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Direct association of messenger RNA labeled in the presence of fluoroorotate with membranes of the endoplasmic reticulum in rat liver.

Liver rough endoplasmic reticulum (RER) membranes were isolated from rats given [3H]orotic acid for 48 h (ribosomal RNA [rRNA] label) or for 3 h along with 5-fluoroorotate; this latter procedure permits the labeling of cytoplasmic messenger RNAs (mRNAs) in the absence of rRNA labeling. More than 50% of the labeled mRNA remained attached to membranes of the RER after complete removal of ribosomes with a buffer of high ionic strength in the presence of puromycin. Under similar conditions, membranes retained 40% of their polyadenylate as determined by a [3H]-polyuridylate hybridization assay. Treatment of mRNA-labeled endoplasmic reticulum membranes with pancreatic RNase indicates that the polyadenylate and possibly nonpolyadenylate-pyrimidine portions of the messenger are involved in the binding of mRNA to the membranes. The implication of these results in furthering our understanding of the mechanisms of the translational regulation of genetic expression is discussed.

Animals↗

Detection of ornithine transcarbamylase deficiency heterozygotes by measuring of urinary uracil.

The importance of detecting heterozygosity for X-linked ornithine transcarbamylase deficiency is well known. Although the DNA analysis and the allopurinol loading tests are commonly used for this purpose, both methods require complicated procedures. In order to establish a simple test for detecting female heterozygotes, we examined the uracil and orotic acid in single-voided urine samples from 70 healthy women, and from 12 asymptomatic females with ornithine transcarbamylase deficiency. Based on the results of healthy women, we were able to determine a screening cut-off line of 11.9 micromol/mmol creatinine (mean +/- 1SD in logarithmic form) for uracil. Using this cut-off line, the sensitivity of OCT heterozygotes was 100%. We were also able to establish a second cut-off line of 28.9 micromol/mmol creatinine (mean +/- 3SD in logarithmic form) for diagnosis. Using this second cut-off line, the specificity of OCT heterozygotes was 100%. Our study has shown that the measurement of urinary uracil is a relatively simple and effective method for detecting female heterozygotes.

Female↗

Mechanism of allopurinol-mediated increase in enzyme activity in man.

Allopurinol therapy in man interferes with pyrimidine biosynthesis de novo by inhibition of one or both of the two enzymes, orotate phosphoribosyltransferase (OPRT) and orotidylic decarboxylase (ODC), responsible for the conversion of orotic acid to uridine-5'-monophosphate. Inhibition of this pathway in vivo is followed in 1-3 wk by an increase in the activity of both of these enzymes in erythrocytes and of ODC in circulating leukocytes. This drug-mediated increase in enzyme activity in erythrocytes could not be attributed to enzyme stabilization or induction in vivo but appeared to be due to enzyme "activation." "Activation" of the OPRT enzyme was directly demonstrated in erythrocytes studied in vitro after incubation with oxipurinol, and to a lesser extent, with allopurinol. No evidence for "activation" of the ODC enzyme was demonstrated in vitro. This response to allopurinol therapy provides an excellent model for examining the mechanism of increased enzyme activity in response to drug administration.

Allopurinol↗

The effect of phenobarbital on the transcriptional activity of liver.

The effect of phenobarbital on the transcriptional activity of liver was studied by measuring the synthesis of RNA by suspensions of hepatocytes isolated from rats treated with phenobarbital for various time periods. The absolute rates of RNA synthesis by isolated hepatocytes were determined by measuring the incorporation of [3H]orotic acid into RNA as UMP and the specific radioactivity of the UTP pool. The specific radioactivity of the UTP extracted from hepatocytes isolated from phenobarbital-treated rats was consistently lower than that of the UTP pool of hepatocytes from untreated rats. Phenobarbital treatment increased the rate of RNA synthesis 10-fold over that observed for hepatocytes from untreated rats. The maximum rate of RNA synthesis was observed 16-18 h after phenobarbital administration. Phenobarbital treatment also affected the nuclear-cytoplasmic transport of RNA by isolated hepatocytes. Immediately after phenobarbital treatment, the transport of RNA decreased; however, 24 h after phenobarbital administration, the transport of RNA was increased 4-fold. An increase in the synthesis of RNA in vivo by liver was found 18 h after phenobarbital treatment, and the incubation of suspensions of hepatocytes with various concentrations of phenobarbital increased RNA synthesis significantly.

