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M Llanillo

Publications and source records attributed to M Llanillo.

32 records · Page 2Linked to original sources

Changes in the phospholipid and fatty acid composition in normal erythrocytes from sheep of different ages. Aminophospholipid organization in the membrane bilayer.

Development and aging processes in mammals are associated with changes in several physiological parameters. The aim of the present study was to investigate the changes in erythrocyte lipid composition during sheep development. In all the age groups studied, cholesterol/phospholipid ratios remained constant, at close to unity, while phospholipid patterns (sphingomyelin: 45-51%, phosphatidylethanolamine: 26-33%, phosphatidylserine: 13-19% and phosphatidylcholine: less than 2%) changed during development, with a statistically significant decrease (P less than 0.01) in phosphatidylserine and an increase in sphingomyelin content. These data suggest an increase in the rigidity of the erythrocyte lipid bilayer in adult sheep when compared with 1-month-old animals due to a decrease in the phosphatidylserine/sphingomyelin ratio. Fatty acid profiles consistently showed 5 main acids: oleic (52-54%), stearic (17-18%), linoleic (9-15%), palmitic (8.5-11%) and arachidonic acid (2-3%), mainly with significant variations (P less than 0.01) in palmitic and linoleic acid contents, respectively reaching the highest and lowest percentages in the youngest sheep. However, the developmental process seems to have no influence on the aminophospholipid topology of erythrocytes. This study suggests that the animals' developmental process has a marked effect on the lipid composition of erythrocyte membranes, which could affect cell functions.

Aging↗

Aminophospholipid translocase in the plasma membrane of Friend erythroleukemic cells can induce an asymmetric topology for phosphatidylserine but not for phosphatidylethanolamine.

The ATP-dependent translocation of phospholipids in the plasma membrane of intact Friend erythroleukemic cells (FELCs) was studied in comparison with that in the membrane of mature murine erythrocytes. This was done by following the fate of radiolabeled phospholipid molecules, previously inserted into the outer monolayer of the plasma membranes by using a non-specific lipid transfer protein. The transbilayer equilibration of these probe molecules was monitored by treating the cells--under essentially non-lytic conditions--with phospholipases A2 of different origin. Rapid reorientations of the newly introduced aminophospholipids in favour of the inner membrane leaflet were observed in fresh mouse erythrocytes; the inward translocation of phosphatidylcholine (PC) in this membrane proceeded relatively slow. In FELCs, on the other hand, all three glycerophospholipids equilibrated over both halves of the plasma membrane very rapidly, i.e. within 1 h; nevertheless, an asymmetric distribution in favour of the inner monolayer was only observed for phosphatidylserine (PS). Lowering the ATP-level in the FELCs caused a reduction in the rate of inward translocation of both aminophospholipids, but not of that of PC, indicating that this translocation of PS and phosphatidylethanolamine (PE) is clearly ATP-dependent. Hence, the situation in the plasma membrane of the FELC is rather unique in a sense that, though an ATP-dependent translocase is present and active both for PS and PE, its activity results in an asymmetric distribution of PS, but not of PE. This remarkable situation might be the consequence of the fact that, in contrast to the mature red cell, this precursor cell still lacks a complete membrane skeletal network.

Adenosine Triphosphate↗

Externalization of aminophospholipids in platelet liposome bilayers by supplementation with sphingomyelin.

Negatively charged phospholipids are mainly located on the inner leaflet of platelet liposomes. Using a specific reagent for amino groups, trinitrobenzenesulfanilic acid, we have shown that in large artificial vesicles prepared with total lipids from sheep platelets supplemented with increased amounts of exogenous sphingomyelin, an alteration in the amino-phospholipid topology occurs, with a progressive appearance of these lipid species -in particular phosphatidylserine- in the outer membrane bilayer.

Blood Platelets↗

Rearrangement of aminophospholipids in bilayers from sheep platelet plasma membranes and platelet liposomes by increasing their cholesterol levels.

Phospholipid orientation in platelet plasma membranes and other blood cells, such as erythrocytes, appears to be rather similar. The negatively charged phospholipids are almost exclusively located on the inner leaflet of the bilayer. No phosphatidylserine is present on the outer membrane bilayer. The results of the present study, using a specific reagent for amino groups, trinitrobenzenesulfanilic acid, showed that in sheep platelet plasma membranes enriched with free exogenous cholesterol, an alteration in the aminophospholipid topology occurs, with a portion of phosphatidylserine moving from the inner to the outer side. A progressive appearance of aminophospholipids in the outer membrane bilayer was also observed in artificial vesicles prepared with total lipids from sheep platelets supplemented with increased amounts of free cholesterol.

