mutagenic activity, and 2-amino-N6-hydroxyadenine induced mutations at a dose as low as 1 μg/ml. 2-Amino-N6-hydroxyadenine and, to a lesser extent, 2-amino-N6-methyl-N6-hydroxyadenine (but not 2-amino-N6-methoxyadenine) exerted inhibitory effects on bacterial growth. The specificity of mutagenic action of these base analogs, as well as the target for reversion of the his marker in TA1530, is discussed.  相似文献   

18.
The recent finding that the clinical nitrovasodilator, glyceryl trinitrate (GTN), is mutagenic in Salmonella typhimurium strain TA1535 has been examined in closer detail, with emphasis on its mechanism of action. GTN increased the number of His+ revertants to a maximum of 4 times over background at a GTN dose of 5 μmol/plate. Hamster liver S9 depressed the toxicity of high GTN doses and increased the maximum number of revertants to 5 times over background at 10 μmol/plate. GTN did not cause significant reversion in any of the six other S. typhimurium strains tested (TA1975, TA102, TA1538, TA100, TA100NR, YG1026), although signs of toxicity were observed. Therefore, the mutagenicity of GTN was manifest only in the repair-deficient (uvrB and lacking in pKM101) strain which is responsive to single base changes. Oligonucleotide probe hybridization of TA1535 revertants showed that virtually all of the GTN-induced mutants contained C → T transitions in either the first or second base of the hisG46 (CCC) target codon, with a preference for the latter. A similar mutational spectrum was seen previously with a complex of spermine and nitric oxide (NO) which releases nitric oxide. This suggests that NO, which can be derived from GTN via metabolic reduction, may be responsible for GTN's mutagenic action. The known NO scavenger oxymyoglobin did not substantially alter the dose response of GTN, indicating that extracellular NO was not mediating reversion. The data are consistent with the hypothesis that intracellular nitric oxide is responsible for the observed mutations.  相似文献   

19.
Several 2-azidofluorenes have been synthesized for use as photoaffinity labels inside bacteria. In the dark they were not mutagenic for any Salmonella typhimurium tested. When photolyzed inside the bacteria, all were mutagenic for strain TA1538 to varying degrees, and were considerably less mutagenic in the corresponding repair positive TA1978. None were mutagenic for strain TA1535 or TA1537, although most compounds were toxic for those strains when photolyzed.  相似文献   

20.
The effect of pretreatment of rats with various symmetrical dialkylnitrosamines on the repair of O6-methylguanine produced in liver DNA by a low dose of [14C]dimethylnitrosamine (DMN) has been examined. DMN, diethylnitrosamine (DEN), dipropylnitrosamine (DPN) or dibutylnitrosamine (DBN) were administered to rats for 14 consecutive weekdays at a daily dose of 5% of the LD50. Animals were given [14C]DMN 24 h after the last dose and were killed 6 h later. DNA was extracted from the liver and analysed for methylpurine content after mild acid hydrolysis and Sephadex G-10 chromatography. While the amounts of 3-methyladenine and 7-methylguanine were only slightly different from controls, the amounts of O6-methylguanine in the DNA of the dialkylnitrosamine pretreated rats were about 30% of those in control rats, indicating a considerable increase in the capacity to repair this base. Liver ribosomal RNA from control and dialkylnitrosamine pretreated rats contained closely similar amounts of O6-methylguanine suggesting that the induced enzyme system does not act on this base in ribosomal RNA in vivo. Pretreatment with these dialkylnitrosamines also enhanced the repair of O6-methylguanine in liver DNA when they were given as a single dose (50% of the LD50) either 3 or 7 days before the [14C]DMN. In addition, single low doses of DMN or DEN (5% of the LD50) given either 1 or 6 days before [14C]DMN increased O6-methylguanine repair and the magnitude of the effect after DEN was similar to that produced by the other pretreatment schedules. The possible mechanism(s) of the induction of O6-methylguanine repair and its relation to hepatotoxicity, DNA alkylation, carcinogenesis and the adaptive response in Escherichia coli are discussed.  相似文献   

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