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R Strom

Publications and source records attributed to R Strom.

At least 91 records · Page 5Linked to original sources

Interference of an alpha 2 component in immunological determinations of pregnancy-specific beta 1 glycoprotein in serum.

Pregnancy-specific beta 1 glycoprotein (SP1-beta) was purified from human retroplacental blood by sequential anion exchange chromatography, gel chromatography and affinity chromatography. The final preparation appeared to be electrophoretically and immunochemically pure and was in particular free from any component with alpha mobility. The preparation was used as immunogen in rabbits as well as tracer and standard for radioimmunoassay and for cross- and rocket-immunoelectrophoresis. It was shown that this radioimmunoassay procedure, allowed quantitative determination of SP1-beta glycoprotein without interference by the alpha component.

Electrophoresis, Polyacrylamide Gel↗

Kinetics of binding of lucensomycin to natural and artificial membranes.

The binding of the polyenic antibiotic lucensomycin to native or modified human erythrocyte ghosts and to model membranes has been studied by monitoring the absorbance variations of the polyene at 320 nm. The non-steroidal components of the membranes (such as proteins and phospholipids) seem to affect the rate of the individual reaction steps leading to the formation of cholesterol-lucensomycin complexes rather than the ratio among these heterologous aggregates at equilibrium.

Antifungal Agents↗

Amino acids and hepatic encephalopathy.

The consideration of HE and its etiology has undergone a radical turn within the past decade. At present HE is seen in the context of severe metabolic derangements, which failure of the liver, the central biochemical powerhouse of the body, must bring with it. The increased awarenesses on the biochemical mechanisms involved in the pathogenesis of HE have found, step by step, their own place in a complex but consequential mosaic of events, in which amino acid and HE are tightly linked. Clinical and experimental studies are needed to further improve the knowledge in this field, nontheless a certain number of corner-stones can be identified: A profound alteration of the central nervous system neurotransmission is responsible for most, if not all, of the symptoms characterizing HE. The plasma amino acid imbalance observed in cirrhotic patients represents a 'condicio sine qua non' HE may develop. A functional impairment of the amino acid transport systems at the level of the blood-brain barrier seems to play a crucial role in causing deleterious modifications of the synaptic neurotransmission in the central nervous system. The reduction of the brain entry of the "toxic" aromatic amino acids usually obtained by parenteral administration of especially tailored amino acid mixtures is most frequently followed by awakening from HE. In conclusion, most of the results obtained have demonstrated that HE represents a research field in which progresses in the knowledge of some of the pathogenic mechanisms have brought the investigators to new therapeutic approaches which have clearly improved the prognosis of patients suffering from this severe neuropsychiatric syndrome.

Amino Acids↗

Isolated brain microvessels as in vitro equivalents of the blood-brain barrier: selective removal by collagenase of the A-system of neutral amino acid transport.

On treatment with collagenase, brain microvessels, together with several protein components, lose some enzymatic activities such as alkaline phosphatase and gamma-glutamyltranspeptidase, whereas no change occurs in the activities of 5'-nucleotidase and glutamine synthetase. The energy-requiring "A-system" of polar neutral amino acid transport is also severely inactivated, whereas the L-system for the facilitated exchange of branched chain and aromatic amino acids is preserved. In the collagenase-digested microvessels, this leads to loss of the transtimulation effect of glutamine on the transport of large neutral amino acids, because such transtimulation is due to a cooperation between the A- and L-systems. By contrast, NH4+ maintains (and even enhances) its ability to stimulate the L-system of amino acid transport, presumably through glutamine synthesis within the endothelial cells.

