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Biomedical subjects

R Strom

Publications and source records attributed to R Strom.

At least 109 records · Page 6Linked to original sources

Dependence of melittin structure on its interaction with multivalent anions and with model membrane systems.

The conformation and the aggregation state of melittin were investigated in aqueous solutions having different pH values and ionic composition as well as upon interaction with phospholipids. While circular dichroism could only show the existence, in aqueous solution, of either a random-coil or of a right-handed helical conformation, high resolution 1H and 13C n.m.r. spectra, together with the results of photon correlation spectroscopy, produced evidence in favour of a number of different well-defined structural states, depending on anion concentration and charge and on pH. In pure water at neutral pH melittin appeared to exist as a flexible random-cell monomer; in dilute NaCl a monomeric form was found which was still essentially unordered, but presented a pronounced rigidity of structure, and could be approximated to a prolate ellipsoid. When divalent anions were present (or when high ionic strengths were reached even with monovalent anions) melittin molecules associated into a compact disc-like tetramer; by 31P n.m.r., correlations could be established between the binding of phosphate ions and the variations in the structure or in the aggregation state of the polypeptide chains. As alkaline pH a helical tetramer was also found, different, however, from that formed on the presence of divalent anions at neutral pH. Upon binding to phospholipids, melittin molecules can be visualized, similarly to what happens in aqueous phosphate solutions, as consisting essentially of a bent right-handed helix, with a grouping of polar residues along one face of the molecule. The glutamine and lysine residues were strongly immobilized, while there was no n.m.r. evidence for any self-aggregation of the peptide; the ability of melittin to induce dichromate efflux from phospholipid vesicles was in fact higher when the peptide was in the monomeric state than in the tetrameric one.

Anions↗

Differential cytotoxicity of daunomycin in tumour cells is related to glutathione-dependent hydrogen peroxide metabolism.

Addition of 0.5mm-daunomycin, a quinone anti-cancer drug, causes severe inhibition of respiration in Ehrlich ascites cells, whereas Yoshida ascites cells were almost as resistant as rat hepatocytes. An inverse relationship appears to exist in the two types of tumour cells (which are both catalase-deficient) between the extent of cellular damage brought about by intracellular formation of superoxide anion occurring on reaction with O(2) of the drug free radical and the efficiency of the glutathione-mediated H(2)O(2)-detoxifying system.

Animals↗

Simultaneous radioenzymatic determination of phenylethylamine, phenylethanolamine, tyramine and octopamine in plasma of patients with hepatic encephalopathy.

A sensitive radioenzymatic assay for the simultaneous determination of phenylethylamine, phenylethanolamine, tyramine and octopamine in plasma samples is reported. After extraction with ethanol, the amines are subjected to enzymatic N-methylation with labelled S-adenosylmethionine, preceded in the case of phenylethylamine and of tyramine, by an enzyme-catalyzed beta-hydroxylation step. The procedure is completed by extraction with toluene containing different amounts of isoamylalcohol, followed by controlled evaporation of the solvent. A generalized and highly significant increase in the concentration of all the four amines was found in plasma samples from patients suffering from hepatic encephalopathy.

Ethanolamines↗

PMR studies of phosphatidylcholine-cholesterol vesicles interacting with lucensomycin.

Spin-lattice relaxation times (T1) were measured above the phase transition temperature on sonicated vesicles of egg- or dipalmitoyl-phosphatidylcholine containing cholesterol and/or the polyenic antibiotic, lucensomycin. T1 values of only the terminal methyl groups of the fatty acyl chains were significantly reduced by cholesterol. Lucensomycin caused, more markedly in cholesterol-containing vesicles, a selective reduction of the T1 values of the N-methyl groups. An even more conspicuous decrease, occurring only in cholesterol-containing vesicles, was observed for the transverse relaxation times (T2) of the N-methyl signals upon addition of lucensomycin. The polyene failed to remove the well-known broadening effect of cholesterol on phosphatidylcholine methylene signals. These results indicate that as lucensomycin binds to cholesterol-containing membranes, there is a detectable perturbation of the dynamic structure of the N-methyl groups with an increase in the degree of motional anisotropy. But the non-polar region of the bilayer seems not significantly perturbed by the polyene.

