Search PubMed⌕ Search

Biomedical subjects

T Sofuni

Publications and source records attributed to T Sofuni.

At least 91 records · Page 5Linked to original sources

Chromosomal aberrations detected by chromosome painting in lymphocytes from cancer patients given high doses of therapeutic X-rays.

Chromosome painting by fluorescence in situ hybridization (FISH) with a whole chromosome-specific DNA probe was used to detect chromosomal aberrations in lymphocytes from cancer patients given partial-body fractionated X-ray therapy. Six male patients with cancer of the stomach, prostate, lung, or hepatocellular carcinoma, received X-rays in total doses of 40.5 to 70.08 Gy. Lymphocytes were cultured for 50 h with phytohemagglutinin. The mean frequency of aberrant cells detected by chromosome 4 painting varied from 1.57% to 14.34% in the patients and was markedly higher than in healthy controls (mean = 0.12%). Chromosome painting effectively detected chromosomal aberrations in lymphocytes from cancer patients. Equivalent biological doses extrapolated from a dose-response curve obtained in an in vitro human lymphocyte X-ray irradiation study are discussed as an indicator of the cytogenetic damage inducible by radiotherapy in cancer patients.

Adult↗

Involvement of umuDCST genes in nitropyrene-induced -CG frameshift mutagenesis at the repetitive CG sequence in the hisD3052 allele of Salmonella typhimurium.

Expression of the umuDC operon is required for UV and most chemical mutagenesis in Escherichia coli. The closely related species Salmonella typhimurium has two sets of umuDC-like operons, umuDCST on the chromosome and samAB on a 60-MDa cryptic plasmid. The roles of the umuDC-like operons in chemically induced frameshift mutagenesis of the hisD3052 allele of S. typhimurium were investigated. Introduction of a pBR322-derived plasmid carrying umuDCST increased the rate of reversion of hisD3052, following treatment with 1-nitropyrene (1-NP) or 1,8-dinitropyrene (1,8-DNP) tenfold and fivefold, respectively, whereas it did not substantially increase the rate of reversion induced by other frameshift mutagens, i.e. 2-nitrofluorene (2-NF) and 2-amino-3-methyldipyrido[1,2-a:3',2'-d]imidazole (Glu-P-1). Introduction of a pBR322-derived plasmid carrying samAB did not increase the incidence of reversion of hisD3052 observed with any of the mutagens examined. Deletion of umuDCST substantially lowered the reversion rate induced by 1-NP or 1,8-DNP, but it did not affect reversion induced by 2-NF, Glu-P-1 or N-hydroxyacetylaminofluorene (N-OH-AAF). Deletion of samAB had little impact on reversion incidence induced by any of the five frameshift mutagens. DNA amplification using the polymerase chain reaction technique followed by restriction enzyme analysis using BssHII, suggested that the mutations induced by the five frameshift mutagens were all CG deletions at the CGCGCGCG sequence in hisD3052. These results suggest that umuDCST, but not samAB, is involved in the -2 frameshift mutagenesis induced by 1-NP and 1,8-DNP at the repetitive CG sequence, whereas neither operon participates in induction of the same type of mutations by 2-NF, Glu-P-1 or N-OH-AAF.

Alcohol Oxidoreductases↗

Specific disruption of samAB genes in a 60-megadalton cryptic plasmid of Salmonella typhimurium.

The expression of umuDC operon is required for UV and most chemical mutagenesis in Escherichia coli. The closely related species Salmonella typhimurium has two sets of umuDC-like operons, i.e., umuDCST in the chromosome and samAB in a 60-megadalton cryptic plasmid. In this study, we specifically disrupted the samAB genes to investigate their exact roles in UV mutagenesis in S. typhimurium. The specific gene disruption was carried out by the preligation method. Deletion of samAB did not lower the UV mutability of S. typhimurium TA2659 but rather increased the UV mutability about twofold. The samAB-umuDCST double deletion mutant as well as the umuDCST deletion mutant was UV nonmutable. These results suggest that the samAB genes do not considerably contribute to the UV mutability of S. typhimurium and raise the question of why such quiet umuDC-like genes are present in the cryptic plasmid of S. typhimurium.

Blotting, Southern↗

A rapid method for detection of mutations in the lacI gene using PCR-single strand conformation polymorphism analysis: demonstration of its high sensitivity.

