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Biomedical subjects

D Reinhardt

Publications and source records attributed to D Reinhardt.

At least 109 records · Page 6Linked to original sources

Histamine release from basophils in childhood: age dependency and inhibition by pertussis infection and pertussis toxin.

The influence of childhood pertussis infection and of purified pertussis toxin on histamine release from human basophil leucocytes was investigated. Three different stimuli, the peptide N-formyl-Met-Phe (NFMP), anti-IgE, and the calciumionophore A23187 were used to challenge the cells. When NFMP was the stimulus, histamine release in the control group (age 0.5-17 years) increased in an age-dependent fashion, whereas anti-IgE and A23187 stimulated release did not vary with age. During the convulsive state of pertussis infection there was a significant reduction of histamine release in response to 10 microM NFMP (from 9.5 +/- 1.4 [n = 21] to 6.7 +/- 1.5 [n = 19], P < 0.05) and in response to 800 and 80 U/ml anti-IgE (from 28.5 +/- 5 [n = 19] to 16.3 +/- 5 [n = 13], P < 0.05, and from 6.9 +/- 1.7 [n = 16] to 2 +/- 0.8 [n = 13], P < 0.01), whereas histamine release stimulated by A23187 was unchanged compared to release in control children. In vitro pretreatment of basophils from healthy children and adults with pertussis toxin also inhibited histamine release. When NFMP was the stimulus, release was completely blocked by pertussis toxin with an IC50 of about 11 ng/ml, whereas anti-IgE stimulated release was only inhibited by 20%-30% and release induced by A23187 was reduced to 40%-50% by toxin treatment. In conclusion we have demonstrated a functional impairment of histamine release during the convulsive state of pertussis and that this inhibition is likely to be mediated by pertussis toxin.

Adolescent↗

Nidogen mediates the formation of ternary complexes of basement membrane components.

Using a recombinant nidogen we have probed the calcium binding potential of various nidogen domains, examined the binding of nidogen to various basement membrane proteins and assessed the ability of nidogen to mediate the formation of ternary complexes between laminin and heparan sulfate proteoglycan and collagen IV and laminin. The results of these experiments indicate that the Ca+2 binding is on the rod-like domain with additional binding observed on the N-terminal G1 domain. With regard to the role of nidogen in mediating complex formation among basement membrane components it was demonstrated that nidogen effectively promotes the formation of a ternary complex between laminin and collagen IV, with both of these components interacting independently with nidogen. Similarly, nidogen mediates a ternary complex formation between laminin and proteoglycan. Interestingly, the interaction between proteoglycan and nidogen is through the protein core of the proteoglycan. We have localized the major interaction sites on nidogen with the proteoglycan core and collagen IV to a region on the globular G2 domain while the C-terminal globe G3 binds to laminin. Ca+2 binding does not appear to be important in either of the binary or ternary complex formations. The data reported allow us to hypothesize that, via the multiple interactions of nidogen with other basement membrane components, nidogen plays a crucial structural role in basement membrane organization and stabilization.

Animals↗

Dose-dependent effect of growth hormone therapy on glucose metabolism in subjects with Turner syndrome. The German Lilly Ullrich-Turner Syndrome Study Group.

Recombinant human growth hormone (GH) is effective in promoting growth velocity in subjects with Turner syndrome. As higher doses are used for this indication than for substitution therapy in GH deficiency, the long-term effects of GH therapy on carbohydrate metabolism represent a safety issue; this is particularly important in Turner syndrome, in which there is an increased prevalence of impaired glucose tolerance. So far, GH therapy has been given to patients with Turner syndrome for up to 7 years without any significant changes having been reported in glycosylated haemoglobin (HbA1c) values, unstimulated and stimulated oral glucose tolerance test (OGTT) blood glucose and serum insulin concentrations. These findings may, however, be influenced by other variables, such as study design, number of subjects or standardization methods applied. Results of an ongoing trial in the FRG, from which 2 years' data on glucose metabolism (as assessed by serial OGTTs) of 72 patients with Turner syndrome are available, indicate that glucose homoeostasis is maintained at the expense of an increase in insulin secretion, which is time- and dose-dependent. Although these changes may be fully reversible on withdrawal of GH. therapy, accurate control of glucose metabolism both during and after GH. treatment is advocated.

