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Biomedical subjects

P J O'Brien

Publications and source records attributed to P J O'Brien.

At least 217 records · Page 12Linked to original sources

Oxygen activation during drug metabolism.

The peroxidase-H2O2 catalyzed oxidation of certain drugs in the presence of GSH resulted in extensive oxidation to thiyl radicals and GSSG. NADH or arachidonate in place of GSH was also readily oxidized. Extensive oxygen uptake ensued resulting in the formation of superoxide radicals and H2O2. Only catalytic amounts of drugs and low peroxide levels were required, indicating a radox cycling mechanism. Active drugs included morphine, phenothiazines, aminopyrine, p-phenetidine, acetaminophen and 4-N,N-(CH3)2-aminophenol. Other drugs, including dopamine and methyl-alpha-dopa, did not catalyze oxygen uptake, nor was GSH oxidized to GSSG. Instead, GSH was depleted by GSH conjugate formation. Drugs of the former group, e.g. acetaminophen, aminopyrine or N,N-(CH3)2-aniline, have also been found by other investigators to form GSSG and hydrogen peroxide when added to hepatocytes or when perfused through an isolated liver. Although cytochrome P-450 normally catalyzes a two-electron oxidation of drugs, serious consideration should be given to some one-electron oxidation occurring as well and resulting in radical formation, oxygen activation and GSSG formation.

Animals↗

Phorbol ester- and light-induced endogenous phosphorylation of rat rod outer-segment proteins.

We have previously described the presence of a C-kinase in bovine retinal rod outer segments (ROS) (Kapoor and Chader, 1984). In this study, we have labeled rat retinas with freshly neutralized radiolabeled sodium phosphate (32P or 33P) by intravitreal injection and compared the phosphorylation patterns of ROS proteins induced by light and specific activators of the C-kinase phosphorylation system. Except for light treatment, all procedures were carried out in complete darkness using an infrared image converter. Incubation of 33P-labeled retinas in light for 5 min resulted in the phosphorylation of rhodopsin, 80-, 65-, 47-, 44-, and 15,000 MW proteins of crude ROS. Incubation of 33P-labeled retinas with 0.5 microM 12-O-tetradecanoylphorbol-13-acetate (TPA) resulted in the phosphorylation of several proteins including those at 80-, 65-, 47-, 44-, and 15,000 MW in crude ROS. ROS prepared in complete darkness did not exhibit any phosphorylation of proteins whereas ROS prepared in red light exhibited variable low phosphorylation of 80-, 47-, 44- and 15,000 MW proteins. 1-oleoyl-2-acetylglycerol (OAG) at 500 micrograms ml-1 caused the phosphorylation of the same proteins as observed with TPA. TPA (0.5-500 microM) and OAG (150-500 micrograms ml-1) did not induce rhodopsin phosphorylation. When purified ROS were prepared from 33P-pre-labeled retinas, the complete darkness control did not exhibit phosphorylation of any proteins. TPA, however, induced the phosphorylation of 80- and 65,000 MW proteins and light induced the phosphorylation of 80-, 65,000 MW proteins as well as opsin monomer and dimer. Affinity chromatography of phosphorylated ROS proteins on con A-Sepharose revealed that TPA does not induce rhodopsin phosphorylation whereas light does. Since light and TPA induced the phosphorylation of 80- and 65,000 MW proteins in ROS, it is possible to suggest at least a partial linkage of light- and C-kinase-mediated effects in situ.

Animals↗

Biochemical evidence for Mn2+-dependent 5'-nucleotidase activity in isolated rod outer segments.

Recently cytochemical evidence has been presented for a novel enzyme activity, i.e. 'manganese-dependent pyrimidine 5'-nucleotidase (MDPNase)' activity in the rod outer segments (ROS) of rat retinas in situ and in isolated rat ROS. The present biochemical study was undertaken to seek further evidence for this enzyme activity using an independent method. A series of enzyme assays was carried out to test for MDPNase activity in Triton extracts of rat ROS isolated by sucrose density gradient centrifugation. Hydrolysis of the substrate, cytidine-5'-monophosphate, was measured spectrophotometrically and expressed as microgram of released inorganic phosphorus hr-1 mg-1 protein in the sample. The results showed that the ROS extracts contained enzyme activity (18.1 +/- 3.8) that was increased 5-6-fold (102.3 +/- 10.6) in the presence of 7.4 mM MnCl2. The enzyme activity was not enhanced by Mg2+ ions (19.0 +/- 7.7) and was strongly inhibited by 10-20 mM NaF (11.8 +/- 2.9). Assays for substrate specificity revealed that the Mn2+-stimulated phosphatase activity was specific for 5'-nucleotides. Pyrimidine nucleotides (5'-CMP and 5'-UMP) were the preferred substrates. Comparison of enzymatic hydrolysis of 5'-CMP and 5'-AMP over a pH range from 4.5 to 8.0 revealed that at acid pH, the majority of the observed 5'-nucleotidase activity (82% at pH 5.0, 58% at pH 5.5) was manganese dependent, whereas at neutral pH and above, most of the enzyme activity was unaffected by the presence of Mn2+ ions.(ABSTRACT TRUNCATED AT 250 WORDS)

