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G F Strniste

Publications and source records attributed to G F Strniste.

At least 37 records · Page 2Linked to original sources

Cytotoxic and mutagenic properties of shale oil byproducts II. Comparison of mutagenic effects at five genetic markers induced by retort process water plus near ultraviolet light in Chinese hamster ovary cells.

A chinese hamster ovary (CHO) cell line heterozygous at the adenine phosphoribosyl transferase (APRT) locus was used for selection of induced mutants resistant to 8-azaadenine (8AA), 6-thioguanine (6TG), ouabain (OUA), emetine (EMT) and diphtheria toxin (DIP). The expression times necessary for optimizing the number of mutants recovered at the different loci have been determined using the know direct acting mutagen, far ultraviolet light (FUV), and a complex aqueous organic mixture (shale oil process water) activated with near ultraviolet light (NUV). Our results indicate that optimal expression times following treatment with either mutagen was between 2 and 8 days (depending on the genetic marker examined). For CHO cells treated with shale oil process water and subsequently exposed to NUV a linear dose response for mutant induction was observed for all five genetic loci. At 10% surviving fraction of cells, between 35- and 130-fold increases above background mutation frequencies were observed for the various markers examined. Among the five genetic loci tested, OUAR was the most sensitive marker tested.

Adenine↗

Differential reactivation of zinc-mediated metallothionein induction in ultraviolet-irradiated normal and repair-deficient human cells.

The ubiquitous, low-molecular-weight, thiol-rich, metal-binding protein, metallothionein (MT), can be induced in cultured normal human fibroblasts (NF) and xeroderma pigmentosum (XP) cells by exposure to ZnCl2. Both NF and XP cells tolerate up to 200 microM ZnCl2 in the growth medium, upon addition of ZnCl2 (200 microM) to monolayer cultures, both NF and XP cells showed similar kinetics for the induction of MT synthesis: Within 7 hours the MT synthesis rate rose from a low, marginally detectable rate to a maximal rate at least 50-fold greater than the basal rate. The induction of MT synthesis in both cell types was inhibited by actinomycin D (5 microgram/ml), indicating that the induction process is controlled at the level of transcription. Exposure of NF and XP cells to far ultraviolet light (UV) followed by induction with ZnCl2 resulted in a UV dose-dependent decrease in the he maximal rate of MT synthesis measured 8.5 hours postirradiation. The UV sensitivity of the MT induction was greater in XP cells than in NF cells. However, considerations of the differential repair capacities of NF and XP cells superimposed upon the kinetics of MT induction were invoked to explain the apparent differential UV sensitivity of MT induction. Liquid holding recovery experiments showed that NF cells possess the capacity to reactivate this inducible gene function rapidly while XP cells are deficient in the reactivation capacity. These results are discussed in the context of both UV transcriptional mapping of this inducible gene function and development of techniques for measuring repair of transcription-blocking lesions.

Cells, Cultured↗

Ultraviolet light inactivation of zinc-mediated metallothionein induction in normal and repair-deficient human cells.

Synthesis of the low molecular weight, thiol-rich, metal-binding metallothioneins (MTS) is undetectable in normal human (NF) or xeroderma pigmentosum (XP) fibroblasts grown in the absence of excess ZnCl2. Addition of 200 microM ZnCl2 to the growth medium produces an increased MT synthesis rising from the basal rate to a rate at least 50-fold greater than basal rate within 7 h. MT induction kinetics in confluent and in exponentially growing subconfluent monolayers were indistinguishable. Zn2+-mediated MT induction is sensitive to actinomycin D suggesting that the induction process is under transcriptional control. Ultraviolet light irradiation causes a dose-dependent inactivation of Zn2+-mediated MT induction in both NF and XP cells. Post-irradiation incubation of UV-irradiated cells using liquid holding techniques leads to reactivation of Zn2+-mediated MT induction in NF cells but not in XP cells. These findings suggest the utility of MT induction produce transcription-terminating lesions, and (b) in evaluating cellular repair capacity for this class of DNA lesions.

Cell Line↗

Induction of 6-thioguanine-resistant mutations by rat-liver homogenate (S9)-activated promutagens in human embryonic skin fibroblasts.

