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N J Cusack

Publications and source records attributed to N J Cusack.

At least 19 recordsLinked to original sources

(-)-2-(N-propyl-N-2-thienylethylamino)-5-hydroxytetralin (N-0923), a selective D2 dopamine receptor agonist demonstrates the presence of D2 dopamine receptors in the mouse vas deferens but not in the rat vas deferens.

Experiments were carried out using the D2 dopamine receptor-selective agonist (-)-2-(N-propyl-N-2-thienylethylamino)-5-hydroxytetralin (N-0923) in the rat and the mouse isolated vas deferens to determine whether these tissues contained inhibitory D2 receptors in addition to their inhibitory alpha-2 adrenoceptors. In the mouse vas deferens N-0923 and the alpha-2 adrenoceptor agonist clonidine inhibited the electrically evoked twitch responses. The actions of clonidine, but not of N-0923, were antagonized by the alpha-2 antagonist idazoxan (pKb = 7.9), and responses to N-0923 were antagonized by the D2 antagonist sulpiride (pKb = 8.1). In the rat vas deferens, clonidine, but not N-0923, inhibited the twitch responses and these inhibitions were antagonized by idazoxan (pKb = 7.9) but not by sulpiride. Other D2 receptor agonists were tested in the mouse and in the rat vas deferens for their ability to activate D2 and alpha-2 receptors, respectively. At the D2 receptors in the mouse vas deferens (alpha-2 blocked) the potency order was (+)-propyl-9-hydroxy-naphtoxazine > pergolide > N-0923 = apomorphine > bromocriptine > quinpirole > dopamine. At the alpha-2 receptors in the rat vas deferens the potency order was pergolide > bromocriptine > (+)-propyl-9-hydroxynapthoxazine > apomorphine > quinpirole > or = dopamine. N-0923 was inactive but antagonized the responses to clonidine. N-0923 was therefore the most D2 receptor selective agonist tested.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-2 Receptor Antagonists

Subtypes of P2-purinoceptors. Studies using analogues of ATP.

Studies using analogues of ATP have allowed a comparison of structure-activity relationships that has provided ample evidence for the existence of at least four subtypes of P2-purinoceptors responsive to adenine nucleotides. Competitive antagonists have defined clearly the P2T subtype, specific agonists are now available for the P2X and P2Y subtypes, and leads have been given for development of reversible specific antagonists for the P2X and P2Z subtypes. The availability especially of inhibitors of ectonucleotidases and of specific antagonists for each P2-purinoceptor subtype would enable the roles of endogenous extracellular nucleotides to be ascertained, as has already been shown for the interaction of platelets with the vasculature.

Adenosine Triphosphate

Determinants of the atherogenic flux of low-density lipoprotein into arteries.

Evidence is provided that in anaesthetized rabbits the atherogenic uptake of low-density lipoprotein (LDL) by arterial walls is accelerated by norepinephrine at its physiological concentrations in rabbit and human blood. The principle of the experiments was to compare the uptake of intravenously injected, radioactively labelled LDL, methylated to prevent removal by high-affinity receptors, in the two carotid arteries of anaesthetized rabbits after infusing low concentrations of norepinephrine noradrenaline into one carotid and saline as control into the other, the volume rates of infusion being about 1% of the carotid blood flows. The results thus obtained may contribute towards an explanation for the accelerated atherosclerosis and the increased incidence of its clinical manifestation in conditions associated with elevated blood norepinephrine concentrations, including the episodic increases associated with stress and cigarette smoking as well as the more persistent increases caused by phaeochromocytoma.

Arteries

Evaluation of the binding to fixed platelets of agonists and antagonists of ADP-induced aggregation.

