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Polyacrylamide gel electrophoresis: reaction of acrylamide at alkaline pH with buffer components and proteins.

The chemical reaction of monomeric acrylamide with primary, secondary, and tertiary amines, used as buffer components in polyacrylamide gel electrophoresis systems, was investigated in the basic pH range. Adduct formation proceeded for several minutes up to weeks, depending on the reactivity of the amino groups. A pH shift in the reaction mixture due to an altered pK value of the reaction product was observed. However, a few primary amines (tris(hydroxymethyl)aminomethane, 2-amino-2-methyl-1,3-propanediol) and secondary amines 3-([2-hydroxy-1,1-bis(hydroxymethyl)ethyl]amino)-1-propanesulfonic acid, 3-(dimethyl(hydroxymethyl)methylamino)-2-hydroxypropanesulfonic acid) showed negligible shifts of pH. They are, therefore, useful as components in the polymerization mixture; whereas some tertiary amines showing complete pH stability as well (e.g., triethanolamine) are not suitable, as they acted as accelerators of gel polymerization. Acrylamide can also covalently bind to proteins by reacting with the epsilon-amino group of lysine residues, especially. Bovine serum albumin, having an acidic isoelectric point, and the basic protein cytochrome c were treated with different acrylamide concentrations at alkaline pH yielding modified protein molecules with altered electrophoretic mobilities in different polyacrylamide gel electrophoresis systems. This reaction gave rise to artifacts in alkaline polyacrylamide gels and isoelectric focusing systems when residual acrylamide monomers were still present in the gel matrix after the polymerization process ceased.

Amines↗

Quantitative studies on lysolecithin-mediated hemolysis. Use of ether-deoxy lysolecithin analogs with varying aliphatic chain-lengths.

The process of lysolecithin-mediated hemolysis has been investigated by use of various ether-deoxy lysolecithin analogs (1-alkyl-propanediol-3-phosphorylcholine) with alkyl residues of 10-22 carbon atoms. Hemolytic activities were defined either as molar amounts to be added for 50% lysis (L50) or as cell-bound amounts at 50% lysis (A50). It was found, that in contrast to L50, A50 values are independent of experimental conditions. Moreover, L50 values primarily reflect the binding affinities, while A50 values give more accurate information on the actual membrane-disturbing potential. The strongest hemolytic C16-lysolecithin analog required 2 - 10(7) or 5 - 10(7) molecules bound per cell for 50% lysis at 0 or 37degrees C, respectively, corresponding to about 10 or 25% of the total membrane phospholipids. Evidence is presented, indicating that (a) lysophosphatides bind to cells below their critical micelle concentration, (b) micelles themselves are not generally necessary for cell lysis. Red cells of different species (man and cattle) as well as at varying temperatures exhibit significantly different sensitivities in terms of L50 and A50 values. These differences, however, depend on the degree of hydrophobicity of the lysolecithins and disappear in the case of lysolipids having C10 or C12 aliphatic residues. The data are in agreement with our hypothesis that cellular sensitivity to lysolecithin lysis may be determined by the degree of segregation of lysolecithin-rich areas within the membrane lipid phase.

Animals↗

Spontaneous and detergent-induced vesiculation of thymocyte plasma membranes.

An analog of lysophosphatidylcholine (1-dodecyl-propanediol-3-phosphocholine) which does not impair membrane-bound enzymes was used for the induction of shedding of membrane vesicles from intact calf thymocytes. Without liberation of intracellular enzymes such as lactate dehydrogenase (EC 1.1.1.27) the shedded membranes contained 15--25% of the total activity of the plasma membrane enzymes alkaline phosphatase (EC 3.1.3.1), nucleotide pyrophosphatase (EC 3.1.4.1) and gamma-glutamyl transferase (EC 2.3.2.2). Membrane-free supernatants only exhibited trace activities of these enzymes. Without further purification, the specific enzyme activities in shedded membranes were of the same order of magnitude as in purified plasma membranes prepared after nitrogen cavitation of thymocytes. Small amounts of membrane vesicles which showed a different composition could be removed without detergent. These membranes exhibited a 3-fold lower specific activity of the gamma-glutamyl transferase while that of the alkaline phosphatase and nucleotide pyrophosphatase was similar as in detergent induced membrane vesicles. Distinct differences also were found in the protein pattern. The content of total cholesterol and phospholipid in vesicles shed spontaneously or after detergent treatment was nearly identical, however, significant differences were found in the fatty acid composition of the main phospholipids. The content of polyunsaturated fatty acids (linoleic and arachidonic acid) increased in the order: spontaneously shedded membranes, detergent induced vesicles, conventional purified plasma membranes. These results are discussed in terms of the heterogeneous composition of areas of the thymocyte plasma membrane.