Blood Glucose↗

[Pharmacologic characterization of formoterol in comparison with isoprenaline, fenoterol and salbutamol in tracheal muscle strips and lung membranes of the guinea pig].

In severe asthma attacks, beta 2-sympathomimetics can lose part of their therapeutic potency possibly due to a predominance of contractile mediators. To elucidate this loss of potency, we chose tracheal smooth muscle strips as experimental model which were partially and maximally precontracted with 100 and 6,000 nmol/l carbachol, respectively, reflecting different contractile states of the smooth muscle strips. Both contractures were dose-dependently relaxed by fenoterol and salbutamol which are well established as beta 2-sympathomimetics, by a new compound (formoterol) and by isoprenaline as standard. In tracheal strips, partially precontracted with 100 nmol/l carbachol, all agonists induced maximum relaxation beyond basal tone thereby characterized as full agonists. In maximally precontracted tracheal strips beta-adrenergic relaxation was markedly attenuated for all agonists by 70-80%. Maximum relaxation by the beta 2-sympathomimetics was even smaller than that of isoprenaline. By these experiments, the beta 2-sympathomimetics were characterized as partial agonists. The intrinsic 'activities (IA) for relaxation were different for the 3 beta 2-sympathomimetics investigated. Intrinsic activities were 0.8, 0.6 and 0.6 for formoterol, fenoterol and salbutamol, respectively. In both group of experiments formoterol exhibited the lowest EC50 for relaxation, which was 20 and 50 times lower than that of fenoterol and salbutamol, respectively. To investigate, if the higher relaxant potency of formoterol correlated to a higher binding affinity for beta 2-adrenoceptors, we performed radioligand binding experiments in guinea pig lung membranes. The non-linear regression analysis of data revealed a high affinity of formoterol, which was 16- and 40-fold higher than that of fenoterol and salbutamol, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Airway Resistance↗

Atrial natriuretic peptide is phosphorylated by intact cells through cAMP-dependent ecto-protein kinase.

Recently we demonstrated the presence of cell-surface-located cAMP-dependent protein kinase (ecto-PK A) activity in a number of different cell types [Kübler, D., Pyerin, W., Bill, O., Hotz, A., Sonka, J. and Kinzel, V. (1989) J. Biol. Chem. 264, 14549-14555]. The question of the physiological role of externally directed kinase activity prompted a search for potential natural substrates present in the intercellular fluid. In the present study we have investigated the phosphorylation by ecto-PK A of the human atrial natriuretic peptide ANP99-126, a hormone released by cardiac cells. This 28-amino-acid peptide carries the phosphorylation consensus sequence Arg-Arg-Ser-Ser for the PK A. Incubation of various cell lines (including epithelial, epidermal, myoblast and lymphoma cells) or freshly isolated blood cells (macrophages, erythrocytes and platelets) with ANP in the presence of low micromolar concentrations of ATP resulted in the phosphorylation of ANP at Ser residues. The ANP phosphorylation reaction proved strictly dependent on cAMP; cAMP could not be replaced by cGMP. The phosphorylation was inhibited by the PK A-specific inhibitory peptide and increased linearily for up to 15 min and with a Km value of 3-5 microM for ANP. At higher ATP concentrations (greater than 100 microM) the incorporation rates amounted to about 0.3 mmol P (mol ANP)-1 min-1. The rise of intracellular cAMP in HEL30 (an epidermal cell line) after application of the beta-adrenergic receptor agonist isoproterenol led to an approximately three-fold stimulation of ANP phosphorylation which appears to be brought about by an efflux of intracellular cAMP. Employing cell supernatant fluids and cell sonicates, it could be shown that the phosphorylation of ANP results from the ecto-PK A. Comparison of ANP with ANP phosphorylated in vitro using purified catalytic subunit of PK A showed that phosphorylation is accompanied by certain changes in the average solution conformation of the peptide, consistent with the changes known to occur in its biological activity. Our results demonstrate cAMP-dependent phosphorylation of the peptide hormone analogue ANP99-126 by intact cells through ecto-PK A, an intriguing mechanism for post-translational processing of ANP.

Adenosine Triphosphate↗

Formoterol, fenoterol, and salbutamol as partial agonists for relaxation of maximally contracted guinea pig tracheae: comparison of relaxation with receptor binding.