The lacI gene has been used as a target gene in various mutation assays. We modified single strand conformation polymorphism (SSCP) analysis by introducing restriction digestion to detect mutations in the gene rapidly, and determined the sensitivity of the method. The entire coding sequence and partial promoter region of the lacI gene were amplified by the polymerase chain reaction with [alpha-32P]dCTP in a 1247 base pair fragment, digested into eight restriction fragments, and analyzed by SSCP. The sensitivity of the method was assessed using 160 phages with lacI mutations, which were selected by assay of expression of beta-galactosidase after their infection into E. coli. Of the 160 mutants, 146 (91.3%) showed shifted bands in the first condition of SSCP analysis (without glycerol, 20 degrees C). The remaining 14 mutants were analyzed in a second condition (with 5% glycerol, 20 degrees C), and eight of them showed shifted bands (cumulatively 96.3% of the 160 mutants). The remaining six mutants were analyzed in a third condition (with 5% glycerol, 10 degrees C), and all of them showed shifted bands (cumulatively 100%). Sequencing of the restriction fragments with mobility shifts in the 160 mutants revealed 108 kinds of mutations, 100 (92.6%) being detected in the first condition, seven (cumulatively 99.1%) in the second condition, and one (cumulatively 100%) in the third condition. This method greatly reduced the time to identify lacI mutations, and allowed the detection of multiple mutations in one lacI mutant. The results also show that in general PCR-SSCP analysis is very sensitive when test fragments are shorter than about 250 base pairs and electrophoresis is performed under at least two conditions.

Animals↗

A comparative study of TK6 human lymphoblastoid and L5178Y mouse lymphoma cell lines in the in vitro micronucleus test.

Micronucleus induction was compared in human lymphoblastoid TK6 and mouse lymphoma L5178Y cell lines treated with model clastogens and spindle poisons, i.e., X-rays, methyl methanesulfonate, ethyl methanesulfonate, mitomycin C, colcemid, and vincristine. The spontaneous micronucleated cell (MNC) frequency was stable and reproducible in both cell lines. All clastogens and spindle poisons studied here induced micronuclei in both cell lines. They increased MNC frequency at lower concentrations or caused a greater increase at the same concentration in TK6 cells. These clastogens and spindle poisons, however, were also more toxic to TK6 than to L5178Y cells and when comparison was based on cytotoxicity, they showed more efficient MNC induction in L5178Y cells. In conclusion, neither cell line was superior to the other, and both of them can be used as target cells in the in vitro micronucleus assay.

Animals↗

DNA fingerprint analysis in chemically mutagenized Chinese hamster lung cells.

Using a multi-locus minisatellite Per-6 DNA probe, we performed DNA fingerprint analysis. Chinese hamster lung (CHL) cells were treated with six model chemicals: N-methyl-N'-nitro-N-nitrosoguanidine, mitomycin C, methyl methanesulfonate, furylfuramide, 2-acetylamino-fluorene, and cyclophosphamide, with or without S9 mix. 771 hypoxanthine phosphoribosyltransferase deficient clones (749 from mutagen-treated cells and 22 from untreated cells) and 90 unselected clones from untreated cells were isolated and analyzed. The spontaneous mutation frequency at CHL cell minisatellite loci was 0.31-0.63%. All the chemicals increased mutation frequencies. Almost all mutations localized to the three specific minisatellite loci corresponding to 4.2, 3.8, and 2.4 kb bands, suggesting that these regions are more unstable and susceptible to mutation. DNA fingerprint analysis is a promising technique for detecting mutations at neutral DNA regions, especially recombinational mutations, and may be useful for surveying genetic instability related to heritable defects or aging.

2-Acetylaminofluorene↗

Spontaneous mutant frequency of lacZ gene in spleen of transgenic mouse increases with age.

Spontaneous mutant frequency of lacZ gene in spleen of transgenic MutaTM mouse was examined at different ages. It was (3.2 +/- 1.3 (SD)) x 10(-5) at newborn and increased almost linearly with age up to (8.3 +/- 1.8) x 10(-5) at one year. Since the mutation of the gene is not likely to be subject to selection in vivo, the data support the idea that spontaneous mutation takes place throughout aging process and accumulates with age if not selected out by cell death.

Aging↗

Combination effects of clastogens in the mouse peripheral blood micronucleus assay.

In order to study how two chemicals interact to induce micronuclei, simple ethylating agents [ethyl methanesulfonate (EMS), ethyl ethanesulfonate (EES) and N-ethyl-N-nitrosourea (ENU)], spindle poisons [vincristine sulfate (VINC) and colchicine (COL)] and an oxidizing agent [potassium bromate (KBrO3)] were used as model chemicals for combination treatments. The frequency of micronucleated reticulocytes (MNRETs) was evaluated in mice treated with two of these chemicals at a time. The combinations of ethylating agents (EMS and EES; EMS and ENU) and of spindle poisons (VINC and COL) induced more micronuclei than those expected on an additive basis. The apparent synergism was due to a 'combined dose' which could be calculated by the dosimetric conversion of one chemical to the other, when damage induced by each chemical was 'equivalent' in the induction of MNRETs. In contrast, no apparent synergism in induction of micronuclei was observed when two chemicals with different modes of clastogenic action (EMS and KBrO3 or EMS and VINC) were combined.