Acetylglucosaminidase↗

Stabilization of detergent-solubilized Ca2+-ATPase by poly(ethylene glycol).

The (Ca2+ + Mg2+)-ATPase from sarcoplasmic reticulum (SR) has been solubilized with 1-alkanoyl propanediol-3-phosphorylcholines with chainlengths ranging between 8 and 12 C atoms. A marked dependence of the ATPase activity upon the chainlength was found, indicating that alkyl chainlengths with 12 C atoms are necessary for retention of activity. Addition of poly(ethylene glycol) to the eluting buffers used for gel filtration of the ATPase-detergent micelles was found to increase the activity and the long-term stability significantly. In the presence of Ca2+, the elution volume indicated an ATPase dimer, whereas in the absence of Ca2+ the elution volume indicated a monomeric solution. The purity of the preparations after gel filtration was improved by subsequent chromatography with a hydroxyapatite column.

Animals↗

Nonelectrolyte permeability of liposomes of hydroxyfatty acid-containing phosphatidylcholines.

Two phosphatidylcholines containing hydroxylated fatty acids, 1-palmitoyl-2-[5-hydroxy-6,8,11,14-eicosatetraenoyl]-sn-glycero-3- phosphocholine (1-palm-2-5HETE PC) and 1-palmitoyl-2-[15(S)-hydroxy-5,8,11,13- eicosatetraenoyl]-sn-glycero-3-phosphocholine (1-palm-2-15HETE PC), and one phosphatidylcholine containing nonhydroxylated fatty acids, 1-palmitoyl-2-arachidonyl-sn-glycero-3-phosphocholine (1-palm-2-arach PC) were synthesized. Permeation of small nonelectrolytes (glycerol, 1,2-propanediol, urea, methylurea, propionamide and dimethylformamide) was assessed in multilamellar liposomes containing these synthetic PCs plus egg yolk phosphatidycholine (EPC) in the presence and absence of cholesterol. In liposomes containing 23% cholesterol, 69.3% EPC and 7.7% of either 1-palm-2-5HETE PC or 1-palm-2-15HETE PC the permeability to small nonelectrolytes was 60 to 400% greater than in liposomes containing 23% cholesterol and 77% EPC. The HETE-containing PCs also increased permeability in liposomes without cholesterol but the effects were less striking. Addition of the synthetic PCs did not affect the energy of activation of permeation.

Cell Membrane Permeability↗

Distribution and metabolism of synthetic alkyl analogs of lysophosphatidylcholine in mice.

Stability, distribution and metabolic fate of alkyl analogs of lysophosphatidylcholine have been studied in mice. Analogs employed were 1-hexadecyl- and 1-dodecyl-propanediol-3-phosphorylcholine (2-deoxy-lysophosphatidylcholine) and rac-1-octadecyl-2-methyl-glycero-3-phosphorylcholine (2-methoxy-lysophosphatidylcholine). It is demonstrated that (1) the half-life of these compounds in the organism was increased to the order of days as compared to minutes or hours for natural lysophosphatidylcholine, (2) the analogs were slowly degraded in vivo with partial incorporation of the hydrophobic part into neutral lipids and phosphatidylcholine. Deoxy analogs were apparently degraded faster than methoxy derivatives, and (3) due to this metabolism, accumulation of these compounds, even after repeated injections, did not occur in mice. Intravenous and intraperitoneal injections led to rapid and complete distribution of the lysolipids with slight enrichment in liver, kidneys and intestine. Subcutaneous or oral application resulted in a similar distribution, however, remarkable depot effects at the sites of administration were observed. Experiments with tumor-bearing mice indicated a reduced metabolic turnover and thus a slight enrichment of ether-lysophosphatidylcholine analogs in tumor tissue.

