Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “OROTIC ACID”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,009 records · Page 56Linked to original sources

[Effect of adenosine on synthesis of pyrimidine nucleotides and RNA in normal lymphocytes and under conditions of chronic lymphoid leukosis].

Effect of exogenous adenosine on synthesis of pyrimidine nucleotides and RNA was studied in lymphocytes of the patients with leukemic form of chronic lymphoid leukosis. In presence of adenosine lymphocytes were incubated in mixtures containing the precursors--2,3-2(3)H-aspartic and 2-14C-orotic acids as well as 5-3H-uridine. Effect of adenosine on the activity of key enzymes of pyrimidine nucleotide synthesis (orotidine monophosphate pyrophosphorylase and uridine kinase) was studied. The enzymatic activity was estimated using radiochemical procedures in extracts of lymphocytes stored at -20 degrees after acetone drying. Adenosine similarly inhibited synthesis of pyrimidine nucleotides and RNA in normal and leukemic leukocytes. One of the mechanisms, by means of which the inhibitory effect of adenosine was realized, was related to the enzymatic activity of orotidine monophosphate pyrophosphorylase and uridine kinase.

Adenosine↗

[Characterization and transformation of anti-FOA strain of Aspergillus awamori].

A suspension of freshly harvested spores of Aspergillus awamori SG1 strain was exposed to UV light. The irradiated spores with survival rate of 10%-15% were plated directly on minimal medium (MM) agar plates containing 10 mmol/L uridine and 5-fluoro-orotic acid (FOA 1 mg/mL). Five stable anti-FOA colonies with the reversed rate below 10(-9) were obtained. All anti-FOA strains, can grow on uridine or uricil-containing minimal medium agar plate but not on orotic acid-containing MM plate, indicating that the mutation happened in the URA3 gene. Northern blotting analysis showed that the mutation of URA3 gene could not be transcribed and it was confirmed by RT-PCR. With modified PEG-mediated protoplast transformation method the wild URA3 gene could complement the ura3 mutant strain SA5 to wild type. Southern blotting of the transformant indicated the wild RUA3 gene replaced the mutated ura3 gene.

Aspergillus↗

Thermal compensation in protein and RNA synthesis during the intermolt cycle of the American lobster, Homarus americanus.

1. The in vitro rates of incorporation of precursors into protein and RNA and the concentration of RNA were measured in tissues of intermolt and premolt lobsters acclimated to 5 degrees C and 20 degrees C. Midgut gland, abdominal muscle and gill of intermolt lobsters respond to temperature acclimation by a compensatory translation of the rate-temperature (R-T) curves with respect to the rates of incorporation of 3H-leucine and 3H-uridine into the acid-insoluble fraction. Midgut gland and muscle of premolt animals exhibit either no compensation or inverse compensation; gill tissue exhibits a rotation of the R-T curve. 2. The existence of the complete de novo pathway of pyrimidine biosynthesis is demonstrated in the class Crustacea. NaH14 CO2 is incorporated into orotic acid and orotic-14 C-acid is incorporated into the acid-insoluble fraction. 3. Both the concentration of RNA and the rates of incorporation of precursors of both the salvage and de novo pyrimidine pathways are enhanced in the midgut gland of premolt lobsters, relative to intermolt tissue, under conditions of warm-acclimation.

Acclimatization↗

Uptake of amino acids and nucleic acid precursors by regenerating rat liver.

1. At 0.5-1.0h after partial hepatectomy the intracellular acid-soluble fraction of rat liver took up twice as much radioactivity from [(3)H]orotic acid, [(3)H]uridine and [(3)H]thymidine as did similar fractions from sham-operated animals. This increase in penetration was not prevented by adrenalectomy or actinomycin, both of which decreased precursor uptake into nuclear RNA at this time. The increase in entry was still shown by thymidine at 22h after operation, at the height of the S period. Adenine penetration was not increased 1h after partial hepatectomy. 2. Plasma concentrations of ornithine and possibly methionine, tyrosine and lysine were raised 1.5h after partial hepatectomy. [(3)H]Lysine entry into regenerating liver at this time was increased by 60%; [(3)H]valine uptake was unaffected. Intracellular amounts of tyrosine, phenylalanine and ornithine in the liver were also increased. 3. The relation of these events to the start of liver regeneration is discussed.

