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L Sautebin

Publications and source records attributed to L Sautebin.

52 records · Page 3Linked to original sources

Identification of specific binding sites for leukotriene C4 in membranes from human lung.

Leukotriene C4 (LTC4), one of the major components of the slow-reacting substance of anaphylaxis (SRS-A), is a potent constrictor of bronchial smooth muscle in many species including humans. Here we report the identification and characterization of specific binding sites for LTC4 in membranes from human lung parenchyma. At 4 degrees, 3H-LTC4 binding is specific, saturable (Bmax = 32-41 pmoles/mg prot.), rapid (equilibrium being attained within 15 min), reversible and of high affinity (Kd = 3.6-7 X 10(-8) M). The binding sites are sensitive to heat and probably possess a protein moiety, being inactivated upon trypsinization. CaCl2 affects both the association and the dissociation rate and dose-dependently enhances the binding of 3H-LTC4 at equilibrium; maximal enhancement (4-fold) occurred at 10(-2)M CaCl2. Unlabelled LTC4 is able to complete with 3H-LTC4 for its binding sites with an IC50 of 7.8 X 10(-8) M. The addition of 10(-2) M CaCl2 increases the potency of LTC4 in inhibiting the binding (2.2-fold); both the competition curves are monophasic, indicating the existence of a homogeneous class of binding sites. In the presence of CaCl2, LTD4, LTE4 and the SRS-A antagonist FPL 55712 can inhibit 3H-LTC4 specific binding, being, however, less potent than LTC4 (IC50 S = 2.2 X 10(-6), 2.4 X 10(-5) M, for LTD4, LTE4 and FPL 55712, respectively). FPL 55712 displayed a competitive mechanism; its affinity, however, was lower if absorption to glass was not prevented. The present studies indicate that specific binding sites for 3H-LTC4 exist in human lung parenchyma, and that a receptor-mediated process might be involved in the bronchoconstriction induced by LTC4.

Calcium Chloride↗

Use of tritium labeled amino acid conjugates of prostaglandins and thromboxanes as labeled ligands in prostanoid radioimmunoassay.

Conjugates of prostaglandins and thromboxanes with tritium labeled amino acids were prepared and employed as labeled ligands in prostaglandin and thromboxane radioimmunoassays. Assays for PGF2 alpha, 15-keto-13, 14-dihydro-PGF2 alpha, TXB2 and 15-keto-13,14-dihydro-TXB2 were evaluated in comparative studies using either these heterologous ligands or the corresponding homologous tritiated eicosanoid as tracers. Binding properties for the respective antibodies were found to be similar using either tracer. Three biological studies were also conducted, viz. study of the release of TXB2 during collagen induced platelet aggregation, of 15-keto-13,14-dihydro-TXB2 during guinea pig pulmonary anaphylaxis, and of PGF2 alpha (measured as 15-keto-13,14-dihydro-PGF2 alpha in peripheral plasma) during bovine luteolysis. The analyses gave comparable results using either the heterologous or the homologous assay. Thus, this type of labeled prostanoid conjugates may serve as a convenient alternative to homologous tracers in radioimmunoassay. Heterologous tracers may even in certain cases provide the only simple solution to the problem of preparing a labeled ligand of high specific activity.

Amino Acids↗

Release of leukotrienes, induced by the Ca++ ionophore A23187, from human lung parenchyma in vitro.

When chopped human lung is stimulated with the Ca++ ionophore A23187 (0.25-10 microM) leukotriene (LT) B4, LTD4 and LTE4 are found in the incubation medium according to different patterns. LTD4 is released promptly and its levels increase up to 45 min after the stimulus (A23187, 10 microM) and decline later (120 min); LTE4 formation follows a sigmoidal shape and continues to accumulate even 2 hr after the challenge; LTB4 levels reach a plateau at 45 min. LTC4 was undetectable in most experiments but it was found to accumulate when reduced glutathione (10 mM) was added. Addition of exogenous LTC4 to unstimulated fragments of human lung shows that an effective interconversion to LTD4 and LTE4 takes place: A23187 stimulates formation of LT and cyclo-oxygenase products dose dependently; a statistically significant formation of LT occurs at A23187 concentration of 1 microM whereas thromboxane B2 (TXB2) and 6-K-prostaglandin F1 alpha levels increased significantly only at 2.5 microM A23187. Pretreatment with U-60257 (100 microM) prevented formation of LT without a concomitant increase of TXB2 levels. Indomethacin (1.5 microM) blocked the release of 6-K-prostaglandin F1 alpha and TXB2 without a shift of arachidonic acid towards LT-like activity. Addition of exogenous LTC4 did not trigger synthesis of TXB2 or 6-K-prostaglandin F1 alpha. Our results indicate that reduced glutathione levels and the activity of the enzymes involved in LT biosynthesis and/or metabolism play an important role in controlling the pattern of LT release from human lung.

Arachidonic Acid↗

Preferential utilization of endogenous arachidonate by cyclo-oxygenase in incubations of human platelets.

