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A novel syndrome of severe neutrophil dysfunction: unresponsiveness confined to chemotaxin-induced functions.

We have identified a patient with a number of neutrophil dysfunctions. The patient was a female baby who lived for 8 months. During her life, she developed severe bacterial infections and showed omphalitis, impaired wound healing, and a pronounced leukocytosis. She was not a patient with leukocyte adhesion deficiency, because all leukocyte CD18 complex proteins were expressed at normal levels. Yet, neutrophil polarization and chemotaxis to platelet-activating factor, leukotriene B4, or formyl-methionyl-leucyl-phenylalanine (FMLP) were completely absent. We found a strong defect in actin polymerization in response to chemotactic stimuli, but only a retarded or even normal reaction with other stimuli. This indicates that the cellular dysfunctions were not due to an intrinsic defect in actin metabolism. Instead, the regulation of actin polymerization with chemotactic stimuli seemed to be defective. We concentrated on FMLP-induced responses in the patient's neutrophils. Functions dependent on activation of complement receptor type 3, such as aggregation or adherence to endothelial cells, were normally induced. Binding to serum-coated coverslips was normal in cell number; however, spreading was not observed. Exocytosis from the specific granules was readily induced. In contrast, FMLP failed to induce a respiratory burst activity or degranulation of the azurophil granules. FMLP induced a normal increase in free intracellular Ca2+, but a decreased formation of diglycerides (especially the 1-O-alkyl,2-acyl compounds). Thus, we have described a patient whose neutrophils show a severe defect in functional activation via chemotaxin receptors, resulting in a selective absence of NADPH oxidase activity, exocytosis from the azurophil granules, and actin polymerization. Our findings show that actin polymerization for neutrophil spreading and locomotion is regulated differently from that for phagocytosis. Also, the release of azurophil and specific granule contents is clearly shown to be regulated in a different way.

Actins↗

Physiology of blood platelet activation.

Blood platelets interact with a variety of soluble agonists such as epinephrine and adenosine diphosphate (ADP); many insoluble cell matrix components, including collagen and laminin, and biomaterials used for construction of invasive medical devices. These interactions stimulate specific receptors and glycoprotein-rich domains (integrins and nonintegrin) on the plasma membrane and lead to the activation of intracellular effector enzymes. The majority of regulatory events appear to require free calcium. Ionized calcium is the primary bioregulator, and a variety of biochemical mechanisms modulate the level and availability of free cytosolic calcium. Major enzymes that regulate the free calcium levels via second messengers include phospholipase C, phospholipase A2, and phospholipase D, together with adenylyl and guanylyl cyclases. Activation of phospholipase C results in the hydrolysis of phosphatidyl inositol 4,5-bisphosphate and formation of second messengers 1,2-diacylglycerol and inositol 1,4,5-trisphosphate (IP3). Diglyceride induces activation of protein kinase C, whereas IP3 mobilizes calcium from internal membrane stores. Elevation of cytosolic calcium stimulates phospholipase A2 and liberates arachidonic acid. Free arachidonic acid is transformed to a novel metabolite, thromboxane A2, by fatty acid synthetases. Thromboxane A2 is the major metabolite of this pathway and plays a critical role in platelet recruitment, granule mobilization and secretion. Up-regulation in signalling pathways will increase the risk for clinical complications associated with thromboembolic episodes. Down-regulation of signal transduction mechanisms may precipitate bleeding diathesis or stroke.

Blood Platelets↗

[Role of phosphorylcholine group on inhibiting capacity of lecithin-cholesterol liposomes on streptolysin O].

Cholesterol inhibition of the hemolytic activity of streptolysin O was used for testing the presence of cholesterol on the surface of lecithin-cholesterol liposomes. Cholesterol as a liposome component is not available for streptolysin inhibition when the molar ratio lecithin-cholesterol greater than 1,25. Incubation of such liposomes with phospholipase C, which converts the phosphadylcholine group into neutral diglycerides, restores an inhibiting activity of cholesterol parallel to the phosphatid degradation. Incubation of the liposomes with phospholipase D, which converts the phosphatidylcholine group into phosphatidic acid, also restores the inhibiting capacity of cholesterol on the hemolysin. The accessibility of liposome cholesterol to streptolysin O appears to mainly depend upon the cholin group of lecithin.

