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Biomedical subjects

T Evans

Publications and source records attributed to T Evans.

At least 199 records · Page 11Linked to original sources

Guanine nucleotide regulation of agonist binding to muscarinic cholinergic receptors. Relation to efficacy of agonists for stimulation of phosphoinositide breakdown and Ca2+ mobilization.

The efficacies of a series of six muscarinic cholinergic receptor agonists for stimulation of phosphoinositide breakdown and unidirectional efflux of 45Ca2+ in 1321N1 human astrocytoma cells were compared with the relative capacity of these agonists for formation of a GTP-sensitive high-affinity binding state in washed membranes. Carbachol and methacholine were 'full' agonists as regards phosphoinositide breakdown and Ca2+ mobilization, whereas bethanechol, arecoline and oxotremorine were 'partial' agonists for these two responses. Pilocarpine was the least efficacious of the six drugs tested. Except for pilocarpine, competition curves generated with the agonists and [3H]quinuclidinyl benzilate did not follow the Law of Mass Action for ligand interaction at a single site. Non-linear regression analyses of these data indicated that the data significantly better fit a two-, rather than a single-, site model with a high- and a low-affinity binding component. Competition curves generated in the presence of GTP were shifted to the right, and the extent of receptors in the high-affinity agonist-binding state was decreased. The relative efficacies of the six agonists for stimulation of phosphoinositide breakdown and Ca2+ mobilization were significantly correlated with the difference in affinities (KL/KH) between the two affinity states for each agonist. The relative efficacy of the agonists for stimulation of Ca2+ mobilization also was significantly correlated with the extent of receptors in the high-affinity state (%H) for each agonist. The results suggest that interaction with an as-yet unidentified guanine nucleotide regulatory protein is important in the mechanism whereby muscarinic receptors stimulate phosphoinositide breakdown in 1321N1 astrocytoma cells.

Astrocytoma↗

Further evidence that muscarinic cholinergic receptors of 1321N1 astrocytoma cells couple to a guanine nucleotide regulatory protein that is not Ni.

Inhibitory coupling of receptors to adenylate cyclase previously has been shown to be relatively sensitive to inactivation by alkylation with N-ethylmaleimide (NEM). Modification of the inhibitory guanine nucleotide regulatory protein, Ni, has been proposed to be responsible for this effect. The effects of NEM on GTP-sensitive binding of carbachol to muscarinic cholinergic receptors has been compared in a cell line (1321N1 human astrocytoma cells) in which these receptors stimulate phosphoinositide breakdown and in a cell line (NG108-15 neuroblastoma X glioma cells) in which activation of these receptors results in inhibition of adenylate cyclase. Pretreatment of membrane preparations from 1321N1 cells with NEM resulted in a concentration-dependent decrease in the extent of pertussis toxin-catalysed [32P]ADP-ribosylation of a 41 000 Da protein previously proposed to be the alpha subunit of Ni. Under conditions where 32P-labelling of Ni in 1321N1 membranes was reduced by NEM by 90%, no effect was observed on the extent of guanine nucleotide-sensitive high-affinity binding of carbachol to muscarinic cholinergic receptors. In contrast, treatment of NG108-15 membranes with NEM under the same conditions resulted in complete loss of high-affinity guanine nucleotide sensitive binding of carbachol. These results illustrate another difference between the muscarinic receptor population of these two cell lines, and support the previous proposal that muscarinic receptors of 1321N1 cells couple to a guanine nucleotide regulatory protein that is not Ni.

Adenosine Diphosphate↗

Fibrin degradation and angiogenesis: quantitative analysis of the angiogenic response in the chick chorioallantoic membrane.