Animals↗

Rates of spontaneous mutation in an archaeon from geothermal environments.

To estimate the efficacy of mechanisms which may prevent or repair thermal damage to DNA in thermophilic archaea, a quantitative assay of forward mutation at extremely high temperature was developed for Sulfolobus acidocaldarius, based on the selection of pyrimidine-requiring mutants resistant to 5-fluoro-orotic acid. Maximum-likelihood analysis of spontaneous mutant distributions in wild-type cultures yielded maximal estimates of (2.8 +/- 0.7) x 10(-7) and (1.5 +/- 0.6) x 10(-7) mutational events per cell per division cycle for the pyrE and pyrF loci, respectively. To our knowledge, these results provide the first accurate measurement of the genetic fidelity maintained by archaea that populate geothermal environments. The measured rates of forward mutation at the pyrE and pyrF loci in S. acidocaldarius are close to corresponding rates reported for protein-encoding genes of Escherichia coli. The normal rate of spontaneous mutation in E. coli at 37 degrees C is known to require the functioning of several enzyme systems that repair spontaneous damage in DNA. Our results provide indirect evidence that S. acidocaldarius has cellular mechanisms, as yet unidentified, which effectively compensate for the higher chemical instability of DNA at the temperatures and pHs that prevail within growing Sulfolobus cells.

DNA Damage↗

The effect of nonviral liver damage on the T-lymphocyte helper/suppressor ratio.

In the present investigation an attempt was made to ascertain whether nonviral liver impairment in rats affects the THelper/TSuppressor ratio. Two hepatotoxic agents were used: (i) galactosamine (GA), which causes a drug-induced hepatitis-like damage, and (ii) orotic acid (OA), which induces fatty changes. Since these two substances act as antidotes to one another they were administered to rats either separately or simultaneously. GA caused severe liver damage documented by a 104-, 48-, and 1.6- fold rise in the plasma concentrations of ALT, AST, and ALP and by multiple foci of hepatocyte necrosis. This was followed by a drop in TH/TS ratio from 2.25 observed in the controls to 0.89 in the GA-treated rats. All of these phenomena were prevented by concurrent administration of GA and OA. OA alone did not show an effect on the liver with respect to changes in plasma enzyme concentrations and by light microscopic analysis. However, OA caused a drop in the TH/TS ratio from 2.25 to 1.55. Neither GA nor OA produced a change in TH/TS ratios in in vitro experiments.

Animals↗

Alterations in pyrimidine nucleotide metabolism as an early signal during the execution of programmed cell death in tobacco BY-2 cells.

Changes in pyrimidine metabolism were investigated during programmed cell death (PCD) of tobacco BY-2 cells, induced by a simultaneous increase in the endogenous levels of nitric oxide (NO) and hydrogen peroxide. The de novo synthesis of pyrimidine nucleotides was estimated by following the metabolic fate of the (14)C-labelled orotic acid, whereas the rates of salvage and degradation pathways were studied by measuring the respective incorporation of (14)C-labelled uridine and uracil under different treatments. Nucleic acid metabolism was also examined using labelled thymidine as a marker. The results show that specific alterations in the balance of pyrimidine nucleotide synthesis, which include a decreased rate of salvage activity of uracil and uridine and increased salvage activity of thymidine, represent a metabolic switch that establishes proper cellular conditions for the induction of PCD. In particular, a reduction in the utilization of uracil for salvage products occurs very early during PCD, before the appearance of typical cytological features of the death programme, thus representing an early metabolic marker for PCD. These changes are strictly associated with PCD, since they do not occur if NO or hydrogen peroxide are increased individually, or if actinomycin, which inhibits the death programme, is added into the medium in the presence of NO and hydrogen peroxide. The possible roles of these fluctuations in pyrimidine metabolism on the cellular nucleotide pool are discussed in relation to the induction of cell death.