Cholesterol↗

Signal transduction pathway in human polymorphonuclear leukocytes for chemotaxis induced by a chemotactic factor. Distinct from the pathway for superoxide anion production.

The tyrosine kinase inhibitors erbstatin and herbimycin A inhibited the chemotactic response to FMLP (2 x 10(-7) M) and the superoxide anion (O2-) production stimulated by FMLP (1 x 10(-6) M) in human polymorphonuclear leukocytes (PMN) in similar manners. These compounds also inhibited phospholipase D (PLD)-catalyzed breakdown of phosphatidyl choline, suggesting a possible link between tyrosine kinase and PLD. In the presence of propranolol (phosphatidic acid (PA) phosphohydrolase inhibitor), or ethanol, the activation of PLD results in the modulation of PA and/or diglyceride (DG) generation, producing an irregularity in O2- production. However, PMN motility was not affected in these conditions. These results suggest that PLD is a downstream effector of FMLP-induced tyrosine kinase activation that leads to activation of the PMN superoxide release but not to chemotactic migration. In contrast, the tyrosine kinase inhibitors did not inhibit inositol 1,4,5-triphosphate generation and increase of intracellular concentration of free calcium. Furthermore, a protein kinase C inhibitor, 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride (H-7), did not affect the migration of PMN and the activation of PLD induced by FMLP at concentrations of less than 50 microM. These results support the premise that there is a specific signaling pathway for chemoattractant-induced PMN locomotion.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Divergent pharmacologic activities of PD 132301-2 and CL 277,082, urea inhibitors of acyl-CoA:cholesterol acyltransferase.

The in vitro potencies and hypocholesterolemic properties of CL 277,082 and PD 132301-2, two urea inhibitors of acyl-CoA:cholesterol acyltransferase (ACAT) were compared. PD 132301-2 was several-fold more potent at inhibiting ACAT in microsomes from rat and rabbit tissues and in cultured cells (murine macrophages and the human HepG2 cell line). This disubstituted urea was also relatively specific for ACAT as other cholesterol esterifying enzymes (e.g., lecithin:cholesterol acyltransferase, pancreatic cholesterol ester hydrolase), as well as intestinal diglyceride synthesis (acyl-CoA:monoglyceride acyltransferase), were unaffected in vitro at relevant concentrations. In normal chow-fed rats, both compounds reduced plasma triglycerides at doses > 50 mg/kg, but only PD 132301-2 reduced plasma cholesterol. In rat and rabbit models of hypercholesterolemia the greater in vitro potency of PD 132301-2 translated into greater in vivo efficacy (i.e., ED50 values 2- to 3-fold higher for CL 277,082 in both acute and chronic rate models). Of particular note was the greater elevation of high-density lipoprotein-cholesterol and parenteral activity of PD 132301-2 compared to CL 277,082 in the chronic rat model. Inhibition of cholesterol absorption in rats was also greater with PD 132301-2. In guinea pigs, in which 77% of plasma cholesterol was transported in low-density lipoprotein, PD 132301-2 potently reduced plasma total cholesterol (lowest significant dose = 1 mg/kg) as well as plasma triglycerides. CL 277,082 only reduced cholesterol at doses > 100 mg/kg in this low-density lipoprotein model. In a canine model of hypercholesterolemia CL 277,082 was inactive at doses up to 50 mg/kg, but PD 132301-2 was active at 3 mg/kg. Moreover, efficacy in dogs with PD 132301-2 was positively correlated with plasma drug concentration, an observation not previously demonstrated for other hypolipidemic drugs. The combined data illustrate that pharmacologic activities can vary widely among ACAT inhibitors of the same general class. In addition, the unique observation of proportionality between efficacy and blood drug levels in nonrodent animal models may not only help to simplify early stages in drug development but also may help to predict or monitor a direct action of the drug on vascular disease.

Absorption↗

Differential incorporation of docosahexaenoic and arachidonic acids in frog retinal pigment epithelium.