Animals↗

The triose-phosphate site of homogeneous reconstituted sn-glycerol-3-phosphate acyltransferase of Escherichia coli.

The sn-glycerol-3-phosphate (glycerol-phosphate) acyltransferase of Escherichia coli was purified to near homogeneity and its activity reconstituted with phospholipids (Green, P.R., Merrill, A.M., Jr. and Bell, R.M. (1981) J. Biol. Chem. 256, 11151-11159). The competency of glycerol-P analogues to serve as inhibitors and as substrates was investigated. Dihydroxyacetone-P, ethyleneglycol-P, 1,3-propanediol-P, 3,4-dihydroxybutylphosphonate and DL-glyceraldehyde-3-P were inhibitors of the reconstituted purified glycerol-phosphate acyltransferase. The kinetics of inhibition, while formally of the mixed type, most closely resembled that of a simple competitive inhibition with respect to glycerol-3-P. Inorganic phosphate was also found to be a competitive inhibitor. All of the glycerol-3-P analogues except DL-glyceraldehyde-3-P were substrates. Of these, dihydroxyacetone-P proved to be the best substrate. The secondary hydroxyl was not necessary for activity. Glycerol-phosphate acyltransferase catalyzed the hydrolysis of palmitoyl-CoA in the presence of DL-, but not D-glyceraldehyde-3-P. This suggests that the gem diol of L-glyceraldehyde-3-P may be a substrate, and that the acylated adduct may be unstable. The enzyme was inactivated by phenylglyoxal and butanedione, suggesting that arginine may be at or near the active site.

Acyltransferases↗

Analysis of the monocyte chemotactic response to lysophosphatidylcholine: role of lysophospholipase C.

Previously, we reported that lysophosphatidylcholine (lyso-PtdCho), a component of oxidized low-density lipoprotein, was a monocyte chemoattractant (M.T. Quinn et al. (1988) Proc. Natl. Acad. Sci. USA 85, 2805-2809). Monocyte chemotaxis was also stimulated by lyso-platelet activating factor but not by platelet activating factor itself. In the present studies, we used other analogs of lyso-PtdCho to determine structural and metabolic features required for chemotactic activity. Although both D- and L-lyso-PtdCho stimulated chemotaxis, suggesting a lack of stereospecificity, studies using propanediol and ethanediol analogs of lyso-PtdCho suggested that a free hydroxyl moiety or an ester-linked fatty acid vicinal to the phosphocholine group of the lysophospholipid was required for the expression of activity. Incubation of [3H]choline-labeled lyso-PtdCho with monocytes resulted in the formation of labeled PtdCho, glycerophosphocholine (GPC), phosphocholine, and free choline, while resident peritoneal macrophages, cells which we show do not respond chemotactically to lyso-PtdCho, metabolized the labeled substrate to generate only labeled PtdCho and GPC; no labeled phosphocholine was found, suggesting a possible role for lysophospholipase C activity in the monocyte chemotactic response. Although monoacylglycerol, the product of lysophospholipase C hydrolysis of lyso-PtdCho, was not chemotactic for monocytes, diacylglycerol demonstrated chemotactic activity, suggesting that the subsequent acylation to diacylglycerol may be involved in the monocyte chemotactic response to lyso-PtdCho. Indeed, monocytes incorporated [3H]glycerol from [3H]glycerol-labeled lyso-PtdCho into di- and triacylglycerol. Based on these results, a model is proposed whereby the monocyte chemotactic response to lyso-PtdCho involves a sequence of metabolic steps which includes hydrolysis of lyso-PtdCho to monoacylglycerol and phosphocholine by lysophospholipase C followed by acylation of monoacylglycerol to diacylglycerol. Diacylglycerol would then act as an intracellular second messenger that could activate or facilitate the chemotactic response.

