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[Synthesis of nucleic RNA in hydroxythiamine-induced vitamin B1 deficiency].

24 hours after administration of hydroxythiamine (vitamin B1 antimetabolite) in a dose of 40 mg per 100 g of body weight, the incorporation of (2(14)C)-orotic acid and (methyl-14C)-methionine into total nuclear RNA decreases. The content of RNA and the specific radioactivity of cytoplasmic UTP and methionine pools remain unchanged. Thermal phenol fractionation of nuclear RNA reveals a decrease in a predominant synthesis of nucleolar RNA, while that of heterogeneous nuclear RNA, tRNA, and 5S-RNA remains unaffected.

Animals↗

De novo synthesis of purine nucleotides in human blood platelets.

Human blood platelets were found to carry the complete pathway of de novo purine nucleotide synthesis. The rate of purine synthesis was gauged by the rate of incorporation of precursor (14C)formate into purines. The effect on formate incorporation of several compounds known to inhibit purine synthesis de novo was studied. Adenine, orotic acid and azaserine inhibited purine synthesis, but hypoxanthine and allopurinol did not. Platelet content of phosphoribosylpyrophosphate (PRPP) and of ribose-5-pes. Incubation of intact platelets with high inorganic phosphate concentrations caused an increase in platelet PRPP content but did not affect R-5-P content or the rate of purine synthesis de novo.

Adenine↗

Orotic aciduria in two unrelated patients with inherited deficiencies of purine nucleoside phosphorylase.

The urines of two unrelated children with inherited deficiencies of purine nucleoside phosphorylase have been found to contain significant quantities of orotic acid in addition to the previously reported purine nucleosides. The data are consistent with some cell types of these immunodeficient patients being deplete of pyrophosphoribosylphosphate, a precursor of both purine, and pyrimidine nucleosides. It is suggested that the pyrophosphoribosyl-phosphate-depleted cells may be some component of the thymus-dependent immune system.

Child↗

Modest catalysis of the decarboxylation of orotate by hydrogen bonding: a theoretical model for orotidine- 5' -monophosphate decarboxylase.

As a model for interactions present in the active site of orotidine-5'-monophosphate decarboxylase (ODCase), the effect of hydrogen bonds to the carbonyl groups (O-2 and O-4) of orotic acid and its decarboxylation product was probed with ab initio calculations. We have found that the transition state/carbanion intermediate is a better proton receptor and therefore, the hydrogen bonds can be a modest source of catalysis. Comparison of the calculated data with results from site-directed mutagenesis provides some insights into the polarity of the active site.

Catalysis↗

Pyrimidine pools and macromolecular composition of pyrimidine-limited Escherichia coli.

The growth rate of a pyrimidine-requiring strain was controlled by limiting the concentration of exogenous orotic acid. As the steady state, pyrimidine-limited growth rate was decreased, the intracellular pyrimidine pools and the total nucleic acid per unit mass of culture also decreased. The ratio of deoxyribonucleic acid to protein remained constant, whereas the ratio of ribonucleic acid to protein decreased 30% over a threefold variation in growth rate (50- to 150-min doubling times). The intracellular uridine triphosphate and cytosine triphosphate pools also decreased (although not coordinately), and the pyrimidine biosynthetic enzymes were derepressed. Cell size was unaffected by pyrimidine-mediated variation of the growth rate.

Bacterial Proteins↗

Rat liver and small intestine produce proapolipoprotein A-I which is slowly processed to apolipoprotein A-I in the circulation.

