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Three arginine residues in apolipoprotein A-I are critical for activation of lecithin:cholesterol acyltransferase.

Previous studies have suggested that the helical repeat formed by residues 143;-164 of apolipoprotein A-I (apoA-I) contributes to lecithin:cholesterol acyltransferase (LCAT) activation. To identify specific polar residues involved in this process, we examined residue conservation and topology of apoA-I from all known species. We observed that the hydrophobic/hydrophilic interface of helix 143;-164 contains a cluster of three strictly conserved arginine residues (R149, R153, and R160), and that these residues create the only significant positive electrostatic potential around apoA-I. To test the importance of R149, R153, and R160 in LCAT activation, we generated a series of mutant proteins. These had fluorescence emission, secondary structure, and lipid-binding properties comparable to those of wild-type apoA-I. Mutation of conserved residues R149, R153, and R160 drastically decreased LCAT activity on lipid-protein complexes, whereas control mutations (E146Q, D150N, D157N, R171Q, and A175R) did not decrease LCAT activity by more than 55%. The markedly decreased activities of mutants R149, R153, and R160 resulted from a decrease in the maximal reaction velocity V(max) because the apparent Michaelis-Menten constant K(m) values were similar for the mutant and wild-type apoA-I proteins. These data suggest that R149, R153, and R160 participate in apoA-I-mediated activation of LCAT, and support the "belt" model for discoidal rHDL. In this model, residues R149, R153, and R160 do not form salt bridges with the antiparallel apoA-I monomer, but instead are pointing toward the surface of the disc, enabling interactions with LCAT. - Roosbeek, S., B. Vanloo, N. Duverger, H. Caster, J. Breyne, I. De Beun, H. Patel, J. Vandekerckhove, C. Shoulders, M. Rosseneu, and F. Peelman. Three arginine residues in apolipoportein A-I are critical for activation of lecithin:cholesterol acyltransferase J. Lipid Res. 2001. 42: 31;-40.

Amino Acid Sequence↗

[Integration of palmitat-1-14-C in lecithine and phospholipid content in normal and micro-embolized rabbit lungs (author's transl)].

Glass microspheres were used for a diffuse pulmonary microembolisation, as a modell for shock lung. Microembolisation is regarded as an important factor in pathogenesis of shock lung. The capacity of lung for lecithin synthesis was measured with palmitat-1-14-C incorporation. The phospholipid content and the composition of the fatty acids of lecithin were investigated. From the results it was possible, that the surfactant system may alterated by the vascular blocking. The dates supporting the importance of microembolisation in pathogenesis of shock lung.

Animals↗

Role of individual amino acids of apolipoprotein A-I in the activation of lecithin:cholesterol acyltransferase and in HDL rearrangements.

The central region of apolipoprotein A-I (apoA-I), spanning residues 143--165, has been implicated in lecithin:cholesterol acyltransferase (LCAT) activation and also in high density lipoprotein (HDL) structural rearrangements. To examine the role of individual amino acids in these functions, we constructed, overexpressed, and purified two additional point mutants of apoA-I (P143R and R160L) and compared them with the previously studied V156E mutant. These mutants have been reported to occur naturally and to affect HDL cholesterol levels and cholesterol esterification in plasma. The P143R and R160L mutants were effectively expressed in Escherichia coli as fusion proteins and were isolated in at least 95% purity. In the lipid-free state, the mutants self-associated similarly to wild-type protein. All the mutants, including V156E, were able to lyse dimyristoylphosphatidylcholine liposomes. In the lipid-bound state, the major reconstituted HDL (rHDL) of the mutants had diameters similar to wild type (96--98 A). Circular dichroism and fluorescence methods revealed no major differences among the structures of the lipid-free or lipid-bound mutants and wild type. In contrast, the V156E mutant had exhibited significant structural, stability, and self-association differences compared with wild-type apoA-I in the lipid-free state, and formed rHDL particles with larger diameters. In this study, limited proteolytic digestion with chymotrypsin showed that the V156E mutant, in lipid-free form, has a distinct digestion pattern and surface exposure of the central region, compared with wild type and the other mutants. Reactivity of rHDL with LCAT was highest for wild type (100%), followed by P143R (39%) and R160L (0.6%). Tested for their ability to rearrange into 78-A particles, the rHDL of the two mutants (P143R and R160L) behaved normally, compared with the rHDL of V156E, which showed no rearrangement after the 24-h incubation with low density lipoprotein (LDL). Similarly, the rHDL of V156E was resistant to rearrangement in the presence of apoA-I or apoA-II. These results indicate that structural changes are absent or modest for the P143R and R160L mutants, especially in rHDL form; that these mutants have normal conformational adaptability; and that LCAT activation is obliterated for R160L.Thus, individual amino acid changes may have markedly different structural and functional consequences in the 143--165 region of apoA-I. The R160L mutation appears to have a direct effect in LCAT activation, while the P143R mutation results in only minor structural and functional effects. Also, the processes for LCAT activation and hinge mobility appear to be distinct even if the same region of apoA-I is involved. -- Cho, K-H., D. M. Durbin, and A. Jonas. Role of individual amino acids of apolipoprotein A-I in the activation of lecithin:cholesterol acyltransferase and in HDL rearrangements. J. Lipid Res. 2001. 42: 379--389.