5'-Nucleotidase↗

Birthweight differences, the transfusion syndrome and the cognitive development of monozygotic twins.

Monochorionic twins may differ from dichorionic monozygotic (MZ) twins because of the transfusion syndrome and the timing of the cleavage of the zygote. Intrapair birthweight differences may be an indicator of these intrauterine variables. Previous evidence concerning weight differences and intellectual ability in MZ twins is reviewed with recommendations that future research also incorporates full placental data. Poorer scores on a nonverbal test are found for the lighter male twin of pairs with large intrapair differences in birthweight. Co-twin concordance rates for test scores are also highest for this group indicating that they vary consistently from other groups. Some evidence is presented from the present and earlier studies implicating anomalies of asymmetry or the transfusion syndrome as possible causes of these differences in brain functioning. The study adds further doubts as to the validity of any assumption of developmental equivalence between MZ twins and the general population.

Adolescent↗

Early influences on the school social adjustment of twins.

The birth of twins is often accompanied by complications which may affect both twins equally (eg, prematurity) or which may establish differences between the twins (eg, one coming home from hospital first). Parents' ratings of behaviour may reflect and even perpetuate the influence of such variables and it is of interest to see if people less familiar with the twins' history can observe any long-term effects. In the La Trobe Twin Study teachers routinely complete the Bristol Social Adjustment Guide, an assessment of social maladjustment in children aged 5-16 years. Extreme prematurity and problems at delivery were generally associated with the Underreaction syndrome--the child who is unforthcoming, withdrawn and depressed. Withdrawal, depression and maladaptive behaviour to classroom peers were much more common among those twins discharged from hospital after the cotwin. A major mediating factor was that the parents admitted to greatly preferring the one to come home first. These raise questions both about the practice of bringing twins home separately (which occurred in 21% of the cases) and about intervening variables in studies of personality and temperament.

Adolescent↗

Malignant hyperthermia susceptibility: cardiac histomorphometry of dogs and young and market-weight swine.

The defect causing malignant hyperthermia has been proposed to involve cardiac as well as skeletal muscle. We tested the hypothesis that histomorphometric parameters for ventricular wall from malignant hyperthermia-susceptible swine and dogs were abnormal. Hearts were obtained from: mature dogs, age- and weight-matched young swine (89 +/- 15 days, 30 +/- 3 kg); and market-weight swine (102 +/- 10 kg). Using light microscopy, estimates were made for muscle nuclear dimensions and the volume-fraction of nuclei, sarcoplasm, blood vessels, and interstitial space. Cardiac maturation in both MH and normal swine was accompanied by decreased myocyte volume-fraction due to decreased nuclear volume-fraction and increased interstitial space volume-fraction. Sarcoplasm and vasculature volume-fraction were unchanged after maturation. Nuclear volume-fraction was slightly greater (p less than 0.05) in the right ventricle than the left for malignant hyperthermia and normal swine. Myocyte nuclear dimensions were generally similar among animals. Dogs and the oldest group of swine were not significantly different. Myocytes of all swine contained multiple nuclei, closely spaced in rows of 2 to 12. In contrast, most myocytes of mature dogs apparently contained one or two nuclei. Histomorphometric values were not significantly different between normal and malignant hyperthermia young swine and dogs. However, within the market-weight swine, volume-fraction for malignant hyperthermia myocytes and myocyte nuclei was decreased and interstitial space was increased compared to normal.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Quinone toxicity in hepatocytes without oxidative stress.

