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Biomedical subjects

W J O'Sullivan

Publications and source records attributed to W J O'Sullivan.

17 recordsLinked to original sources

Studies on phosphoribosylpyrophosphate synthetase from Giardia intestinalis.

A substantial degree of purification, up to 3200-fold, with recoveries of 8-11% of phosphoribosylpyrophosphate (P-Rib-PP) synthetase from Giardia intestinalis extracts was achieved by the high resolution techniques of anion exchange chromatography and chromatofocusing columns on a fast protein liquid chromatography system. A Mono P chromatofocusing column gave rise to an enzyme peak eluting from the column at pH 4.5, indicating that the enzyme has an isoelectric point (pI) at approximately this value. The molecular weight of the enzyme was found to be 150,000 from a Sephacryl S-200 column. Sodium dodecyl sulphate-polyacrylamide gel electrophoresis of the purified enzyme gave a single protein band with a subunit molecular weight of 38,000, indicating that the enzyme existed as a tetramer. The properties of G. intestinalis P-Rib-PP synthetase in terms of pH optimum, isoelectric point, subunit structure, phosphate requirement, metal and nucleotide specificity, appear to be very similar to those of the enzyme from other sources.

Animals

Mitochondrial function in Babesia bovis.

A variety of anti-mitochondrial drugs that had previously been found to inhibit the growth of the malarial parasite Plasmodium falciparum were tested on Babesia bovis in vitro. Several of these drugs were found to be non-toxic towards B. bovis. However, those drugs that were found to inhibit babesial growth included compounds (shown in parentheses) that have the following putative mitochondrial targets in the parasite: ATP synthetase complex (rhodamine 123, oligomycin, Janus Green); ATP-ADP translocase (bongkrekic acid); electron transport (rotenone, n-heptyl-4-hydroxyquinoline-N-oxide (HQNO), antimycin A); ubiquinone (CoQ) function (BW58C, menoctone); protein synthesis (tetracycline); and the proton pump (CCCP). We have also investigated the effects of some of these drugs on pyrimidine biosynthesis de novo by following the incorporation of [14C]bicarbonate into pyrimidine nucleotides and into the pyrimidine moieties of nucleic acids. The ubiquinone analogues BW58C and menoctone inhibited this pathway in the nM-microM range of concentrations. Inhibitors of electron transport (antimycin A and oligomycin) and an uncoupler (CCCP) were also effective inhibitors of pyrimidine biosynthesis de novo. We conclude that B. bovis has a functional mitochondrion that contributes significantly to pyrimidine biosynthesis de novo and to the overall energy metabolism of the parasite.

Animals

Arginine metabolism during culture of Giardia intestinalis.

The effect of arginine on the growth and metabolism of Giardia intestinalis trophozoites was determined. Supplementation of the normal growth medium (Diamond's TYI-S-33) with 5 or 10 mM arginine accelerated trophozoite growth over the first 2 days. There was a corresponding rapid utilisation of arginine, with none being detectable after this time. The decrease was associated with the appearance in the growth medium of 1 mol of ornithine and 2 mol of ammonia per mol of arginine utilised, the stoichiometry being consistent with the operation of the arginine dihydrolase pathway. Subsequently, there was a decrease in the ammonia concentration in the medium. Removal of arginine from the medium by pretreatment with arginase substantially decreased cell growth. In TYI-S-33 medium containing no added glucose, instead of the normal 50 mM glucose concentration, arginine supplementation also increased cell growth over the first 2 days, with concurrent stoichiometric production of ornithine and ammonia. However, in these conditions, the ammonia concentration remained elevated. This suggests that under normal conditions there is re-uptake of ammonia, which is glucose dependent. The observations confirm the operation of a functional arginine dihydrolase pathway in G. intestinalis. The concordance of cessation of rapid growth with the depletion of arginine, and the beneficial effect on growth of arginine supplementation suggests that arginine availability is a limiting factor during the initial stages of rapid growth. It would appear that arginine is a major potential energy source during the initial stages of giardial growth, and that supplementation of Diamond's TYI-S-33 medium with additional arginine may provide an improved in vitro culture medium.

Ammonia

A simple method for the purification of mitochondrial DNA from Plasmodium falciparum.