Amino Acids↗

Characterization of model bile using fluorescence energy transfer from dehydroergosterol to dansylated lecithin.

Fluorescence energy transfer from dehydroergosterol (DHE) to dansylated lecithin (DL) was used to characterize lecithin-cholesterol vesicles in the presence of the bile salt, sodium taurocholate. At lipid concentrations approximating physiological levels, exposure of fluorescently labeled vesicles to the bile salt led to a dose-dependent increase in the DHE-to-DL fluorescence ratio during the first 24 h after mixing. The initial changes in the fluorescence ratio correlated well with conventional turbidity measurements that quantify partial micellization of vesicles as a function of bile salt loading. In addition, fluorescence energy transfer from DHE to DL revealed cholesterol enrichment of vesicles and re-vesiculation of micelles at bile salt loadings for which vesicles and micelles coexisted. Samples containing the cholesterol-enriched vesicle fraction exhibited further increases in the DHE-to-DL fluorescence ratio during a 4-week observation period but only after a significant lag period of several days. The lag period decreased with cholesterol loading, and the increase in the fluorescence ratio always preceded the appearance of microscopic, birefringent, either needlelike or platelike, cholesterol crystals, in samples that were initially supersaturated with cholesterol. Cholesterol crystals were not observed, and the fluorescence ratio did not increase, for any sample that was undersaturated with cholesterol.Taken together, these results suggest that the latter changes in fluorescence are the result of cholesterol nucleation. Fluorescence energy transfer from DHE to DL is therefore a promising technique for the characterization of model bile and, possibly, provides a direct measurement of cholesterol nucleation.

Bile↗

Magnetoliposomes obtained from lecithin and Fe3O4 nanoparticles.

The purpose of our work was to obtain "magnetoliposomes" by enwrapping dodecylbenzensulphonic acid-stabilized Fe3O4 nanoparticles in a phospholipid lecithin-cholesterol matrix. Generated liposomes were observed under polarized light microscopy. We used different types of lecithin (vegetal and/or animal). For studying the permeability of the membrane, we performed conductivity measurements for both the pure liposomes and the magnetoliposomes in an aqueous medium.

Animals↗

[Analysis of soybean lecithin by supercritical fluid chromatography].

Separation of six phospholipids, phosphatidyl choline (PC), phosphatidyl-ethanolamine (PE), phosphatidyl-serine(PS), phosphatidyl-inositol(PI), phosphotidic acid(PA), lyso-phosphatidyl-choline(lyso-PC), in soybean lecithin with supercritical fluid chromatography was achieved within 15 min. C18 column was used and carbon dioxide modified by ethanol containing 0.05% (V/V) triethylamine was chosen as the mobile phase. Effects of the composition of mobile phase, temperature and pressure were studied. The quantitative analysis of PC has been achieved with external standard method. The calibration curve for PC was linear in the range between 0.020 g/L-0.075 g/L and the detection limit was 0.2 microgram. This method has been applied to the analysis of PC in soybean lecithin.

