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R C Franson

Publications and source records attributed to R C Franson.

At least 55 records · Page 3Linked to original sources

Phosphatidylinositol-specific phospholipase C activity of chromaffin granule-binding proteins.

Using [U-14C]phosphatidylinositol as substrate, Ca2+-dependent phospholipase C activity was detected in a group of bovine adrenal medullary proteins that bind to chromaffin granule membranes in the presence of Ca2+ ("chromobindins," Creutz, C. E., Dowling, L. G., Sando, J. J., Villar-Palasi, C., Whipple, J. H., and Zaks, W. J. (1983) J. Biol. Chem. 258, 14664-14674). The activity was maximal at neutral pH and represented an 80- to 240-fold enrichment of adrenal medullary cytosol phospholipase C activity measured at pH 7.3. The stimulation of activity by Ca2+ was complex; no activity was present in the absence of Ca2+, 25% activation occurred at 1 microM Ca2+, and full activation at 5 mM Ca2+. The enzyme bound to chromaffin granule membranes in the presence of 2 mM Ca2+ but was released at 40 microM Ca2+, suggesting that intrinsic enzyme activity may be regulated by [Ca2+] at 1 microM, but additional activation at higher concentrations of Ca2+ is seen in vitro as a result of Ca2+-dependent binding of the active enzyme to substrate-containing membranes. This enzyme may generate diacylglycerol and phosphorylated inositol to act as intracellular messengers in the vicinity of the chromaffin granule membrane during the process of exocytosis.

Adrenal Medulla↗

Diglyceryl lipase activity in mouse platelets.

These studies reveal for the first time that mouse platelets have substantial diglyceryl lipase (DGL) activity (138 +/- 29 nmols/hr/10(9) platelets) compared with human 37 +/- 56 nmols/hr/10(9) platelets) or rat platelets (25 +/- 11 nmols/hr/10(9) platelets). Our demonstration of the enzyme in rat platelets contrasts with the scant activity of DGL in that species as reported by others. The activity of DGL in mouse platelets was inhibited by RHC80267, an agent previously described as an inhibitor of DGL in dog and rat platelets.

Animals↗

Nonspecific inhibition of enzymes by p-bromophenacyl bromide. Inhibition of human platelet phospholipase C and modification of sulfhydryl groups.

This study demonstrates that p-bromophenacyl bromide irreversibly inhibits, in a time- and dose-dependent manner, yeast alcohol dehydrogenase, bovine pancreatic alpha-chymotrypsin, human platelet phosphatidylinositol (PI)-specific phospholipase C, in addition to the neutral-active and calcium-dependent phospholipase A2 of human platelets. The PI-specific phospholipase C has maximal activity at pH 5,5 is calcium-dependent, and is strongly inhibited by sulfhydryl reagents 5,5'-dithiobis(2-nitrobenzoic acid) (DTNB) and methylmethane thiosulfonate . Increasing concentrations of DTNB produced concomitant inhibition of phospholipase C activity and titration of sulfhydryl groups. In contrast, human platelet phospholipase A2 activity was unaffected by concentrations of DTNB that titrated sulfhydryl groups, and completely inhibited PI-specific phospholipase C activity. Treatment of cysteine with p-bromophenacyl bromide resulted in modification of the amino acid as demonstrated by paper chromatography, and loss of titratable sulfhydryl groups. These data show that p-bromophenacyl bromide inhibits a wide spectrum of enzymatic activities including PI-specific phospholipase C. This reagent modifies amino acid residues other than active-site histidines and therefore has a broader reactivity than previously considered. Thus, it should not be used as a selective inhibitor of enzymes in crude cellular experiments.

Acetophenones↗

pH-dependent modulation of phospholipase A2 activity by alkaline cations and catecholamines in a granule-enriched fraction of adrenal medulla.