Animals↗

Isolation, characterization and phospholipid composition of lamellar bodies and subcellular fractions from dog lung.

1. Lamellar body fractions from dog lung can be separated by a procedure based on differential centrifugation before ultracentrifugation onto a discontinuous sucrose gradient. This fraction yields about 1% of total protein from the homogenate. 2. The different fractions obtained in the isolation were assayed for the measurement of four subcellular marker enzymes: beta-N-acetylglucosaminidase, acid phosphatase, 5'-nucleotidase and succinate dehydrogenase. 3. Lamellar bodies were not contaminated by mitochondria (0.7 succinate dehydrogenase relative specific activity), whereas high specific hydrolase activities were found (beta-N-acetylglucosaminidase and 5'-nucleotidase were enriched 1.8- and 2.8-fold, respectively). 4. The chemical criterion was established by measuring the specific components of lamellar bodies. The lamellar bodies have the highest phospholipid/protein ratio (0.35); cholesterol/protein ratio (0.15) and the highest phosphatidylglycerol percentages (7.9%). 5. The phospholipid composition of lamellar bodies is distributed among phosphatidylcholine (64.5%), phosphatidylethanolamine (11%), phosphatidylglycerol (7.9%), sphingomyelin (4%), phosphatidylserine and phosphatidylinositol (3%), respectively. The remainder were considered as trace amounts (less than 1%).

Animals↗

Lipid composition of subcellular particles from sheep platelets. Location of phosphatidylethanolamine and phosphatidylserine in plasma membranes and platelet liposomes.

The lipid composition of whole sheep platelets and their subcellular fractions was determined. The basic lipids show similar distributions in granules, microsomes, plasma membranes and whole platelets. Phospholipid (about 70% of total lipids) and cholesterol (25% of total lipids) are the principal lipid components. Free cholesterol represents about 98% of the total, whereas cholesteryl ester is a minor component. The phospholipid composition found in intact platelets and their subcellular particles is about: 35% phosphatidylethanolamine (PE), 30% phosphatidylcholine (PC), 20% sphingomyelin and 15% phosphatidylserine (PS). We also investigated aminophospholipid topology in intact platelet plasma membranes and platelet liposomes by using the nonpenetrating chemical probe trinitrobenzenesulfonic acid (TNBS), because they are the major components of total lipids. In intact platelets, PS is not accessible to TNBS during the initial 15 min of incubation, whereas 18% PE is labelled after 15 min. In contrast, in phospholipid extracted from platelets 80% PE and 67% PS react with TNBS within 5 min, while 27 and 25% PE and 15 and 19% PS from liposomes and isolated plasma membranes, respectively, were modified after 15 min of incubation. In view of this chemical modification, it is concluded that 22% of PE and less than 1% of PS are located on the external surface of intact platelet plasma membranes. The asymmetric orientation of aminophospholipids is similar between liposomes and isolated plasma membrane. PS (23 and 28%) and PE (34 and 31%) are scarcely represented outside the bilayer. The data found are consistent with the nonrandom phospholipid distribution of blood cell surface membranes.

Animals↗

Sialidase assay by luminescence in the low picomole-range of sialic acid. Its application to the measurement of this activity in influenza virus.

A new procedure for a sialidase assay, by bioluminescence, has been developed. The substrate, N- acetylneuraminyllactose (sialyllactose), hydrolysed by the sialidase activity, releases lactose. This lactose is hydrolysed with beta-galactosidase. The released galactose is oxidized with galactose dehydrogenase and NAD. The NADH produced in the last step is measured by a luminescence system, coupling two enzymes, NAD(P)H dehydrogenase (FMN) and luciferase. This microassay, which is specific, rapid, simple and ultra-sensitive, is a measure for amounts as little as (at least) 5 pmol of N-acetylneuraminic acid (corresponding to 0.15 ng of the released sialic acid). It uses commercialized reagents (non-radioisotopic) and avoids interferences common in other procedures. This method has been used for measuring sialidase activity directly on intact virus, avoiding inconvenient modifications produced in the extraction of the enzyme. The specific activity of sialidase of influenza virus X31 (H3N2), determined by this procedure, is 0.65 U/mg of total virus protein.

