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Y Landry

Publications and source records attributed to Y Landry.

At least 37 records · Page 2Linked to original sources

Mast cell activation involves plasma membrane potential- and thapsigargin-sensitive intracellular calcium pools.

The regulation and role of the intracellular Ca2+ pools were studied in rat peritoneal mast cells. Cytosolic free calcium concentration ([Ca2+]i) was monitored in fura-2 loaded mast cells. In the presence of Ca2+ and K+, compound 48/80 induced a biphasic increase in [Ca2+]i composed of a fast transient phase and an apparent sustained phase. The sustained phase was partially inhibited by the addition of Mn2+. DTPA, a cell-impermeant chelator of Mn2+, reversed this inhibition, suggesting that a quenching of fura-2 fluorescence occurs in the extracellular medium. In the absence of extracellular Ca2+, the transient phase, but not the sustained one, could be preserved, provided that mast cells were depolarized. The transient phase was completely abolished by thapsigargin, a microsomal Ca(2+)-ATPase inhibitor. Maximum histamine release induced by either compound 48/80 or antigen was obtained in the absence of added Ca2+ only when mast cells were depolarized. These histamine releases were inhibited by low doses (< 30 nM) of thapsigargin. Thapsigargin at higher doses induced histamine release which was unaffected by changing the plasma membrane potential, but was completely dependent on extracellular Ca2+, showing that a Ca2+ influx is required for thapsigargin-induced exocytosis. Together, these results suggest that the mobilization of Ca2+ from thapsigargin sensitive-intracellular pools induced by compound 48/80 or antigen is sufficient to trigger histamine release. The modulation of these pools by the plasma membrane potential suggest their localization is close to the plasma membrane.

Animals↗

Involvement of B2 receptors in the bradykinin-induced relaxation of guinea-pig isolated trachea.

1. The aim of this study was to determine the receptor type and involvement of arachidonic acid metabolites in bradykinin-induced relaxation of the guinea-pig isolated trachea. 2. In the resting tracheal preparation, bradykinin (0.1 nM-30 microM induced a concentration-related contractile response (pD2 = 8.8 +/- 0.3). The maximal tension (1056 +/- 321 mg) was observed at 0.3 microM bradykinin. In contrast, when tracheal preparations were pre-contracted with histamine (30 microM leading to a half-maximum response), a concentration-related relaxation was observed with bradykinin. At the highest concentration of bradykinin used (3 microM), a reversal of 63 +/- 13% of the contractile response to histamine was observed. Both effects of bradykinin were inhibited by the cyclo-oxygenase inhibitor, indomethacin (1 microM). In concentration-response curves, melittin (10 nM-1 microM), a direct activator of phospholipase A2, mimicked both effects of bradykinin. The highest concentration of melittin used (1 microM), induced a tension of 813 +/- 120 mg and led to the reversal of 41 +/- 8% of the contractile response to histamine. The contractile effect of melittin was inhibited in the presence of both indomethacin (1 microM) and AA861 (1 microM), a 5-lipoxygenase inhibitor. 3. [Des Arg9]-bradykinin (1 nM-3 microM), a B1-receptor agonist, was unable to relax precontracted guinea-pig tracheal preparations. The relaxation induced by bradykinin was antagonized by the B2 receptor antagonists, Hoe 140 (D-Arg0[Hyp3,Thi5,D-Tic7,Oic8]bradykinin) and NPC 17761 (D-Arg0[Hyp3,D-HypE(trans-thiophenyl)7,Oic8]bradykinin ). Hoe 140 (0.1 microM to 0.6 microM) behaved as a non-competitive antagonist with an apparent pA2 = 7.2 +/- 0.4, whereas NPC 17761 (0.3 to 1 microM) competitively antagonized bradykinin-induced relaxation with a pKB = 7.3 +/- 0.2. The Schild regression slope did not differ from unity, 0.96 +/- 0.20, P<0.05.4. These data demonstrate that bradykinin-induced relaxation of guinea-pig trachea occurs via the activation of bradykinin B2-receptors. The stimulation of B2-bradykinin receptors induces the activation of the cyclo-oxygenase pathway, leading either to contraction or relaxation depending on the tone of the trachea.

Animals↗

Gastrin releasing peptide-preferring bombesin binding sites in human lung.