Steady state binding of eleven different ADP analogues to formaldehyde-fixed platelets has been determined in a competitive binding assay using 3H-ADP. The compounds tested were the inactive analogues L-ADP and L-ATP; the agonists 2-chloroadenosine 5'-diphosphate, adenosine 5'-O-(2-thiodiphosphate) and the diasteroisomeric pair Sp-adenosine 5'-(1-thiodiphosphate) (Sp-ADP-alpha-S) and Rp-adenosine 5'-(1-thiodiphosphate) (Rp-ADP-alpha-S); and the antagonists adenosine 5'-O-thiomonophosphate, 2-chloroadenosine 5'-O-thiomonophosphate, 2-choloroadenosine 5'-triphosphate, and the diastereoisomeric pair 5'-(1-thiotriphosphate) (Sp-ATP-alpha-S) and RP-adenosine 5'-(1-thiotriphosphate) (Rp-ATP-alpha-S). All compounds tested competed at the high affinity binding sites for ADP previously identified (Blood 1988; 71: 110-6) but in some cases competition could not be demonstrated at the low affinity sites because of the high nucleotide concentrations required. As a group, C2-substituted analogues bound less strongly (Ki greater than 2 micro M) than did the analogues without substituents in the purine ring (Ki less than 0.7 microM). With the pair of diastereoisomeric agonists Sp-ADP-alpha-S and Rp-ADP-alpha-S the Ki values at the high affinity site (210 nM and 560 nM) were of the same relative magnitude and in the same direction as their reported potencies as agonists (Ki 4 microM and 20 microM). With the diastereoisomeric antagonists Sp-ATP-alpha-S and Rp-ATP-alpha-S a similar relationship was seen between affinity (17 nM and 156 nM) and inhibitory potency (Ki 4 microM and 20 microM).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Diphosphate

Increased uptake of methylated low-density lipoprotein induced by noradrenaline in carotid arteries of anaesthetized rabbits.

Atherosclerosis is accelerated in hyperlipidaemias but, apart from the concentration of low-density lipoprotein (LDL) in the blood, very little is known about other influences on the disease process. We now provide evidence that in anaesthetized rabbits the atherogenic uptake of LDL by arterial walls is accelerated by noradrenaline at its physiological concentrations in rabbit and human blood. The principle of the experiments was to compare the uptake of intravenously injected, radioactively labelled LDL, methylated to prevent removal by high-affinity receptors, in the two carotid arteries of anaesthetized rabbits after infusing low concentrations of noradrenaline into one carotid and saline as control into the other, the volume rates of infusion being about 1% of the carotid blood flows. Human LDL, which behaves sufficiently like rabbit LDL for these purposes, was prepared, methylated and radio-iodinated by standard methods. At the end of the infusions, the arteries were excised and their radioactivities determined. Noradrenaline infused for 2 h to produce local blood concentrations of nominally 1, 10, 50 and 100 nM significantly increased the LDL radioactivities of the walls of the noradrenaline-infused carotids. Concentrations of nominally 100 nM also increased the LDL radioactivities of the walls of the saline-infused carotids; this was associated with significant increases in their blood noradrenaline concentrations. These results may contribute towards an explanation for the accelerated atherosclerosis and the increased incidence of its clinical manifestations in conditions associated with elevated blood noradrenaline concentrations, including the episodic increases associated with stress and cigarette smoking as well as the more persistent increases caused by phaeochromocytoma.

Animals

Absence of P2-purinoceptors in hippocampal pathways.

1. Many apparent actions of adenosine 5'-triphosphate (ATP) are mediated by adenosine produced by enzymatic hydrolysis of the nucleotide. Previously described actions of ATP in the CNS have been partly due to this phenomenon. In the present study analogues of ATP, which are not hydrolysed to adenosine, were used to seek responses to activating nucleotide (P2) receptors in the hippocampus. The analogues used were L-adenosine-5'-(beta,gamma-methylene)-triphosphonate and 2-methylthioadenosine-5'-(beta,gamma-difluoromethylene)-triphosphonat e. 2. Neither of the stable nucleotides had any effect on orthodromically evoked synaptic potentials in the CA1 region of rat hippocampal slices. Adenosine and ATP had inhibitory actions that could be prevented by the P1-receptor blocker 8-phenyltheophylline. 3. The stable nucleotides had no consistent effects on the firing rate of single neurones in stratum pyramidale of the CA1 region, although adenosine and ATP produced a xanthine-sensitive inhibition. 4. Adenosine selectively reduced the sensitivity of CA1 neurones to microiontophoretically applied carbachol whereas stable nucleotides did not. 5. It is concluded that there are neither P2x- nor P2y-receptors for adenine nucleotides on rat hippocampal CA1 pyramidal cells at the Schaffer collateral and commissural terminals in stratum radiatum.