Adenine↗

Hereditary orotic aciduria heterozygotes accompanied with neurological symptoms.

We report a family with hereditary orotic aciduria heterozygotes. A 3-year-old boy who had been diagnosed as having cerebral palsy and mental retardation presented himself with an increase in excretion of urinary orotic acid. Enzymatic studies revealed that the boy and his healthy mother were hereditary orotic aciduria heterozygote carriers. We can not prove that this pyrimidine disorder caused his neurological symptoms, but his pyrimidine nucleoside supply may have been insufficient in his neonatal period.

Cerebral Palsy↗

[Enzyme defects of the urea cycle in differential acute encephalopathy diagnosis in adulthood. Diagnosis and current therapy concepts].

Six enzyme defects of the urea cycle have been described. Ornithine transcarbamylase deficiency is the most frequent of these diseases. The cumulative frequency is 1:8000. Most patients become symptomatic in childhood, but onset of symptoms may occur later in childhood or even adulthood. The patients present with recurrent episodes of an unspecific acute encephalopathy, seizures and clouding of consciousness to a variable degree. Focal neurological signs such as hemiparesis, aphasia or ataxia may also occur. These episodes may be triggered by infection, protein overload or drugs. Diagnostic are increased blood ammonia levels. Characteristic patterns of plasma amino acids and the determination of orotic acid in the urine mostly discriminate the individual disorders. Further diagnostic steps include the allopurinol challenge test, liver or skin biopsy for measurement of enzyme activity and molecular genetic studies. Treatment requires restriction of protein intake, supplementation of arginine and activation of alternative pathways of nitrogen excretion with benzoate or phenylbutyrate. Untreated, the acute episode may be lethal. Long-term treatment improves the clinical outcome considerably. Urea cycle defects should be included in the differential diagnosis of any encephalopathy or coma of unclear origin, and blood ammonia should be determined early in the evaluation of such patients.

Adult↗

A protein from polymorphonuclear leukocytes (LEM) which affects the rate of hepatic amino acid transport and synthesis of acute-phase globulins.

A proteinaceous secretion from phagocytizing polymorphonuclear leukocytes, termed "leukocytic endogenous mediator" (LEM), has been shown to have marked effects on hepatic amino acid transport and RNA and protein synthesis. A single injection of LEM results in a marked accumulation of labeled nonmetabolizable model amino acids in the liver of normal rats. The LEM-stimulated uptake of amino acids by liver was observed in adrenalectomized, hypophysectomized, thyroidectomized, or diabetic rats and could not be duplicated by pharmacological doses of a large variety of hormones. In addition, LEM stimulated an increased uptake of alpha-aminoisobutyric acid by isolated livers during their perfusion in vitro. LEM also stimulated an increased incorporation of orotic acid into hepatic RNA of intact rats, especially into the bound ribosomal fraction. This increased synthesis of RNA preceded an enhanced hepatic production of a number of the acute-phase plasma globulins. LEM did not stimulate the adenylate cyclase-cAMP system in liver and was not found to utilize this system as a second messenger. Thus, the effects of LEM in stimulating hepatic amino acid transport appear to be direct, without mediation by other hormones, and to be independent of cAMP. On the other hand, the ability of LEM to stimulate RNA and acute phase globulin synthesis in liver may require the presence of physiological quantities of hormones such as adrenal corticoids.

Adenylyl Cyclases↗

Ammonia metabolism in a family affected by hyperargininemia.

