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J J Foley

Publications and source records attributed to J J Foley.

66 records · Page 4Linked to original sources

Leukotriene B4-induced homologous desensitization of calcium mobilization and phosphoinositide metabolism in U-937 cells.

Differentiated U-937 cells express leukotriene B4 (LTB4) receptors and mobilize Ca++ in response to LTB4. Using this cell line, we have characterized LTB4-induced desensitization. Prior exposure of U-937 cells to LTB4 resulted in a concentration- and time-dependent decrease in Ca++ mobilization in response to a subsequent challenge with LTB4 (EC50 = 2 nM; T1/2 = 4 min). Desensitization was temperature-dependent, occurring in cells pretreated with LTB4 at 37 degrees C but not at 4 degrees C. LTB4 pretreatment (100 nM, 30 min) decreased the maximal LTB4-induced Ca++ mobilization by 50% and increased the EC50 5-fold. After the cells were treated with LTB4, Ca++ mobilization in response to LTD4, platelet activating factor and chemotactic peptide N-formyl-L-methionyl-L-leucyl-L-phenylalanine were not decreased, suggesting that the desensitization was homologous and specific for LTB4. In U-937 cells, LTB4 and LTD4 induced concentration- and time-dependent and receptor-mediated phosphoinositide (PI) hydrolysis, which correlated with Ca++ mobilization. When U-937 cells were pretreated with LTB4, the amount of intracellular PI metabolites formed in response to LTB4 was reduced, whereas the response to LTD4 was unchanged. Examination of LTB4 membrane receptors in U-937 cells indicated that LTB4 pretreatment resulted in a 15% decrease in receptor number and a 3-fold decrease in affinity for LTB4. These results clearly demonstrate that LTB4-induced Ca++ mobilization and PI metabolism can be desensitized by prior exposure to LTB4 and that the mechanism of desensitization may involve altered affinity in agonist binding to the receptor.

Animals↗

Leukotriene D4-induced homologous desensitization in basal and differentiated U-937 cells: characterization with the partial agonist leukotriene E4 and assessment of receptor reserve.

U-937 cells express receptors for leukotriene D4, and LTD4 stimulates receptor-mediated Ca++ mobilization with an EC50 of 5 nM. In these cells, LTE4 produces Ca++ mobilization with an EC50 of 500 nM and a maximum response that is 15 to 20% of the LTD4 response. LTE4 was shown to be a partial agonist, with a Kp of 400 nM and a linear relationship between effect and receptor occupancy, and was used as a tool to study LTD4-induced desensitization. Pretreatment of U-937 cells with LTD4 resulted in a concentration-dependent shift to the right and a decrease in the maximum of LTE4 concentration-response curves, indicating that desensitization had occurred. LTD4-induced desensitization was homologous for LTE4 and LTD4; Ca++ mobilization produced by LTB4, N-formyl-L-methionyl-L-leucyl-L-Phe and platelet-activating factor was not affected. LTD4-pretreatment produced a concentration-related desensitization of LTE4-induced Ca++ mobilization in both basal and dimethyl sulfoxide-differentiated U-937 cells. However, the maximal desensitization was greater in basal cells (66% +/- 4%) than in differentiated cells (33% +/- 7%). LTD4 pretreatment resulted in a greater percentage of reduction of Ca++ mobilization produced by LTE4 than that produced by LTD4, suggesting that a receptor reserve exists for LTD4. The extent of receptor reserve was assessed in basal and differentiated U-937 cells by comparing LTD4 concentration-response curves from control and desensitized cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Calcium↗

Identification and characterization of leukotriene D4 receptors and signal transduction processes in rat basophilic leukemia cells.

