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Ornithine loading did not prevent induced hyperammonemia in a patient with hyperornithinemia-hyperammonemia-homocitrullinuria syndrome.

Impairment of urea cycle function in hyperornithinemia-hyperammonemia-homocitrullinuria syndrome is presumably caused, in some patients, by deficient transport of ornithine from cytoplasm into mitochondria. We studied the effect of L-ornithine on L-alanine-induced hyperammonemia in a French-Canadian proband with the syndrome by giving: a 90-min intravenous alanine load (6.6 mmol/kg) together with ornithine (1.1 mmol/kg); an intravenous ornithine bolus (0.3 mmol/kg) followed by ornithine infusion (1.1 mmol/kg) 90 min prior to loading with alanine and ornithine; ornithine supplementation per os (1 g, four times daily X 2 wk) prior to loading with alanine and ornithine. Blood ammonia increased from high normal values to 975, 990, and 750 mumol/liter (normal less than 70) and urinary orotic acid from trace to 539, 494, and 1296 mumol/mmol creatinine (normal 5-11) after the respective loads. Plasma alanine peaked at 1.56-4.24 mmol/liter and ornithine at 1.29-1.95 mmol/liter, but other amino acids were stable. Therefore, ornithine loading did not protect this hyperornithinemia-hyperammonemia-homocitrullinuria patient from hyperammonemia induced by amino-nitrogen loading. Renal fraction excretion of citrulline, lysine, ornithine, glycine, alanine, and tyrosine increased more than 3-fold during ornithine priming, whereas all amino acids were excreted in excess after alanine + ornithine loads; homocitrulline excretion remained unchanged; some urine collections indicated "negative reabsorption" (i.e. apparent secretion) of lysine, histidine, and citrulline. Dietary supplementation with ornithine could deplete lysine pools by impairing lysine reabsorption.

Alanine↗

Diffusion enhancement of drugs by loaded nanoparticles in vitro.

1. Dalargin, a Leu-enkephaline analogue, does normally not pass the blood-brain barrier (BBB). When it was adsorbed onto the surface of polybutylcyanoacrylate, nanoparticles dalargin can cross the BBB and induce central analgesic effects after intravenously as well as after oral application. 2. The mechanisms of this effect are unknown. Therefore, the authors evaluated whether neuronal transport was involved in this effect. In hippocampal synaptosomes and in tissue slices in vitro the active neuronal uptake and diffusion processes were determined by use of labelled D-aspartate as a marker of the aspartate/glutamate transporter and orotic acid as marker of diffusion. 3. Transporter-mediated uptake into hippocampal tissue preparations was not altered in comparison to control whereas diffusion processes were enhanced. These data indicate that the nanoparticles can modify neuronal uptake mechanisms.

Animals↗

The influence of testosterone on the synthesis and degradation rate of various RNA species in the mouse kidney.

1. The effect of a daily injection of testosterone on the in vivo rate of RNA synthesis and degradation in the kidney of castrated mice was determined. 2. Following the administration of testosterone there was a progressive increase in kidney weight, RNA and protein content in the castrated mouse kidney. 3. The rates of synthesis were calculated from the measured incorporation of radioactivity into various RNA species and acid-soluble nucleotides. The kidney RNA was labelled by the injection of a single dose of [5-3H] orotic acid. When the incorporation into ribosomal RNA was at the maximum (48 h), one group of mice was injected with testosterone (100 mug/day/20 g body weight) and the other served as the control. 4. The rates of synthesis and the turnover time were calculated on the basis of the half-life and the rate of decrease of specific radioactivity of RNA. The rates obtained were high in the first 5 days following hormone administration and then slowed down. 5. The results suggest that testosterone changes the rate of synthesis, not the rate of degradation of the mouse kidney RNA. This is consistent with the higher activity of RNA polymerase in testosterone-treated mice as previously observed and described (Avdalović, N. and Kochakian, C.D. (1969) Biochim. Biophys. Acta 183, 382-393; Avdalović, N. (1970) Biochem. J. 119, 331-338).