A French-Canadian family, with a 14-year old mentally retarded girl, was investigated for hyperargininemia. The girl showed a fasting plasma ammonia N concentration of 100 micrograms/dl (normal : 50.5 +/- 13 micrograms/dl), and a two-hour post protein load level of 183 micrograms/dl (normal : 51.6 +/- 17.6 micrograms/dl). Plasma urea N was lower than normal in the post-load sample. Arginine concentrations were 11 times normal in the plasma, 47 times normal in the urine and 4 times normal in erythrocytes. Measurement of erythrocyte arginase showed only 1% activity in the propositus, and 52-54% in the parents and a sibling as compared to controls. In heterozygous members of the family, the Km (arginine) was similar to controls. Column chromatography of serum amino acids in the propositus showed arginine to be 17.6 S.D. higher than the normal mean. A characteristic cystine-lysinuria pattern of urinary amino acids was also seen. Measurement of other urinary nitrogenous metabolites showed low urinary urea and excessive orotic aciduria. On "normal" food intake, the patient excreted 122 mg of orotic acid/24 h, as against 3.7 mg by the sibling and 3.9 mg by the mother. It is postulated that the level of ornithine in hepatocyte mitochondria is critical to the disposal of carbamyl phosphate. The lack of normal regeneration of ornithine by liver arginase, and an excessive urinary excretion may be responsible for its low mitochondrial concentration. This would cause diversion of unmetabolised carbamyl phosphate towards orotic acid synthesis or ammonia production.

Adolescent↗

METABOLISM OF TISSUE CELLS IN SUSPENSION. SYNTHESIS OF RIBONUCLEIC ACID BY LEIVER CELLS IN SUSPENSION.

1. Liver cells in suspension are shown to incorporate several RNA precursors into their RNA. 2. The incorporation of [(32)P]phosphate and [(14)C]adenine into the RNA of the cell suspension is usually of the same order as that in the perfused (or unperfused) liver slices. However, the initial lag in the incorporation of adenine into the RNA of the cell suspensions is much longer than that obtained for the tissue slices, and the optimum incorporation of adenine in the former, unlike that in the latter, needs exogenous glucose and probably a high concentration of phosphate. 3. The cell suspensions also differ from the tissue slices in being unable to incorporate [(14)C]orotic acid into their RNA, and resemble tumour tissues in incorporating uracil into their RNA at a rate significantly higher than that obtained with the tissue slices. 4. The above differences in the metabolic behaviour of liver-cell suspensions and tissue slices are considered to be due to the different levels of organization of the liver cells in the two tissue preparations.

Adenine↗

Amino acid requirement for the growth-hormone stimulation of incorporation of precursors into protein and nucleic acids of liver slices.

1. Incorporation of [(14)C]leucine into protein in rat liver slices, incubated in vitro, increased as the concentration of unlabelled amino acids in the incubation medium was raised. A plateau of incorporation was reached when the amino acid concentration was 6 times that present in rat plasma. Labelling of RNA by [(3)H]orotic acid was not stimulated by increased amino acid concentration in the incubation medium. 2. When amino acids were absent from the medium, or present at the normal plasma concentrations, no effect of added growth hormone on labelling of protein or RNA by precursor was observed. 3. When amino acids were present in the medium at 6 times the normal plasma concentrations addition of growth hormone stimulated incorporation of the appropriate labelled precursor into protein of liver slices from normal rats by 31%, and into RNA by 22%. A significant effect was seen at a hormone concentration as low as 10ng/ml. 4. Under the same conditions addition of growth hormone also stimulated protein labelling in liver slices from hypophysectomized rats. Tissue from hypophysectomized rats previously treated with growth hormone did not respond to growth hormone in vitro. 5. No effect of the hormone on the rate or extent of uptake of radioactive precursors into acid-soluble pools was found. 6. Cycloheximide completely abolished the hormone-induced increment in labelling of both RNA and protein. 7. It was concluded that, in the presence of an abundant amino acid supply, growth hormone can stimulate the synthesis of protein in rat liver slices by a mechanism that is more sensitive to cycloheximide than is the basal protein synthesis. The stimulation of RNA labelling observed in the presence of growth hormone may be a secondary consequence of the hormonal effect on protein synthesis. 8. The mechanism of action of growth hormone on liver protein synthesis in vitro was concluded to be similar to its mechanism of action in vivo.