The leukotriene D4 (LTD4) receptor on rat basophilic leukemia (RBL-1) cell membranes was characterized using a radioligand binding assay. [3H]LTD4 binding to RBL-1 membrane receptors was stereoselective, specific, and saturable. The binding affinity and maximum binding density of [3H]LTD4 to RBL-1 membrane receptors were 0.9 +/- 0.2 nM and 800 +/- 125 fmol/mg protein, respectively. Binding of [3H]LTD4 to the receptors was enhanced by divalent cations (Ca2+, Mg2+, and Mn2+) and inhibited by guanine nucleotides and sodium ions, specifically, indicating that a guanine nucleotide-binding protein may regulate the agonist-receptor interaction. LTD4, LTE4 agonist and antagonist analogs competed with the radioligand in binding to the RBL-1 LTD4 receptors. The binding affinities of these analogs correlated with (a) those determined from the guinea pig lung LTD4 receptors and (b) the pharmacological activities in smooth muscle contraction. LTD4 and related agonists also induced time- and concentration-dependent phosphatidylinositol hydrolysis in RBL-1 cells. The LTD4 induction of inositol 1-phosphate was potent, stereoselective, specific, and was blocked by LTD4 receptor antagonists. The rank order potency of agonist-induced inositol 1-phosphate formation in RBL-1 cells was equivalent to the receptor binding affinity determined using either RBL-1 cell or guinea pig lung membranes. These studies have demonstrated the G protein coupled LTD4 receptors on RBL-1 cell membranes. Binding of agonists to the receptor may activate the G protein-regulated phospholipase C to induce hydrolysis of phosphatidylinositol. The hydrolytic products of phosphatidylinositol, possibly inositol trisphosphate and diacylglycerol, may be the intracellular messengers for LTD4 receptors in RBL-1 cells.

Animals↗

Inhibition of leukotriene D4-induced coronary vasoconstriction by leukotriene antagonists in the anesthetized dog.

Anesthetized open-chest dogs were instrumented for the measurement of left circumflex coronary artery (LCX) blood flow and aortic blood flow, systemic arterial blood pressure, heart rate, lead II ECG, left ventricular end-diastolic pressure, left ventricular developed pressure and left ventricular positive and negative dP/dt to study the hemodynamic effects of leukotriene D4 (LTD4) and selective LTD4 antagonists on the coronary vasculature. Administration of LTD4 alone into the LCX (0.625-10 micrograms) produced a dose-dependent decrease in LCX blood flow, dP/dt and aortic blood flow and an increase in left ventricular end-diastolic pressure. Systemic arterial blood pressure, left ventricular developed pressure and heart rate were unchanged by LTD4. During i.v. infusions of the LTD4 antagonists, SK&F 102922 or FPL 55712 (1 mg/kg/min), the dose-dependent decreases in LCX flow, dP/dt and aortic blood flow were blocked whereas the increase in left ventricular end-diastolic pressure remained unchanged. The thromboxane A2 antagonist, SK&F 88046 (5 mg/kg + 0.1 mg/kg/min), which has been reported previously to block the coronary blood flow reducing action of LTC4, had no effect on the LCX blood flow responses to intracoronary LTD4. In a separate study, dogs instrumented in a similar manner were given bolus injections of arginine-vasopressin (1 microgram), the thromboxane A2 mimetic, U-46619 (10 micrograms), LTD4 (10 micrograms), angiotensin II (1 microgram) and prostaglandin F2 alpha (100 micrograms) directly into the LCX to provoke coronary vasoconstriction. SK&F 102922 and FPL 55712 selectively blocked the coronary vasoconstriction produced by LTD4, but had no effect on vasoconstriction produced by the other agonists.(ABSTRACT TRUNCATED AT 250 WORDS)

1-Methyl-3-isobutylxanthine↗

Synthesis, resolution, absolute stereochemistry, and enantioselectivity of 3',4'-dihydroxynomifensine.