Animals↗

Eimeria tenella, E. necatrix, E. acervulina, and E. maxima: anticoccidial activity of 1,6-dihydro-6-oxo-2-pyrazinecarboxylic acid 4-oxide.

The anticoccidial activity of an orotic acid analog, 1,6-dihydro-6-oxo-2-pyrazinecarboxylic acid 4-oxide (carboxyemimycin), was tested in battery experiments, utilizing 9-day-old Single-Comb White Leghorn cockerels. Carboxyemimycin, at 125 ppm and more in feed, exhibited marked anticoccidial activities against Eimeria tenella, E. necatrix, E. acervulina, and E. maxima. High doses of carboxyemimycin--up to 1000 ppm--did not cause any reduction in weight gains. The battery and in vitro studies with delayed and restricted medications revealed that carboxyemimycin affected the development of E. tenella in first and second generation schizogony and in gametogony.

Animal Feed↗

Responsiveness of RNA degradation to amino acids in cultured rat hepatocytes: comparison with isolated rat hepatocytes.

The role of amino acids in the regulation of RNA degradation was investigated in cultured hepatocytes from fed rats previously labeled in vivo with [6-14C]orotic acid. Rates of RNA degradation were determined between 42 and 48 h of culture from the release of radioactive cytidine in the presence of 0.5 mM unlabeled cytidine. The fractional rate was about 4.4 +/- 0.4%/h in the absence of amino acids (0x). The catabolism of RNA was decreased to basal level (1.5 +/- 0.3%/h) by the addition of amino acids at 10 times normal plasma concentration (10x). The inhibition of RNA degradation, expressed as percentage of maximal deprivation-induced response (0x minus 10x), averaged 60% at normal plasma levels of amino acids. The degree of responsiveness was greatly improved as compared to freshly isolated hepatocytes (20%) and was similar to the sensitivity previously observed with perfused livers. In cultured hepatocytes, the sensitivity of RNA degradation to amino acids was not affected by varying the volume of medium from 1 to 4 ml per dish. In freshly isolated hepatocytes, the inhibitory effect of amino acids was not modified by changing the cell density from 0.5 to 5 x 10(6) cells per ml. In the range of normal plasma concentration of amino acids, the low sensitivity of RNA degradation in isolated hepatocytes persisted with inhibition ranging from 10 to 20%. These findings suggest that the control of RNA degradation in both cultured and isolated hepatocytes is not affected by the total quantity of amino acids available in the medium, but their concentration is crucial. Electron microscopy observations and the inhibitory effect of 3-methyl-adenine in cultured rat hepatocytes partially confirmed the role of the lysosomal system in the increase of RNA degradation and its regulation by amino acids.

Adenine↗

[A case of ornithine transcarbamylase deficiency presenting severe symptoms in adulthood].

An adult female case of ornithine transcarbamylase (OTC) deficiency is presented in the following. The patient had had past episodes of drowsiness with a duration less than a few minutes several times a year during childhood. She suddenly became comatose at 25 years of age, and died after 13 months of persistent vegetative state. Blood chemistry showed hyperammonemia with no liver cirrhosis or portal-systemic shunt. Plasma amino acid analysis indicated elevated glutamate and glycine levels, and plasma levels of citrulline and arginine to be low. The urinary orotic acid level was high. OTC activity of a liver specimen was 65 percent of the normal level. This is a rare case demonstrating hyperglycinemia and an elevated level of serum OTC. The importance of ruling out defective ureagenesis in adults with disturbed consciousness should be emphasized.

Adult↗

Automated screening system for purine and pyrimidine metabolism disorders using high-performance liquid chromatography.