Alkylating Agents↗

Analysis by fluorescence in situ hybridization with a mouse gamma satellite DNA probe of isolated micronuclei induced in mice by two clastogens and two spindle poisons.

The presence of centromeric DNA was studied in micronuclei isolated from the blood of male ddY mice after five weekly intraperitoneal injections of mitomycin C (MMC), 1-beta-D-arabinofuranosylcytosine (Ara-C), colchicine (COL) or vinblastine sulfate (VBL). In agreement with our earlier findings, about half of the micronuclei isolated from vehicle control mice showed centromere signals as analyzed by fluorescence in situ hybridization (FISH) with a mouse major (gamma) satellite DNA probe. In an earlier experiment with mice acutely exposed to the same chemicals, the clastogens MMC and Ara-C did not reduce the proportion of micronuclei with centromere signals. In the present study, however, MMC and Ara-C decreased the proportion of micronuclei with centromeres. In contrast, the spindle poisons COL and VBL increased the proportion of micronuclei that contained centromeres.

Animals↗

Construction and characterization of mutants of Salmonella typhimurium deficient in DNA repair of O6-methylguanine.

Escherichia coli has two O6-methylguanine DNA methyltransferases that repair alkylation damage in DNA and are encoded by the ada and ogt genes. The ada gene of E. coli also regulates the adaptive response to alkylation damage. The closely related species Salmonella typhimurium possesses methyltransferase activities but does not exhibit an adaptive response conferring detectable resistance to mutagenic methylating agents. We have previously cloned the ada-like gene of S. typhimurium (adaST) and constructed an adaST-deletion derivative of S. typhimurium TA1535. Unexpectedly, the sensitivity of the resulting strain to the mutagenic action of N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) was similar to that of the parent strain. In this study, we have cloned and sequenced the ogt-like gene of S. typhimurium (ogtST) and characterized ogtST-deletion derivatives of TA1535. The ogtST mutant was more sensitive than the parent strain to the mutagenicity of MNNG and other simple alkylating agents with longer alkyl groups (ethyl, propyl, and butyl). The adaST-ogtST double mutant had a level of hypersensitivity to these agents similar to that of the ogtST single mutant. The ogtST and the adaST-ogtST mutants also displayed a two to three times higher spontaneous mutation frequency than the parent strain and the adaST mutant. These results indicate that the OgtST protein, but not the AdaST protein, plays a major role in protecting S. typhimurium from the mutagenic action of endogenous as well as exogenous alkylating agents.

Amino Acid Sequence↗

Comparative mapping of the immunoglobulin C epsilon 1 gene (IGHE) in five species of nonhuman primates by fluorescence in situ hybridization.

The orthologous immunoglobulin C epsilon 1 gene (IGHE) of the common chimpanzee, pygmy chimpanzee, orangutan, white-handed gibbon, and Japanese macaque was assigned to the human chromosome 14 homologue in each species and regionally mapped by fluorescence in situ hybridization to PTR15q32 (common chimpanzee), PPA15q32 (pygmy chimpanzee), PPY15q32 (orangutan), HLA17qter (white-handed gibbon), and MFU7q29 (Japanese macaque). The gene localized to the terminal region of the chromosome in each species, and so this probe provides a new telomeric DNA marker for nonhuman primates.

Animals↗

Initial experiences and future directions for transgenic mouse mutation assays.

Transgenic mice have introduced new possibilities in the field of mutation research and safety testing. Using lacZ transgenic mice (Muta Mouse), we have combined the peripheral blood micronucleus assay with the transgenic mouse mutation assay, enabling the concomitant detection of gene mutations and micronucleus induction in vivo in the same animals (Suzuki et al., 1993). Several mutagens, i.e., mitomycin C (MMC), ethyl nitrosourea (ENU), ethyl methanesulfonate (EMS) and diethyl nitrosamine (DEN), were tested in this combined assay. All of them increased the lacZ mutant frequency in bone marrow or liver, and all except DEN induced micronuclei in peripheral blood. These initial studies demonstrated that genotoxicity in vivo could be detected with these two endpoints and, more importantly, that some specificity exists among these tissues analyzed. Although transgenic mouse mutation assays have many potential applications in in vivo mutation research, several problems stand in the way of wider use. Paramount among these are cost and labor intensiveness. The color screening systems for lacZ or lacI mutation detection require large numbers of plates and tedious scoring processes. In order to make significant advances in this field, it will be necessary to use positive selection for induced mutants, such as has been described recently for the lacZ and lacI transgenic mouse models.