Hydrolysis↗

[Glycosidases of mammals: association of activities and changes of levels in some disorders].

beta-Galactosidase and associated activities (beta-glucosidase and beta-fucosidase) have been studied in rabbit and bovine liver and rabbit spleen. The physico-chemical (optimal pH, pI, MW) and kinetical (Km, Vmax, Ki) properties were determined for all the activities. Two enzyme forms were separated in rabbit spleen. beta-Galactosidase, beta-fucosidase and beta-glucosidase activities were catalyzed by the same enzyme in rabbit and bovine liver. The enzyme from bovine liver showed nonlinear double-reciprocal plots, suggesting a substrate-activation model, and the presence of more than one binding site in the enzyme. The enzyme activities of several glycosidases were determined in human sera fom control groups and from patients with diabetes mellitus, pancreatitis, hepatitis, cirrhosis, stomach and breast cancer, myocardial infarction and renal failure. The results show significantly different enzyme levels for several glycosidases in all the studied diseases. Experimentally-induced diabetes mellitus, alcoholism and nephrotoxicity in rats showed different glycosidase levels in several tissues, as compared with control groups.

Alcoholism↗

[Gangliosides of neural and extraneural tissues of various species of mammals].

The ganglioside patterns of the forebrain, cerebellum and brain stem from horse, donkey, mule and goat have been determined by thin-layer chromatography. GM1, GD1a, GD1b and GT1b are the four major brain gangliosides. N-acetylneuraminic acid as the predominant sialic acid (congruent to 97%) and traces of N-glycolyneuraminic acid were found. The four above mentioned major gangliosides were also found in the forebrain, cerebellum and brain stem of adult rats. This pattern is not modified in rats under stress situation (at 4 degrees C for 3 months). In other extraneural organs from rats such as liver and kidney the patterns differ from those of the neural organs. Pig spleen lymphocyte gangliosides were studied by thin-layer chromatography. Their patterns show remarkable differences in comparison to those of neural organs. These gangliosides were also separated by DEAE Sephadex chromatography into two peaks, I and II. Peak I contains mainly monosialogangliosides and peak II contains disialogangliosides. No trisialogangliosides were practically detected in the material. Sheep platelets contain GM3 as predominant ganglioside.

Animals↗

The effect of GTP on the aluminum fluoride- and forskolin-activated adenylyl cyclase from human embryonic kidney 293 cells.

GTP has been shown to inhibit AlF4(-)-stimulated, and to activate forskolin-stimulated adenylyl cyclase activity in the presence of Mg2+ in cell membranes from human embryonic kidney 293 cells. The maximal inhibitory response of AlF4(-)-stimulated adenylyl cyclase activity by GTP was not dependent on the concentration of Mg2+, but was so in the case of forskolin-activated activity at all forskolin concentrations assayed. Mn2+ ions stimulated AlF4(-)- or forskolin-activated adenylyl cyclase activity to a greater extent than Mg2+. The inhibition of AlF4(-)-stimulated cyclase by GTP was still observed with Mn2+, but the activation of forskolin-stimulated cyclase by GTP was not. When assayed together, Mn2+ and Mg2+ showed non-additive behaviours with respect to the amount of cyclic AMP formed after AlF4(-)-stimulation of adenylyl cyclase. The temperature dependence of the activation of adenylyl cyclase by forskolin, AlF4- or under basal conditions was observed to be somehow different in the presence of Mn2+ than in the presence of Mg2+ ions. Cholera toxin treatment produced a markedly increased cyclase activity, specially when assayed with AlF4-. In the case of forskolin-activated adenylyl cyclase, UTP and CTP were unable to reproduce the cyclase activation detected with GTP. However, in the case of AlF4(-)-stimulated adenylyl cyclase, UTP was as good as GTP at inhibiting cyclase activity, and CTP virtually eliminated the activation of the cyclase with AlF4-.

Adenylyl Cyclases↗

Changes in forebrain, cerebellum and brain stem phospholipid patterns from mothers and newborn rats after chronic pentazocine treatment during the gestation period.

Pregnant female Wistar rats were injected with pentazocine intramuscularly during the first nineteen days of the gestation period. The initial dose (1.8 mg/kg body weight) was increased daily by 1.2 mg of pentazocine, finishing with 23.4 mg/kg body weight. Chemical analysis of the forebrain, cerebellum and brain stem from mothers and their newborns points to statistically non-significant changes in total protein, phospholipid and cholesterol contents after pentazocine treatment. The phospholipid pattern only changed significantly in the brain stem of the mother rats treated with pentazocine, showing an increase (p less than 0.05) in inositol phosphoglycerides (2.5-fold) and phosphatidylglycerol (3.5-fold) percentages, while ethanolamine- and serine-phosphoglycerides decreased (p less than 0.05) by about 0.9 and 0.6-fold, respectively. The cholesterol profile found in the forebrains of the mother rats and their newborns did not show statistically significant differences after treatment.

Animals↗