Apoptosis↗

Mitogen-induced liver hyperplasia does not substitute for compensatory regeneration during promotion of chemical hepatocarcinogenesis.

Experiments were designed to determine the efficacy of different types of liver cell proliferative stimuli given during exposure to several liver tumor-promoting regimens, on the formation of foci of enzyme-altered hepatocytes. Male Wistar rats were initiated with diethylnitrosamine (150 mg/kg body wt). After a 2 week recovery period animals were subjected to promoting regimens, the resistant hepatocyte model, the phenobarbital model and the orotic acid model. While the rats were on these regimens they were given liver cell proliferative stimulus, either a compensatory type (two-thirds partial hepatectomy or a necrogenic dose of carbon tetrachloride) or a direct hyperplastic stimulus such as that induced by the primary mitogen, lead nitrate. Initiated cells so promoted by these regimens were monitored as foci of enzyme-altered hepatocytes positive for gamma-glutamyltransferase and placental glutathione S-transferase or deficient for adenosine triphosphatase. While carbon tetrachloride and partial hepatectomy-induced compensatory regeneration stimulated the promoting ability of the regimens used, direct hyperplasia could not stimulate the formation of foci and/or nodules from initiated hepatocytes. Evaluation of thymidine incorporation indicated that there was no significant difference in the extent of DNA synthesis in both the proliferative stimuli irrespective of the promoting procedure used.

2-Acetylaminofluorene↗

Reversible impairment of cerebral DNA synthesis in thiamine deficiency.

The effect of thiamine deficiency on rat brain DNA and RNA synthesis was investigated. Thiamine deficiency, culminating in encephalopathy (symptomatic stage) was induced by dietary thiamine deprivation of 4 to 5 weeks. The encephalopathy could be completely reversed within 6 hours by paranteral administration of thiamine. Controls consisted of pair-fed and ad libitum-fed littermates given the same diet supplemented with thiamine. Brain DNA and RNA synthesis was determined by administration of labeled thymidine, orotic acid, or adenine into the cerebral ventricle and measuring the incorporation of the appropiate labeled precursor into DNA or RNA. Thiamine deficiency(symptomatic stage) had no effect on net DNA and RNA level in any brain area studied. Also, no consistent alteration of brain RNA synthesis was shown in severe thiamine seficiency. By contrast, DNA synthesis in symptomatic thiamine-deficient ratswas reduced to 22, 37, 31, and 19 percent, respectively; of pair-fed control values in the cortex, brain stem, cerebellum, and subcortical structures (p less than 0.05). Thedegree of depressed DNA synthesis increased with the extent and duration of thiaminedeprivation. Following reversal of the encephalopathy with parenteral thiamine, DNAsynthesis in all brain areas increased markedly to and above control values. Thses data indicate that the thiamine deficiency state interferes with the synthesis ofsome discrete DNA pool(s) in the brain. This effect may be due to thiamine deficiency per se and /or some thiamine-induced impaired food assimilation or utilization.

Adenine↗

Poly(A)- and nonpoly(A)-RNA associated with rat brain microsomal fractions: in vivo labelling studies.