Amino Acids↗

[Changes in the end part of the ECG ventricular complex under the effect of digitalis preparations and their combination with metabolic preparations].

Analysis of the dynamics of changes in the end part of the ECG ventricular complex in 311 patients with rheumatic heart disease and stages IIA, IIB, and III circulatory insufficiency after treatment with preparations of digitalis and their combination with biologically active substances (orotic acid, vitamin B12, calcium pantothenate, ATP, methionine, inosi-F) is presented. When digitalis glycosides are used with preparations that have an effect on the nucleic acid synthesis and energy production, the "digitalis--induced" changes in the end part of the ECG ventricular complex are less marked while the clinical effect of treatment is more appreciable

Adenosine Triphosphate↗

Selection of ura5 and ura3 mutants from the two varieties of Cryptococcus neoformans on 5-fluoroorotic acid medium.

Spontaneous mutants requiring uracil were isolated from both varieties of Cryptococcus neoformans by plating on 5-fluoroorotic acid (5-FOA) medium. Of the 36 strains tested (18 var. neoformans and 18 var. gattii), 24 (12 of each variety) generated 5-FOA-resistant cells requiring uracil for growth. Six of the 12 C. neoformans var. gattii strains produced ura3 cells while the remaining six strains produced ura5 cells. None of the 12 strains produced both ura3 cells and ura5 cells. All 12 isolates of var. neoformans, however, produced ura5 cells and one of them produced ura3 as well as ura5 cells. A genetic lesion in the URA5 gene of an isolate of C. neoformans var. gattii was confirmed by complement with the cognate URA5 gene of C. neoformans var. neoformans. The ura3 isolates were tentatively identified by their ability to grow on a medium containing uridine but not on a medium with orotic acid or orotidine. Enzymatic assays for orotidine-5'-phosphate decarboxylase activity confirmed the isolates to be ura3 mutants. Hybridization analysis of total DNA, digested with EcoRI or StuI and probed with pURA5g2, revealed the presence of only one copy of URA5 in the strains of either variety, regardless of the prevalence of ura5 mutants. Extensive polymorphism was observed in the restriction patterns of the fragments containing the URA5 locus. The prevalence of spontaneously arising ura3 mutants among the isolates of C. neoformans var. gattii, but not among the isolates of C. neoformans var. neoformans, is one more biological difference that distinguishes the two varieties.

Animals↗

[Peculiarities of nucleotide and nucleic acid metabolism in hydroxythiamine-induced vitamin B1 deficiency].

24 hours after administration of hydroxythiamine, the vitamin B1 antimetabolite, the rat liver pools of orotic acid, UDP-glucose and ATP show a decrease. The cellular energy charge calculated from the adenylic nucleotide concentrations also appears to be significantly diminished. The de novo pyrimidine synthesis lowers under these conditions, while the rates of formation and destruction of essential UDP-sugars remain unaffected. The nucleic acid content is at the control level. A comparison of specific activities of UTP and RNA allows one to conclude that the previously observed decrease in [14C]orotate incorporation into RNA under the action of hydroxythiamine reflects the inhibition of RNA synthesis.

Adenosine Triphosphate↗

[Animal experiment studies on the influence of fatty infiltration of liver cells on tissue relaxation times and signal changes in magnetic resonance tomography].

Using a spectrometer (n = 60) in vitro and MRT imaging (n = 8) in vivo, we studied the influence of fatty changes of liver cells on the relaxation times of the liver (two animal models of fatty liver disease/orotic acid, L-ethionine). Induction of fatty degeneration of the liver by means of an orotic acid diet resulted in pure deposition of fat in the liver without any histological or serological proof of inflammatory changes. Although accumulation of triglyceride in the liver reduced the T1 relaxation time only relatively slightly (-15%), there was good correlation (r = 0.88) between fat content and T1. There was also good correlation (r = 0.92) between T2 and histological fat content. Inflammatory changes besides fatty deposition were seen both serologically and histologically in the L-ethionine model, so that the fatty content did not correlate with T1. In-vivo MRT imaging showed that spin-echo sequences are inappropriate for diagnosing fatty infiltration of the liver despite the relaxation time changes produced by the fatty deposition. On the other hand, chemical-shift imaging sequences are very sensitive to identify fatty deposits, and are also independent of any additionally existing inflammatory changes.

