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Biomedical subjects

F Paltauf

Publications and source records attributed to F Paltauf.

At least 109 records · Page 6Linked to original sources

Structure and thermotropic behavior of phosphatidylserine bilayer membranes.

The structure and thermotropic properties of a homologous series of diacylphosphatidylserines (PS) in the anhydrous and hydrated states have been examined with low-angle X-ray diffraction and differential scanning calorimetry. In the anhydrous state at low temperatures both acidic PS and its NH4+ salts exhibit lamellar bilayer crystal forms that transform to liquid-crystalline hexagonal (type II) structures at higher temperatures. The crystal leads to liquid-crystal transition temperature increases with increasing chain length, the transition temperature of an NH4+-PS being higher than that of its corresponding acidic form. In contrast, the transition enthalpies of the acidic PS are higher than those of the NH4+ salt forms. Hydrated cyclic PS and NH4+-PS exhibit reversible lamellar gel leads to liquid-crystal transitions. In this case the acidic form undergoes this chain length dependent transition at a higher temperature, but with a lower enthalpy change, than the NH4+-PS. Both below and above the hydrocarbon chain melting transition, hydrated lamellar bilayer structures are present. The temperature-composition phase diagram of the NH4+-dimyristoyl-PS/H2O system has been studied in detail. The chain melting transition decreases with increasing hydration, reaching a limiting value of 39 degrees C. X-ray diffraction shows that both the bilayer gel structure and the bilayer liquid-crystal form take up water continuously (i.e., no hydration limit), a characteristic of lipid bilayers with a net charge. Electron-density profiles a NH4+-dimyristoyl-PS at different hydration levels permit detailed analysis of the structural parameters of the PS bilayer.

Calorimetry↗

Interaction of enantiomeric alkylacyl and diacylglycero-phosphocholines with cholesterol in bilayer membranes.

The sn-1 and sn-3 isomers of dioleoylglycerophosphocholine form vesicles of the same size as the racemic lipid. Identical permeability coefficients were found for the diffusion of glucose and chloride across bilayer membranes of vesicles consisting of these lipids. Vesicles made of mixtures of enantiomeric or racemic dioleoyllecithin with 30 mol% cholesterol have identical radii. Cholesterol reduces the permeability of bilayers for glucose and chloride irrespective of the steric configuration of the constituent phospholipid. Increasing concentrations of cholesterol (17, 33 and 50 mol%, respectively) broaden the (CH2)n signal in the 1H-NMR-spectra (90 MHz) of unilamellar vesicles containing sn-1, sn-3 or rac alkyloleoylglycerophosphocholine to the same extent. These results indicate that the steric configuration of phospholipids has no gross effect on the arrangement of phospholipids and cholesterol in bilayer membranes.

Chlorides↗

The active site and the phospholipid activation of rat liver lysosomal lipase are not stereospecific.

The stereochemical specificity of lysosomal lipase of rat liver was investigated using enantiomeric triacylglycerol analogs, sn-1-alkyl-2,3-diacylglycerol and sn-3-alkyl-1,2-diacylglycerol as substrates. Lysosomal lipase utilized both substrates with equal rates. The dependence of the activity of lysosomal lipase on the stereoconfiguration of activating acidic phospholipid was also studied. Our results showed that both sn-3-phospholipids (diphosphatidylglycerol, phosphatidylserine) and sn-1-phospholipids (bis(monoacylglycero)phosphate (BMP)) were efficient activators of this enzyme and thus the stereochemical configuration of the activating phospholipid is not important. Accordingly, the rat liver lysosomal lipase lacks stereospecificity with respect to both the triacylglycerol substrate and the acidic phospholipid activator.

Animals↗

The effect of cerulenin and exogenous fatty acids on triacylglycerol accumulation in an inositol-deficient yeast, Saccharomyces carlsbergensis.

Cerulenin inhibits fatty acid synthesis in yeast; supplementation with exogenous fatty acids is required to maintain cell growth. In the presence of cerulenin and exogenous fatty acids inositol-deficient cells accumulate triacylglycerols to almost the same extent as normally grown deficient cells, indicating that increased fatty acid synthesis is not primarily responsible for triacylglycerol accumulation.

Antifungal Agents↗

[Incorporation of radioactively labelled phosphoglycerides into the retina after subcutaneous application (author's transl)].