The time course of incorporation of radiolabelled precursor into RNA associated with rat brain free polyribosomes, rough membranes, and smooth membranes was measured following a single intracranial injection of [3H] orotic acid. Polyadenylated RNAs were separated from nonpolyadenylated RNAs by affinity chromatography on oligo (dT)-cellulose columns. Poly(A)-RNA associated with each of the microsomal fractions became more rapidly labelled than did the nonpoly(A)-RNA of the same fractions. While the labelling profiles of the nonpoly(A)-RNA isolated from the polyribosomes and rough membranes are similar from one fraction to another, the specific radioactivity of the poly(A)-RNA isolated from free polyribosomes increased much more drastically than that of the poly(A)-RNA associated with rough membranes. The labelling profiles of RNA species isolated from smooth membranes were very different in this respect from the two ribosomal fractions. There was a lag of more than four hours before significant label appeared in the RNA associated with the smooth membrane fraction. These studies demonstrate that the different populations of brain microsomal RNA are labelled at different rates, perhaps reflecting differences in the turnover of these RNAs and differences in their function.

Animals↗

A proficient enzyme.

Orotic acid is decarboxylated with a half-time (t1/2) of 78 million years in neutral aqueous solution at room temperature, as indicated by reactions in quartz tubes at elevated temperatures. Spontaneous hydrolysis of phosphodiester bonds, such as those present in the backbone of DNA, proceeds even more slowly at high temperatures, but the heat of activation is less positive, so that dimethyl phosphate is hydrolyzed with a t1/2 of 130,000 years in neutral solution at room temperature. These values extend the known range of spontaneous rate constants for reactions that are also susceptible to catalysis by enzymes to more than 14 orders of magnitude. Values of the second-order rate constant kcat/Km for the corresponding enzyme reactions are confined to a range of only 600-fold, in contrast. Orotidine 5'-phosphate decarboxylase, an extremely proficient enzyme, enhances the rate of reaction by a factor of 10(17) and is estimated to bind the altered substrate in the transition state with a dissociation constant of less than 5 x 10(-24) M.

Catalysis↗

Young Scientists Award Lecture 1977: An investigation into the value of some clinical biochemical tests in the detection of minimal changes in liver morphology and function in the rat.

Minimal liver damage was induced in groups of rats by the administration of three toxicants, viz. carbon tetrachloride, sodium phenobarbitone and orotic acid. Serial blood samples were taken from the animals during the course of the experiment and the plasma levels of a number of enzymes, substrates and metabolites were measured. Liver and kidney samples were also taken at appropriate times after dosing and examined histologically for evidence of drug induced damage. The results of the experiment show that (I) no single test gave unequivocal evidence of liver damage for all three compounds, (II) the conventional liver function tests, alanine transaminase, aspartate transaminase, and alkaline phosphatase, whose plasma activities are usually reported in toxicity studies, were not the most sensitive indicators of the minimal liver cell damage caused by the drugs used in this experiment, (III) knowledge of the intracellular location of the diagnostic enzyme makes it possible to describe, at least in part, the nature of the changes within the liver, (IV) measurement of plasma cholesterol and triglyceride levels can provide information about disruption in lipid metabolism, (V) the times at which blood samples are taken are most important if transient drug effects on the liver are to be detected.

Animals↗

Studies on liver chromatin RNA from rats treated with alkylating agents.

We have examined firstly some properties of rat liver chromatin RNA and nuclear sap RNA and secondly the incorporation of [3H]orotic acid into the RNA in vivo in control rats and in rats treated with the alkylating agents, N,N-dimethylnitrosamine or methyl methane sulphonate. Half or more of the nuclear RNA is associated with the chromatin and consists mainly of two species: one is labelled and probably comprises "nascent" RNA, and the other is unlabelled and of lower molecular weight. Neither species is attributable to cytoplasmic contamination. Studies with added polylysine with RNAase A and with DNAase I suggest that both species are ironically bound to protein and that the labelled species is not associated with the part of the chromatin DNA most readily degraded by DNAase I. After dimethylnitrosamine treatment, the amount of unlabelled RNA remains constant but the amount of labelled RNA increases after a low dose, and decreases after a high dose. After methyl methane sulphonate treatment, no change occurs in either species. These results can be explained by changes in extent of association of the DNA and protein within the chromatin complex.

Adolescent↗

Effect of fasting on the metabolism of cytidine nucleotides in the liver of intact and alpha-hexachlorocyclohexane-treated rats.