Vertebrate retinas contain a high level of docosahexaenoic acid (DHA, 22:6n-3) and a relatively low level of arachidonic acid (AA, 20:4n-6). Although it is not known how DHA is selectively concentrated in the retina, the retinal pigment epithelium (RPE) is intimately involved in this process as these cells phagocytize shed rod outer segments (containing DHA) and take up DHA from the circulation. To explore the role of the RPE in the DHA enrichment in the retina, native frog RPE cells (RPE-eyecups) were incubated with [3H]DHA or [3H]AA for short times, or pulsed for up to 1 h with the two labeled fatty acids plus labeled glycerol simultaneously, followed by a chase for up to 7 h. The incorporation of label into various lipids was monitored by thin-layer or high performance liquid chromatography. In short-time incubations, a greater amount of DHA was incorporated into neutral lipids (primarily triglycerides, TG) compared with AA, while similar amounts of both fatty acids were found in phospholipids. On a relative basis, DHA was esterified mainly into TG, with AA into phospholipids. The uptake of each fatty acid correlated linearly with concentration (30-120 nM) and the incorporation pattern was distinct. Interestingly, the uptake and incorporation of labeled DHA or AA were not affected by the presence of unlabeled AA or DHA, respectively. In a pulse-chase experiment, RPE cells were active in the de novo synthesis of glycerolipids, particularly TG, which achieved a specific activity as high as diglycerides and ten times higher than the major phospholipids. The incorporation of DHA into most glycerolipids occurred to a large extent during de novo glycerolipid synthesis, whereas AA was incorporated mainly by deacylation-reacylation reactions. Our results suggest different metabolic pathways for handling DHA and AA in frog RPE. The preferential incorporation of DHA into TG suggests that TG might play an important role in the selective enrichment of DHA in the retina and in the recycling of photoreceptor DHA between the RPE and the retina.

Acylation↗

[Phospholipid composition of erythrocytes in patients with chronic kidney failure].

Qualitative and quantitative composition of lipid fractions was studied in erythrocytes of 221 patients (16-62 years old) in the terminal step of chronic renal failure. The following lipid fractions were studied: total phospholipids, monoglycerides, cholesterol, free fatty acids, diglycerides, triglycerides, methyl esters of fatty acids, cholesterol esters, lysophosphatidyl choline, phosphatidyl serine, lysophosphatidyl ethanolamine, sphingomyelin, phosphatidyl inositol, phosphatidyl choline, lysocardiolipin, phosphatidyl ethanolamine, cardiolipin, lysophosphatidic acid and phosphatidic acid. The alterations observed in the phospholipid composition of erythrocyte membranes appear to occur due to intracellular transformations related to specific metabolism in uremia. These alterations of phospholipid composition in erythrocyte membranes of patients with chronic renal failure, which were found to be intoxication-dependent, may be used in prognostic evaluation of patients' state under conditions of uremia development.

Adolescent↗

[Lipids from the African swine fever virus].

The lipids of highly purified african swine fever virus (ASFV) propagated in porcine bone marrow cells were observed to contain 25.6% phospholipids, 9.7% monoglycerides, 14.1% cholesterol, 17.8% free fatty acids, 14.4% diglycerides, 13.6% triglycerides, and 6.7% cholesterol ethers. Diethyl ether extracts mono-, di-, triglycerides, free fatty acids, 50% of cholesterol and cholesterol ethers, and 25% of phospholipids from the virus. Analysis of the 14C-sodiumacetate incorporation into viral, cellular and plasmatic membrane lipids has shown that (a) different strains of ATV ASFV have identical composition; (b) viral lipid composition is determined by lipid composition of the infected cells plasmatic membrane; (c) the viral lipid composition is influenced by cells used for propagation of the ASFV.

African Swine Fever Virus↗

Hydrolysis of short acyl chain inositol lipids by phospholipase C-delta 1.