In severe asthma attacks beta 2-sympathomimetics lose part of their therapeutic efficiency. To elucidate this loss of efficiency in an experimental model we compared the relaxant potency of salbutamol (SAL), fenoterol (FEN), formoterol (FOR), and (-)-isoprenaline (ISO) in guinea pig tracheae partially and maximally precontracted by 0.1 and 60 mumol/L carbachol, respectively. In partially precontracted tracheae the beta 2-sympathomimetics exerted maximum relaxation in comparison with ISO and low EC50S (nmol/L) for relaxation (SAL, 20; FEN, 5.6; FOR, 0.28; and ISO, 2.5). In maximally precontracted tracheae, however, the beta 2-sympathomimetics were only partial agonists for relaxation with reduced intrinsic activities (%) in comparison to ISO (SAL, 59%; FEN, 61%; FOR, 76%) and significantly increased EC50S (nmol/L) for relaxation (SAL, 130; FEN, 57; FOR, 3.0; ISO, 37). To investigate if the high relaxant potency of FOR is correlated with a higher binding affinity and/or a higher intrinsic activity for adenylate cyclase stimulation than for FEN and SAL, we performed experiments in receptor membranes from guinea pig lung. Binding competition of SAL, FEN, and FOR with [3H]ICI 118,551 for lung beta 2-adrenoceptors yielded dissociation constants (KD) of 320 (SAL), 120 (FEN), and 7.6 (FOR) nmol/L, which exhibited the same ranking as EC50S for relaxation. Concentrations of SAL, FEN, and FOR equivalent to 100 KD of the respective dissociation constants stimulated beta 2-adrenoceptor-coupled adenylate cyclase with different intrinsic activities (%) incomparison to ISO (SAL, 61%; FEN, 63%; FOR, 89%) matching intrinsic activities for relaxation. From these experiments it may be concluded that FOR might improve drug therapy of severe asthma not only due to its long mode of action discovered in clinical studies but also due to its high intrinsic activity and receptor affinity.

Adenylyl Cyclases↗

Glutathione homeostasis in rats chronically treated with ethanol. Evidence for an increased hepatic GSH export in vivo.

The influence of chronic ethanol feeding to rats on the hepatic glutathione (GSH and GSSG) system (synthesis, catabolism, export) and on the GSH and GSSG concentrations in extrahepatic tissues was investigated. Histological examination of livers from ethanol pretreated rats revealed a minor dilatation of the hepatic sinusoids. After ethanol administration the distribution pattern of gamma-glutamyltranspeptidase (enzymehistochemistry) was nearly unchanged, but the hepatic activity of this enzyme was increased. The ethanol pretreatment led to a decrease in hepatic GSH content. The hepatic activity of the GSSG-reductase were increased after ethanol treatment whereas the activities of the GSH synthesizing enzymes (gamma-glutamyl-cysteinyl-synthetase and GSH-synthetase) were not affected. A strong increase in sinusoidal GSH export was found in the ethanol-pretreated rats. The GSH- and GSSG concentrations of brain, lung, kidney and skeletal muscle were unchanged. It can be concluded that the ethanol-induced alteration of the hepatic GSH metabolism is caused mainly by changes of the sinusoidal membrane of the hepatocytes (direct effect of ethanol on the sinusoidal GSH carrier) leading to an increased GSH export into plasma. This effect should not due to an increased extrahepatic requirement for GSH.

Animals↗

Beta-adrenoceptor density on mononuclear leukocytes and right atrial myocardium in infants and children with congenital heart disease.

Sympathetic regulation of myocardial performance has been shown to be altered in congestive heart failure. Right atrial tissue of children with severe acyanotic and cyanotic congenital heart disease (CHD) showed a significantly lower beta-receptor density than that of children with less severe defects. Since mononuclear leukocytes (MNL) contain a homogeneous population of beta 2-adrenoceptors which have similar properties to those of cardiac beta 2-adrenoceptors, they are frequently used for studying the beta-adrenergic system. In a group of 37 children with CHD of different types and severity who underwent cardiac surgery, we compared the MNL beta-adrenoceptor density to the type and severity of CHD and looked for a possible relationship to plasma catecholamine levels and to the right atrial beta-adrenoceptor density. Membranes of MNL and myocardial cells were radiolabeled with (-)3-[125I]Iodocyanopindolol [( 125I]ICYP). A significantly higher beta-adrenoceptor density on MNL was found in patients with moderate acyanotic CHD (group I) than in those with severe acyanotic (group II) and cyanotic CHD (group III). Patients of group I showed approximately 50% higher myocardial beta-receptor density than those of groups II and III. ICI 118.551-[125I]ICYP competition studies revealed that in groups II and III significantly lower proportions and densities of beta 1-receptors were found compared to group I. Noradrenaline (NA) plasma levels in group II and group III were significantly higher than those in group I. The adrenaline plasma levels were found to be very high in all children with CHD.(ABSTRACT TRUNCATED AT 250 WORDS)

Binding, Competitive↗

Recombinant nidogen consists of three globular domains and mediates binding of laminin to collagen type IV.