5'-Nucleotidase↗

On the formation of a dicloxacillin-p-hydroxymercuribenzoate suicide complex mediated by beta-lactamase I from Bacillus cereus.

p-Hydroxymercuribenzoate is a non-competitive inhibitor of beta-lactamase I from Bacillus cereus and also, after preliminary preincubation, an inactivator of the enzyme. Submitted to the simultaneous action of PCMB plus dicloxacillin, the enzyme completely loses its activity. Extensive dialysis can restore the enzymatic activity only if preincubation had been carried out with either PCMB or dicloxacillin but not if both inhibitors had been simultaneously present. Mercaptoethanol protects the enzyme from the action of PCMB, but not from the severe inactivation caused by dicloxacillin-PCMB mixtures. All these data suggest the formation of a complex between PCMB and the acyl-enzyme intermediate generated upon hydrolysis of the beta-lactam bond of dicloxacillin.

Bacillus cereus↗

5-Methylcytosine levels in nucleosome subpopulations differently involved in gene expression.

Sucrose density gradient centrifugation in the presence or absence of Na-EDTA and at different ionic strengths allows one to obtain well-defined nucleosome subpopulations the DNA of which, examined by gas chromatography-mass spectrometry, is in all cases hypermethylated as compared to spacer regions, but to a different extent for the different subpopulations. The various nucleosomes differ also in their content of histones and of high-mobility-group proteins, as well as in the levels of RNA polymerase activity associated with them. Such data suggest that these nucleosome subpopulations originate from chromatin fractions differently involved in gene expression.

5-Methylcytosine↗

Substrate preferences of human placental DNA methyltransferase investigated with synthetic polydeoxynucleotides.

A DNA methyltransferase partly purified from human placenta has been tested on a variety of synthetic polydeoxynucleotides. The results showed that: the enzyme is most active as a 'maintenance' or 'hemi-' methylase but also has some de novo methylating activity; the presence or absence of A or T in the substrate strand has little influence on maintenance or de novo activity, while polymers containing C but not G in the same strand are poor de novo substrates and bind poorly to the enzyme; single-stranded polymers are about as good substrates as double-stranded ones, and the effects of nucleotide composition (particularly G and mC content) on enzyme activity with single strands are similar to those with double-stranded polymers; strands in which all the cytosines are methylated bind the enzyme well. A mechanism is suggested involving two different sites on the enzyme that recognize CG and mCG, and which rationalizes the activity of eukaryotic DNA methyltransferases towards single-stranded DNA.

DNA↗

Interaction of lucensomycin with cholesterol in membranes: kinetic and structural studies.

The variations of optical density and fluorescence of lucensomycin are good indices of the binding of this polyenic antibiotic to membranes. The former parameter reflects more generally the binding to any site present in the membrane, while the latter is more specific for binding to cholesterol. Equilibrium titration experiments performed in the presence of an excess of membrane-bound cholesterol suggest that lucensomycin self-associates and that the binding and polymerization sites of the antibiotic are identical or quasi-identical; hence polymerization leads to a loss of binding sites and vice versa. The non-steroidal components of the membrane (such as proteins and lipids) seem to affect the rate of the individual reaction leading to the formation of the cholesterol-lucensomycin complexes, rather than the ratio among these heterologous aggregates at equilibrium. Polyene concentrations, which induce detectable proton release from unilamellar vesicles, are at least two orders of magnitude higher than those necessary to perform a spectroscopic titration of membrane cholesterol.

Antifungal Agents↗

Effect of ammonia on amino acid uptake by brain microvessels.

NH+4 ions, at a concentration (0.25 mM) similar to that found in the plasma of patients with hepatic encephalopathy, cause, in vitro, a significant stimulation of the uptake by brain microvessels of large neutral amino acids, without any effect on the uptake of alpha-methylaminoisobutyric acid, glutamic acid, or lysine. Such a stimulation occurs essentially through an increase of the maximal transport capacity (Vmax) of the saturable component. It is apparently mediated by the intracellular formation of glutamine, which is then exchanged, through the L-system of transport, for large neutral amino acids such as leucine, phenylalanine, or tyrosine. At higher concentrations (greater than or equal to 0.5 mM), NH+4 ions cause also a decrease of carrier affinity for neutral amino acids, which counteracts the stimulatory effect on their uptake.