We investigated the relationship between substrate aggregation and activation of phosphoinositide-specific phospholipase C-delta 1 (PLC-delta 1), isolated from bovine brain cytosol. The inositol lipids 1,2-dibutyryl-sn-glycero-3-phosphoinositol (di-C4-PI), 1,2-dihexanoyl-sn-glycero-3-phosphoinositol (di-C6-PI), and 1,2-dioctanoyl-sn-glycero-3-phosphoinositol (di-C8-PI) were prepared from synthetic cytidine diphosphate diglyceride analogs in a reaction with myo-inositol catalyzed by yeast phosphatidylinositol synthase. All three lipids served as substrates for PLC-delta 1 at concentrations significantly below their critical micelle concentration (cmc). Under these conditions, steps that might limit the reaction rate, such as membrane adsorption or penetration into the phospholipid surface, were eliminated. Below the cmc, the concentration of lipid substrate required to produce hydrolysis followed the order: di-C8-PI < di-C6-PI << di-C4-PI. Calcium was essential for hydrolysis of the short chain substrates at all lipid concentrations tested. The dependence of the reaction on calcium suggests that this ion activates PLC-delta 1 at a step other than adsorption to or penetration of the membrane surface. As the concentration of di-C8-PI was raised above the cmc, the reaction velocity increased 2-3-fold. These results are consistent with the idea that micellar or bilayer aggregates of phosphoinositol are not required for PLC-catalyzed hydrolysis, although the reaction rate is enhanced by micelle formation.

Animals↗

Lipid composition of intestinal brush border membrane in alloxan induced acute experimental diabetes.

Several alterations were observed in the rat intestinal brush border membrane (BBM) lipid composition after 7 days old alloxane-induced diabetes as compared to the control animals. There was no change in the total protein contents but a significant increase in the total lipid contents was observed. Glycolipids constituting the major lipid components showed a two-fold increase. No significant difference was observed in the total phospholipid contents. A significant decline in the free cholesterol (CH) level, free fatty acids, triglycerides and sialic acid contents was observed in membranes from diabetic rats. Esterified CH, monoglycerides+diglycerides, phosphatidyl serine+phosphatidyl inositol and phosphatidyl choline levels remained unaffected. A significant increase in sphingomyelin with a parallel decrease in phosphatidyl ethanolamine was observed in BBM preparations from diabetic rats. The observed changes in intestinal BBM might be responsible for altered functions of the diabetic intestines.

Alloxan↗

[Changes in the lipid composition of mitochondrial membranes following exposure to low temperatures].

The phospholipid composition of the membranes of the albino rat liver mitochondria was studied by the method of thin-layer chromatography before and after rapid freezing down to --196 degree C and rapid (at 37 degree C) and slow (at room temperature) thawing. Significant reduction of lecithine and ethanolamine phosphatide composition is observed in the mitochondria exposed to rapid freezing and slow thawing. A simultaneous accumulation of diglycerides is found in the membranes. No reliable changes in phospholipid composition of the mitochondria membranes are observed after exposure to rapid freezing and rapid thawing.

Animals↗

Evaluation of an automated colorimetric assay for the measurement of lipase activity in canine sera.

An automated colorimetric method for determining lipase activity in canine sera was evaluated for precision, linearity and correlation to existing assay methods. The colorimetric method was a commercial reagent that used a series of enzymatic reactions based on the hydrolysis of 1,2 diglyceride by pancreatic lipase. Within-run and between-run coefficients of variation were < 6.8% and < 8.3%, respectively. Linearity was determined to be at least 1366 U/L. Canine serum lipase concentrations attained using the colorimetric method were compared to both titrimetric and dry-film methods for measuring serum lipase activity, resulting in significant (P < or = 0.05) correlation coefficients of 0.92 and 0.77, respectively. Canine serum lipase concentrations measured using the colorimetric assay on 2 different automated analyzers had a significant (P < or = 0.05) correlation coefficient of 0.92. A laboratory reference range using serum samples from 56 healthy dogs (0-561 U/L) was established. There were no significant (P < or = 0.05) differences in mean serum lipase concentrations comparing male and female dogs or comparing young dogs (< or = 3 y) to mature (4-7 y) and older (> 7 y) dogs using this assay. It was concluded that the automated colorimetric assay was a reliable indicator of canine serum lipase activity and offered several advantages, including small sample volume and short analysis time.

Animals↗

A rapid procedure for elimination of non-polar lipids hampering the usual polar lipid extraction and TLC separation.