Thromboxane B2 (TXB2) and 12-hydroxy-5,8,10,14-eicosatetraenoic acid (12-HETE) formed from the endogenous and exogenous arachidonate during human platelet incubation, was evaluated by selected ion monitoring (SIM). TXB2 formed from endogenous substrate accounted for about one third of the total, whereas the great part of 12-HETE derived from exogenous arachidonate. These data indicate that under the tested conditions the pool of arachidonate that acts as substrate for cyclo-oxygenase is different from the pool that acts as substrate for lipoxygenase and that the arachidonate released from phospholipids is preferentially utilized by cyclo-oxygenase.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid↗

beta-Adrenoceptor activation induces prostaglandin E2 generation in guinea-pig trachea.

Isoproterenol and salbutamol caused relaxation of guinea-pig trachea, and generation of PGE2. The phenomenon appears to be specific for beta-adrenergic agonists since the relaxant activity induced by atropine, theophylline and papaverine was not associated with generation of prostaglandin-like material from tracheal smooth muscles. Indomethacin reduced only slightly the relaxation of the tracheal tissue induced by isoproterenol and salbutamol. The possibility is discussed that the increased arachidonic acid metabolism during trachea beta-adrenergic relaxation represents a metabolic event involving phospholipid methylation and membrane fluidity.

Albuterol↗

Congenital deficiency of thromboxane and prostacyclin.

Animal work suggests that with certain doses of aspirin the antithrombotic effect exerted via the inhibition of the proaggregatory platelet thromboxane A2 (TXA2) may be neutralised by the concomitant vascular reduction of the antiaggregatory prostacyclin (PGI2). Such a situation might result not only in therapeutic ineffectiveness but also in a thrombotic tendency. A patient with a bleeding disorder characterised by a mildly prolonged bleeding time and defective platelet-release reaction due to a congenital deficiency of cyclo-oxygenase provided an opportunity for studying this problem. Her platelets did not aggregate with arachidonic acid, but they did so with a synthetic endoperoxide analogue. Thrombin added to her platelet-rich plasma and whole blood did not generate thromboxane B2 (TXB2). Washed platelets, when incubated with 14C-arachidonic acid, did not produce the cyclo-oxygenase metabolites. A biopsy specimen of her vein did not generate PGI2, as measured both by platelet-aggregation inhibition and radioimmunoassay of 6-keto-PGF1 alpha. Clinically, the patient had a mild bleeding tendency but no thrombotic problems. The findings suggest that in man aspirin therapy, even at doses which inhibit PGI2 formation, would only impair haemostasis mildly without producing a thrombotic tendency.

Adenosine Diphosphate↗

PGF2 alpha, thromboxane B2 and HETE levels in gerbil brain cortex after ligation of common carotid arteries and decapitation.

The effects of ligation of both common carotid arteries in the gerbil on the levels of PGF2 alpha, TXB2, HETE and of energy metabolites in brain cortex, have been investigated. Also, in the same experimental conditions the changes of cyclic AMP in brain cortex, cerebellum, striatum and hippocampus have been monitored. ATP, glycogen, glucose and phosphocreatine decrease whereas, lactate and cyclic AMP are enhanced in the ischemic brain, as previously reported. In contrast, levels of arachidonic acid metabolites are not modified. During ischemia following decapitation, instead, PGF2 alpha, and TXB2, show considerable increase.

Animals↗

Synthesis and structure-activity of antisense peptides corresponding to the region for CaM-binding domain of the inducible nitric oxide synthase.

Nitric oxide synthase (NOS) catalyses the conversion of L-arginine to nitric oxide (NO) which plays an important role in the regulation of cellular functions and intracellular communications. Three distinct isoforms of NOS have so far been identified, two constitutive and one inducible. All three mammalian isoforms of NOS contain putative CaM-binding domains with the canonical composition. In this paper we report the synthesis and the inhibitory activity on rat neuronal and lung inducible NOS of antisense peptides corresponding to the antisense strand read in 3' to 5' (CALM 1) or 5' to 3' (CALM 2) direction of the region encoding for the CaM-binding domain of the inducible NOS isoform (residues 503-522). CALM 1 inhibited, at all the concentrations tested (0.01-1 mM), both the inducible and constitutive NOS (IC(50) 98 microM and 56 microM, respectively), while CALM 2 (0.01-1 mM) was ineffective on both isoforms. The acetylation of CALM 1 at its amino terminal (CALM 8) completely abolished its inhibitory activity. We also synthesized and analysed the activity of amino terminal truncated analogues (CALM 3-7) of CALM 1, which selectively inhibited the inducible isoform, although less potently than the parent compound. The pentapeptides (CALM A-D) deriving from the cleavage of CALM 1 were ineffective, except the pentapeptide CALM C corresponding to the residues 513-517, which was as potent as the parent compound (IC(50) 65 microM).

Amino Acid Sequence↗