Fibrin deposition and removal is a feature common to major pathological processes such as wound healing, chronic inflammation and tumour invasion: processes involving the ingrowth of new blood vessels. Low molecular weight fibrin degradation products (MW less than 50,000) are now shown to induce angiogenesis in the chick chorioallantoic membrane (CAM). This effect has also been shown by new quantitative assays to be associated with stimulation of both DNA and protein synthesis. Autoradiography indicates that all cell types in the CAM are stimulated to divide, and it is proposed that fibrin degradation products are a pathological growth factor.

Allantois↗

Listeria monocytogenes endocarditis.

A fatal case of endocarditis due to Listeria monocytogenes is reported. Case reports of endocarditis due to this organism are rare but indicate a higher mortality than with many other causes of bacterial endocarditis. The size of the problem may be underestimated because the organism has a "diphtheroid' appearance and may be incorrectly dismissed as a contaminant.

Aged↗

Guanine nucleotide-sensitive, high affinity binding of carbachol to muscarinic cholinergic receptors of 1321N1 astrocytoma cells is insensitive to pertussis toxin.

Activation of muscarinic cholinergic receptors of 1321N1 human astrocytoma cells attenuates cyclic AMP accumulation. This effect results from an activation of phosphodiesterase with no direct inhibition of adenylate cyclase activity. In spite of this lack of coupling of muscarinic receptors to adenylate cyclase, guanine nucleotides reduce the apparent binding affinity of the agonist carbachol in a washed membrane preparation of 1321N1 cells. The order of potency for this effect is guanosine 5'-O-(3-thiotriphosphate) greater than 5'-guanylyl-imidodiphosphate = GTP = GDP; ATP has no effect. The occurrence of a Mr = 41,000 protein labeled in the presence of [32P]NAD and pertussis toxin as well as the occurrence of guanine nucleotide-mediated inhibition of forskolin-stimulated adenylate cyclase activity indicate that the functional inhibitory guanine nucleotide regulatory component of adenylate cyclase (Ni) is present in 1321N1 cells. Pertussis toxin pretreatment of NG108-15 neuroblastoma X glioma cells, which express muscarinic receptors that link through Ni to inhibit adenylate cyclase, blocked the GTP-sensitive, high affinity binding of carbachol. In contrast, pretreatment of 1321N1 cells with a concentration of pertussis toxin that blocked [32P]ADP ribosylation of the Mr = 41,000 substrate and GTP-mediated inhibition of forskolin-stimulated adenylate cyclase activity had no effect on GTP-sensitive high affinity binding of carbachol. These results suggest that muscarinic cholinergic receptors of 1321N1 cells couple to a guanine nucleotide regulatory protein that is distinct from Ni.

Adenylate Cyclase Toxin↗

Regulation of cyclic AMP metabolism by muscarinic cholinergic receptors.

The occurrence of muscarinic cholinergic receptor-mediated activation of phosphodiesterase in 1321N1 cells does not represent an isolated phenomenon, since a similar response to cholinergic stimuli is observed in thyroid slices (45) and WI-38 fibroblasts (1,42). Both muscarinic-receptor-mediated inhibition of adenylate cyclase and activation of phosphodiesterase occur in WI-38 fibroblasts (42). Work currently under way in our laboratory is directed toward determining if a guanine nucleotide regulatory protein is involved in the activation of phosphodiesterase in these cells and whether common or separate populations of muscarinic receptors are coupled to these two mechanisms of cyclic AMP metabolism. The analysis of acute hormonal regulation of phosphodiesterase in intact cells is sufficiently complicated to have previously discouraged investigators from pursuing this question in mammalian tissues. The 1321N1 cell line provides a simple model system in which at least one mechanism of hormonal regulation of phosphodiesterase can be examined. In light of the widespread occurrence of muscarinic-receptor-mediated effects on Ca2+ mobilization, it would not be surprising to find that this mechanism represents an important part of cholinergic action in both the peripheral and central nervous systems. Indeed, this system could provide an important regulatory link between Ca2+ -mediated and cyclic-AMP-mediated events in target cells. The potential importance of such a mechanism also need not be restricted to the muscarinic receptor system, since any neurotransmitter or hormone receptor system coupled to events involved in Ca2+ mobilization might produce phenomena similar to that observed for muscarinic receptors in 1321N1 cells. Our studies emphasize that two mechanisms for regulation of cyclic AMP accumulation by muscarinic cholinergic receptors exist. The data to date suggest that separate receptor subtypes are involved in these mechanisms of cholinergic regulation and provide another biochemical basis whereby the well-known interaction of Ca2+ with the cyclic AMP system can be effected. Thus, identification of the molecular events involved in the regulation of PI turnover and its consequences may be crucial in defining the basis of this aspect of cholinergic action. In addition, more extensive analyses of the phosphodiesterase system using cell-free preparations have the potential of providing clues to the molecular basis of this mechanism.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenosine Diphosphate Ribose↗