Phospholipase A activity was measured in the soluble fractions from bovine adrenal medullary granules and rat liver lysosomes. The adrenal medulla preparation, enriched 2.5-fold in chromaffin granules and lysosomes, hydrolyzes the phospholipids of [1-14C]oleate-labelled autoclaved Escherichia coli in the pH range 3.5-7.0 in an alkaline cation (Na+, K+, Ca2+, Mg2+)-dependent fashion. At low alkaline cation concentrations the apparent pH optimum is near 6.5 but decreases to about 4.5 with increasing cation concentrations. When measured at high alkaline cation concentrations phospholipase activity in the adrenal fraction has a pH profile and optimum similar to those of rat liver lysosomes. Amine-containing buffers, millimolar concentrations of catecholamines and micromolar concentrations of the amine-containing drug, trifluoperazine, modulate the adrenal medulla phospholipase activity in a pH- and alkaline cation-dependent manner. Studies with specifically labelled phosphatidylethanolamines confirm previous conclusions that activity at pH 6.4 is almost exclusively phospholipase A2; but in contrast to previous conclusions (Smith, A.D. and Winkler , H. (1968) Biochem. J. 108, 867-874) we find significant phospholipase A2 activity at pH 4.2.

Adrenal Medulla↗

Inhibition of lysosomal phospholipases C and A in rabbit alveolar macrophages, polymorphonuclear leukocytes and rat liver by sodium bisulfite.

Phospholipase C activity was measured in disrupted rat liver lysosomes, Bacillus Calmette Guérin-induced rabbit alveolar macrophages and glycogen-induced rabbit polymorphonuclear leukocytes, using [N-methyl-14C]sphingomyelin and the phospholipids of human myelin. Phospholipase C activity with both substrates was maximal at pH 4.5 and was unaffected by monovalent or divalent cations or EDTA. The enzyme(s) had little or no substrate specificity, since most of the phospholipids of human myelin were degraded to the same extent. Solutions of gentamycin and tobramycin which contained preservatives inhibited activity, whereas similar preparations of streptomycin had no effect. On the other hand, preservative-free solutions of gentamycin and tobramycin were not inhibitory. Sodium bisulfite, an antioxidant, used in commercial preparations of gentamycin, tobramycin, streptomycin and other drugs, produced dose-dependent, reversible inhibition of the sphingomyelinase and myelin-degrading phospholipase C. Moreover, bisulfite-antibiotic interactions protected enzymatic activity from inactivation by the antioxidant. Other preservatives in commercial aminoglycosides, methyl- and propylparaben, phenol and EDTA had no effect on enzymic activity. Sodium bisulfite also inhibited acid-active phospholipase(s) A in rat liver lysosomes and alveolar macrophages, but had no effect on neutral-active, calcium-dependent phospholipases A2 from various cell types. Equimolar concentrations of streptomycin instantaneously relieved most of the inhibition by bisulfite, whereas molar ratios of gentamycin/bisulfite of 10 restored only 50% of the activity.

Animals↗

Regulation of phosphatidylinositol turnover, calcium metabolism and enzyme secretion by phorbol dibutyrate in neutrophils.

The action of the tumor promoter, phorbol 12,13-dibutyrate (PDBu), on rabbit peritoneal and human neutrophils is associated with stimulation of 14C-arachidonic acid incorporation into phospholipids within 1-2 min. Stimulated 14C-arachidonate incorporation was relatively selective for phosphatidylinositol (PI) in rabbit neutrophils. In contrast, the secretory response of human neutrophils to PDBu coincided with stimulated label incorporation into phosphatidylserine (PS), phosphatidylcholine (PC), phosphatidylethanolamine (PE), phosphatidic acid (PA) and PI. Significant increases in label incorporation were observed with PDBu concentrations as low as 2 nM, and the dose response of stimulated label incorporation paralleled that of evoked lysozyme secretion. A parallel, but partial, inhibition of PDBu-stimulated PI labeling and enzyme release was observed after exposing rabbit neutrophils to calcium-deprived medium, whereas calcium deprivation failed to significantly depress either of these stimulant actions of PDBu in human neutrophils. Further, in rabbit neutrophils PDBu elicited an increase in cell associated 45Ca. However, PDBu was unable to promote the incorporation of 32P orthophosphate into PI or enhance phospholipase A2 activity in broken cells. These findings suggest that one expression of the interaction between phorbol esters and their receptors on neutrophils involves the turnover of arachidonic acid in phospholipids. This stimulated turnover of arachidonate may be a critical step in the cascade of events associated with neutrophil activation.