Characterization of bombesin binding sites in healthy human lung was performed through direct binding techniques. There was limited binding in the absence of trypsin and chymotrypsin inhibitors, suggesting important activities of both enzymes in human lung and/or increased sensitivity of the bombesin sites toward them. In human lung membranes, bombesin, gastrin releasing peptide (GRP) and GRP-preferring bombesin receptor antagonists displaced [125I-Tyr4]bombesin binding with high affinities (36-177 nM), whereas neuromedin B possessed a lower affinity of 2878 nM. [D-F5Phe6,D-Ala11]bombesin-(6-13)-methyl ester, the most active GRP-preferring bombesin antagonist as yet reported, had the highest affinity among all antagonists tested whereas neuromedin B had the lowest affinity. These data demonstrate that the bombesin binding sites in the human lung are of the GRP-preferring type.

Binding Sites↗

Co-solubilization of bradykinin B2 receptors and angiotensin-converting enzyme from guinea pig lung membranes.

Bradykinin B2 receptor-like binding activity was solubilized from guinea pig lung using the zwitterionic detergent 3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulphonate (Chaps). The binding of [3H]bradykinin to the soluble fraction was time-dependent and saturable. Scatchard analysis of equilibrium binding data indicated that the soluble extract contained a single class of binding sites with a Kd of 696 pM and a Bmax of 57 fmol/mg protein. Unlabelled bradykinin and B2 antagonists inhibited the binding of [3H]bradykinin to Chaps-solubilized extracts with relative potencies similar to those observed with the low-affinity membrane-bound binding sites. Following partial purification of the soluble preparation, using anion exchange (DEAE-Sephacel) and gel filtration (Aca 34) column chromatography steps, two peaks eluted off the column were able to bind [3H]bradykinin and have molecular masses of 168 and 98.5 kDa. The former seems to represent binding of bradykinin to angiotensin converting enzyme (ACE, EC 3.4.15.1) and the latter binding to bradykinin receptor. Using purified commercial ACE, we show that the binding of [3H]bradykinin to ACE can easily be distinguished from that of the bradykinin receptor, since both B1 and B2 ligands were able to inhibit bradykinin binding with affinities clearly different from that expected for a bradykinin receptor.

Animals↗

Bradykinin-induced contraction of guinea pig lung in vitro.

We have investigated the contractile effect of bradykinin (BK) in guinea pig lung in vitro. BK induces a dose-related contraction of lung parenchymal strips which is increased significantly in the presence of 10(-5) M captopril (an angiotensin converting enzyme inhibitor) or 10(-5) M DL-thiorphan (a neutral endopeptidase inhibitor). The kininase I inhibitor, DL-2-mercaptomethyl-3-guanidino-ethylthiopropionic acid (MGTPA), has no effect on the BK-induced contraction. BK is more potent in contracting parenchymal lung strips than other contractile agents (histamine, carbachol and substance P), however the BK-induced maximal contraction is lower than those obtained with histamine and carbachol. The B1 agonist, des-Arg9-BK, does not contract lung parenchymal strips. The new BK B2 receptor antagonists (Hoe 140, NPC 17731 and NPC 17761), which possess binding affinities in the nanomolar range, inhibit the BK-induced contractile response in a dose-dependent manner. The BK-induced contraction was unaffected by propranolol, atropine, tetrodotoxin, capsaicin pre-treatment, triprolidine, methysergide, Ro 19-3704 and N omega-nitro-L-arginine-methyl-ester (L-NAME), excluding the involvement of nervous pathways, preformed mast cell mediators, platelet-activating factor and nitric oxide. However, indomethacin, a cyclooxygenase inhibitor, AA-861, a 5-lipoxygenase inhibitor, and furegrelate, a thromboxane A2 synthase inhibitor, decreased the contractile response to BK, suggesting that both cyclooxygenase and 5-lipoxygenase products are involved in this contraction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Role of positive charges of neuropeptide Y fragments in mast cell activation.

The incubation of neuropeptide Y (NPY) or of NPY C-terminal fragments with rat peritoneal mast cells resulted in a dose-dependent histamine secretion (10(-9)-10(-5) M). A linear correlation between the number of net positive charges of the peptides and histamine release potencies was obtained. The histamine secretion induced by NPY fragments was inhibited by the treatment of mast cells with benzalkonium chloride and pertussis toxin indicating the involvement of G proteins.

Animals↗

Epithelium modulates the kinetics of the response to substance P and its intrinsic activity in the guinea-pig trachea.