Animals↗

DNA synthesis in HeLa cell nuclei isolated in a non-aqueous medium.

Nuclei were isolated from synchronized HeLa cells in the S-phase by a modification of the non-aqueous method described by Kirsch et al. (Science (1970) 168, 1592-1595). The method involved lyophilization of the cells, homogenization in non-aqueous glycerol and centrifugation in a gradient of 0-35% (w/w) 3-chloro-1,2-propanediol in glycerol. Such nucleic incorporated deoxyribonucleotides into DNA when incubated in an aqueous buffer containing Mg2+, ATP, dATP, dGTP, dCTP and dTTP. The product was sensitive to DNAase and banded with bulk DNA in isopycnic centrifugation. Sedimentation of the product in alkaline sucrose gradients after labelling of the nuclei for 2 min revealed labelled material in the 5 S peak and in the 18 S area. The material in the 5 S peak moved into the 12 S area after a 13 min chase.

Cell Fractionation↗

Stimulation of hexose transport by human polymorphonuclear leukocytes: a possible role for protein kinase C.

The protein C kinase activators 1-O-oleoyl, 2-O-acetylglycerol, 12-O-tetradecanoyl phorbol-13-acetate, and mezerein, stimulated deoxyglucose uptake in human neutrophils. The responses were stimulus specific since no effect was noted with the diether analogues 1-O-hexadecyl-2-O-ethylglycerol, 1-O-palmitoyl-2-O-acetyl or 1-O-palmitoyl-3-O-acetyl diesters of propanediol, or with 1,2-diolein. Stimulation of deoxyglucose uptake had the characteristics of carrier facilitated hexose transport. Stimulated uptake of deoxy-glucose was inhibited by trifluoperazine (10-30 microM). Activation of protein kinase C therefore appears to trigger events involved in hexose transport.

Biological Transport, Active↗

Enhanced potency dipeptide glycol renin inhibitors: studies in vitro and in the conscious rhesus.

We prepared a series of novel dipeptide amides of the formula Boc-Phe-Leu-X, where X is a 3-amino-3-alkyl-1,2-propanediol with lower alkyl substitutions at C-1, in order to probe accessory binding sites in the enzyme renin. This approach was successful in generating potent inhibitors of human and hog renin in vitro. Moreover, these inhibitors were able to effect in vivo reduction of plasma renin activity (PRA) in the conscious salt-depleted rhesus monkey (i.v. route); this effect was related to the size of the C-1 alkyl group.

Animals↗

The acute in vitro effect of ethanol, its metabolites and other toxic alcohols on ion flux in isolated human leucocytes and erythrocytes.

Using isolated healthy human leucocytes and erythrocytes as model cells, we investigated the inhibitory effect of ethanol, its metabolites and of other toxic alcohols on the active fluxes of rubidium (Rb: equivalent to K) and sodium (Na), and on Na,K-ATPase activity. Ethanol (80 mmol X l-1) inhibited total and ouabain-sensitive 86Rb influx and 22Na efflux in leucocytes, this being dose-related for total, ouabain-sensitive and ouabain-insensitive fluxes at higher concentrations. In erythrocytes inhibition occurred at 20 mmol X l-1 for 86Rb influx, dose-related at higher concentrations as for leucocytes. 22Na efflux was inhibited at 80 mmol X l-1 and above. Acetaldehyde (0.1 and 0.2 mmol X l-1), 1,2-propanediol (0.8 mmol X l-1) and 2,3-butanediol (0.4 mmol X l-1) inhibited all fractions of 86Rb influx in erythrocytes, but not in leucocytes. Methanol, 2-propanol and 1,2-ethanediol (16 and 32 mmol X l-1) inhibited 86Rb influx in erythrocytes, but not in leucocytes. The order of potency was 2-propanol greater than 1,2-ethanediol greater than methanol. Na,K-ATPase activity was inhibited in lysed leucocyte and erythrocyte preparations only at very high concentrations of the alcohols--suggesting that inhibition is due to an alteration in membrane structure and not to a direct effect on the enzyme.