An automated screening system for purine and pyrimidine metabolism disorders using high-performance liquid chromatography (HPLC) with column switching is described. The system consists of a reversed-phase column, a cation-exchange column, a column switch, four sets of ultraviolet absorbance detectors, a microcomputer and other conventional equipment. As this system permits the simultaneous determination of urinary orotic acid, uracil, dihydrouracil, pseudouridine, xanthine, 2,8-dihydroxyadenine and succinyladenosine, it offers a useful method for the detection of orotic aciduria, dihydropyrimidine dehydrogenase deficiency, dihydropyrimidinuria, xanthinuria, adenine phosphoribosyltransferase deficiency and adenylosuccinase deficiency.

Adenine↗

Avoidance reaction of painful stimulation of another rat: effect of methylglucamine orotate.

An avoidance reaction to painful stimulation of another animal was developed in rats. Two hundred twenty-five mg/kg methylglucamine orotate was injected intraperitoneally each day, 1 hr before the training session. The orotate treated rats showed an accelerated development of the avoidance reaction during 5 days of training. Depending on the experimental conditions, extinction of the reaction was delayed in orotate treated rats, compared to saline controls. The results from these experiments, using neither footshock punishment nor food reward as reinforcement, give further evidence for the improvement of long term memory by orotic acid.

Animals↗

Direct solution hybridization of guanidine thiocyanate-solubilized cells for quantitation of mRNAs in hepatocytes.

The sensitivity of direct solution hybridization of hepatocytes solubilized in guanidium thiocyanate (GuSCN) for detecting alpha 1-acid glycoprotein and albumin mRNAs was studied. The sensitivity of detection was inversely correlated with the DNA concentration. Raising the hybridization temperature from 20 to 37 or 50 degrees C (with formamide) increased the hybridization efficiency three- to fourfold in cell lysates with a high DNA concentration (1 microgram/microliter), whereas the hybridization efficiency was already maximal at 20 degrees C in diluted samples. It was most important to normalize all hybridization reactions with an internal standard, such as sense mRNA, because of the great variation in hybridization efficiency from one cell preparation to another depending on the DNA concentration. Direct hybridization of GuSCN cell lysates labeled in vivo with [6-14C]orotic acid was more efficient than hybridizing equivalent amounts of purified [6-14C]-labeled RNA, perhaps because of greater mRNA integrity and/or better recoveries of mRNA in GuSCN cell lysates. Therefore, direct solution hybridization of GuSCN-solubilized hepatocytes, which avoids the problem of RNA purification, appears to be a rapid, sensitive, and reliable method for quantifying mRNA in hepatocytes.

Albumins↗

Sex differences in response to four promotion regimens in spite of common first cellular steps in the hepatocellular cancer process initiated by diethylnitrosamine.

Female adult rats were as responsive as males to initiation by diethylnitrosamine (DEN) as measured by numbers of GST-P positive hepatocytes appearing early, and do develop hepatocellular cancers. However, when females and males were exposed to four promotion regimens including orotic acid (OA), choline deficiency, deoxycholic acid (DOC), or selection for resistance (to 2-acetylaminofluorene; 2-AAF) after DEN initiation, very significant sex differences were observed with respect to oval cell proliferation and growth rates of hepatocytic foci. These results suggest that responses to promotion such as growth of foci and oval cell proliferation can accompany carcinogenesis but may not be essential to the development of hepatocellular cancer.

2-Acetylaminofluorene↗

Allopurinol: alteration in pyrimidine metabolism in man.

In addition to its well-established inhibitory effect on uric acid synthesis, allopurinol appears to alter substantially pyrimidine metabolism, as evidenced by a striking increase in the urinary excretion of orotidine and orotic acid. Allopurinol ribonucleotide and xanthosine 5'-monophosphate are potent inhibitors of human erythrocyte orotidylic decarboxylase and provide a possible mechanism for this effect.

Allopurinol↗

Inhibition of Newcastle disease virus replication by 6-azauridine. II. Combination of 6-azauridine and adenine derivatives.