2,4-Dinitrophenol↗

Kinetics of conformational changes in melittin. A circular-dichroic stopped-flow study.

The kinetics of the conformational changes undergone by melittin in aqueous solution upon interaction with ions and/or detergents were studied by following the variations of intrinsic ellipticity of the peptide with a circular-dichroic stopped-flow apparatus. The results were consistent with a simplified model in which salt induces a modification of the structure of melittin monomer, which may then aggregate into a polymeric assembly. Interaction with detergent micelles followed more complex kinetics.

Anions↗

Differentiation of myoblast cell lines and biological methylation: 3-deazaadenosine stimulates formation of multinucleated myofibers.

Treatment of myoblast cell lines with 3-deazaadenosine stimulates differentiation into myofibers. Myoblast clone L5/ 3B5 , which does not form myofibers after 6 days in fusion medium, was stimulated to form myofibers after 5 days of culture in fusion medium containing 50 microM 3-deazaadenosine. Myoblast clone L5/ 3C4 , which normally begins to form myofibers after 4 days in fusion medium, was stimulated by 50 microM 3-deazaadenosine to form myofibers after 3 days in culture and the extent of fusion was also increased. In the presence of 100 microM homocysteine thiolactone, the concentration of 3-deazaadenosine that stimulated maximal fusion was reduced by a factor of 10, from 50 microM to 5 microM 3-deazaadenosine. Stimulation of myofiber formation by 3-deazaadenosine suggests a requirement for one or more methylation reactions in myoblast differentiation and the potentiation by homocysteine thiolactone indicates that myofiber formation is specifically stimulated by an intracellular accumulation of 3-deazaadenosylhomocysteine.

Adenosine↗

Brain microvessels take up large neutral amino acids in exchange for glutamine. Cooperative role of Na+-dependent and Na+-independent systems.

Some regulatory aspects of neutral amino acid transport were investigated in isolated brain microvessels, an in vitro model of the blood-brain barrier. Preloading of the microvessels with glutamine stimulated the subsequent uptake of other neutral amino acids by way of the Na+-independent L system, but had no effect on the uptake of either basic or acidic amino acids. Moreover, this stimulation was abolished when the loading step was carried out in the absence of Na+ ions or in the presence of a high concentration of alpha-methylaminoisobutyric acid, indicating that the microvessels were able to concentrate glutamine via the A system of amino acid transport. Since the presence of the A system of neutral amino acid transport has not been detected in studies of blood-brain transport performed in vivo, the A system is probably associated with the antiluminal side of brain microvessels. Our results indicate, therefore, that the concentrative Na+-dependent A system and the exchanging Na+-independent L system can cooperate in the uptake of the large neutral hydrophobic amino acids. Such a cooperation may be relevant in the pathogenesis of some neurological disturbances such as hepatic encephalopathy, in which brain glutamine concentration is unusually high.

Amino Acids↗

On the stimulation by insulin of tryptophan transport across the blood-brain barrier.

Following previous studies showing that in vivo insulin administration increases brain tryptophan levels, we have tested the effect of insulin on tryptophan uptake by isolated bovine brain capillaries, which represent the in vitro equivalent of the blood-brain barrier. In the presence of insulin and Na+ ions, the uptake of 14C-labelled tryptophan was significantly increased with respect to controls, this increase being essentially due to a higher affinity of the transport system for the amino acid, while the Vmax was not affected. Insulin increased also, to a similar extent, the uptake of alpha-methylaminoisobutyrate in the presence of Na+ ions, while the uptake of beta-aminobicyclo(2.2.1)heptane carboxylic acid was not affected. Addition of phloretine, or of anti-insulin antibodies, as well as omission of Na+ ions from the buffer abolished the effect of insulin. Insulin appears therefore to increase specifically the substrate affinity of the A-system for neutral amino acid transport, without exerting any influence on the L-system. The absence of the A-system from the luminal side of the microvessels, and the high insulin concentrations needed, raise however some problems as to the physiological significance of this effect.

Animals↗