Chromatography, Supercritical Fluid↗

[Influence of radiation on plasma lecithin-cholesterol acyltransferase in rats].

Plasma cholesterol and lecithin-cholesterol-acyltransferase activity are studied in irradiated rats. Ionizing radiations cause an increase of cholesterol levels in plasma, concerning mainly ester fraction. Lecithin-cholesterol-acyltransferase activity in plasma of irradiated rats is diminued 48 hours after exposure. This decreased rate of LCAT is probably the consequence of the post-irradiation hypercholesterolemia.

Acyltransferases↗

Phospholipids of rat tissues after feeding pure phosphatidyl ethanolamine and lecithin.

Pure phosphatidyl ethanolamine and lecithin from egg yolks were fed to rats in saline or in olive oil and the changes in individual phospholipids in the intestinal wall, liver, and plasma of the animals were studied. Ingestion of olive oil alone produced increased levels of all phospholipid fractions in each of the three tissues. Feeding phosphatidyl ethanolamine in saline resulted in slightly increased plasma phospholipids, but levels of liver total phospholipids were greatly reduced; when phosphatidyl ethanolamine was fed with olive oil, liver phospholipids were again reduced but this reduction was confined to the phosphatidyl ethanolamine and phosphatidic acid fractions. Feeding lecithin alone did not produce significant changes in levels of plasma or tissue phospholipids. The results suggest that liver phospholipid synthesis is depressed by feeding phosphatidyl ethanolamine; in the presence of olive oil, hepatic synthesis of phosphatidyl ethanolamine seems to be more selectively inhibited.

Journal Article↗

Improving the O/W emusifying properties of rapeseed lecithin ethanol insoluble fraction by acetylation.

The effect of acetylation of rapeseed lecithin ethanol insoluble fraction (LEIF) containing 25% phosphatidylethanolamine (PE) on the O/W emulsifying properties was reported. In the study, acetic anhydride (50-150 mmol/100 g) and pyridine (0-30 mmole/100 g) were used. The PE conversion to N-acetyl-PE in LEIF determined by the HPLC method was varied from 18.2 to 84.7% and depended essentially on the acetylating agent amount and pyridine quantity used in acetylation. Emulsions of the O/W systems containing lecithin emulsifiers with different PE conversion degree were prepared and evaluated for its stability. It was found that the acetylation of LEIF improves its emulsifying properties and in the formation of emulsions containing soya oil, provided a decrease in oil droplet size and polydispersity index.

Acetylation↗

Evaluation of transdermal morphine and fentanyl pluronic lecithin organogel administration in dogs.

Transdermal administration of morphine and fentanyl using a pluronic lecithin organogel was evaluated in dogs. IV administration of morphine and fentanyl resulted in therapeutic serum drug concentrations. Following transdermal administration, however, median serum drug concentrations were never above the limit of quantitation for morphine or fentanyl. These findings indicate that use ofa pluronic lecithin organogel for transdermal administration of morphine or fentanyl cannot be justified.

Administration, Cutaneous↗

Gastric bezoar caused by lecithin: an unusual complication of health faddism.

We discovered an unusual bezoar in a previously healthy man who had been ingesting large amounts of a vegetable-derived oil touted to contain lecithin, which he purchased from health food stores in the belief that it had beneficial effects in lowering cholesterol levels and improving memory. The large intragastric mass, composed of fatty acids and lecithin, led to considerable morbidity, including abdominal pain, early satiety, and significant weight loss, and required surgical removal.

Bezoars↗

Site-directed mutagenesis and structure-function analysis of the human apolipoprotein A-I. Relation between lecithin-cholesterol acyltransferase activation and lipid binding.