Animals↗

Rapid purification of a phospholipase-free alpha-bungarotoxin: maintenance of cation barriers of acetylcholine receptor membranes upon preincubation with purified toxin.

The purification of highly homogeneous, phospholipase-free alpha-bungarotoxin (alpha-Bgt) from the venom of the elapid Bungarus multicinctus or from commercial samples of alpha-Bgt is described. The method combines a conventional procedure for the purification of alpha-Bgt [D. Mebs, K. Narita, S. Iwanaga, Y. Samejima, and C. Y. Lee (1972) Hoppe-Seyler's Z. Physiol. Chem. 353, 243-262] with high-resolution gel-filtration and cation-exchange chromatography steps to remove membrane-damaging, contaminating phospholipase activity. The procedure also removes contaminating radioactive peptides from commercial preparations of 125I-alpha-Bgt. Apparent homogeneity of the purified alpha-Bgt (referred to as fraction D in the text), as well as the absence of contaminating phospholipase A2 activity, is assessed by (i) polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate, (ii) gel-filtration and cation-exchange high-performance liquid chromatography, (iii) direct measurements of phospholipase A2 activity under conditions where very low enzymatic levels should be detected, (iv) lack of interference with the passive cation permeability properties of acetylcholine receptor membranes, (v) competitive inhibition of 125I-alpha-Bgt binding to the acetylcholine receptor membranes, and (vi) amino acid analysis and end-group (C- and N-terminus) determination. alpha-Bgt preparations subjected to these criteria do not exert the increase in membrane passive permeability to cations detected with other laboratory or commercial samples of alpha-Bgt. Availability of the new alpha-Bgt preparation allows for an assessment of the inertness of alpha-Bgt on lipid membrane properties while preventing cholinergic ligand binding to nicotinic acetylcholine receptor-rich membranes. These conditions are necessary for experiments requiring maintenance of the physical and phospholipid integrity of membranes.

Bungarotoxins↗

Modulation of phospholipase A2 activity associated with human sperm membranes by divalent cations and calcium antagonists.

Phospholipase A2 activity in sonicates and acid extracts of ejaculated, washed human sperm was measured using [1-14C] oleate-labeled autoclaved E. coli and 1-[1-14C] stearoyl-2-acyl-3-sn- glycerophosphorylethanolamine as substrates. Phospholipase A was optimally active at pH 7.5, was calcium-dependent, and exclusively catalyzed the release of fatty acid from the 2-position of phospholipids. The activity was membrane-associated, and was solubilized by extraction with 0.18 N H2SO4. Acid extracts of human sperm had the highest specific activity (1709 nmols /h per mg), followed by mouse, rabbit and bull, which were 105, 36 and 1.7 nmols /h per mg, respectively. para-bromophenacyl bromide inhibited human sperm phospholipase A2 activity, but mepacrine was without effect. In the presence of 1.0 mM added CaCl2, phospholipase A2 activity was inhibited by Zn2+ and Mn2+; whereas Cu2+, Cd2+, Mg2+, or Sr2+ had no effect. Zn2+ stimulated activity at low concentrations (10(-6) to 10(-8) M), and inhibited activity in a dose-dependent manner at concentrations of 10(-5) M. The extent of stimulation by low concentrations of Zn2+ was dependent on Ca2+ concentration; at 10(-7) M, Zn2+ activity was stimulated 160% with 0.5 mM CaCl2, and only 120% with 1.0 mM CaCl2. At low concentrations (10(-5) to 10(-7) M), methoxyverapamil (D600) and trifluoperazine stimulated human sperm phospholipase A2 activity, and trifluoperazine but not D600 produced almost complete inhibition between 10(-5) and 10(-4) M of the drug. The significance of human sperm phospholipase A2 activity and its modulation by Ca2+, Zn2+ and Mn2+ in the sperm acrosome reaction is discussed.

Acrosome↗

Surface-active phospholipase A2 in mouse spermatozoa.