Radioactively labelled phosphoglycerides were given subcutaneously to rabbits and the incorporation of these substances into the retina and other organs has been studied. In a first examination the phospholipids were labelled with 3H-oleic acid, in a second examination we used 32P for labelling. We could show, that both the fatty acids and the polar head group of the phosphoglycerides were incorporated into the retina lipids. The specific radioactivity of the retina phosphoglycerides was always higher than that of lipids extracted from other organs.

Animals↗

[Induction of fatty acid oxidation in peroxisomes of rat liver by magnesium-4 chlorophenoxyisobutyrate (Mg-CPIB)].

Magnesium-4-chlorophenoxyisobutyrate (Mg-CPIB) and ethyl-CPIB were administered to adult male rats. After one and two weeks, respectively, the peroxysomal fraction from the livers was isolated and activities of fatty acid beta-oxidation and catalase were measured. With both drugs, catalase activity was only slightly induced (50%), whereas a great increase of fatty acid oxidizing enzymes was observed. After both time intervals the inducing effect of the magnesium salt of CPIB was significantly higher than that of the ethyl ester. The bearing of the induction of peroxysomal fatty acid oxidation on the hypolipidemic effect of CPIB is discussed.

Animals↗

Isolation of soluble proteins capable of stimulating aerobic plasmalogen biosynthesis.

The terminal step during aerobic plasmalogen biosynthesis is catalyzed by a microsomal desaturase system which converts 1-O-alkyl-2-acyl-sn-glycerophosphoethanolamine to 1-O-alk-1'-enyl-2-acyl-sn-glycerophosphoethanolamine (ethanolamine plasmalogen). The reaction depends on oxygen and NAD(P)H and is stimulated 3-10-fold by soluble activating factors contained in the 100 000 X g supernatant. Two stimulating proteins have been isolated from pig kidney; the partially purified proteins have identical molecular weights (27 000) but differ in their respective isoelectric points (protein I, 5.1 and protein II, 4.9). Both proteins behave identically in the biochemical studies conducted. Exogenous substrate binds to the stimulating proteins; the transfer of ethanolamine, but not of choline phospholipids, from liposomes to microsomes is enhanced by the stimulating proteins. They stimulate plasmalogen synthesis from either exogenous or endogenous substrate (synthesized from alkylglycerophosphoethanolamine by microsomal transacylases). The stimulating proteins have no enzymatic activity themselves; it is suggested that they affect events within the membrane and function as specific mediators between the membrane-bound enzyme system and the lipophilic substrate.

Aerobiosis↗

Lipid metabolism in inositol-deficient yeast, Saccharomyces carlsbergensis. The influence of temperature and anaerobiosis on the cellular lipid composition.

Saccharomyces carlsbergensis ATCC 9080 was grown at temperatures of 9, 25, 30 and 35 degrees C, respectively. At all temperatures inositol-deficient cells contain less phosphatidylinositol than supplemented cells. Total acylglycerols increase in supplemented cells as the temperature decreases whereas in deficient cells total acylglycerols are higher at 35 degrees C than at 9 degrees C. Temperature has little influence on the fatty acid composition of the supplemented as well as on that of the deficient cells. Under anaerobic growth conditions two major effects of inositol deficiency observed under aerobic conditions, i.e. accumulation of cellular triacylglycerols and increased production of acetoin, do not occur. Other effects of inositol deficiency, such as increased glucose utilization, increase of ethanol production, decrease of phosphatidylinositol and aggregation of cells, are observed under anaerobic conditions as well as under aerobic conditions.

Aerobiosis↗

Specificity of the phosphatidylcholine exchange protein from bovine liver.

The phosphatidylcholine exchange protein from bovine liver stimulates the specific transfer of phosphatidylcholine (PC) from rat liver microsomes to mitochondria or phospholipid vesicles (Wirtz, K.W.A., Kamp, H.H., and van Deenen, L.L.M. (1972), Biochim. Biophys. Acta 274, 606). In the present study, it has been established which components of the PC molecule are essential to the specific interaction with the protein. Radiochemically labeled analogues of PC have been synthesized with modifications in the polar and apolar moiety, and their transfer was measured between donor and acceptor vesicles. Relative to 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphorylcholine (egg yolk PC), transfer is inhibited or abolished when (a) the distance between phosphorus and nitrogen is decreased or increased and (b) a methyl group on the quaternary nitrogen is removed or substituted by an ethyl or propyl group. Transfer is much less affected when (a) the ester bonds are replaced by ether or carbon-carbon bonds, (b) the PC molecule contains two saturated fatty acids, and (c) the D stereoisomer is used. It is concluded that the protein has a binding site which interacts specifically with the phosphorylcholine head group and which cannot accommodate substantial configurational changes. Interaction with the apolar moiety of PC is less specific. However, lyso-PC is not transferred, suggesting that two hydrocarbon chains are required to stabilize the exchange protein-phospholipid complex. Interaction of [14C]PC-labeled exchange protein with vesicles of different phospholipid compositon has been analyzed by measuring the release of [14C]PC into these vesicles. Vesicles of egg PC or dimethylphosphatidylethanolamine function as acceptors, in contrast to vesicles of sphingomyelin or phosphatidylethanolamine.