Action Potentials

Evidence for the dependence of arterial haemostasis on ADP.

The possible involvement of adenosine diphosphate (ADP) in haemostatic platelet aggregation was investigated by determining the duration of primary haemorrhage as standardized bleeding times from punctures of small mesenteric arteries in anaesthetized rats. The bleeding times were highly significantly increased by infusing into the mesenteric arterial blood flowing towards the punctures either the nucleotide-dephosphorylating enzyme apyrase or the ADP-receptor antagonists ATP, adenosine 5'-(beta,gamma-methylene)triphosphonate (AMP-PCP) or 2-methylthioadenosine 5'-(beta,gamma-methylene)triphosphonate (2-MeS-AMP-PCP). The increases in bleeding times could not be accounted for by local vasodilator effects of the agents. It is concluded that the presence of ADP through local release and/or formation at sites of vascular injury contributes significantly to haemostasis, presumably by accelerating platelet aggregation.

Adenine Nucleotides

Characterisation of the ATP4- receptor that mediates permeabilisation of rat mast cells.

ATP (as the tetrabasic acid, ATP4-) applied externally to rat mast cells causes the formation of lesions which permit influx and efflux of low molecular weight, normally impermeant aqueous solutes. To monitor membrane permeabilisation we have used two fluorescent dyes, ethidium which stains the nucleus, and TMA-DPH which stains the cytosolic surfaces of intracellular membranes following entry into the cells Permeabilisation by ATP is not affected by the metabolic status of the cells, and is maintained at temperatures as low as 8 degrees C. We have tested the ability of 30 structural analogues of ATP to effect mast cell permeabilisation. The analogues include those having substituents in the 2- and 8-positions of the purine ring, structural and optical isomers of the ribose sugar, and variations in the triphosphate chain. The pattern of selectivity displayed by the rat mast cell ATP4- receptor is distinct from those characteristic of the P1 purinoceptor for adenosine and the P2X and P2Y purinoceptors for adenine nucleotides.

Adenosine Triphosphate

Regulation of P2y-purinoceptor-mediated prostacyclin release from human endothelial cells by cytoplasmic calcium concentration.

1. ATP and ATP analogues induced prostacyclin (PGI2) secretion from human cultured umbilical vein endothelial cells. 2. The threshold active concentration for ATP was less than or equal to 1 microM. The rank order of potency of analogues was 2-chloroadenosine 5'-triphosphate (2-ClATP) greater than 2-methylthioadenosine 5'-triphosphate (2-MeSATP) greater than ATP greater than ADP, while adenosine 5'-(alpha,beta-methylene)triphosphonate, AMP and adenosine were inactive, indicating the presence of P2y-purinoceptors. 3. In contrast to their actions on P2y-receptors in guinea-pig taenia coli, isopolar analogues of 2-methylthioadenosine 5'-(beta, gamma-methylene)triphosphonate were less effective than ATP. 4. ATP and ATP analogues increased intracellular free calcium ions, [Ca2+]i, giving a rapid transient peak due predominantly to release from intracellular stores, followed by a maintained steady-state elevated level due to influx. 5. The dose-response curves for peak [Ca2+]i induced by ATP, 2-ClATP and 2-MeSATP were very similar to those for PGI2 production. 6. Elevations of [Ca2+]i, above a threshold value of 0.8-1 microM, were necessary for PGI2 production in response to P2y-receptor activation. 7. The dose relationships between PGI2 release and peak [Ca2+]i were equivalent whether [Ca2+]i was raised by ionomycin or via P2y-receptor activation by ATP or 2-ClATP, indicating that elevations of [Ca2+]i provide the major, if not the exclusive intracellular pathway for P2y-purinoceptor-mediated PGI2 synthesis.

Adenosine Triphosphate

The structure-activity relationships of ectonucleotidases and of excitatory P2-purinoceptors: evidence that dephosphorylation of ATP analogues reduces pharmacological potency.