The toxicity of quinones is believed to be mediated via redox cycling involving formation of semiquinone radicals which autoxidize to form active oxygen species. However, when the cytotoxicity of benzoquinones was compared using freshly isolated rat hepatocytes, benzoquinones which did not mediate oxidative stress were highly toxic. Thus, the benzoquinone analogs in decreasing order of cytotoxicity were 2-CH3-, 2-Br-, unsubstituted, 2,6-(CH3)2-, 2,5-(CH3)2-, and 2,3,5-(CH3)3-benzoquinone. Cellular thiols were rapidly depleted and glutathione (GSH) was converted to a quinone conjugate without oxidation to glutathione disulfide. No increase in cyanide-resistant respiration was observed and benzoquinone-induced cytotoxicity was not enhanced by inactivation of catalase or glutathione reductase. In contrast, duroquinone [2,3,5,6-(CH3)4-benzoquinone], which stimulated cyanide-resistant respiration and GSH oxidation, was only cytotoxic when catalase or glutathione reductase was inactivated. These results suggest that alkylation and/or oxidative stress may be important mechanisms in the cytotoxicity of benzoquinone derivatives.

Alkylating Agents↗

Peroxidase-catalyzed-3-(glutathion-S-yl)-p,p'-biphenol formation.

Oxidation of p,p'-biphenol with horseradish peroxidase (HRP)-hydrogen peroxide in the presence of bovine serum albumin or with bone marrow cell homogenate-hydrogen peroxide resulted in the formation of reactive products that conjugate with protein. Glutathione prevented the protein binding. Glutathione readily reacted with p,p'-biphenoquinone, the principal oxidation product of p,p'-biphenol in the HRP-hydrogen peroxide system and resulted in the formation of several glutathione conjugates, p,p'-biphenol and small amounts of oxidized glutathione. The major glutathione conjugate was identified as 3-(glutathion-S-yl)-p,p'-biphenol by high field nuclear magnetic resonance and fast atom bombardment mass spectrometry. The same conjugate was formed in the bone marrow homogenate-hydrogen peroxide system. p,p'-Biphenoquinone reduction by glutathione to p,p'-biphenol without glutathione oxidation was explained by the rapid reduction of p,p'-biphenoquinone by 3-(glutathion-S-yl)-p,p'-biphenol.

Animals↗

The acylation of rat rhodopsin in vitro and in vivo.

Rat retinas were incubated with [3H] palmitate and [14C] leucine and subsequently detergent-extracted. Glycoproteins were isolated on Con A-Sepharose columns and separated by gel electrophoresis. Leucine labeled the newly synthesized opsin but palmitate was esterified to both mature rhodopsin and newly synthesized opsin which migrated more slowly because of its untrimmed oligosaccharide chains. Crude rod outer segments were found to contain most of the palmitate-labeled mature rhodopsin, while the retinal debris contained most of the doubly labeled newly synthesized opsin. Homogenization of double-labeled retinas followed by centrifugation in a linear sucrose gradient gave rise to several bands of particles including purified rod outer segments, a Golgi-enriched fraction and a pellet enriched in endoplasmic reticulum. Newly synthesized opsin was first found in the pellet at the earliest incubation times and subsequently appeared in the Golgi fraction and finally in the rod outer segments. Palmitate-labeled mature rhodopsin was found only in the rod outer segments. It appeared at the earliest time points and increased with time. Thus the acylation of opsin occurs in the endoplasmic reticulum, shortly after polypeptide synthesis, and in the rod outer segments, the latter possibly as an exchange reaction. Most of the newly synthesized opsin remained in the pellet and did not pass through the Golgi to the rod outer segments. Intravitreal injection of [3H] palmitate and [14C] leucine gave rise to doubly labeled opsin that appeared to remain untrimmed for at least 6 hr in vivo. After 17 hr, both labels were found only in mature rhodopsin, thus accumulation of new molecules in the endoplasmic reticulum may occur in vivo. In addition, leucine maximally labeled the opsin-rhodopsin pool early in the first day whereas palmitate did not maximally label rhodopsin until 2- or 3 days post injection. Moreover, while leucine label was lost at day 9 because of rod outer-segment renewal and shedding, the palmitate label in rhodopsin remained unchanged. Thus, palmitate labeling in vivo reflects the pattern seen in vitro with a prolonged equilibration of rod outer-segment rhodopsin with the fatty-acid pool, probably mediated by a fatty acyl exchange reaction.

Acylation↗

Turnover of palmitate, arachidonate and glycerol in phospholipids of rat rod outer segments.