The contractile response of guinea-pig tracheal preparations with or without epithelium to substance P has been studied in the presence or absence of thiorphan, an endopeptidase 24.11 inhibitor, paying special attention to the kinetics of the response. Without thiorphan, the response to substance P was greater in tracheal preparations without epithelium than in tracheal preparations with epithelium. The concentration-response curve was shifted to the left in the absence of the epithelium. In the presence of 10 microM thiorphan, the maximal contractile response induced by single doses of substance P (0.1 to 10 microM) was lower in tracheal preparations without epithelium. The maximal responses required 10 min in tracheal preparations with epithelium and 2 min in tracheal preparations without epithelium. These epithelium-dependent differences of reactivity remained in the presence of lipoxygenase or cyclooxygenase inhibitors and of selective antagonists of muscarinic, serotoninergic and histaminergic receptors, after the pre-treatment of tissues with capsaicin or compound 48/80 and in the presence of tetrodotoxin. The profile of the cumulative concentration-response curves for substance P was largely dependent on the time between two successive doses. When this time was short (2-4 min), curves established with or without the epithelium were parallel and both reached similar maximal values (2696 +/- 214 mg and 2780 +/- 62 mg, respectively). The curve in tracheal preparations without epithelium was slightly shifted to the left (EC50s: 24 +/- 10 nM and 78 +/- 19 nM). When this time was longer (10 min, ie corresponding to the time required for a full response to a single dose in intact trachea) the potency of substance P was not modified (EC50s: 13 +/- 3 nM and 52 +/- 11 nM), but a lower maximal response was observed with tracheal preparations without epithelium (1440 +/- 182 mg and 2832 +/- 209 mg). Similar results were observed with neurokinin A and neurokinin B. Thus, the removal of the epithelium led to a more rapid contraction and to a decrease of the maximal response to neurokinins, ie a decreased intrinsic activity, a property known to be drug- and tissue-dependent. These data suggest that the intrinsic activity of drugs depends on the cellular environment of the target cells in a tissue and is partly related to the diffusion and metabolism of drugs and to drug-induced hyporeactivity of the target cells.

Animals↗

Comparative action of new highly potent bradykinin receptor antagonists in the guinea-pig trachea.

We investigated the effect of two new bradykinin receptor antagonists, D-Arg0[Hyp3,D-HypE(trans-propyl)7,Oic8]bradykinin (NPC 17731) and D-Arg0[Hyp3,D-HypE(trans-thiophenyl)7,Oic8]bradykinin (NPC 17761) on [3H]bradykinin binding and on bradykinin-induced contraction of the guinea-pig trachea. Both of these compounds inhibited [3H]bradykinin binding with an affinity similar to that of unlabelled bradykinin. NPC 17731 inhibited bradykinin-induced contraction in a non-competitive manner, whereas NPC 17761 showed competitive antagonism. Therefore, NPC 17761 could contribute to the investigation of the bradykinin receptors in guinea-pig airways.

Animals↗

The mechanism of inhibition of alkylamines on the mast-cell peptidergic pathway.

GTP-binding proteins are known to play an important role in controlling mast-cell exocytosis and are described as the primary targets of peptidic mast-cell histamine releasers. The mechanism of inhibition of the mast-cell peptidergic pathway by alkylamines, which are selective inhibitors of this pathway, was investigated using intact or permeabilized rat peritoneal mast cells. Histamine release induced by GTP gamma S and by mastoparan (a venom peptide activating G proteins) was inhibited by pretreating mast cells with 0.1 to 3 micrograms/ml of a mixture of benzalkonium chloride containing in majority a twelve-carbon-atom aliphatic chain (BAC(C approximately 12)). Pure benzalkonium chloride, with a fourteen-carbon-atom aliphatic chain (BAC (C14)), at 5 to 10 microM also inhibited histamine release induced by GTP gamma S and mastoparan. The dose-response curve of mastoparan-induced histamine release from intact mast cells was shifted to the right by various concentrations of BAC (C14). Similar results were obtained with another alkylamine differing from BAC (C14) by the absence of the benzene ring, tetradecyltrimethylammonium bromide, TAB (C14). This illustrates that the presence of the phenyl radical is not required for the inhibitory effect of benzalkonium chloride. BAC (C approximately 12) and BAC (C14) inhibited the generation of inositol polyphosphates induced by GTP gamma S. BAC (C approximately 12) and TAB (C14) inhibited the mastoparan-stimulated GTPase activity from mast-cell Gi-like proteins. These results suggest that alkylamines exert selectively their inhibitory effect via an interaction with mast-cell Gi-like proteins coupled to phospholipase C, i.e., at an early stage in the stimulus-secretion coupling process.

Benzalkonium Compounds↗

An epithelial-dependent contracting factor induced by calcium influx in guinea-pig trachea.