We have mutagenized the human apoA-I gene and have generated cell lines which express normal and mutant apoA-I forms. Point mutations were introduced which changed Gln-1, Gln-2 to Arg,Arg, Pro99 to His, and Pro121 to His. In addition, the following amino acid deletions (delta) were generated: delta 113-124, delta 148-186, delta 212-233, and delta 213-243. The apoA-I form isolated from the culture medium of C127 cells was analyzed for its ability to activate lecithin-cholesterol acyltransferase (LCAT) and to bind to phospholipid vesicles and high density lipoprotein (HDL). Compared with the wild type (WT) apoA-I, the relative activation of LCAT achieved by the point mutations Gln-1, Gln-2----Arg,Arg, Pro99----His, and Pro121----His were 106 +/- 7, 92 +/- 6, and 77 +/- 9%, respectively. Kinetic analysis of one mutant apoA-I form showed similar Vmax but a 15-fold increase in the Km of the mutant apoA-I form. Furthermore, the activation achieved by the internal deletion mutants delta 113-124, delta 148-186, delta 212-233, and delta 213-243 was 47 +/- 3, 0.5 +/- 0.4, 28 +/- 4 and 13 +/- 5%, respectively. Mutants deficient in their ability to activate LCAT displayed alterations in liposome and HDL binding, compared with WT as determined by density gradient ultracentrifugation analysis of the culture medium. Thus, the peak recovery (approximately 50%) of apoA-I bound to HDL was at density 1.14 g/ml for the WT apoA-I, at 1.18 g/ml for the mutants delta 113-124 and delta 148-186, and at d greater than 1.21 g/ml for the delta 212-233 and delta 213-243. Electron microscopy of the proteoliposome LCAT substrate generated by WT and mutant apoA-I forms showed that the carboxyl-terminal deletion mutants which displayed aberrant binding to HDL also displayed reduced ability to convert the spherical lecithin-cholesterol vesicles into discs compared with WT. The findings suggest that (a) the importance of the carboxyl terminus of apoA-I for LCAT activation is related to its ability to bind to lipid and/or to form discoidal substrate for LCAT, and (b) the interaction of several domains of apoA-I are required for the activation of LCAT.

Algorithms↗

Effect of ascorbic acid, alpha-tocopherol, lecithin and L-ornithine-L-aspartate on ethanol induced hypoproteinemia and hyperlipidemia in rats.

We studied effect of exogenous ascorbic acid, alpha-tocopherol, lecithin and L-ornithine-L-aspartate on serum lipids and proteins in experimental hepatotoxic Wistar rats. Eleven groups (n = 6) of animals were used. Hepatotoxicity was induced by administering ethanol (1.6 g/kg/day) for 28 days. Both preventive and curative options were studied. Percentage increase in body weight was significantly lower in ethanol treated rats. Ethanol significantly (P<0.05) increased cholesterol, triglycerides and LDL, and decreased protein, albumin and A:G ratio in serum. Ascorbic acid, alpha-tocopherol, lecithin and L-ornithine-L-aspartate exhibited an ability to counteract the alcohol-induced changes in the body weight and biochemical parameters in preventive and therapeutic models in varying degree. Antioxidants showed better effect.

Animals↗

[Lecithin-cholesterol acyltransferase gene 608C/T polymorphism associated with atherosclerotic cerebral infarction].

OBJECTIVE: To explore the distribution of lecithin-cholesterol acyltransferase gene (LCAT) 608C/T polymorphism in Chinese Han population and the relationship of the polymorphism association with the occurrence of atherosclerotic cerebral infarction. METHODS: The lecithin:cholesterol acyltransferase gene 608C/T polymorphism is identified by polymerase chain reaction (PCR), single-strand conformation polymorphism (SSCP)and restriction fragment length polymorphism (RFLP) in 150 patients with ACI and 122 healthy controls matching age and sex. RESULTS: The distribution of LCAT 608C/T gene polymorphism was in accordance with Hardy-Weinberg equilibrium. The CT genotype frequency (14.0%) and T allele frequency (7.0%) in ACI group were significantly higher than those in control group (P<0.05). The concentration of high density lipoprotein cholesterol (HDL-C) in 608CC subgroups were significantly higher than those in 608CT subgroups both in ACI group and in control group (P<0.05). CONCLUSION: The LCAT 608C/T polymorphism is possibly a predisposing factor in ACI happening of Chinese Han population. T allele frequency is possibly concerned with the metabolism of HDL-C.