Rat retinas were intravitreally labeled with [3H]palmitic acid, [3H]arachidonic acid or [3H]glycerol to study the turnover of the component parts of the major phospholipids in rod outer segments at times ranging from 2 hr to 12 days post injection. Rod outer-segment and retinal debris fractions were extracted and the major phospholipids separated by two-dimensional thin-layer chromatography. In darkness, [3H]glycerol rapidly labeled phosphatidylinositol in both rod outer-segment and retinal debris fractions. The label in phosphatidylinositol subsequently decreased dramatically, demonstrating a rapid turnover of phosphatidylinositol with a half-life of less than 1 day. Phosphatidylcholine and phosphatidylethanolamine were maximally labeled by glycerol in the retinal debris at the 2-hr time-point and were maximally labeled in rod outer segments between 1 and 5 days post injection, with somewhat longer residence times in the rod outer segments. Phosphatidylserine showed a lag in initial labeling in both rod outer-segment and retinal debris fractions indicating that this phospholipid is not a major precursor of phosphatidylcholine and phosphatidylethanolamine in rat retinas. [3H]Palmitate and [3H]arachidonate labels were rapidly incorporated into outer-segment phospholipids by 1-2 hr post injection. Eighty per cent of the palmitate label was initially associated with phosphatidylcholine at 2 hr. The total amount of palmitate label in rod outer-segment phosphatidylcholine did not change for 12 days post injection. Outer-segment phosphatidylethanolamine steadily increased in palmitate label throughout the 12-day period, suggesting that phosphatidylethanolamine may be utilized for recapture of palmitate released from breakdown of palmitate esters of rhodopsin or vitamin A or from phospholipids. Arachidonate primarily labeled phosphatidylinositol and phosphatidylcholine of both rod outer segments and retinal debris. The arachidonate label did not decrease dramatically during the first day in phosphatidylinositol as did the glycerol label, indicating that arachidonic acid is reutilized by the retina. Turnover of the individual phospholipids, as measured by a decrease in glycerol labeling of the phospholipid backbone, is more rapid than the loss of palmitate label, indicating that there is extensive reutilization of palmitate in both phosphatidylcholine and phosphatidylethanolamine of the rod outer segment. The data indicate that palmitate derived from many sources could be used by the photoreceptor to acylate rhodopsin.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Effect of asbestos fibers on aryl hydrocarbon hydroxylase and aminopyrine N-demethylase activities of rat liver microsomes.

Chrysotile asbestos fibers impair the activities of rat liver microsomal aryl hydrocarbon hydroxylase (AHH), aminopyrine (AP) N-demethylase and dimethylnitrosamine (DMN) demethylase in vitro. This inhibition is concentration-dependent. Preincubation of 3-methylcholanthrene (3-MC)-pretreated rat liver microsomes with chrysotile depresses the overall metabolism of [G-3H]benzo[a]pyrene (BaP). Various forms of asbestos employed inhibit AHH activity to the same extent. However, other types of asbestos are not as effective as chrysotile in diminishing AP demethylase activity. Chrysotile and crocidolite fibers are not found to significantly change the apparent Km of AHH activity, from 3-MC-pretreated rat liver microsomes, for BaP. Increasing the microsomal protein concentration partially abolishes the inhibition of AHH activity caused by chrysotile fibers. Inhibition of AP demethylase and AHH activities is attenuated by bovine serum albumin (BSA) or ferritin. Depression of AHH activity by crocidolite is significantly reversed by ferritin. Since polymers such as ferritin override enzyme inhibition by chrysotile as well as crocidolite, surface chemical groups of the fibers may be involved in enzyme modification.

Aminopyrine N-Demethylase↗

Toxicity of petroleum crude oils and their effect on xenobiotic metabolizing enzyme activities in the chicken embryo in ovo.

Microliter quantities of a Prudhoe Bay crude oil (PBCO) applied to the shell of fertile chick eggs during various stages of development induced cytochrome P-450 levels and mixed-function oxidase activities within the liver of the embryo. PBCO (5 microliter) applied on Day 11 of incubation was found to maximally induce within 24 hr embryo hepatic cytochrome P-450 levels (fourfold), naphthalene hydroxylase (sixfold), benzo[a]pyrene 3-hydroxylase (14-fold), and 7-ethoxyresorufin O-deethylase (24-fold). Glutathione S-transferase was not induced. Crude oils are known to be highly toxic to avian embryos, especially during the early stages of development. The LD50 of PBCO and Hibernia crude oil applied to the egg shell on Day 8 of incubation was found to be 1.3 and 2.2 microliter, respectively. Mixed-function oxidase-dependent metabolism of crude oil components may be required for toxicity since administration of 20 micrograms of disulfiram in dioxane 1 hr prior to application of 1.3 microliter of PBCO reduced embryo mortality from 60 to 20%.

Animals↗

Peroxidase catalyzed aggregation of plasmid pBR322 DNA by benzidine metabolites in vitro.