Recombinant mouse nidogen and two fragments were produced in mammalian cells and purified from culture medium without resorting to denaturing conditions. The truncated products were fragments Nd-I (positions 1-905) comprising the N-terminal globule and rod-like domain and Nd-II corresponding mainly to the C-terminal globule (position 906-1217). Recombinant nidogen was indistinguishable from authentic nidogen obtained by guanidine dissociation from tumor tissue with respect to size, N-terminal sequence, CD spectra and immunochemical properties. They differed in protease stability and shape indicating that the N-terminal domain of the more native, recombinant protein consists of two globules connected by a flexible segment. This established a new model for the shape of nidogen consisting of three globes of variable mass (31-56 kDa) connected by either a rod-like or a thin segment. Recombinant nidogen formed stable complexes (Kd less than or equal to 1 nM) with laminin and collagen IV in binding assays with soluble and immobilized ligands and as shown by electron microscopy. Inhibition assays demonstrated different binding sites on nidogen for both ligands with different specificities. This was confirmed in studies with fragment Nd-I binding to collagen IV and fragment Nd-II binding to laminin fragment P1. In addition, recombinant nidogen but not Nd-I was able to bridge between laminin or P1 and collagen IV. Formation of such ternary complexes implicates a similar role for nidogen in the supramolecular organization of basement membranes.

Animals↗

Analysis and cloning of the ethylene-forming enzyme from tomato by functional expression of its mRNA in Xenopus laevis oocytes.

The last step in biosynthesis of the plant hormone ethylene, oxidation of 1-aminocyclopropane-1-carboxylic acid (ACC), is catalysed by the elusive ethylene-forming enzyme (EFE). EFE is induced by fungal elicitors in suspension-cultured tomato cells. We demonstrate that Xenopus laevis oocytes injected with RNA from elicitor-treated tomato cells gain the ability to convert ACC to ethylene. The enzyme expressed in the oocytes under the direction of plant RNA is indistinguishable from genuine plant EFE with regard to its saturation kinetics, its iron dependency and its stereospecificity to the diastereomeric ethyl derivatives of ACC, allocoronamic acid and coronamic acid. In tomato cells stimulated for different times with elicitor, the level of EFE correlates with the level of RNA directing EFE expression in oocytes. Hybridization and co-injection experiments demonstrate that the tomato RNA species directing EFE expression in oocytes are homologous to clone pTOM13 which has been shown to inhibit ethylene production in plants when expressed in antisense. Using a cDNA library from elicitor-stimulated tomato cells, we have isolated several homologues of pTOM13 and identified one of them, pHTOM5, as a clone of EFE on the basis of its functional expression in the Xenopus oocytes.

Amino Acid Sequence↗

Influence of short- and long-term inhalation of salbutamol on lung function and beta 2-adrenoceptors of mononuclear blood cells in asthmatic children.

Clinical observations have shown that some asthma patients develop tachyphylaxis to beta-sympathomimetic drugs. As down-regulation of the number of beta-adrenoceptors in different human tissues after exposure to catecholamines and beta-adrenergic drugs is well known, we investigated whether a interrelation exists between beta-adrenoceptor down-regulation and clinically detectable beta-adrenergic subsensitivity during beta-sympathomimetic treatment. The following results were obtained: 1. beta 2-Sympathomimetic inhalation treatment with salbutamol in therapeutic doses led to a significant down-regulation of beta 2-adrenoceptors and consecutive cyclic adenosine monophosphate response to isoprenaline. This effect was already detectable after short-term treatment of 3-7 days in 9 asthmatic children. 2. In the long-term study over 6 months, salbutamol inhalation in 12 asthmatic children led to a significant down-regulation of beta-adrenoceptor binding sites on mononuclear blood cells (MNC) from 1539 +/- 91 to 1115 +/- 99 after 14 days, remaining in this range thereafter. 3. The mean airway resistance (Raw) of these 12 patients decreased significantly within 14 days from 8.1 +/- 0.8 to 5.7 +/- 0.5 cm H2O/l/s to remain stable throughout the 6 months of salbutamol treatment. The differences in Raw before and immediately after inhalation of 0.2 mg salbutamol (2 puffs) were unchanged during the study period. It is concluded, that long-term inhalative treatment with salbutamol over a period of 6 months does not result in refractoriness to beta-adrenergic drugs in the airways of asthmatic children, even though a significant down-regulation of beta 2-receptors on peripheral MNC occurs.