Most normal human fibroblasts grown in culture do not metabolize promutagens/procarcinogens. Thus screening assays employing normal human fibroblasts have only been successful for direct-acting chemical mutagens and various radiations. In this report we describe a mutation assay (HGPRT locus) employing a normal human embryonic skin fibroblast and a rat-liver homogenate (S9) mixture. 3 model promutagens, benzo[a]pyrene (B[a]P), 3-methylcholanthrene (3MC), and dimethylnitrosamine (DMN) have been utilized in these studies. In addition to discussing conditions for optimizing the response of this assay, our results indicate that at constant amount of S9 protein concentration, there exists a linear correlation between mutagenicity and dose. At 50% survival, the mutant frequencies induced by B[a]P and 3MC (5 micrograms/ml) are 60 and 30 times the background mutant frequency, respectively. Similarly, at 50% survival, DMN (5 mg/ml) induced 6-TGr mutant frequencies are 25-fold over the background frequency. The increase in cytotoxicity resulting from exposure of cells to these 'activated' chemicals is also a linear dose response. At high S9 concentrations a deactivation or detoxification phenomenon occurs. However, the mutagenic efficiency of S9-activated chemicals when plotted as the number of induced mutations versus log survival is unaffected by the deactivating capacity of S9 proteins. This study demonstrates a quantitative mutation assay using an early passage human culture with an exogenous rat-liver microsomal preparation providing activating enzymes.

Animals↗

Genotoxicity induced in cultured Chinese hamster cells exposed to natural or synthetic crude oils and near ultraviolet light.

Cultured Chinese hamster ovary (CHO) cells were incubated with dilutions of natural or synthetic crude oils and subsequently exposed to near ultraviolet light (NUV). Although the magnitude of photo-induced cytotoxicity in CHO was essentially independent of the source of the oil (within a factor of two), two shale oils were exceptionally high in photo-induced mutagenic activity eliciting a response 10-12 times the observed natural background mutation frequency. Other shale oils, natural crude oils and a solvent refined coal medium distillate blend were weaker or negative in photo-induced mutagenic activity. Hydrotreatment of a photoactive shale oil, although eliminating the mutagenic potential, did not reduce the oil's cytotoxic potential.

Animals↗

Genotoxic effects of sunlight-activated waste water in cultured mammalian cells.

Cultured Chinese hamster ovary cells were incubated with dilutions of an oil shale retort process water and exposed to nautral sunlight. An enhancement of sevenfold to ninefold was seen in photoinduced cytotoxicity (by a colony-forming assay) and mutagenicity [at the hypoxanthine phosphoribosyltransferase (HPRT) locus] for cells pretreated with the process water compared to effects seen in cells exposed to sunlight only. Significant photoinduced cytotoxicity was also observed in cultured human skin fibroblasts when exposed to the process water before being exposed to near UV (NUV) radiation. The mutation frequencies (determined for the HPRT locus) induced by the process water and NUV radiation were as great as those frequencies seen for far UV light alone. Increases in genotoxicity were observed in excision repair-deficient xeroderma pigmentosum skin fibroblasts when compared to the responses seen in normal cells. Risks to health resulting from the phototransformation of these oil shale retort process waste waters are unassessed at this time.

Animals↗

Cytotoxic and mutagenic properties of shale oil byproducts. I. Activation of retort process waters with near ultraviolet light.

Cultured Chinese hamster ovary (CHO) cells were exposed to dilutions of shale oil retort process waters obtained from three different retorting processes located in the Green River oil shale formations in the western part of the United States. Although the intensity of the response was dictated by thd process water used, all induced a cytotoxic (reduction in colony-forming ability) and mutagenic (induced at the hypoxanthine-guanine phosphoribosyl transferase (HGPRT) locus) response in cells pretreated with dilutions of the waters and subsequent exposure to near ultraviolet light (NUV). Combinations of process water plus NUV yielded mutation frequencies as great as 50% that witnessed for the mutation frequency induced by the potent carcinogen far ultraviolet light. NUV alone was nontoxic and nonmutagenic at the doses of radiation used. Exposure of CHO cells in the dark to nontoxic dilutions of the process waters resulted in small but significant increases in 6-thioguanine resistant mutants. (1-2 time background rates). The biological consequences resulting from the disposal of retort process waters into the delicate environment present in this oil shale region could be further complicated by this photoactivating process.

Animals↗

Reactions induced in vitro between model DNA and benzo[a]pyrene by near-ultraviolet radiation.