Twenty-five metabolites (purines, pyrimidines, nucleosides and nucleosides) were tested for their simultaneous action with 6-azauridine (AzUrd) in inhibition of Newcastle disease virus (NDV) replication. With the exception of deoxyadenosine and cyclic AMP all natural adenine derivatives exerted a synergic effect with AzUrd like ATP. Glutamine in combination with AzUrd did not inhibit NDV replication. The inhibitory effect of the combination of AzUrd and adenine derivatives was reversible by guanosine, uridine and cytidine but not by orotic acid or orotidylic acid.

Adenine↗

A simple and sensitive method for estimating the concentration and synthesis of 5-phosphoribosyl 1-pyrophosphate in red blood cells.

A method is presented for the determination of 5-phosphoribosyl 1-pyrophosphate (PRPP), which is based on the release of 14CO2 from [carboxyl-14C]-orotic acid by the consecutive action of orotate phosphoribosyltransferase and orotidine-5'-monophosphate decarboxylase. The assay is simpler and less time-consuming than most methods currently employed and is equally sensitive. The method proved to be suitable for measuring low concentrations of PRPP such as found in human erythrocytes and fibroblasts. An increased PRPP concentration was observed in erythrocytes from patients with partial or complete deficiency of hypoxanthine-guanine phospho-ribosyltransferase. frp, sp,e (but not all) gouty patients and from a patient with deficiency of purine nucleoside phosphorylase. PRPP synthetase activity was measured with a method similar to the assay for PRPP. In erythrocytes with an increased PRPP concentration, PRPP synthetase activity was found to be normal at both optimal and suboptimal substrate concentrations.

Carbon Radioisotopes↗

Effect of nafenopin and clofibrate on uptake and utilization of labeled thymidine for DNA synthesis in rat liver and kidney.

The mitogenic effect of nafenopin and clofibrate in the liver is paralleled by a decreased utilization of [14C]thymidine for kidney DNA synthesis. Analogous changes in the liver and kidney DNA biosynthesis after nafenopin administration occur if [14C]orotic acid is added as a precursor of DNA pyrimidines. There is a time correlation between the uptake of labeled thymidine and its utilization for DNA synthesis in the liver during the initial stages of the mitogenic effect of the drug. Later on--after administration of a low dose of nafenopin or of repeated doses of clofibrate--the specific activity of DNA thymine does not differ from the values observed with the control group: the total radioactivity of the thymine components of the acid-soluble extract is even increased. The existence of a correlation between decreased utilization of [14C]thymidine for DNA synthesis and the total radioactivity of the thymine components of the acid-soluble extract in kidney can be observed only during the early stages after nafenopin administration. Subsequently, when the depression of the specific activity of kidney DNA thymine still persists, the specific activity of the thymine components of the acid-soluble extract does not differ from control values. The utilization of [14C]thymidine for DNA synthesis in the kidney is decreased after repeated clofibrate administration only 24 h after the last dose of the drug; these values later increase and even exceed control values. The total radioactivity of the thymine components of the kidney acid-soluble extract is unchanged.

Animals↗

Genomic reconstruction by serial mitotic recombination of yeast artificial chromosomes.

DNA cloned in yeast artificial chromosomes (YACs) is a valuable resource for functional experiments in cell culture as well as whole animal systems. Where the size or chimerism of a YAC clone are limiting factors it may be desirable to generate recombinant YAC clones. One such approach is based on mitotic recombination, and we describe the development of a methodology that allows multiple recombination cycles for serial reconstruction of overlapping YACs. This approach employs retrofitting with standard plasmid vectors, transfer of YACs to a common haploid host by Kar1 mating, and selection for recombination with 5-fluoro-orotic acid.

Chromosomes, Artificial, Yeast↗

Renal metabolic response to acid-base changes. II. The early effects of metabolic acidosis on renal metabolism in the rat.