The partial characterization of a calcium-dependent phospholipase A2 associated with membranes of mouse sperm is described. Intact and sonicated sperm had comparable phospholipase A2 activity which was maximal at pH 8.0 using [1-14C]oleate-labeled autoclaved Escherichia coli or 1-[1-14C]stearoyl-2-acyl-3-sn-glycerophosphorylethanolamine as substrates. More than 90% of the activity was sedimented when the sperm sonicate was centrifuged at 100 000 X g, indicating that the enzyme is almost totally membrane-associated. The activity is stimulated 200% during the ionophore-induced acrosome reaction and is almost equally distributed between plasma/outer acrosomal and inner acrosomal membrane fractions. The membrane-associated phospholipase A2 had an absolute requirement for low concentrations of Ca2+; Sr2+, Mg2+ and other divalent and monovalent cations would not substitute for Ca2+. In the presence of optimal Ca2+, zinc and gold ions inhibited the activity while Cu2+ and Cd2+ were without effect. Incubation of sperm sonicates with 1-[1-14C]stearoyl-2-acyl-3-sn-glycerophosphorylethanolamine in the presence and absence of sodium deoxycholate demonstrated the presence of phospholipase A2 and lysophospholipase activities. No phospholipase A1 activity was detectable. Indomethacin, sodium meclofenamate and mepacrine, but not dexamethasone or aspirin, inhibited the sperm phospholipase A2 activity. Preincubation with p-bromophenacyl bromide inhibited phospholipase A2, suggesting the presence of histidine at the active site. The enzyme may play an important role in the membrane fusion events in fertilization.

Acetophenones↗

Characterization of phospholipase A2 activity in rat aorta smooth muscle cells.

Phospholipase A activity was measured in homogenates and acid extracts of smooth muscle cells from rat aorta and mesenteric artery using [1-14 C]oleate-labeled autoclaved Escherichia coli and 1-[1-14C]stearyl-2-acyl-3-sn-glycerophosphorylethanolamine as substrates. The results demonstrate the presence of neutral-active phospholipase(s) A that exclusively catalyze the release of fatty acid from the 2-position of phospholipids. Optimal activity was at pH 7.5, and there was an absolute requirement for low concentrations of Ca2+. Mg2+ did not substitute for Ca2+, and EGTA inhibited the activity. Phospholipase A2 activity was predominantly membrane-associated and was solubilized by homogenization in 0.18 N H2SO4. Sulfuric acid extracts of rat aortic smooth muscle cells were four times more active than extracts of mesenteric artery (710 vs. 170 nmol/h per mg protein). By comparison, acid extracts of rat lung, heart, and liver were less active (60-75 nmol/h per mg). Indomethacin, sodium meclofenamate, mepacrine and chlorpromazine, but not dexamethasone or aspirin, inhibited acid-solubilized phospholipase(s) A2 between 10(-6) and 10(-3) M in a dose-dependent manner. Preincubation with p-bromophenacyl bromide or diethylpyrocarbonate inhibited phospholipase(s) A2, suggesting the presence of a histidine residue at the active site. An extract from the leaves of feverfew plant (Tanacetum parthenium) was also a potent inhibitor of aortic smooth muscle phospholipase(s) A2.

Animals↗

Solubilization and characterization of a neutral-active, calcium-dependent, phospholipase A2 from rabbit heart and isolated chick embryo myocytes.

Homogenates of rabbit heart hydrolyzed the phospholipids of autoclaved E. coli maximally at pH 7.0 with 5.0 mM added CaCl2; EDTA was a potent inhibitor. More than 70% of the homogenate phospholipase A activity was sedimented at 100 000 x g. Homogenates dialyzed to pH 3.0 had a similar pH optima, but required less than 1.0 mM added CaCl2 for optimal activity. Sulfuric acid extraction of whole heart, and other rabbit organs, solubilized a calcium-dependent phospholipase A that was maximally active at pHs 7.0 to 7.5. Myocardial extracts were as active (approx. 60 nmol/h/mg) as acid extracts from rabbit lung, liver and kidney. Phospholipase(s) A with similar properties were solubilized by acid extraction of 12-day-old chick embryo myocytes (10 nmol/h/mg). Regardless of origin, the phospholipases A were absolutely specific for release of fatty acid from the 2-acyl position of phospholipids. Activity was inhibited by (i) pretreatment with p-bromo-phenacylbromide; (ii) the anesthetics, dibucaine and chlorpromazine; and (iii) the nonsteroidal antiinflammatory agents, indomethacin, ibuprofen and meclofenamate. Aspirin and dexamethasone had little or no effect on enzymic activity.