A new and rapid method is proposed for extraction of non-polar lipids from tissues where they are present as abundant components which can interfere with the usual procedures of lipid extraction and TLC separation, and hamper, in particular, sulphatide visualization. A solvent more hydrophobic than chloroform, i.e. n-hexane, was utilized to remove the neutral lipids from samples of female rabbit parotid gland, and the n-hexane phase was used for TLC which showed considerable amounts of cholesterol esters, in addition to triglycerides, diglycerides and monoglycerides. The methanol phase, now devoid of non-polar lipids, was utilized to prepare TLC plates in order to separate and visualize the polar lipid fractions, in particular the sulphatides.

Animals↗

[Lipid metabolism disorder in ataxia-telangiectasia].

A clinico-morphological study of ataxia-teleangiectasia permits to establish the depth and distribution of lesions. Morphological findings indicate to lesions mainly in the extrapyramidal system, cerebellum, subcortical structures and in the stem structures and spinal cord. Besides, there were changes in the hemispheres in the form of cell atrophy, demyelinization, degeneration and gliosis. Demyelinization was found in the posterior and lateral columns of the spinal cord; in the extrapyramidal conductive paths. A study of lipid metabolism in 14 patients with ataxia-teleangiectasia also demonstrated an increase of lipid content in myelin, free cholesterol, etherconnected cholesterol, triglycerides and diglycerides in the plasma. There was a correlation between the degree of the nervous system demyelinization and an increased level of the main fractions in the lipid spectrum. In some patients following a transplantation of a neonatal thymus-sternum complex there was a drop in the previously increased content of the lipid fractions. The authors discuss some problems of the pathogenesis of ataxiateleangiectasia.

Adolescent↗

2-Arachidonoyl-glycerol as an "endocannabinoid": limelight for a formerly neglected metabolite.

Previously believed to simply be an intermediate in tri- and diglyceride metabolism or an alternative precursor for arachidonic acid, 2-arachidonoyl-glycerol has lately attracted renewed interest from lipid biochemists and pharmacologists. This is due to the finding of its cannabimimetic activity. In the present article recent landmarks that have led to the proposition of a role of this monoglyceride as an "endocannabinoid", starting from its newly discovered pharmacological properties in both central and peripheral tissues and ending with studies on the possible biosynthetic pathways for its formation, are reviewed. Also considered are possible interactions with another arachidonic acid-derived endogenous cannabinoid, anandamide.

Animals↗

On the mechanism of regulation of omega oxidation of fatty acids.

The stimulatory effect of starvation on omega oxidation of stearate by the 20,000 X g supernatant fluid of rat liver homogenates was studied. The effect was obtained after starvation for 24 hours. Starvation for longer times did not further increase omega oxidation. The stimulatory effect of starvation on omega oxidation of stearic acid was accompanied by a reduced incorporation of stearic acid into phosphatidic acid, diglycerides, and triglycerides. Substitution of the 100,000 X g supernatant fluid from liver homogenate of starved rats with 100,000 X g supernatant fluid from liver homogenates of control rats reduced the microsomal omega oxidation of stearic acid with a simultaneous increase in incorporation of stearic acid into the different glycerides. Under the latter conditions almost no free stearic acid could be isolated from the incubation mixture after the incubation. Of three different soluble factors necessary for glyceride formation, ATP appeared to be the most important from a regulatory point of view. Thus the soluble fraction of liver homogenate from a starved rat was shown to contain suboptimal concentrations of ATP. Addition of physiological amounts of ATP to the 20,000 X g supernatant fluid of homogenate of liver of starved rats had the same effect as addition of 100, 000 X g supernatant fluid from liver homogenate of control rats, i.e. decrease in omega oxidation and increase in formation of glycerides. Addition of sn-glycerol 3-phosphate and CoA-SH in amounts optimal for glyceride formation to the 20,000 X g supernatant fluid of liver homogenate of starved rats had only small effects on omega oxidation and glyceride formation. The results are consistent with a competition for free fatty acids between the acyl-CoA synthetases involved in biosynthesis of glycerides and the microsomal hydroxylase(s) involved in omega oxidation of fatty acids. The concentration of ATP in the soluble fraction is of importance in this competition. The possibility is discussed that this competition is of importance also under in vivo conditions and that a decreased rate of esterification in the starved state is responsible for the higher excretion of omega-oxidized fatty acids in urine in the ketotic state.