Mitochondrial DNA (mtDNA) from Plasmodium falciparum was isolated by conventional differential centrifugation in an SS34 rotor, a simpler method than CsC1 centrifugation of total DNA as employed by other workers. The nature of the sample was verified by sequencing a polymerase chain reaction (PCR) product obtained using oligonucleotide primers derived from known malarial mtDNA sequence.

Animals

Purine salvage and metabolism in Babesia bovis.

Studies of the incorporation of radio-labelled purine precursors into the erythrocytic forms of Babesia bovis under tissue-culture conditions have confirmed the presence in the parasite of enzymatic activities responsible for the salvage of preformed purines. The results also revealed that the parasite was capable of a variety of nucleotide interconversions, such that exogenous hypoxanthine and adenosine were incorporated into both adenine and guanine nucleotides followed by the incorporation of these nucleotides into the adenine and guanine moieties of RNA and DNA. No evidence was found for salvage of preformed pyrimidines. Evidence was also obtained for the insertion of a parasite-specific nucleoside/nucleobase transporter into the membrane of the bovine (host) red cell. Thus, whereas normal (non-parasitised) bovine red cells are essentially incapable of transporting nucleosides across their membranes, the invasion of these cells by B. bovis introduces a transporter that can be inhibited by classic nucleoside transport inhibitors.

Adenosine

Radioimmunoassay of creatine kinase: studies on the skeletal muscle and cardiac muscle enzyme (MM and MB isoenzymes) in serum and neuromuscular tissues.

A radioimmunoassay, specific for the isoenzymes of creatine kinase containing the M subunit of the enzyme (MM and MB creatine kinase), was employed to determine total creatine kinase concentrations in serum and neuromuscular tissues independently of the state of activity of the enzyme. This technique provides a method for the detection of inactive enzyme, which could be produced by inhibitors of the enzyme or by mutations involving the active site of the enzyme. A series of experiments were carried out to compare the amount of creatine kinase in various samples as assessed by normal enzyme kinetic procedures and by radioimmunoassay. The two techniques yielded equivalent results in all situations tested. Samples included serum from normal subjects and subjects with genetic and acquired diseases of muscle and also extracts from skeletal and cardiac muscle. Small quantities of immunoreactive enzyme were found in nervous tissue and assessed in terms of the incidence of the M subunit.

Abdominal Muscles

Subunit structure of the orotate phosphoribosyltransferase--orotidylate decarboxylase complex from human erythrocytes.

A complex of orotate phosphoribosyltransferase and orotidylate decarboxylase has been shown to exist in three molecular weight forms (Brown, G. K., Fox, R. M., and O'Sullivan, W. J. (1975), J. Biol. Chem. 250, 7352). The smallest of these, of molecular weight 62 000, was subjected to further study. On the basis of the inactivation of the enzyme activities, carried out in the presence of low concentrations of guanidine hydrochloride, and of changes in molecular weight of preparations during aging, it was inferred that the enzyme complex contained more than one type of subunit. This was confirmed by chromatography on Sephadex G-75 after preincubation in guanidine hydrochloride or with guanidine hydrochloride in the elution buffer. It was concluded that the enzyme complex consisted of two types of subunits, two decarboxylase units of molecular weight approximately 20 000 and two further subunits of approximately 13 000. The subunits could be separated and reassociated with partial recovery of both activities. A 40 000 molecular weight form had full decarboxylase activity but no phosphoribosyltransferase activity. Restoration of the 62 000 molecular weight form resulted in restoration of both enzymatic activities. An intermediate species of molecular weight 50 000 representing a combination of the decarboxylase dimer with one of the 13 000 subunits was also demonstrated. This form required the presence of dithiothreitol in order to manifest phosphoribosyltransferase activity. A model of the system has been proposed that accounts for both the different molecular weight forms and also for the deficiency of both activities in the rare inborn error of metabolism, hereditary orotic aciduria.

Carboxy-Lyases

Magnetic resonance studies on manganese-nucleotide complexes of phosphoglycerate kinase.