Acetophenones↗

Immunocytochemical demonstration of rabbit ribonuclease and phospholipase A2 by the peroxidase-antiperoxidase technique in professional phagocytes (pulmonary alveolar macrophages and granulocytic and mononuclear peritoneal exudate cells) and in glycol methacrylate sections of dermal tuberculous (BCG) lesions.

Acid-acting (pH 6-7) (presumably lysosomal) ribonuclease and neutral-acting (pH 7-8) calcium-dependent phospholipase A2 (presumably the enzyme releasing arachidonic acid from membrane phospholipids) were demonstrated by the peroxidase-antiperoxidase (PAP) immunocytochemical technique in rabbit professional phagocytes: pulmonary alveolar macrophages (AM), oil-induced peritoneal exudate macrophages (M phi) and glycogen-induced peritoneal exudate polymorphonuclear granulocytes (PMN). All three cell types stained positively with antisera to purified rabbit lung RNase and purified rabbit granulocyte phospholipase A2. The RNase and phospholipase A2 were also demonstrated by the PAP technique in the activated macrophages and granulocytes present in tissue sections of tuberculous (BCG) lesions. The intensity of staining of these two enzymes in individual macrophages did not change appreciably as the BCG lesions developed and regressed, but there were more macrophages rich in both enzymes when the lesions reached their peak size at 21 days. When the anti-RNase serum was fractionated by immunoabsorbent chromatography, the anti-delta RNase serum fraction stained exudate M phi and PMN better than AM; and the anti-beta RNase fraction stained AM better than M phi and PMN. Similar to isolated phagocytes, tissue granulocytes stained best with the anti-delta fraction; and activated tissue macrophages stained best with the anti-beta fraction. Thus, macrophages and granulocytes contain two types of RNase, beta and delta; and the beta RNase is associated with macrophage activation.

Animals↗

Degradation of human myelin phospholipids by phospholipase-enriched culture media of pathogenic Naegleria fowleri.

Cell-free media from cultures of virulent Naegleria fowleri were tested for phospholipase activities and their ability to degrade phospholipids of human myelin. Virulent N. fowleri selectively released lipolytic enzymes into the media at various times during growth and hydrolyzed the phospholipids of human myelin, while media from virulent-attenuated and nonpathogenic Naegleria spp. were almost totally inactive. Hydrolysis of myelin phospholipid increased concomitantly with amebal growth, and the relative rate of breakdown at pH 7.5 was sphingomyelin greater than phosphatidylcholine greater than phosphatidylethanolamine. Elevated levels of lysophosphatidylcholine and lysophosphatidylethanolamine were also noted.

Animals↗

Elevated levels of cellular and extracellular phospholipases from pathogenic Naegleria fowleri.

Phospholipase A, sphingomyelinase and lysophospholipase activities were examined in cell homogenates and cell-free culture media of virulent and virulent-attenuated Naegleria fowleri and nonpathogenic Naegleria gruberi. Homogenates of virulent N. fowleri contained from 3 to 250 times the lipolytic activity of virulent-attenuated and non-pathogenic Naegleria spp. Similarly, the cell-free media of virulent N. fowleri cultures contained large quantities of phospholipase A, lysophospholipase and sphingomyelinase while comparable activities in the cell-free media of virulent-attenuated and nonpathogenic Naegleria spp. were only slightly, if at all, detectable. Lipolytic enzymes accumulated in the media of virulent N. fowleri cultures at various stages during growth but not in virulent-attenuated and nonpathogenic Naegleria cultures. In general, phospholipase A and sphingomyelinase accumulated during the log phase of growth while lysophospholipase appeared only in the late stationary phase. We conclude that pathogenic Naegleria contain potent lipolytic enzymes that are released selectively into the media during growth. These enzymes could contribute to the pathogenesis of Naegleria-induced primary amoebic meningoencephalitis.