Administration, Inhalation↗

Myocardial beta-adrenoceptor density and the distribution of beta 1- and beta 2-adrenoceptor subpopulations in children with congenital heart disease.

Twenty-six infants and children with congenital heart disease (CHD) undergoing cardiac surgery were investigated for alterations in myocardial beta-adrenoceptor density. The patients were divided into three groups according to type and severity of CHD: group I consisted of 6 patients with acyanotic shunt lesions of moderate severity; group II comprised 13 children with severe acyanotic shunt and valve lesions and group III included 7 children with cyanotic CHD. The myocardial beta-adrenoceptor density was determined using (-)3-[125I]Iodocyanopindolol [( 125I]ICYP) and was reduced by approximately 50% in severe acyanotic CHD (33.6 fmol/mg protein) and cyanotic CHD (35.3 fmol/mg protein) in comparison with the group with less severe acyanotic shunt defects (64.4 fmol/mg protein). The affinity dissociation constant (Kd.ICYP) did not differ statistically between the groups. The proportion of beta 1- and beta 2-subpopulations was evaluated by ICI 118,551-[125I]ICYP competition studies. In group II (61.5%) and group III (69.1%) significant lower portions of beta 1-adrenoceptors were found compared with group I (78.2%). This shift of subpopulations was due to a decreased beta 1-receptor density while beta 2-receptor density was unchanged in all groups. While the plasma noradrenaline levels of group I were similar to those of a control group of 13 healthy children, respective values of group II and III were significantly elevated. A significant negative correlation was found between plasma noradrenaline levels and myocardial beta-adrenoceptor density. It is concluded that exposure of these receptors to increased circulating catecholamines, due to an enhanced sympathetic tone, leads to a reduction of their density.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Inhibition of in vitro differentiation of human monocytes to macrophages by lipopolysaccharides (LPS): phenotypic and functional analysis.

Blood monocytes (MO) undergo maturation into macrophages (MAC) upon migration from the capillary bed to tissue sites of inflammation where they are exposed to environmental signals. Functional competence and phenotype heterogeneity is the result of both differentiation-inducing and -activating events. In vitro, MO to MAC maturation is induced by serum factors, can be followed by the expression of specific maturation-associated antigens and is accompanied by a characteristic change in the secretory repertoire of MAC in comparison to MO. Here we report that bacterial lipopolysaccharides (LPS) at subnanogram quantities very effectively inhibited the serum-induced maturation of human MO in vitro. At the same time LPS induced the up-regulation of CD14 antigens. The lipid A moiety was shown to be responsible for this novel biological activity of the LPS molecule. Inhibition of maturation was not due to secondary LPS-induced signals like interleukin (IL)-1, IL-6, tumor-necrosis factor (TNF)-alpha or interferon (IFN)-alpha--even though the latter by itself suppressed MAC maturation in vitro. The inhibitory activity of IFN-alpha could be abolished by neutralizing anti-IFN-alpha antibodies whereas these antibodies had no effect on LPS-induced suppression of MAC maturation. Functional analysis of LPS-treated MO long-term cultures showed that the pattern of secretory products released was similar to that of freshly-isolated immature blood MO: compared with mature MAC, LPS-treated MO released high amounts of IL-6 but significantly less TNF-alpha, neopterin, lysozyme and beta-2-microglobulin. At the same time, in LPS-treated MO cultures the MAC maturation-associated molecules alpha-2-macroglobulin and fibronectin could be detected only in trace amounts. The ability to secrete IL-1, however, was lost both in control as well as in LPS-treated MO cultures. The results indicate that endotoxins may influence the biology of the MO/MAC system distinctively: they not only induce a functional activation but also interfere with the ontogeny of this cell family.