Measurements of the relaxation rate of water protons (PRR) have been used to study the interaction of yeast phosphoglycerate kinase with the manganous complexes of a number of nucleotides. The results indicate that phosphoglycerate kinase belongs to the same class of enzymes as creatine kinase, adenylate kinase, formyltetrahydrofolate synthetase, and arginine kinase, with maximal binding of metal ion to tne enzyme in the presence of the nucleotide substrate. However, an analysis of titration curves for a number of nucleoside diphosphates (ADP, IDP, GDP) showed that there is a substantial synergism in binding of the metal ion and nucleotide to the enzyme in the ternary complex. The metal-substrate binds to the enzyme approximately two orders of magnitude more tightly than the free nucleotide; Other evidence for an atypical binding scheme for Mn(II)-nucleoside diphosphates was obtained by electron paramagnetic resonance (EPR) studies; the EPR spectrum for the bound Mn(II) in the enzyme-MnADP complex differed substantially from those obtained for other kinases. An identical EPR spectrum is observed with the MnADP complex with the rabbit muscle enzyme as with the yeast enzyme. In contrast, the dissociation constant for the enzyme-MnATP complex is approximately fourfold lower than that for enzyme-ATP, and there are no substantial changes in the electron paramagnetic resonance spectrum of MnATP2- when the complex is bound to phosphoglycerate kinase. A small but significant change in the PRR of water is observed on addition of 3-phosphoglycerate (but not 2-phosphoglycerate) to the MnADP-enzyme complex. However, addition of 3-phosphoglycerate to enzyme-MnADP did not influence the EPR spectrum of the enzyme-bound Mn(II).

Adenosine Diphosphate

Some properties of human skeletal muscle creatine kinase.

Creatine kinase has been purified from human skeletal muscle. The properties of the human enzyme are similar to those of the enzyme from rabbit muscle. The molecular weight was determined as approximately 80000 with a probable two reactive sulphydryl groups per molecule. Manganous (II) ion was almost as effective as magnesium as the activating metal ion, and calcium and cobalt could also act in this capacity. Under standardized conditions the nucleotide specificity was ADP greater than dADP greater than IDP greater than GDP greater than UDP greater than XDP in the reverse reaction. No hydrolytic activity was observed with ATP. Initial velocity and product inhibition studies were used to determine various kinetic constants for the substrates of the enzyme. It was concluded that, as for the rabbit muscle enzyme, the reaction probably followed a rapid equilibrium random mechanism. Anomalous kinetic behaviour, however, was observed for the forward reaction for MgATP2- but not for creatine, when measurements were extended over a much wider range than normally used. The reciprocal plot of velocity as a function of substrate concentration gave a curve, concave downwards, instead of a straight line.

Creatine Kinase

Interconversion of different molecular weight forms of human erythrocyte orotidylate decarboxylase.

Orotidylate decarboxylase has been purified approximately 300-fold from human erythrocytes. It was shown to exist in three molecular weight forms, a probable monomer of molecular weight 62,000, a dimer, and a tetramer. Conversion of the monomer to higher molecular weight forms was associated with increased stability to thermal inactivation and was promoted by a number of low molecular weight compounds, including orotic acid and competitive inhibitors of the enzyme. Orotic acid phosphoribosyltransferase co-purified with the decarboxylase but was much more susceptible to inactivation. The partially purified orotidylate decarboxylase showed a triphasic Lineweaver-Burk plot when examined over a wide range of substrate concentrations. The separated molecular weight forms gave linear double reciprocal plots with Km values corresponding to the three values obtained with the erythrocyte enzyme preparation. The values obtained were 25, 3, and 0.6 muM for the monomer, dimer, and tetramer forms, respectively.

Carboxy-Lyases

Fluorometric determination of "albumin-titratable bilirubin" in the jaundiced neonate.

We report a fluorometric technique for determination of albumin-titratable bilirubin in the jaundiced neonate. Although bilirubin alone has very little native fluorescence, considerable emission is observed in the presence of albumin under acid conditions. Analysis of the plasma sample alone and in the presence of excess human serum albumin solution appears to reflect the bilirubin tightly bound to albumin and the total serum bilirubin, respectively. The difference between these two values has been designated as "albumin-titratable bilirubin". Where the concentration of albumin-titratable bilirubin is considerable, a typical saturation effect is observed. In samples where the circulating bilirubin is strongly bound to endogenous alumin, no change in fluorescence is seen when exogenous albumin is added. Results correlate well with the clinical picture.

Bilirubin