Amoeba↗

Lysophospholipase activity of bovine adrenal medulla. A reevaluation.

1. Chromaffin granule preparations isolated from bovine adrenal medulla hydrolyzed endogenous lysophosphatidylcholine (lyso-PC) and generated lysophosphatidylethanolamine when dialyzed at pH 7.5. 2. Undialyzed granule preparations hydrolyzed exogenously added [1-14C]palmitoyl-lyso-PC maximally (12-16 nmol/min per mg) at pH 7.5. At a given concentration of protein, activity increased with increasing concentrations of substrate lyso-PC to a maximum beyond which substrate inhibited activity up to 95%. 3. More than 95% of the lysophospholipase activity of fresh granule preparations toward exogenously added lyso-PC was inactivated irreversibly by dialysis. 4. By contrast, fresh microsomal preparations from adrenal medulla had similar substrate requirements for maximal lysophospholipase activity, but more than 35% of the activity was retained at high substrate concentrations or after extensive dialysis. 5. We conclude that adrenal organelles, other than microsomes, contain potent membrane-associated lysophospholipase activity that is inactivated preferentially by high detergent-substrate concentrations and/or dialysis. These observations suggest that lysophospholipase activity (and perhaps phospholipase A activity) is more widely distributed in organelle membranes of the adrenal medulla than was reported previously.

Adrenal Medulla↗

Localization and partial purification of a neutral-active phospholipase A2 from BCG-induced rabbit alveolar macrophages.

The localization and partial purification of a Ca2+-dependent, membrane associated phospholipase A2 (phosphatide 2-acylhydrolase, EC 3.1.1.4) from BCG-induced rabbit alveolar macrophages is described. Phospholipase A activity was determined using autoclaved Escherichia coli, the phospholipids of which were labelled in the 2-acyl position with [1-14C]oleate. Sonicated macrophages or granule preparations exhibited maximal phospholipase A2 activity at pH 7.0, with 5 mM Ca2+. Activity was quantitatively recovered in the pellet after centrifugation of homogenates at 100 000 x g, indicating that the enzyme is membrane-associated. At least two populations of macrophage granules were separated that contained phospholipase A2 activity. Plasma membranes enriched 15-fold with respect to alkaline phosphodiesterase I were devoid of phospholipase activity. The enzyme was purified 1278-fold in a yield of 34%, was active over a broad pH range, and was extremely sensitive to low concentrations of Ca2+. Mg2+ and Mn2+ would not substitute for Ca2+, 1 mM EDTA completely inhibited enzymatic activity. Absolute specificity for the 2-position was demonstrated using 1-[1-14C]stearyl-2-acyl 3-sn-glycerophosphorylethanolamine as substrate. Phospholipase A2 activity was inhibited by the nonsteroidal anti-inflammatory agent indomethacin; the amount of drug required for 50% inhibition was 5 . 10(-4) M.

Animals↗

Inhibition of highly purified mammalian phospholipases A2 by non-steroidal anti-inflammatory agents. Modulation by calcium ions.

Highly purified Ca2+-dependent phospholipases A2 that were isolated from human platelets, rabbit alveolar macrophages and peritoneal polymorphonuclear leucocytes and were active in the neutral-to-alkaline pH range were inhibited 50% by 75 microM-indomethacin in the presence of 5.0 mM added Ca2+. Sodium meclofenamate and sodium flufenamate were also inhibitory; the sensitivity to inhibition was a function of Ca2+ concentration. The dose for 50% inhibition (ID50) with meclofenamate was 0.4 mM in the presence of 2.5 mM added Ca2+, but 50nM in the presence of 0.5 mM added Ca2+. Thus, inhibition of phospholipase A2 activity by non-steroidal anti-inflammatory agents via Ca2+ antagonism may significantly contribute to the mechanism of drug action.

Animals↗