1-Propanol↗

Effects of ceramide analogs on myelinating organ cultures.

Analogs of ceramide which inhibit galactocerebrosidase also demyelinate or inhibit myelination in organ cultures of rat cerebellum. The potency of the analogs in culture correlated with their effectiveness as inhibitors of cerebrosidase, but not with their effectiveness as inhibitors of galactosyl transferase. The most effective compound was the decanoyl amide of 3-phenyl-2-amino-1,3-propanediol with erythroconformation. Stimulators of cerebrosidase also demyelinated cultures. With both groups of compounds, myelin sheaths became distorted, then broke into lipid droplets. Axons were preserved, but neurons showed some nuclear changes and granularity. Metabolic studies with the most effective inhibitor showed that glucose incorporation into cerebroside and other alkali-stable lipids was initially depressed compared to proteins and total lipids.

Amides↗

Action of dantrolene sodium on single motor units of cat muscle in vivo.

Dantrolene sodium, a skeletal muscle relaxant, was investigated for its action on single motor units of the peroneus tertius muscle in cats anaesthetized with pentobarbitone sodium. Motor axons were isolated in ventral root filaments and their muscle units were identified as either fast-fatiguable (FF), fast-resistant (FR), fast-intermediate (FI) or slow-resistant (S). Dantrolene sodium (2 mg/kg) was administered intravenously in a solution of 1,2-propanediol. Effects were observed on the twitches, unfused tetanic contractions and maximal tetanic tensions of 78 motor units in 5 experiments. Contractile tension was depressed whereas muscle action potentials appeared unaffected. Maximal tetani were less depressed than unfused tetani and twitches. The reduction of tension was more pronounced for fast (FF, FR and FI) than for slow units. After drug injection, the mean tensions developed at the end of a 3 s period of stimulation at 40/s were: 13.1%, 10.6% and 12.7% of pre-drug control for FF, FR and FI units, respectively, and 67.1% for S units. Upon prolonged stimulation at 40/s fast units depressed by Dantrolene sodium were able to potentiate back to their initial pre-drug tension.

Action Potentials↗

Measurement of plasma gamma-glutamyltransferase in clinical chemistry: kinetic basis and standardisation propositions.

The conditions for the measurement of gamma-glutamyltransferase (EC 2.3.2.2) activity of human plasma were studied at 30 degrees C using the kinetic technique of Szasz [3]. The optimum pH in Tris (hydroxymethylaminomethane) buffer and 2-amino-2-methyl-1.3-propanediol at a concentration of 100 mmol/1 are 8.0 and 8.1. The kinetic characteristics of human plasma gamma-glutamyltransferase were studied using gamma-L-glutamyl p-nitroanilide and its carboxyl derivative as donor substrates. Glycylglycine was chosen as the best acceptor of the gamma-glutamyl radical. Under these conditions, we have shown that the inhibition by the donor substrate was more important at acidic pH and vanished at alkaline pH. This inhibition was obviously related to the presence of the acceptor, but did not vary with glycylglycine concentration. At pH 8.0, by increasing the acceptor concentration some competition occurs at the donor binding site, as reported by other authors in relation to the known ping-pong bi-bi enzyme mechanism for the gamma-glutamyltransferase. Some displacement of donor substrate by increasing amounts of acceptor substrate could be observed at all pH values we studied. However, the influence of glycylglycine on the enzyme's maximum velocity and affinity for the donor substrate was also pH dependent. Studying the kinetic characteristics of the enzyme as a function of the pH suggests that the enzyme works with more than one active site at pH 7.5-8.0. Based on the results of this study, we propose measurement conditions for gamma-glutamyltransferase at 30 degrees C in routine clinical chemistry without preference in the choice of substrate.

1-Carboxyglutamic Acid↗

Simultaneous ion-pair and partition liquid chromatography of acetaminophen, theophylline and salicylate with application to 500 toxicologic specimens.