Two-dimensional electrophoretic analysis of plasma lipoproteins from male Osborne-Mendel rats consistently reveals three isoforms of apolipoprotein A-I (apo-A-I) with the following apparent pI values and quantitative distribution: isoform 3, pI = 5.68, 69%; isoform 4, pI = 5.55, 29%; isoform 5, pI = 5.44, 2%. The two major isoforms were obtained by preparative isoelectric focusing and subjected to NH2-terminal amino acid sequence analysis with the following results: isoform 3, (Asp)-Glu-Pro-Gln-Ser-Gln-Trp-Asp-Arg-Val; isoform 4, X-Glu-Phe-X-Gln-Gln-Asp-Glu-Pro-Gln-Ser. By comparison with the amino acid sequence previously reported for the primary translation product of rat intestinal apo-A-I mRNA (Gordon et al. (1982) J. Biol. Chem. 257, 971-978), isoform 3, the more basic isoform, is identified as mature apo-A-I and isoform 4 as its proform ( proapo -A-I). The proform differs from mature apo-A-I by a 6-amino acid extension at the NH2 terminus. Isoform 5 was not identified further. The plasma steady state distribution of the apo-A-I forms indicates that proapo -A-I is relatively stable in the circulation. Virtually all plasma proapo -A-I is lipoprotein-associated. No significant differences in the steady state proportions of plasma apo-A-I forms were observed between male and female rats, or among various subfractions of plasma high density lipoproteins obtained by heparin-Sepharose affinity chromatography or by density gradient ultracentrifugation. Rats fed a high fat, high cholesterol diet, however, showed an increase in the proportion of circulating proapo -A-I. The relative increase in proform was even more pronounced in rats fed a fat-free diet containing orotic acid. The biosynthesis, secretion, and metabolism of the various apo-A-I forms were also studied. In liver and intestine, the only known sites of apo-A-I synthesis in the rat, approximately 85% of the newly synthesized intracellular apo-A-I, was the proform . Proapo -A-I was also the predominant form (approximately 80%) released into the circulation by isolated, perfused livers and by autoperfused intestinal segments in vivo. Gradual processing of circulating proapo -A-I to mature apo-A-I was observed in vivo following pulse-labeling of apo-A-I with [3H]leucine. Processing in vivo was approximately 80% complete in 10 h.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Nitrogen requirement of the kitten.

Three experiments were conducted to determine the nitrogen (N) requirement of the young kitten. The feline basal diet contained minimal requirement levels of each indispensable amino acid (IAA) to comprise a total dietary N concentration of 2.52% and an IAA N to dispensable amino acid (DAA) N ratio (I/D) of 0.70. In experiments 1 and 2, both the dietary N concentration and I/D ratio were varied through changes in either the DAA level (experiment 1) or IAA level (experiment 2). The results revealed that a reduction in either dietary N or in I/D ratio from basal levels (ie, 2.52% N and I/D ratio of 0.70) depressed (P less than 0.05) kitten weight gain, feed efficiency, and N retention, whereas simultaneous increases in each resulted in no further improvement in these responses. Comparison of this feline basal diet with a commercial ration (experiment 3) revealed no differences (P less than 0.10) in gain, gain/feed, or N retention, although the purified diet showed superiority (P less than 0.01) when gain/N intake was determined (13.3 vs 5.7). Therefore, the feline dietary N requirement has been estimated to be 2.52% (15.75% protein equivalent) or 16% of the calories as protein. In the process of these experiments, creatinine and orotic acid excretion from kittens fed the purified diet were constant, averaging (+/- SEM) 24.7 +/- 0.7 mg/kg of body weight and 9.95 +/- 2.3 micrograms/mg of creatinine, respectively. Urea-N and ammonia-N comprised approximately 83.0% and 3.8% of the total urinary nitrogen.

Animal Nutritional Physiological Phenomena↗

Development and survival of Drosophila melanogaster fed a diet containing pyrimidine analogs.

A single generation of Drosophila melanogaster was raised on different media. One of the media was unsupplemented (the control) and the others were supplemented with pyrimidine analog at 10.3 mmol/kg culture medium. The relative numbers of larvae, pupae, and F1 adults reproduced from parent flies on each medium served as an indication of the relative toxicity of the supplements. The relative decreasing order of toxicity of the pyrimidines was as follows: 5-bromouracil < thymine < uracil = orotic acid = control = cytosine, control < UMP. The toxic effects of 5-bromouracil and thymine seem to be associated with the addition of a bromine or methyl group to carbon 5 of the pyrimidine ring. The UMP supplementation increased the number of adult F1 flies above the control group indicating that UMP was not only non toxic but also that it was beneficial.

Animals↗

[Incorporation of radioactive protein and RNA precursors into animal liver polysomes under hydroxythiamine injection].

Effect of hydroxythiamine, B1 antivitamin, on the incorporation of labelled protein precursor (14C-hydrolysate of chlorella protein, 14C-leucine) and 14C-orotic acid into polysomes and RNA fractions of rat and mouse liver is investigated. Single subcutaneous injection of hydroxythiamine (400 mg/kg) is found to inhibit in 24 hours the synthesis of 28S and 18S rRNAs, polysome profile being unchanged and the incorporation of the label into protein being increased. Hydroxythiamine is proposed to induce the synthesis of TDP-dependent enzyme proteins responsing the decrease of their activity.

Animals↗

Biosynthesis of pyrimidine nucleotides and level of cytochrome P-450 in rat liver and kidney after clofibrate administration (an in vivo study).