The interaction of plasmid DNA and metabolites of benzidine produced by the action of horseradish peroxidase and hydrogen peroxide was investigated by a combination of agarose gel electrophoresis and autofluorography. Benzidine becomes irreversibly bound to the DNA to form a macromolecular structure that can no longer penetrate a 0.8% agarose gel. Other carcinogens such as o-dianisidine, o-tolidine and amino-fluorene also reacted in this way but N4-tetramethylbenzidine and the non-carcinogenic 3,5,3',5',tetramethylbenzidine did not.

Benzidines↗

Menadione (2-methyl-1,4-naphthoquinone)-induced Ca2+ release from rat-liver mitochondria is caused by NAD(P)H oxidation.

Incubation of rat-liver mitochondria with menadione in the presence of succinate and rotenone resulted in rapid glutathione and NAD(P)H oxidation followed by Ca2+ release and mitochondrial swelling. Ca2+ release, NAD(P)H oxidation and mitochondrial swelling, were also observed in mitochondria from selenium-deficient rats. Glutathione was only slowly oxidized, suggesting that glutathione oxidation, and subsequent NAD(P)H oxidation via the glutathione peroxidase-glutathione reductase system were not required for Ca2+ release by menadione. Isocitrate prevented and reversed Ca2+ release dose-dependently but dicoumarol had no effect indicating that NADH-ubiquinone oxidoreductase and not DT-diaphorase was responsible for NAD(P)H oxidation. Superoxide anion radical was formed by cyanide-resistant respiration, suggesting that menadione undergoes a one-electron reduction to an autoxidizable semiquinone radical by NADH-ubiquinone oxidoreductase. The inability of menadione to oxidize glutathione in selenium-deficient mitochondria indicates that the metabolism of the superoxide dismutation product, H2O2, by glutathione peroxidase was probably responsible for the glutathione oxidation in selenium-replete mitochondria.

Animals↗

Porcine malignant hyperthermia susceptibility: hypersensitive calcium-release mechanism of skeletal muscle sarcoplasmic reticulum.

This study tested the hypothesis that calcium-release from sarcoplasmic reticulum isolated from malignant hyperthermia swine had abnormal concentration-dependency on release modulators. Halothane stimulated half-maximal calcium-release at similar concentrations for malignant hyperthermia and control sarcoplasmic reticulum (0.10 +/- 0.04 mM). However, concentrations causing half-maximal calcium-release were lower for malignant hyperthermia sarcoplasmic reticulum (P less than 0.001) by an order of magnitude for Ca2+ (28.1 +/- 8.3 versus 1.23 +/- 0.45 nM), adenosine triphosphate (0.33 +/- 0.09 versus 0.023 +/- 0.014 mM) and caffeine (7.79 +/- 1.56 versus 0.80 +/- 0.44 mM). Half-maximal inhibition by Mg2+ occurred at threefold higher concentrations for malignant hyperthermia sarcoplasmic reticulum (0.23 +/- 0.02 versus 0.78 +/- 0.17 mM). The Ca2+-sensitivity curves for calcium-release by sarcoplasmic reticulum isolated from heterozygotes for the malignant hyperthermia-defect were indistinguishable from the averages of the curves for controls and malignant hyperthermia-homozygotes. Results of this study suggest that malignant hyperthermia is initiated due to a hypersensitive calcium-release mechanism which is inherited in an autosomal, codominant pattern and may be diagnosed using calcium-release sensitivity-tests on isolated sarcoplasmic reticulum.

Animals↗

Porcine malignant hyperthermia susceptibility: increased calcium-sequestering activity of skeletal muscle sarcoplasmic reticulum.

This study tested the hypothesis that calcium-sequestration by isolated sarcoplasmic reticulum was abnormal in skeletal muscle of malignant hyperthermia-susceptible swine. A heavy sarcoplasmic reticulum fraction was isolated from malignant hyperthermia and control muscle using differential and density-gradient centrifugation. Prior to onset of malignant hyperthermia, calcium-sequestering activity (Vmax at 37 degrees C, mumol calcium/mg/min) was twofold increased in malignant hyperthermia sarcoplasmic reticulum compared to control sarcoplasmic reticulum (1.96 +/- 0.50 versus 4.00 +/- 0.87, P less than 0.01), although thermodynamic and kinetic properties of this activity were otherwise indistinguishable between groups. This increased activity of the malignant hyperthermia sarcoplasmic reticulum fraction was associated with twofold increased concentration of Ca-ATPase and calsequestrin protein. When a malignant hyperthermia-reaction developed, calcium-uptake was depressed to less than 5% of control values. These data indicate that malignant hyperthermia is not initiated due to a defect in the calcium-sequestration mechanism, however, loss of calcium-uptake activity occurring after the onset of malignant hyperthermia might result in the propagation and irreversibility of the malignant hyperthermia reaction.

Animals↗