Antifungal Agents↗

Differential sensitivity of tumor cells to externally generated hydrogen peroxide. Role of glutathione and related enzymes.

(1) Oxygen uptake and lactate production of different strains of ascites tumor cells were assayed after exposure to an extracellular photochemical system known to produce reactive oxygen derivatives. The various cells tested showed differential sensitivity to the treatment, ranging from nearly full inactivation of Ehrlich cells to nearly full resistance of Yoshida cells. (2) Glucose plus succinate added after the treatment reestablished basal oxygen uptake capacity suggesting that the cell membrane was the primary site of damage. This was confirmed by dye-permeabilization and protein leakage in sensitive cells. (3) H2O2 was shown to be the only relevant oxygen derivative in the production of cell damage: catalase was the only externally added agent that protected sensitive cells, and H2O2 (congruent to 10(-3) M) had the same effects as the photochemical treatment. (4) While the absence of catalase is a feature common to all tumors tested, sensitivity to H2O2 appears to be related to cellular levels of glutathione peroxidase and of its subsidiary enzymes glucose-6-phosphate dehydrogenase, glutathione reductase and glutathione synthetase.

Animals↗

The interaction of short-chain aralkyl alcohols and amines with the erythrocyte membrane.

Erythrocytes in isotonic saline are hemolyzed by benzyl alcohol and by 2-phenylethanol, but not by the corresponding amines nor by the ring-or side-chain-hydroxylated analogs. All these compounds could however interact with the erythrocyte membrane since: a) they facilitated the hemolytic effect of benzyl alcohol and/or of phenylelytic effect of benzyl alcohol and/or of phenylethanol; b) they exerted a protective effect against controlled hypotonic hemolysis.

Alcohols↗

Association of halogenated isoxazolylpenicillins with penicillinase-sensitive beta-lactam antibiotics. Microbiological evaluation on beta-lactamase-producing Enterobacteriaceae.

The validity of nonsimultaneous association of penicillinase-sensitive beta-lactam antibiotics with halogenated isoxazolylpenicillins was tested in various Enterobacteriaceae strains. With several bacterial strains, expecially if producers of beta-lactamase type IV, exposure of either the bacterial suspensions of the brothsupernatant to the isoxazolylpenicillins appears both in vivo and in vitro to reduce the extent of subsequent hydrolysis of penicillinase-sensitive beta-lactam antibiotics.

Animals↗

Protoporphyrin IX sensitized photohemolysis: stoichiometry of the reaction and repair by reduced glutathione.

Protoporphyrin IX acts as a sensitizer in the photohemolysis of bovine erythrocytes by binding to a limited number of membrane sites. The cholesterol-specific antibiotic lucensomycin competes with protoporphyrin in binding to the membranes. The possibility of cholesterol peroxidation as a primary event in photohemolysis is supported by the repairing effect of exogenous cholesterol and by the increased susceptibility of the photosensitized erythrocytes to lucensomycin. Glutathione, if present within the erythrocyte, postpones the onset of lysis; if added after irradiation, it may repair the membrane damage and prevent hemolysis. This effect appears to be related to a redox reaction (possibly involving glutathione peroxidase) between reduced glutathione and the cholesterol peroxide molecules.

Animals↗

Stoichiometry of hemolysis by the polyene antibiotic lucensomycin.

The stoichiometry of hemolysis by the polyene antibiotic lucensomycin was investigated. It appears that hemolysis occurs only when a relatively high fraction (probably between 15 and 40%) of the cholesterol sites in the erythrocyte membrane have combined with the polyene. Also in phospholipid-cholesterol vesicles the increase of permeability requires occupancy of 40-50% of the existing cholesterol sites. As for the possible cooperative effect in the hemolytic process, it is probable that several (at least 9-10) lucensomycin-cholesterol adducts must interact on each side of the membrane to form an aqueous channel; the distribution of these adducts in the erythrocyte membrane occurs, however, apparently at random.

Animals↗