The effects of epithelium removal were studied on the contraction induced by Ca2+ in K(+)-depolarizing solution, and by the calcium ionophore A 23187 in guinea-pig isolated tracheal strips. Epithelium removal reduced the maximal response to Ca2+ in K(+)-depolarizing solution and caused a significant shift to the right of the Ca2+ concentration-response curves. The contraction induced by the calcium ionophore A 23187 (10(-6) M) was also markedly reduced by epithelium removal. These results suggest the occurrence of an epithelium-derived contracting factor. The effects of hexamethonium, atropine, spantide and thiorphan showed that acetylcholine and neurokinins play a minor role in the Ca(2+)-induced contraction. The epithelium-dependent potentiation of the calcium- and of the A 23187-induced contractions was inhibited by an antibody selective for rat calcitonin gene-related peptide (rCGRP alpha). Therefore, CGRP-like immunoreactive material may be part of the epithelium-dependent contracting factor of guinea-pig trachea. Comparison of concentration-response curves for rCGRP alpha in epithelium-free and in intact guinea-pig tracheal strips suggests that an epithelium-dependent contracting factor may be mobilized by CGRP.

Acetylcholine↗

Heterogeneity of guinea-pig lung muscarinic receptors revealed by [3H]4-DAMP-binding.

Muscarinic receptors present in guinea-pig lung were characterized using the M3 selective radioligand [3H]4-diphenylacetoxy-N-methyl-piperidine methiodide ([3H]4-DAMP). In saturation studies, [3H]4-DAMP identified two populations of binding sites with approximately 4% of the sites displaying high affinity (Kd = 0.21 nM and Bmax = 10 fmol/mg prot.) while the remaining sites were low affinity ones (Kd = 18.11 nM and Bmax = 269 fmol/mg prot.). In competition studies with [3H]4-DAMP (0.35 nM), methoctramine and hexahydro-siladifenidol (HHSiD) identified 50 and 70% of high affinity binding sites displaying the pharmacological profile of the M2 and the M3 receptors, respectively. No evidence was found for high affinity [3H]pirenzepine binding sites in guinea-pig lung. However, pirenzepine/[3H]4-DAMP competition experiments suggested that pirenzepine recognized an equal proportion of [3H]4-DAMP binding sites with intermediate and low affinity binding constants. The intermediate affinity binding constant was inconsistent with the presence of M1 receptors and reflected more the presence of M4 or a mixture of M3 and M4 receptors. The low affinity pirenzepine binding sites may represent M2 receptors. These results provide further evidence for the occurrence of M2 and M3 receptors and suggest the presence of the M4 muscarinic receptor subtype in guinea-pig lung.

Animals↗

A mechanism of action for anaphylatoxin C3a stimulation of mast cells.

Incubation of either C3a, C3ades Arg, or synthetic analogues of the C-terminal sequence of C3a with purified rat peritoneal mast cells resulted in a rapid and dose-dependent histamine release. The natural factors C3a and C3ades Arg were the most active of the factors tested exhibiting EC50 values of 3.3 and 2.2 microM, respectively. The corresponding 21- and 22-residue C-terminal analogues of C3a (Y21R and Y21) were less potent than intact factor exhibiting EC50 values of 10.9 and 25.1 microM, respectively. Histamine was released in a nonlytic manner and the mast cell stimulation by both natural and synthetic factors was sensitive to pertussis toxin, neuraminidase, benzalkonium chloride, and to an excess of calcium. C3a stimulated the generation of inositol polyphosphates that was inhibited by either pertussis toxin or benzalkonium chloride. The C3a anaphylatoxin also directly stimulates purified G proteins (i.e., GTPase activity) in a dose-dependent manner. The evident correlation between efficiency of C3a and C3a analogues to stimulate purified G proteins and their capacity to induce cellular histamine release led us to conclude that C3a fails to activate mast cells via a mechanism involving specific receptors on the cell. Instead, we propose that C3a either causes direct activation of G proteins of the Gi subtype, with a subsequent activation of phospholipase C, or interacts with a binding site of the cell surface specific for cationic molecules that is coupled to the G protein cascade.

Amino Acid Sequence↗

Natural polyamines stimulate G-proteins.