The dephosphorylation of adenine nucleotides and their analogues by ectonucleotidases on the guinea-pig urinary bladder was studied using HPLC. The rate of dephosphorylation of each analogue was compared with its pharmacological potency at causing contraction. ATP, ADP and AMP were rapidly dephosphorylated, and substitution on the purine ring did not affect the rate of breakdown. The ectonucleotidases showed stereoselectivity towards the ribose moiety and towards the polyphosphate chain. In general, methylene isosteres of the nucleotides, and analogues in which one of the oxygen atoms on the terminal phosphate had been replaced, were resistant to degradation. None of the analogues that were readily dephosphorylated are more potent than ATP, and most but not all of the analogues resistant to degradation are more potent than ATP, suggesting that while resistance to degradation does not in itself confer high potency, susceptibility to degradation does limit the potency of ATP and its degradable analogues.

Adenosine Triphosphate

Characteristics of the P2 purinoceptor that mediates prostacyclin production by pig aortic endothelial cells.

Release of prostacyclin was studied by superfusing small columns containing cells cultured on microcarrier beads. Transient dose-dependent stimulation of prostacyclin release by up to 500-fold was induced by adenosine 5'-triphosphate (ATP; 0.5-50 microM). Adenosine 5'-diphosphate (ADP) gave similar responses, whereas adenosine 5'-phosphate (AMP) and adenosine were essentially inactive. Of other natural nucleotides tested only uridine 5'-phosphate (UTP) was active. The L-enantiomers of ATP and ADP were inactive. 2-Cl-ATP was approximately 100 times more potent than ATP; 2-MeS-ATP was also more potent (threshold 0.05 microM) but its maximal effectiveness was less than 20% that of ATP; 2-EtS-ATP had a similar threshold to ATP but was even less effective than 2-MeS-ATP. Phosphorothioate nucleotide analogues of ATP or ADP were active, with no stereoselectivity between Rp and Sp diastereoisomers. No analogue tested showed antagonist activity. We conclude that ATP mediates endothelial prostacyclin release apparently via a P2Y receptor, although there are some striking differences from the previously described P2Y receptor mediating endothelium-dependent vasodilation in pig aorta.

Adenosine Triphosphate

Pharmacological effects of isopolar phosphonate analogues of ATP on P2-purinoceptors in guinea-pig taenia coli and urinary bladder.

Isopolar methylene phosphonate analogues of adenosine triphosphate (ATP) were synthesized and tested on the guinea-pig isolated taenia coli (where ATP causes relaxation) and urinary bladder (where ATP causes contraction), to see if restoration of the electronegativity of the methylene linkage would enhance pharmacological potency. The compounds used were the dichloromethylene and difluoromethylene analogues of adenosine 5'-(beta,gamma-methylene)triphosphonate (AMP-PCP), L-adenosine 5'-(beta,gamma-methylene)triphosphonate (L-AMP-PCP) and 2-methylthioadenosine 5'-(beta,gamma-methylene)-triphosphonate (2-methylthio-AMP-PCP). The order of potency of the analogues depended on the tissue, and was independent of the nature of the purine or ribose moieties. None of the analogues was degraded by ectonucleotidases on either tissue. In the taenia coli the order of potency for relaxation was difluoromethylene greater than or equal to dichloromethylene greater than methylene, and this reflected the order of electronegativity of the analogues. The isopolar analogues of L-AMP-PCP were inactive in the taenia coli. In the bladder the order of potency for contraction was difluoromethylene greater than or equal to methylene greater than dichloromethylene, suggesting that electronegativity is of lesser importance here. The isopolar analogues of L-AMP-PCP were active in this tissue. The differences between the two tissues in the order of potency for these non-degradable analogues supports suggestions that P2-purinoceptors in the taenia coli (P2Y) are different from those in the bladder (P2X). The isopolar analogues of L-AMP-PCP, like L-AMP-PCP itself, were selective agonists at the P2X-purinoceptor.

Adenosine Triphosphate

Pharmacological effects of L-AMP-PCP on ATP receptors in smooth muscle.