Aged↗

Measurement of the ratio of lecithin to sphingomyelin in amniotic fluid by fast atom bombardment mass spectrometry.

We describe a fast atom bombardment mass spectrometric method to determine the ratio of lecithin to sphingomyelin in amniotic fluid. Between m/z 400 and 1000, amniotic fluid extracts showed clear peaks for only sphingomyelin and lecithin. The molecular species of fatty acid in the phospholipids were analyzed quantitatively and quickly in a small volume of the extracts. The dipalmitoyllecithin/palmitoylsphingomelin ratio, determined by the proposed method, showed a reasonable correlation to the lecithin/sphingomyelin ratio measured by thin-layer chromatography. This method allows rapid and sensitive measurement of these phospholipids.

Amniotic Fluid↗

High density lipoprotein subpopulations from galactosamine-treated rats and their transformation by lecithin:cholesterol acyltransferase.

It is known that an acute hepatotoxicity is produced in rats by intraperitoneal administration of galactosamine; a consequence of this treatment is a marked deficiency of lecithin:cholesterol acyltransferase (LCAT) activity in the plasma compartment. In this study high density lipoprotein (HDL) from galactosamine-treated rats was isolated, resolved into subpopulations, and characterized. In contrast to HDL from control rats, which elutes from gel filtration columns as a single peak and has a diameter of 13.1 nm, HDL from the galactosamine-treated animals was found to elute in five major zones with diameters of 7.8-35 nm. Characterization of these subpopulations has revealed that the larger fractions are enriched in apolipoprotein E, phospholipid, and cholesterol, but contain little cholesteryl ester, while the smallest two fractions contain mainly apolipoprotein A-I, are enriched in phospholipid, and have 50-60% of their cholesterol in the ester form. Incubation of HDL from treated rats with a source of LCAT activity plus low and very low density lipoproteins caused transformation of these subpopulations into a species which, by size and composition, was essentially identical to control rat HDL. In addition, when the subpopulations were individually incubated with purified human lecithin:cholesterol acyltransferase and bovine serum albumin, there was a similar convergence toward a moderate particle size approximating control rat HDL. Cross-linking studies showed that incubation with LCAT activity reduced the heterogeneity of the treated rat HDL. We conclude that the galactosamine treatment induces a complex mixture of HDL that bears strong similarities to the small, apoA-I rich and large, apoE-rich particles seen in LCAT deficiency or secreted by hepatic cells in culture. Furthermore, these species appear to coalesce in the presence of the d greater than 1.21 g/ml fraction of control serum to yield a fairly homogeneous population that resembles control rat HDL in size, composition, and apoprotein content.

Animals↗

Interactions of ferrous ions with peroxidized lecithin-liposomes.

Oxidation of Fe2+ in the presence of peroxidized lecithin-liposomes small unilamellar vesicles suspended in various media (pH = 5.5) is described. Peroxidation of lecithin was induced by UV light and assayed by three methods: estimation of conjugated dienes, accumulation of hydroperoxides and by the thiobarbituric acid test. The oxidation of Fe2+ was accelerated by phosphate and citrate buffers, but in acetate buffer it was dependent on lipid peroxidases concentration and exhibited saturation kinetics.

Ferrous Compounds↗

The effect of melanins on oxidation of lecithin in liposomal membranes.

Lecithin peroxidation in liposomal membranes induced by UV light was studied in the presence of natural eye melanin and synthetic melanins prepared from various precursors. It was shown that melanins inhibited lecithin photooxidation, and that the extent of this effect strongly depended on the type and concentration of melanin. Comparative study indicated that melanin obtained from adrenolutin was the most effective antioxidant. The ability to inhibit lipid peroxidation depends both on the concentration of paramagnetic centers in the melanin polymer and the accessibility of these centers for free radicals formed during irradiation of liposomes.

Kinetics↗