Alanine Transaminase↗

Studies on the pathogenesis of liver necrosis by alpha-amanitin. Effect of alpha-amanitin on ribonucleic acid synthesis and on ribonucleic acid polymerase in mouse liver nuclei.

1. Injection of alpha-amanitin to mice causes a decreased incorporation of [6-(14)C]-orotic acid into liver RNA in vivo. 2. The activity of RNA polymerase activated by Mn(2+) and ammonium sulphate is greatly impaired in liver nuclei isolated from mice poisoned with alpha-amanitin, and is inhibited by the addition of the same toxin in vitro. 3. The activity of the Mg(2+)-activated RNA polymerase is only slightly affected by alpha-amanitin either administered to mice or added in vitro.

Animals↗

Lysine-orotate potentiates the toxicity of an extract of the mushroom Amanita phalloides.

Upon simultaneous administration lysine-orotate increases (about 40-fold) the toxicity in mice of a crude Amanita phalloides extract. This effect, though less prominent, is also observed if these two compounds are injected 1 hr apart. The potentiating effect of lysine-orotate is dose dependent and neither L-lysine nor orotic acid exert any effect on the toxicity of the crude A. phalloides extract. Lysine-orotate increases the toxicity of amatoxins (alpha-amanitin) only, not affecting the toxicity of phalloidins. Thin layer chromatography on silica gel plates and column chromatography on Sephadex LH-20 has proven the formation of a relatively stable complex of amanitin and lysine-orotate. The results demonstrate that lysine-orotate should not be used as a hepatoprotective agent in cases of Amanita intoxication.

Amanitins↗

Orotic aciduria fibroblasts express a labile form of UMP synthase.

Orotic aciduria (type 1) results from a mutation in the gene for UMP synthase, a bifunctional protein containing the two enzyme activities which convert orotic acid and 5-phosphoribosyl-1-pyrophosphate to UMP and CO2. In fibroblasts from individuals with orotic aciduria, these two enzymatic activities are about 1% of normal but increase dramatically when deficient cells are grown in the presence of 6-azauridine. Using a polyclonal antiserum to sodium dodecyl sulfate-denatured, pure human UMP synthase, we show that fibroblasts from a patient with orotic aciduria have a low level of immunoreactive UMP synthase protein. Pulse-chase analysis reveals that the UMP synthase is degraded rapidly in the deficient cells. Growth of deficient cells in 6-azauridine leads to an increase in UMP synthase protein and its two enzymatic activities via a decreased rate of proteolytic degradation of UMP synthase. UMP synthase in extracts from deficient cells is more readily denatured by heat and is stabilized after growth of cells in 6-azauridine. These data suggest that the detrimental deficiency of this one patient results from a structurally altered UMP synthase that is probably present in low steady-state amounts due to proteolysis and that this labile protein can be stabilized against heat denaturation and proteolytic degradation by 6-aza-UMP.

Azauridine↗

Developmental alteration in RNA metabolism of E1 mouse brain.

The contents of brain RNA rose rapidly until 14 days after birth and then dropped. They were lower in the E1 than in the non-convulsive mice between 56 and 100 days of life. The contents of acid-soluble UMP and their specific radioactivities, three hours after an intracranial injection of [3 H]-orotic acid, were not different in the same age of E1 and non-convulsive mouse brains. From four to 20 days after birth, the specific and relative specific radioactivities, representing the ratio of brain RNA synthesis, of the E1 mice were lower than those of the non-convulsive strains, while the E1 mice, applying convulsions once a week, exhibited higher values during the periods from 56 to 100 days of age as compared with the non-stimulated E1 or non-convulsive strains.

Aging↗