American visceral leishmaniasis (kala-azar).

Visceral leishmaniasis (kala-azar) is an important cause of morbidity and mortality in widely scattered areas of the world. To better characterize the South American form of the disease, the clinical and laboratory manifestations of 29 patients admitted to hospital (18 male and 11 female patients, mean age 4.9 years), were assessed in an endemic area in northeastern Brazil. Fever, weight loss, pronounced splenomegaly, hepatomegaly, anemia, thrombocytopenia, relative neutropenia, hypoalbuminemia and hypergammaglobulinemia were found in the majority of patients. Symptoms were often present for two or more months before diagnosis. Secondary infections complicated many cases; there were ten cases of pneumonia and half of the patients had one or more intestinal parasites. The average length of hospital stay was 27 days; all patients were treated with meglumine antimoniate (Glucantime). The mortality rate was 3%. American visceral leishmaniasis remains an important disease among children living in endemic areas.

Brazil↗

Kinetics of internalisation and degradation of surface-bound interferon in human lymphoblastoid cells.

The binding of iodinated human interferon-alpha 2 (IFN-alpha 2) was studied on the human T cell line, Molt 4. After its initial binding to cells, the IFN is transferred to a trypsin-resistant compartment before appearing in the medium as TCA-soluble material, while the total cell-associated IFN declines to one-third of its maximum value after 3 h incubation. The Na+/H+ ionophore monensin did not prevent intracellular accumulation of IFN but did completely inhibit its breakdown. We interpret our results as evidence for receptor-mediated internalisation of IFN followed by intracellular breakdown.

Cell Line↗

S1-hypersensitive sites in eukaryotic promoter regions.

We have examined by fine mapping the S1 nuclease-hypersensitivity of the 5' flanking regions of the human beta-globin and rat preproinsulin II genes and of the SV40 origin/enhancer region. In all cases S1-hypersensitive sites are located in known or presumed promoter/regulatory regions. Though a consensus DNA sequence is not evident, all of these sites reside in predominantly homopurine-homopyrimidine stretches. The alternate (non-B) DNA structure which is revealed by the enzymatic probe is a sequence-dependent feature of a short stretch of DNA, which is retained upon transplantation into a foreign environment. The alternate structure exhibits S1-nicking patterns uniquely different from those associated with the presence of Z-DNA.

Animals↗

Regulation of cyclic AMP accumulation by peptide hormone receptors in immunocytochemically defined astroglial cells.