The pharmacological effects of ATP and of two of its analogues, AMP-PCP and L-AMP-PCP, were investigated in various isolated smooth muscle preparations. In the guinea-pig vas deferens, the rat portal vein and the rat anococcygeus the nucleotides all caused contraction, and the order of potency was L-AMP-PCP greater than AMP-PCP greater than ATP. In the guinea-pig field-stimulated ileal longitudinal muscle the nucleotides all inhibited the contractions, and the order of potency was ATP greater than AMP-PCP greater than L-AMP-PCP. In the guinea-pig thoracic aorta ATP and AMP-PCP caused relaxations, ATP being more potent than AMP-PCP, and L-AMP-PCP caused contractions. These results are consistent with the suggestion that the ATP receptors mediating contraction of smooth muscle are different from those mediating relaxation, and show that L-AMP-PCP is a potent, specific agonist at excitatory ATP receptors.

Adenosine Triphosphate

ATP analogues and the guinea-pig taenia coli: a comparison of the structure-activity relationships of ectonucleotidases with those of the P2-purinoceptor.

The dephosphorylation of adenine nucleotides and their analogues by ectonucleotidases on the guinea-pig taenia coli was studied using HPLC. The rate of dephosphorylation of each analogue was compared with its pharmacological potency relative to ATP. ATP, ADP and AMP were rapidly dephosphorylated, and substitution on the purine ring had no effect upon the rate of breakdown. The ectonucleotidases showed stereoselectivity towards the ribose, the unnatural L enantiomers of nucleotides being dephosphorylated more slowly. Analogues in which one of the oxygen atoms on the terminal phosphate had been replaced were resistant to degradation. Phosphorothioate analogues in which a sulphur was attached to the penultimate phosphorus were degraded stereoselectively. Methylene isosteres of ATP and ADP resisted degradation, except for homo-ATP which was dephosphorylated at the same rate as ATP. Overall, no correlation was found between the potency of an analogue and its rate of degradation.

5'-Nucleotidase

Investigation of the preferred Mg(II)-adenine-nucleotide complex at the active site of ectonucleotidases in intact vascular cells using phosphorothioate analogues of ADP and ATP.

In the presence of Mg2+ the ecto-(nucleoside diphosphatase) on intact vascular endothelial or smooth muscle cells in culture selectively catabolizes the PS diastereoisomer of adenosine 5'-[alpha-thio]diphosphate, (PS)-ADP [alpha S], and the ecto-(nucleoside triphosphatase) selectively catabolizes the PS isomer of adenosine 5'-[beta-thio]triphosphate, (PR)-ATP[beta S], but exhibits no selectivity towards ATP[alpha S] isomers. In the presence of Cd2+ selectivity to ADP[alpha S] and to ATP[beta S] isomers is reversed; in the presence of Co2+, selectivity is lost. We conclude that each enzyme preferentially recognises the lambda (screw-sense) bidentate Mg(II)-nucleotide complex at its active site.

Adenine Nucleotides

Characterization of ectonucleotidases on vascular smooth-muscle cells.

We compared the properties of the ectonucleotidases (nucleoside triphosphatase, EC 3.6.1.15; nucleoside diphosphatase, EC 3.6.1.6; 5'-nucleotidase, EC 3.1.3.5) in intact pig aortic smooth-muscle cells in culture with the properties that we previously investigated for ectonucleotidases of aortic endothelial cells [Cusack, Pearson & Gordon (1983) Biochem. J. 214, 975-981]. In experiments with nucleotide phosphorothioate diastereoisomers, stereoselective catabolism of adenosine 5'-[beta-thio]triphosphate, but not of adenosine 5'-[alpha-thio]triphosphate, by the triphosphatase and stereoselective catabolism of adenosine 5'-[alpha-thio]diphosphate by the diphosphatase were found, as occurs in endothelial cells. In contrast with endothelial ecto-5'-nucleotidase, the smooth-muscle-cell enzyme catabolized adenosine 5'-monophosphorothioate (AMPS) to adenosine: the affinity of the enzyme for AMPS was greater than for AMP, and Vmax for AMPS was about one-sixth that for AMP. In both cell types AMPS was an apparently competitive inhibitor of AMP catabolism by 5'-nucleotidase. The relative rates of catabolism of nucleotide enantiomers in which the natural D-ribofuranosyl moiety is replaced by an L-ribofuranosyl moiety were similar to those in endothelial cells. No ectopyrophosphatase activity was detected in smooth-muscle cells, in contrast with endothelial cells, where modest activity is present.

5'-Nucleotidase