3',4'-Dihydroxynomifensine, 8-amino-1,2,3,4-tetrahydro-4-(3,4-dihydroxyphenyl)-2-methylisoquinoli ne (1a), is an agonist of dopamine receptors in central and peripheral systems. Since this dopamine receptor agonist bears an asymmetric center at position 4, its synthesis and resolution were undertaken as part of a study directed toward determining the mode of interaction of these agents with the receptor(s). The enantiomers of 3',4'-dihydroxynomifensine are of particular interest, as they provide additional probes of present conceptual models of the dopamine receptor(s). Initial attempts to prepare 1a were inefficient or unsuccessful; instead, an isomeric compound, 1,2,4,5-tetra-hydro-2-(3,4-dihydroxyphenyl)-4- methyl-3H-1,4-benzodiazepine (9), was obtained. For this reason, a new route to 3',4'-dihydroxynomifensine was employed. The racemic dimethoxy intermediate 1d, thus obtained, was resolved. Methoxyl cleavage of the isomers of 1d afforded the enantiomers of 1a. Enantiomeric excess of these antipodes or appropriate derivatives was examined by NMR, CD, and HPLC methods. CD analysis suggests an enantiomeric excess greater than 99%. Determination of the absolute configuration of the enantiomers of 1a was determined by single-crystal X-ray diffractometric analysis. Examination of the isomers in several pharmacological test systems revealed a high degree of enantioselectivity. D-1 dopaminergic activity resides almost exclusively in the S enantiomer. The findings of the study have been employed to suggest an accessory binding site on the dopamine receptor(s) that differs from that advanced earlier. This accessory binding site may be specific for the D-1 subpopulation of dopamine receptors.

Adenylyl Cyclases↗

Comparison of central and peripheral alpha 1-adrenoceptors.

A series of alpha-adrenergic agonists and antagonists having diverse chemical structure was examined for both central and peripheral alpha 1-adrenoceptor activity. The agonists tested included several novel aminotetralin derivatives which were potent and selective alpha 1-agonists. Peripheral alpha 1-activity was determined in the isolated rabbit ear artery; central alpha 1-receptor affinity was measured as the ability to inhibit 3H-WB 4101 binding to rat brain homogenates. In the agonist series, an excellent correlation between peripheral alpha 1-activity and central alpha 1-affinity was obtained, providing that partial agonists were excluded. Likewise, the receptor dissociation constant for blockade of the peripheral alpha 1-adrenoceptor correlated well with affinity for the central receptor for all of the alpha-antagonists. These data support the conclusion that central and peripheral alpha 1-adrenoceptors are similar or identical.

Adrenergic alpha-Agonists↗

Metabolism of dog gastric mucosa. Levels of glycolytic, citric acid cycle and other intermediates.

Several metabolites, including those of glycolysis, the citric acid cycle, the hexose monophosphate shunt, glutamate, aspartate, and Coenzyme A were measured in defined parietal cell-enriched freeze-dried sections of dog gastric biopsies derived from nonsecreting and secreting tissue. In addition, NH3, ribulose 5-phosphate, glycerol, and succinate were measured in perchloric acid extracts of biopsies. The onset of secretion increased the level of glycolytic intermediates including pyruvate and lactate with the most marked increase being in fructose 1,6-diphosphate levels. The level of 6-phosphogluconate and ribulose 5-phosphate also increased, in spite of a constant NADP+/NADPH ratio. The levels of all the citric acid cycle intermediates measured also rose, the most marked rise being in malate and fumarate. The levels of glycerol, acetyl-CoA, and CoA increased, but the ratio of the latter intermediates remained constant. Calculation of the ratio of the oxidized to reduced form of diphosphopyridine nucleotide indicated a fall of the ratio in the cytoplasm and a rise in the mitochondria. From these data, it is concluded that the major energy source for acid secretion is due to an increase in citric acid cycle activity and that glycolysis, and probably also fatty acid oxidation, is stimulated to provide mitochondrial substrate.

Ammonia↗

Radiation and its genetic sequelae.

Due to increasing public consciousness regarding radiation, technologists are frequently questioned about risks attendant to radiologic procedures. A particularly obscure aspect of radiation effects is genetic risk. This article provides a starting point for technologists wishing to develop a comprehensive knowledge base on the genetic effects of radiation.

Animals↗