Animals↗

[Pharmacokinetics of a combination of magnesium-chlorophenoxy-isobutyrate and meso-inositol hexanicotinate].

The absorption, blood level and renal excretion of chlorphenoxyisobutyric acid (clofibric acid) were examined following oral dosage of the magnesium salt (magnesium clofibrate) in a combination preparation containing meso-inositol hexanicotinate. Absorption of clofibric acid was found to be identical with that obtained with ethyl-alpha-p-chlorphenoxyisobutyrate (Clofibrate) reaching almost 100%. After dosage with the combination preparation, the maximum blood level of clofibric acid was achieved after 2 hours, in contrast to 4 hours for Clofibrate. No accumulation of clofibric acid in the blood was found after 60 days treatment with combination preparation at a daily dosage of 3 tablets. Urinary excretion of clofibric acid for both the combination drug and Clofibrate was 90% in 48 hours.

Adult↗

Stereospecificity of lipases. Enzymatic hydrolysis of enantiomeric alkyldiacyl- and dialkylacylglycerols by lipoprotein lipase.

Lipoprotein lipase from dialyzed and lyophilized bovine skim milk hydrolyses specifically the ester in position 1 of triacylglycerols and of enantiomeric alkyldiacylglycerols. No such specificity could be observed when enantiomeric dialkylacylglycerols were used as substrates since hydrolysis in positions 1 and 3 occurred at the same rate. Dialkylacylglycerols are, therefore, unsuitable as model substrates for the assay of the stereospecificity of lipases.

Animals↗

Studies on the interaction of cholesterol with diester- and dietherlecithin.

The lamellar repeat distances of aqueous dispersions of rac-1,2-dioctadec-9'-cis-enyl-glycero-3-phosphorylcholine (dietherlecithin) and 1,2-dioctade-9'-cis-enoyl-sn-glycero-3-phosphorylcholine (diesterlecithin) have been measured by X-ray diffraction as a function of water concentration. The point of maximum hydration was found to be 43% (w/w) for dietherlecithin and diesterlecithin respectively; the corresponding lamellar repeat distances being 62.3 å and 60.5 ã. Incorporation of cholesterol above maximum hydration results in the initial increase in the lamellar repeat distance with a maximum around cholesterol concentrations of 25 and 33 mol% for dietherlecithin and die diesterlecithin respectively. The apparent partial specific volumes fo the two lecithins and for lecithin--cholesterol mixtures in sonicated aqueous dispersions were measured. Values of 1.024 cm3-g-1 and 0.987 cm3-g(-1) were obtained for diether- and diesterlecithin, respectively, at 20 degrees C. Diesterlecithin-cholesterol mixtures showed a very small change in partial specific volume while mixtures of dietherlecithin-cholesterol showed a very marked decrease with increasing proportions of cholesterol. From these data a series of structure parameters are derived for the two lecithins and possible implications for the nature of the lecithin-cholesterol interaction are discussed.

Binding Sites↗

An improved synthesis of 1-0-[3H] alkyl-2-acyl-sn-glycerol-3-phosphorylethanolamine with an unsaturated acyl chain.

A method is described for the synthesis of 1-0-[9', 10'-(3)H2] octadecyl-2-octadecenoyl-sn-glycerol-3-phosphorylethanol-amine, starting from rac 1-0-octadecen-9'-ylglycerol. The sn-1-alkyl enantiomer is obtained by an enzymatic reaction involving deacylation of rac 1-0-octadecen-9'-yl-2-octadecenoyl-glycerol-3-phosphoryl-N-(tert.-butyloxycarbonyl) ethanolamine with phospholipase A2. The resulting lyso compound is tritiated with 3H2 in the presence of platinum catalyst and reacylated with oleoyl anhydride to yield the final product.

Bees↗