Like other lipid-soluble xenobiotics, clofibrate (ethyl-2-(4-chlorophenoxy)-2-methylpropanoate) increased the level of microsomal cytochrome P-450 in liver and decreased the utilization of 14C-orotic acid for the synthesis of hepatic cytidine nucleotides. This phenomenon was associated with the increased (a) uptake of 14C-cytidine, (b) total content of cytidine components of the acid-soluble extract and (c) utilization of this nucleoside for the synthesis of RNA. No changes were observed in uridine components. Clofibrate also increased the level of cytochrome P-450 in kidney microsomes; the degree of induction was almost the same as in the liver. The variations of renal pyrimidine metabolism after administration of the drug were analogous to those observed in the liver.

Animals↗

Transformation of the yeast Saccharomyces kluyveri by Saccharomyces cerevisiae-based plasmids.

For the transformation of the yeast Saccharomyces kluyveri, ura3 mutants were obtained by 5-fluoro-orotic acid selection. By utilizing the method based on treatment of intact cells with alkali cations, the ura3 strains of S. kluyveri were transformed by Saccharomyces cerevisiae-based plasmids. In the transformed cells, a S. cerevisiae centromere-based plasmid was stably replicated autonomously. Thus, this system will permit the study of gene expression and its regulation in S. kluyveri in relationship to that in S. cerevisiae.

Ampicillin↗

Absence of oroticaciduria in adenosine deaminase deficiency and purine nucleoside phosphorylase deficiency.

Orotic acid excretion was normal when tested by three methods in adenosine deaminase deficiency and purine nucleoside phosphorylase deficiency. These results do not support the speculation, based on the oroticaciduria observed by others, that the immunodeficiency in these disorders results from the inhibition of pyrimidine biosynthesis. An alternative hypothesis is discussed.

Adenosine Deaminase↗

Effect of cystamine on protein, phospholipid and RNA synthesis or degradation.

Cystamine administration to rats partially inhibited (14C)-leucine incorporation to microsomal proteins, and (14C) orotic acid incorporation to RNA but markedly stimulated (32P) incorporation to liver microsomal phospholipids. Cystamine administration did not modify the decay of radioactivity of liver microsomal lipids prelabeled with (32P) or of microsomal protein prelabeled with [(14C)-guanidino]arginine. Notwithstanding cystamine increased the RNA content in total liver. Results suggest that cystamine inhibits protein synthesis, stimulates phospholipid synthesis and inhibits RNA synthesis and degradation.

Animals↗

Cytochalasin B: lack of effect on mucopolysaccharide synthesis and selective alterations in precursor uptake.

Synthesis and secretion of mucopolysaccharide in mouse 3T3 fibroblasts and in embryonic submandibular glands are unaffected by amounts of cytochalasin B that alter the morphology of these cells and tissues. The drug markedly and reversibly inhibits incorporation of [(3)H]glucosamine into mucopolysaccharide by preventing cellular uptake of the precursor, but does not affect incorporation of radiosulfate. Cytochalasin does not alter DNA, RNA, or protein synthesis, but stimulates the uptake of orotic acid and markedly inhibits the uptake of glucose. These selective effects on the transport of small molecules suggest that the primary action of the drug may be on cell membranes. Since processes unrelated to microfilament disruption may be altered by cytochalasin, great caution must be exercised in interpreting studies with the drug.

Animals↗

A comparative study of the effects of aflatoxin B1, alpha-amanitin and actinomycin-D on RNA synthesis by rat liver.

The effect of different combinations of aflatoxin B1, alpha-amanitin and actinomycin-D on the incorporation of orotic acid-6-14C into RNA was investigated using rat liver slices. The results support the view that the mode of action of aflatoxin B1 and alpha-amanitin are similar in some respects, and that aflatoxin B1 and actinomycin-D act according to different mechanisms. Evidence was also obtained about the formation of an active metabolite of aflatoxin B1 in this system.

Aflatoxins↗

Effect of amines on fibrinogen synthesis.

L-Epinephrine, serotonin, and isoproterenol stimulate the incorporation of [14C]leucine into thrombin-induced clottable protein; this stimulation was abolished by actinomycin D. The incorporation of 32P into total RNA of rat liver, the site of fibrinogen synthesis, was stimulated by epinephrine and was highest at 2 h after 32P administration. [14C]Orotic acid incorporation into polysomal RNA of liver was also increased significantly by epinephrine and serotonin. The immunoprecipitation of newly synthesized protein by monospecific antibody raised against pure rat fibrinogen clearly demonstrates that L-epinephrine increased fibrinogen formation in vivo under the experimental condition. Translation of poly (A)-containing RNA from total polysomal RNA clearly indicates that L-epinephrine increased mRNA specific for fibrinogen.

Animals↗