The natural polyamines spermine and spermidine, the biosynthetic precursor putrescine and their analogues cadaverine and tyramine stimulate the GTPase activity of purified GTP-binding proteins (Go/Gi) from calf brain reconstituted into phospholipid vesicles. The order of potency was spermine greater than spermidine greater than putrescine = cadaverine greater than tyramine. The physiological relevance of this observation was assessed, showing the same order of potency of polyamines in the stimulation of peritoneal and tracheal rat mast cells. The activation of rat mast cells by polyamines was inhibited by benzalkonium chloride or by a 2 h pretreatment of the cells with pertussis toxin. The increase in inositol phosphates evoked by polyamines was also inhibited by pertussis toxin. Therefore we propose that intracellular polyamines might control the basal level of second messengers and modulate extracellular signals transduced through G-protein-coupled receptors.

Animals↗

Endopeptidase 24.15 modulates bradykinin-induced contraction in guinea-pig trachea.

Guinea-pig tracheal strips were contracted with cumulative concentrations of bradykinin or substance P in the presence of thiorphan, an inhibitor of endopeptidase 24.11 and of angiotensin-converting enzyme, or in the presence of N-[1-(R,S)-carboxy-3-phenylpropyl]Ala-Ala-Phe-para-aminobenzoate (cFP-AAF-pAB), a selective inhibitor of endopeptidase 24.15. The concentration-effect curve of bradykinin was shifted to the left in the presence of each inhibitor whereas the curve of substance P was sensitive to thiorphan but not to cFP-AAF-pAB. These results show that endopeptidase 24.15 may modulate the contractile effect of bradykinin but not that of substance P in the guinea-pig trachea.

Amino Acid Sequence↗

Insulin releasing effects of mastoparan and amphiphilic substance P receptor antagonists on RINm5F insulinoma cells.

It has been proposed that mastoparan (INLKALAALAKKIL) and other mast cell secretagogues such as substance P (SP) or compound 48/80 act by direct activation of the pertussis toxin (PTX)-sensitive G-proteins in intact cells. Here we have investigated whether or not the antagonists of SP, [D-Trp7,9,10] SP1-11 and [D-Trp7,9,10, N-leu11]SP1-11, can similarly induce exocytosis from RINm5F cells. In intact cells mastoparan and the SP antagonists stimulated insulin release in a dose-dependent manner at concentrations ranging from 10 to 100 microM. The maximal effect on insulin release, of both mastoparan and the SP antagonists was comparable to that obtained with 100 microM forskolin. Pretreatment of the intact cells, for 18 h with PTX or 6 h with cholera toxin, did not change the responses induced by both mastoparan and the SP antagonists. This absence of PTX effect, despite the fact that the three PTX substrates at 41, 40 and 39 kDa were ADP ribosylated after pretreatment suggests intrinsic differences between mast and RINm5F cells. Thus the SP antagonists behave similarly to mastoparan in its ability to induce insulin release in RINm5F cells. However, the higher concentrations required with RINm5F cells compared to that needed for mast cells suggest differences either in G-proteins composition or in the phospholipid composition of the membranes.

Adenosine Diphosphate Ribose↗

Effect of Hoe 140, a new B2 noncompetitive antagonist, on guinea pig tracheal bradykinin receptors.

We investigated the effect of the new B2 antagonist D-Arg0[Hyp3,Thi5, D-Tic7, Oic8]bradykinin (BK) (Hoe 140) on the binding of [3H]BK to membranes from guinea pig trachea with respect to the presence of the epithelium. Scatchard analysis of equilibrium data with [3H]BK revealed a single class of binding sites in the epithelium denuded trachea membrane preparation (E-) with a dissociation constant (Kd) of 55 pM and a Bmax of 0.71 fmol.mg tissue-1. When intact trachea (E+) was used, two binding sites were detected: a saturable high-affinity one (Kd of 40 pM and Bmax of 0.69 fmol.mg tissue-1) and a low-affinity one, not really saturable, with a Kd over 180 nM and a Bmax over 18 fmol.mg tissue-1. In guinea pig ileum, a tissue thought to contain B2 receptors, one class of binding sites was detected with a Kd of 209.3 pM and a Bmax of 16.2 fmol.mg tissue-1. In competition experiments ([3H]BK from 0.3 to 0.5 nM), similar results were obtained in (E +/-) and in ileum membrane preparations. B1 ligands did not displace [3H]BK binding, demonstrating the lack of B1 receptors. BK and B2 antagonist, except Hoe 140, fully displaced [3H]BK with Hill coefficients close to the unity. In competition studies only the high-affinity site was labeled by [3H]BK, in the (E+) preparation, as suggested by the inhibition constant value of unlabeled BK. Hoe 140 fully displaced [3H]BK in competition experiments, but with a Hill coefficient significantly less than unity, suggesting the presence of two binding sites for this compound in the three preparations used.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