The utilization of (2-14C)orotic acid for the synthesis of cytidine components of the acid-soluble extract and for the RNA cytosine is decreased in the liver of rats which fasted for 24 or 72 h. The depression of the specific activity of the cytidine components is greater in animals which received alpha-HCH during the 24-hour interval after removal of food than in the control group; by contrast, the specific activity of the cytidine components again increases in rats fasting for 72 h. Analogous changes also occurred in the specific activity of RNA cytosine. Both the (U-14C)cytidine uptake and its utilization for the synthesis of RNA cytosine are enhanced in fasting rats; the administration of alpha-HCH has a potentiating effect. The total content of cytidine components of the acidsoluble extract of 1 g of liver tissue is enhanced 24 h after the animals of the control and experimental group were deprived of food. There are no marked differences in the concentration of the uridine components. Fasting has an additive effect on the increase of cytochrome P-450 level in the alpha-HCH treated rats. Alpha-HCH = alpha-1,2,3,4,5,6-hexachlorocyclohexane.

Animals↗

Influence of glucagon, 6-N,2'-O-dibutyryladenosine 3':5'-cyclic monophosphate and triamcinolone on the arginine synthetase system in perinatal rat liver.

1. The administration of triamcinolone (19-190mug/animal) to postnatal rats increased the arginine synthetase system activity 1.2-2.5-fold above control values 24h after exposure to the hormone. Cortisol (hydrocortisone), however, increased the arginine synthetase system activity only when larger (190mug/animal) or repeated daily doses were given. Glucagon (100mug/animal) stimulated arginine synthetase system activity only after the second postnatal day. None of these agents increased the activity in 19.5-21.5-day foetuses after intrauterine administration. 2. The viability of foetal rat liver explants maintained in organ culture for up to 54h was validated both by ultramicroscopic examination and by incorporation of radioactive leucine and orotic acid. 3. In organ cultures of foetal rat liver explants (18.5 days to term), triamcinolone (20mug/ml of medium) evoked a 2.8-4.3-fold increase after 24h of incubation. This increase was completely inhibited by actinomycin D (25mug/ml) or cycloheximide (10mug/ml). Cortisol (5-50mug/ml) or glucagon (0.067-67mug/ml) also increased the arginine synthetase system activity above the respective control values, but there was no increase in activity with insulin (0.05-0.25i.u./ml). 4. Maximum concentrations of glucagon (67mug/ml), dibutyryl cyclic AMP (6-N,2'-O-dibutyryladenosine 3':5'-cyclic monophosphate) (0.1mm) and triamcinolone (20mug/ml) incubated for 24h with foetal rat liver explants each produced between a two-and three-fold increase in the activity of the arginine synthetase system. Combinations of maximum amounts of glucagon and the cyclic nucleotide did not produce a greater effect than either agent alone. However, the combination of dibutyryl cyclic AMP with triamcinolone appeared to produce somewhat less than additive effects. 5. The effects of the cyclic nucleotide and triamcinolone were evident after 12h of incubation and increased steadily throughout the 24h of observation. This time-course of increased enzyme activity is very much slower than that reported for the induction of other enzymes in explant cultures of foetal rat liver.

Adenine Nucleotides↗

Inhibition of DNA synthesis by phenobarbital in primary cultures of hepatocytes from normal rat liver and from hepatic nodules.