Cell Differentiation↗

[Pharmacokinetics and pharmacodynamics of twice-daily unequal administration of theophylline retard pellets in children of various age groups].

To assess the pharmacokinetic parameters of theophylline (Euphylong as retard pellets) children were studied belonging to age groups between 9 to 13 and 5 to 9 years in twice-daily dosage with unequal distribution of the daily doses. For the older children the dose was 400 + 200 mg and for the younger ones 300 + 150 mg theophylline (these quantities represent the evening and morning doses). 16 and 14 children, respectively, completed the studies regularly. Pharmacokinetic evaluation resulted in a markedly parallel course of the individual serum theophylline profiles around the mean value. The average nocturnal concentration from 200 to 600 hours in the morning was higher than the average daytime concentration (11.4 to 10.5 mg/l or 12.3 to 11.4 mg/l). Due to the relatively stable baseline values the clinical parameters improved only slightly, but there were in particular significant changes in the peak-flow profile. In the older children we could also prove that they had a better protection against metacholine provocation. The side effects were generally mild and were in accordance with previous experiences collected with the studied preparation. The dosage scheme with unequal distribution of the total daily dose is recommended, on the basis of the present study, for all patients with rapid theophylline metabolism, i. e. children, habitually strong smokers or if the clearance is accelerated due to endogenous factors.

Adolescent↗

Fatty acid composition of phospholipids of plasma and of mononuclear blood cells in children with allergic asthma and the influence of glucocorticoids.

Fatty acid (FA) composition of plasma phospholipids and phospholipids extracted from peripheral mononuclear white blood cells (MNC) was investigated in 11 allergic asthmatic children (age 8.9 +/- 4.6 years), in 10 age-matched non-allergic healthy controls and in 14 allergic and non-allergic children with an acute attack of asthma, who had received prednisolone medication for 2-4 days. In allergic asthmatics eicosapentaenoic acid (20:5n-3) was significantly elevated in both plasma and MNC. The relative amount of 20:5n-3 in MNC as well as in plasma correlated positively with increasing levels of total serum IgE (P less than 0.02). The pattern of the other FAs in plasma and of MNC phospholipids did not differ between allergic asthmatic and non-allergic control children. In children with an acute attack of asthma, who had been treated with glucocorticoids (2 mg prednisolone/kg body weight for 2-4 days), distinct changes of relative FA composition of phospholipids were restricted to plasma, where some very long chain FA (22:4n-6, 22:5n-6) were elevated. No significant changes in FA from MNC phospholipids could be observed after glucocorticoid treatment. These findings may indicate a possible role of 20:5n-3, the precursor of "group 3" eicosanoids, in allergic asthmatic children.

Adolescent↗

Inhibitory effects of pertussis toxin on the cAMP generating system in human mononuclear leucocytes.

In a previous investigation of children infected with pertussis during the first week of paroxysmal stage, we found a 50-75% reduction of the isoprenaline (IPN)-induced cAMP response in peripheral MN leucocytes. In order to characterize these findings further, intact human MN leucocytes from healthy adults were treated with PT in vitro. Basal, as well as prostaglandin E1-stimulated cAMP levels were decreased by PT in a dose-dependent fashion over a range of 0.01 to 1000 ng ml-1 to about 65% of control levels. Stimulation of PT-pretreated cells (100 ng ml-1, 90 min, 37 degrees C) showed significantly reduced IPN and PGE1-induced cAMP accumulation, indicated by a depression and shift of the dose-response curves to the right. In contrast, cAMP generation was unchanged by forskolin, a diterpene that is believed to directly stimulate adenylyl cyclase. The anti-allergic drug ketotifen had no direct effects on basal, IPN or PGE1-induced cAMP responses; however the inhibitory actions of PT pretreatment on cAMP levels were diminished (basal and isoprenaline-stimulated) or reversed (PGE1-stimulated). To further locate the site of impaired cAMP responses, beta-adrenoceptor binding, as well as displacement characteristics of the receptor, were estimated by 125I-cyanopindolol binding to a plasma membrane fraction pretreated with or without PT. No differences in beta-adrenoceptor number or in the affinities of the binding sites could be detected. These data are in close agreement with the findings on MN leucocytes from pertussis-infected children and support the notion of PT-induced impaired signal transduction in the cAMP generating system in human MN leucocytes.

Adenylate Cyclase Toxin↗