Acetaminophen (A), salicylate (S), and theophylline (T) are three common pharmaceutical agents involved in drug overdose for which determinations of serum drug concentrations play a pivotal role in clinical management. All three must be included in overdose screening, but often separate methods must be used. By combining reverse phase high performance liquid chromatography (HPLC) for A and T with ion-pair techniques for S, all three drugs can be chromatographed and quantitated simultaneously. A water-soluble ion-pair of S and 2-amino-2-(hydroxy-methyl)-1,3-propanediol eluted in a mobile phase of 4% acetonitrile and 12% acetic acid in water. Relative retention times for A, T and S were 0.41, 0.57 and 1.75 with an internal standard of 8-chlorotheophylline. Validation studies demonstrated recoveries of 88-104%, intraasay precisions of 2.1-6.6%, interassay precision of 3.8-8.0%, detection limits and linearity ranges of 2-200 mg/l for A and T and 10-1,000 for S. Seventy-two drugs were tested for interference. Accuracy studies showed no significant biases when compared to other methods. The method is convenient for toxicologic screening or therapeutic drug monitoring. In 576 consecutive serum specimens submitted for general toxicologic screening, 7.3% were positive for A, 5.2% for S, and 1.7% for T. Only 1.7% had critical concentrations indicating intoxication.

Acetaminophen↗

A rapid method for measurement of ethylene glycol.

It has been reported that ethylene glycol produces a positive interference in the triglyceride assay on the DuPont aca discrete analyzer. The sensitivity of this method for ethylene glycol was exploited to develop a rapid and convenient method for detecting and quantitating ethylene glycol in serum by the use of a "triglyceride gap." This method is based on the difference between two different enzymatic triglyceride measurements; the DuPont aca triglyceride measurement, which uses lipase and glycerol dehydrogenase, and a Boehringer Mannheim method, which uses lipase, glycerol kinase, glycerolphosphate oxidase, and peroxidase. Serum pools were spiked with increasing concentrations of ethylene glycol to construct a standard curve (linear to 25 mmol/L). Patients specimens and control sera were analyzed using a one point calibration. Within-run and between-run coefficients of variation (CV) of 1.5, 2.8, 5.8, and 3.2%; 3.4%; and 12.6% were obtained at ethylene glycol concentrations of 20.13, 8.37, and 2.18 mmol/L, respectively. The sensitivity of this method is 1.0 mmol/L. Methanol, ethanol, n-propanol, isopropanol, and acetone at 100 mmol/L; 20 mmol/L 1,3-propanediol; and 10 mmol/L glycolic acid, oxalic acid, glyoxylic acid, and lactic acid did not interfere in the quantitation of ethylene glycol. High levels (10 mmol/L) of beta-hydroxybutyrate and glycerol showed a slight positive interference on the quantitation of ethylene glycol, whereas 10 mmol/L glycoaldehyde caused a substantial overestimation of serum ethylene glycol. The presence of propylene glycol, at levels ranging from 5 to 50 mmol/L, resulted in an underestimation of serum ethylene glycol.(ABSTRACT TRUNCATED AT 250 WORDS)

Artifacts↗

1-O-methyl-rac-glycerol: a new agent for the cryopreservation of mononuclear cells.

1-O-methyl-rac-glycerol (1-O-MG), also known as 3-methoxy-1,2-propanediol is a lipophilic derivative of glycerol, and has been studied as a new cryoprotective agent (CPA) for mononuclear blood cells (MNC), a well-established experimental model in cryopreservation. The chemical modification of the glycerol molecule results in improved cryobiological properties, such as membrane permeability, thus allowing easier handling in the freeze/thaw process. The optimum preincubation period for MNC and 1-O-MG before freezing is 5 min at 4 degree C, resulting in 86% recovery of viable cells, whereas optimal recovery of glycerol-frozen MNC is only guaranteed after 30 min of preincubation at room temperature (74% viable recovery). The optimal concentration of 1-O-MG is 10% (v/v). Although this new agent offers no improvement in cryoprotective properties over dimethyl sulfoxide (Me2SO) there may be possible pharmacological advantages when used in humans. It is, however, obviously superior to glycerol with regard to its permeation kinetics. 1-O-MG might therefore also be of interest in the cryoprotection of other hematopoietic cells and biological tissues.

Blood Preservation↗