One of the many hypotheses put forward to explain the mechanism by which phenobarbital (PB) promotes hepatocarcinogenesis is by differential mitoinhibition of surrounding hepatocytes while allowing the initiated hepatocytes to respond to growth stimuli and form foci and nodules. Given the similarity in structures between PB and orotic acid (OA), another rat liver tumor promoter, the present investigation was designed to determine (i) whether PB, like OA, exerts its mitoinhibitory effect at a site beyond the growth factor receptor and receptor mediated early events; and (ii) whether PB exerts a differential mitoinhibitory effect by selectively inhibiting the non-initiated hepatocytes but not the initiated hepatocytes in vitro. Our studies demonstrate that, like OA, PB also inhibits DNA synthesis in hepatocytes from normal rat liver in a dose dependent manner with 80-90% at a dose of 6 mM. One target site may lie beyond the growth factor receptor mediated early events because PB inhibited DNA synthesis in hepatocytes primed with the growth factor 24 h earlier. Interestingly, PB inhibited DNA synthesis not only in hepatocytes from non-nodular surrounding liver but also in hepatocytes from persistent hepatic nodules initiated with 1,2-dimethylhydrazine and promoted with OA. Therefore, our results suggest that although PB is a mitoinhibitor of DNA synthesis in hepatocytes, it does not appear to create as strong a differential mitoinhibition between non-nodular surrounding and initiated hepatocytes as is evident in the resistant hepatocyte and OA models. These results raise the question whether differential mitoinhibition is the major contributing factor in the PB mediated rat liver tumor promotion.

Animals↗

Chronic mitoinhibition during promotion of hepatocarcinogenesis.

We have reported previously that orotic acid (OA), a precursor for pyrimidine nucleotide biosynthesis, is able to promote carcinogenic process in both liver and duodenum of rats. The present study investigates the possible role of mitoinhibitory effects of OA as being responsible for its promotional effects. Male Fischer 344 rats were given a semisynthetic basal diet (BD) or a diet containing 1% OA for four weeks coupled with 2/3 partial hepatectomy (PH), and all animals were then continued on BD for an additional four weeks. This protocol is known to exert a promoting effect on the initiated rat liver. Livers were perfused, and the labeling index (LI) of isolated cultured hepatocytes was monitored. Hepatocytes isolated from livers of rats fed a BD or 1% OA exhibited in vitro an LI of 39 +/- 2 and 24 +/- 1%, respectively. The lowered in vitro LI was seen even upon exposure to epidermal growth factor (EGF) (67 +/- 2% in OA-treated livers compared to 91 +/- 2% in hepatocytes from control rat liver). A similar four-week exposure to OA coupled with PH decreased hepatic DNA synthesis induced by a choline-deficient diet in vivo by about 50%. These results indicate that OA is able to decrease the response of normal hepatocytes to growth factors and suggest a possible mechanism of chronic differential mitoinhibition as a basis for promotion induced by OA.

Animals↗

Characterization of ribonucleoprotein particles released from isolated nuclei of regenerating rat liver in two different in vitro systems.

The ribonucleoprotein particles released from isolated nuclei of regenerating rat liver in two in vitro systems were studied and the following results were obtained. 1. When the isolated nuclei of regenerating rat liver labeled in vivo with [14C] orotic acid were incubated in medium containing ATP and an energy-regenerating system (medium I) release of labeled 40-S particles was observed. Analysis of these 40-S particles showed that they contained heterogeneous RNA but no 18 S or 28 S ribosomal RNAs and their buoyant density in CsCl was 1.42-1.45 g/cm3, suggesting that they were nuclear informosome-like particles released during incubation. 2. When the same nuclei were incubated in the same medium fortified with dialyzed cytosol, spermidine and yeast RNA (medium II), release of labeled 60-S and 40-S particles was observed. Using CsCl buoyant density gradient centrifugation, two components were found in the labeled ribonucleoprotein particles released from nuclei in this medium. The labeled 60-S particles were found to contain 28-S RNA as the main component and their buoyant density in CsCl was 1.61 g/cm3, suggesting that they were labeled large ribosomal subunits. The labeled 40-S particles contained both 18 S RNA and heterogeneous RNA and they formed two discrete bands in CsCl, at 1.40 and 1.56 g/cm3, suggesting that they contained small ribosomal subunits and nuclear informosome-like particles. 3. These results clearly indicate that addition of dialyzed cytosol, spermidine and low molecular yeast RNA to medium I causes the release of ribosomal subunits or their precursors from isolated nuclei in the in vitro system.

Animals↗