Animals↗

Chinese hamster ovary cells overexpressing the oxysterol binding protein (OSBP) display enhanced synthesis of sphingomyelin in response to 25-hydroxycholesterol.

25-Hydroxycholesterol negatively regulates cholesterol synthesis and activates cholesterol esterification in a variety of cultured cells. Concurrent with these effects, 25-hydroxycholesterol also stimulates the synthesis of sphingomyelin in Chinese hamster ovary (CHO)-K1 cells. The role of oxysterol binding protein (OSBP), a high affinity receptor for 25-hydroxycholesterol, in activation of SM synthesis was assessed by overexpression in CHO-K1 cells. When compared to mock transfected controls, three CHO-K1 clones overexpressing OSBP by 10- to 15-fold displayed a 2- to 3-fold enhancement of [3H]serine incorporation into sphingomyelin when treated with 25-hydroxycholesterol. Closer examination of one of these clones (CHO-OSBP cells) revealed a >8.5-fold stimulation of sphingomyelin synthesis after a 6-h treatment with 25-hydroxycholesterol compared to 3.5-fold in controls, slightly higher basal levels of sphingomyelin synthesis, and a more rapid response to 25-hydroxycholesterol. [3H]serine incorporation into phosphatidylserine, phosphatidylethanolamine, ceramide, or glucosylceramide was affected by <15%. Synthesis of sphingomyelin from exogenous [3H]sphinganine-labeled ceramide was enhanced in overexpressing cells treated with 25-hydroxycholesterol. However, in vitro activities of sphinganine N-acyltransferase, sphingomyelin synthase, and serine palmitoyltransferase were not affected by OSBP overexpression or 25-hydroxycholesterol. Overexpression of OSBP or 25-hydroxycholesterol did not significantly affect the ceramide content of Golgi-enriched fractions from control or overexpressing cells. However, diglyceride mass was reduced in Golgi-enriched fractions from overexpressing cells and by treatment with 25-hydroxycholesterol. Results from overexpressing cells show that OSBP potentiates the stimulatory effects of 25-hydroxycholesterol on sphingomyelin synthesis. 25-Hydroxycholesterol promotes translocation of OSBP to the Golgi apparatus where it appears to stimulate conversion of ceramide to sphingomyelin.

Animals↗

The CMP-stimulated production of diacylglycerol and CDPdiacylglycerol in neuronal nuclei labelled with radioactive arachidonate.

A neuronal nuclear fraction (N1), isolated from immature rabbit cerebral cortex, was preincubated with [3H]arachidonate, ATP, CoA, Mg2+ and 1-acyl-sn-glycero-3-phosphocholine or 1-acyl-sn-glycero-3-phosphoinositol. Using the former lysophospholipid, a sizeable incorporation of radioactivity was seen in N1 phosphatidylcholine. In subsequent incubations in the presence of CMP and EGTA, there was a generation of radioactive diacylglycerol in N1 and a corresponding decline in phosphatidylcholine radioactivity. Both these changes could be blocked by the addition of CDPcholine. In incubations using N1 phosphatidylinositol or phosphatidylethanolamine prelabelled with [3H]arachidonate, no evidence was found to support a direct generation of diacylglycerol from these phospholipids. The back reaction of cholinephosphotransferase in N1 is likely the principal source of diacylglycerols bearing arachidonate. Using either lysophospholipid in the preincubations described in the opening sentence, more than half of the incorporated radioactivity derived from [3H]arachidonate was found in N1 phosphatidylinositol. In subsequent incubations with EGTA and CMP there was a production of radioactive CDPdiacylglycerol and a decline in radioactive phosphatidylinositol. Both events could be blocked by the presence of myo-inositol. Radioactive CDPdiacylglycerol, produced in N1 in the presence of CMP and EGTA, was converted back into phosphatidylinositol by the addition of myo-inositol. The production of CDPdiacylglycerol is likely the result of the back reaction of CDPdiacylglycerol:inositol phosphatidate transferase in N1.

Animals↗