The early renal metabolic response was studied in rats made acidotic by oral feeding of ammonium chloride. 2 hr after feeding of ammonium chloride there was already significant acidosis. Urinary ammonia also increased after ammonium chloride ingestion and at 1(1/2) hr was significantly elevated. In vitro gluconeogenesis by renal cortical slices was increased at 2 hr and thereafter increased steadily. Ammonia production by the same slices was also increased at 2 hr, but thereafter fell and at 6 hr had decreased to levels which, although higher than those of the control, were lower than those obtained from the rats acidotic for only 2 hr. There was no correlation between in vitro gluconeogenesis and ammonia production by kidney slices from rats during the first 6 hr of acidosis, but after 48 hr of ammonium chloride feeding, these two processes were significantly correlated. The early increase in renal gluconeogenesis was demonstrable with both glutamine and succinate as substrates. The activity of the enzyme phosphoenolpyruvate carboxykinase was increased after 4-6 hr of acidosis. During this time there was a decrease in renal RNA synthesis as shown by decreased uptake of orotic acid-(5)H into RNA. Metabolic intermediates were also measured in quick-frozen kidneys at varying times after induction of acidosis. There was an immediate rise in aspartate and a fall in alpha-ketoglutarate and malate levels. There was never any difference in pyruvate or lactate levels or lactate:pyruvate ratios between control and acidotic rats. Phosphoenolpyruvate rose significantly after 6 hr of acidosis. All the data indicate that increased gluconeogenesis is an early response to metabolic acidosis and will facilitate ammonia production by utilization of glutamate which inhibits the glutaminase I enzyme. The pattern of change in metabolic intermediates can also be interpreted as showing that there is not only enhanced gluconeogenesis, but also that there may be significant increase of activity of glutaminase II as part of the very early response to metabolic acidosis.

Acidosis↗

Effect of endotoxin and cortisone on synthesis of ribonucleic acid and protein in livers of mice.

The effect of cortisone and endotoxin, singly and in combination, on ribonucleic acid (RNA) synthesis in livers of adrenalectomized mice was determined. This was accomplished by measuring the incorporation either of inorganic (32)P or of (14)C-orotic acid into the RNA. Under similar conditions, the effect of these agents on the rate of protein synthesis was examined with the use of (14)C-leucine. Bacterial endotoxin was found to augment the uptake of isotope in the RNA and in the protein of the liver. These reactions did not appear to be mediated via the pancreatic hormone insulin, which was found to depress the incorporation of the radioactive compounds into RNA. Cortisone increased the uptake of isotope in liver RNA but depressed the incorporation of leucine into hepatic protein. These results indicate that the previously observed ability of endotoxin to prevent the hormone induction of hepatic enzymes, such as tryptophan oxygenase, is not associated with impaired synthesis of liver RNA or protein.

Adrenalectomy↗

Regulation of pyrimidine nucleotide formation in Pseudomonas reptilivora.

AIMS: To study the regulation of de novo pyrimidine biosynthesis in the pathogenic bacterium Pseudomonas reptilivora ATCC 14836. METHODS AND RESULTS: The pyrimidine biosynthetic pathway enzymes were assayed in extracts of Ps. reptilivora ATCC 14836 cells and of cells from an auxotroph lacking aspartate transcarbamoylase activity. Pyrimidine biosynthetic pathway enzyme activities in ATCC 14836 were influenced by the addition of pyrimidine bases to the culture medium with orotic acid addition inducing dihydroorotase activity. Pyrimidine starvation of the transcarbamoylase mutant strain increased its de novo enzyme activities suggesting that the de novo pathway was also subject to repression by a pyrimidine-related compound. Aspartate transcarbamoylase activity in ATCC 14836 was inhibited in vitro by pyrophosphate and ATP. CONCLUSIONS: Regulation of pyrimidine biosynthesis in Ps. reptilivora was observed at the level of enzyme synthesis and at the level of activity for aspartate transcarbamoylase. Its regulation of enzyme synthesis seemed to be more highly controlled than what was observed in the related species Ps. fluorescens. SIGNIFICANCE AND IMPACT OF THE STUDY: This investigation found that pyrimidine biosynthesis is controlled in Ps. reptilivora. This could prove helpful to future studies exploring its pathogenicity.

Adenosine Triphosphate↗