Near-ultraviolet (300--480 nm wavelength) irradiation of the single-strand polydeoxynucleotide poly[d(A,C,G,T)] and carbon-14 labeled benzo[alpha]-pyrene (B[alpha] P) in aqueous dimethylsulfoxide (DMSO) solution led to appreciable binding of labeled hydrocarbon to the polynucleotide. Nuclease digests of polydeoxynucleotide-B[alpha]P complexes were examined by chromatography on Sephadex LH-20; at high fluences of near-ultraviolet light deoxyguanosine (dG) residues of the polymer were largely destroyed when the hydrocarbon was present. Approximately 85% of the B[alpha] P of the digests were recovered as hydrophilic derivatives not adsorbed by Sephadex LH-20. Elution of the columns with an aqueous-methanol gradient indicated that substances similar to the covalent deoxynucleoside-B[alpha] P adducts formed between microsomally-oxidized B[alpha] P and DNA were likewise present in the digests. When the deoxyadenosine (dA), deoxycytidine (dC) or dG moieties of the polymer were tritium-labeled, substances doubly-labeled with tritium and carbon-14 were found; ratios of the two radioactivities indicated that equimolar amounts of deoxynucleoside and hydrocarbon were present.

Benzo(a)pyrene↗

Histone composition of nucleosomes isolated from cultured Chinese hamster cells.

Nuclei isolated from cultured Chinese hamster cells were treated with micrococcal nuclease and lysed, and the resulting chromatin subunit classes (nucleosomes) were purified by sedimentation and resedimentation through isokinetic sucrose gradients. Nucleosomes isolated from [3H]thymidine-labeled cells were analyzed for DNA size using both polyacrylamide gel and electron microscopic techniques. Nucleosomes isolated from [14C]lysine-labeled cells were analyzed for protein content using a sodium dodecyl sulfate-polyacrylamide gel system. The results from monitoring the [14c]lysine in each protein indicate that, in the nucleosome classes (monomer through tetramer), the molar ratios of histones H2A, H2B, H3, and H4 are equivalent. Furthermore, in each population of the nucleosome classes monomer through tetramer, it was possible to demonstrate that this histone unit (H2A + H2B + H3 + H4) is present, on the average, in the amount of two for monomers, four for dimers, six for trimers, and eight for tetramers. This is direct experimental confirmation of the prediction of R.D. Kornberg [(1974) Science 184, 868] concerning the substructure of chromatin.

Cell Fractionation↗

Induction of stable protein-deoxyribonucleic acid adducts in Chinese hamster cell chromatin by ultraviolet light.

Ultraviolet (uv)-light-mediated formation of protein-DNA adducts in Chinese hamster cell chromatin was investigated in an attempt to compare chromatin alterations induced in vitro with those observed in vivo. Three independent methods of analysis indicated stable protein-DNA associations: (1) a membrane filter assay which retained DNA on the filter in the presence of high salt-detergent; (2) a Sepharose 4B column assay in which protein eluted cincident with DNA; and (3) a CsCl density gradient equilibrium assay which showed both protein and DNA banding at densities other than their respective native densities. Treatment of the irradiated chromatin with DNase provided further evidence that protein-DNA and not protein-protein adducts were being observed in the column assay. There is a fluence-dependent response of protein-DNA adduct formation when the chromatin is irradiated at low ionic strength and is linear for protein over the range studied. When the chromatin is exposed to differing conditions of pH, ionic strength, or divalent metal ion concentration, the quantity of adduct formed upon uv irradiation varies. Susceptibility to adduct formation can be partially explained in terms of the condensation state of the chromatin and other factors such as rearrangement, denaturation, and dissociation of the chromatin components. Besides providing information on the biological significance of these types of uv-induced lesions, this technique may be useful as a probe of chromatin structure.

Binding Sites↗

Endonucleolytic incision of x-irradiated deoxyribonucleic acid by extracts of Escherichia coli.

An enconuclease activity that reacts with x-irradiated DNA is present in extracts of E. coli. By using centrifugal methods to monitor the conversion of the supercoiled, circular double-stranded DNA for phage phi-x-174 (replicative form) or PM2 to the relaxed circular form it was possible to quantitate the rate of radiation induced endonuclease-sensitive sites in the DNA. For every single-strand break induced by x-rays under aerobic irradiation conditions, there is approximately one induced site sensitive to this endonuclease activity. Under irradiation conditions (addition OF Potassium iodide) that dramatically reduce rates of single-strand breaks and "alkalilabile" lesions, the number of endonuclease-sensitive sites relative to single-strand breaks increase approximatley 4-fold. This nuclease is present in several strains of E. coli B and K12, including mutants deficient in DNA polymerase I, recombination gene products (rec mutants), ultraviolet light incision enzyme (uvr A mutant), and endonuclease II. It is suggested that this endonuclease may be involved in an excision repair process for damages incurred in DNA by ionizing radiation.

Centrifugation, Density Gradient↗