Animals↗

Isolation of micronuclei from mouse blood and fluorescence in situ hybridization with a mouse centromeric DNA probe.

Spontaneously existing and chemically induced micronuclei were isolated from mouse blood. 50 microliters of cardiac blood was diluted with PBS and centrifuged. After this, the cell pellet was subjected to hypotonic treatment, fixed with acetic acid-methanol (1:3), and the lysate was filtrated through a 2-microns polycarbonate nucleopore membrane. Isolated micronuclei were air-dried on a glass slide and subjected to fluorescence in situ hybridization (FISH) using a mouse centromeric gamma satellite probe. Approximately half of the micronuclei isolated from vehicle control mice showed centromere signal(s). In these preliminary studies, the proportion of centromere-positive micronuclei was increased by treatment with spindle poisons (colchicine and vinblastine sulfate), decreased only slightly by 1-beta-D-arabinofuranosylcytosine, and was generally unaffected by mitomycin C.

Animals↗

New sublines of Chinese hamster CHL stably expressing human NAT1 or NAT2 N-acetyltransferases or Salmonella typhimurium O-acetyltransferase: comparison of the sensitivities to nitroarenes and aromatic amines using the in vitro micronucleus test.

New sublines of Chinese hamster CHL cells stably expressing human NAT1 or NAT2 N-acetyltransferases or O-acetyltransferase of Salmonella typhimurium were established, and their sensitivities to carcinogenic nitroarenes and aromatic amines were compared using the in vitro micronucleus test. The subline expressing human NAT2 N-acetyltransferase exhibited the highest sensitivity to the clastogenicities of 1,8-dinitropyrene and 2-nitrofluorene. These results raise the possibility that human NAT2 N-acetyltransferase is involved in the metabolic activation of 1,8-dinitro-pyrene and 2-nitrofluorene. Since human NAT2 N-acetyltransferase exhibits a marked genetic polymorphism, the polymorphic status of human N-acetyltransferase could be a genetic predisposing factor to cancers caused by the nitroarenes. In contrast, the subline expressing O-acetyltransferase of S. typhimurium exhibited the highest sensitivity to the clastogenicity of 2-amino-3-methylimidazo[4,5-f]quinoline (IQ) when the microsomes prepared from rat liver were present. This suggests that O-acetyltransferase of S. typhimurium has a higher ability to activate IQ than do the human acetyltransferases. Acetyltransferase enzymes of human enteric bacteria might contribute to the metabolic activation of IQ. The sublines could provide a new tool for investigation of the mechanism of metabolic activation and for assessment of cancer risk of nitroarenes and aromatic amines to humans.

Acetyltransferases↗

Demonstration by DNA fingerprint analysis of genomic instability in mouse BALB 3T3 cells during cell transformation.

We employed DNA fingerprint analysis to monitor DNA rearrangements in BALB 3T3 cells transformed spontaneously or by treatment with 3-methylcholanthrene (MCA) and UV-C. The effect of 12-O-tetradecanoyl-phorbol-13-acetate (TPA) in combination with MCA was also examined. Twenty-three spontaneously transformed cells, 28 induced transformed cells (18 by 1 microgram/ml MCA, six by 5 micrograms/ml MCA, and four by UV-C), and 31 non-transformed subclones were isolated from parental BALB 3T3 A31-1-1 cells. The DNAs were digested with HinfI and subjected to DNA fingerprint analysis with three multi-locus minisatellite probes, Per-6, Core, and Ins. Per-6 was the most effective probe for detecting DNA rearrangements. Rearranged bands detected by the Per-6 probe were observed in 9/31 (29%) of non-transformed subclones, 14/23 (61%) of spontaneously transformed cells, 16/18 (89%) of cells transformed by 1 microgram/ml of MCA, 6/6 (100%) of cells transformed by 5 micrograms/ml MCA, and 4/4 (100%) of UV-C-transformed cells. Higher numbers of DNA rearrangements (> or = 3) occurred most frequently in the induced transformed cells. TPA enhanced the frequency of DNA rearrangements in cells transformed by MCA. These data indicate that (1) genomic DNA in BALB 3T3 cells is unstable and susceptible to rearrangement, (2) its instability is elevated during cell transformation, and (3) MCA and UV-C induce DNA rearrangements, and TPA enhances the effect of the former, probably via the recombination process. DNA fingerprint analysis is valuable for monitoring genomic instability during cell transformation.

3T3 Cells↗