Primary cultures of neonatal murine brain have been reported to express multiple receptors that regulate adenylate cyclase activity. Since for the most part these results were obtained with mixed cell cultures, it has been difficult to define receptor profiles for specific cell types. With this concern in mind a series of studies has been initiated designed to identify specific receptors present on highly purified, immunocytochemically defined astroglia derived from the cerebral cortices of neonatal rats. In this study the capacity of a variety of peptide hormones to regulate cyclic AMP metabolism in these cells was examined. Fibroblasts derived from the meninges represent a predictable source of contamination in primary CNS culture. Thus, to assign more clearly specific receptors to the astroglial cell population, receptor-mediated regulation of cyclic AMP accumulation was also examined in fibroblasts. Cyclic AMP accumulation in astroglia was stimulated by catecholamines (acting at beta 1-adrenergic receptors), prostaglandin E1, vasoactive intestinal polypeptide, alpha-melanocyte-stimulating hormone, and adrenocorticotropin. Bombesin, luteinizing hormone-releasing hormone, neurotensin, thyrotropin-releasing hormone, somatostatin, secretin, and vasopressin did not significantly increase cyclic AMP levels in these cultures. Catecholamines, acting at alpha 2-adrenergic receptors, and somatostatin inhibited agonist-stimulated cyclic AMP accumulation. In meningeal cell cultures catecholamines (acting at beta 2- and alpha 2-adrenergic receptors) and prostaglandin E1 regulated cyclic AMP levels. However, vasoactive intestinal peptide did not stimulate and somatostatin did not inhibit cyclic AMP accumulation in these cells.

1-Methyl-3-isobutylxanthine↗

Constrictive pericarditis as a complication of coronary artery bypass surgery.

Although it is now recognised as a rare complication of cardiac surgery, constrictive pericarditis was diagnosed in three patients after coronary artery bypass surgery. The time interval between cardiac surgery and the development of constrictive features varied from two to six weeks. All three patients presented with severe congestive heart failure. Haemodynamic findings were characteristic of constrictive pericarditis. Pericardial thickening detected by computed tomography in one patient was useful in establishing a definite diagnosis. One of the patients had a serous constrictive effusive pericarditis, and surgical pericardial drainage was needed. The other patient underwent pericardiectomy with preservation of the grafts. The diagnosis of constrictive pericarditis should be considered in patients presenting with unexplained right sided heart failure after cardiac surgery.

Aged↗

The relationship of American visceral leishmaniasis to ABO blood group type.

It has been hypothesized that the Leishmania use a system of camouflage or mimicry of human ABO blood group antigens to evade host defense mechanisms. In order to test this hypothesis, the distribution of ABO blood groups among healthy control donors and among patients with visceral leishmaniasis in northeastern Brazil was compared. No significant differences were found between patients with American visceral leishmaniasis and controls, indicating that ABO blood group type is not an important determinant in the development of clinically apparent visceral leishmaniasis in that area. The findings raise doubt about the validity of the original hypothesis.

ABO Blood-Group System↗

Muscarinic cholinergic receptors of two cell lines that regulate cyclic AMP metabolism by different molecular mechanisms.

The attenuation of cyclic AMP accumulation occurs by different mechanisms in 1321N1 astrocytoma cells and NG108-15 neuroblastoma X glioma cells. In 1321N1 cells, cholinergic agonists reduce cyclic AMP accumulation through a Ca2+-dependent activation of phosphodiesterase; in NG108-15 cells, muscarinic receptor-mediated effects on cyclic AMP metabolism occur through inhibition of adenylate cyclase. The goal of the current study was to determine whether different pharmacological specificities were expressed by the muscarinic receptor populations of these two cell lines. The affinity of muscarinic receptors for [3H]quinuclidinyl benzilate (6 pM), [3H]N-methylscopolamine (50 pM), and atropine (80 pM) was similar in membrane preparations from each cell line. The affinity of the antagonist, pirenzepine, which has been proposed to be a selective ligand for a muscarinic receptor subtype, was 3-fold higher in competition binding assays carried out with membranes of 1321N1 cells, than with NG108-15 cells. The Hill coefficients of pirenzepine competition curves were not significantly different from unity in both cell lines. This selectivity of pirenzepine was also apparent in studies of the competitive inhibition of carbachol-induced attenuation of cyclic AMP accumulation in intact cells. Differences in the relative affinities of agonists were observed in competition binding analyses carried out with membranes in the presence of GTP and absence of Mg2+. The Ki values of bethanechol and carbachol were 5- and 12-fold lower for receptors of NG108-15 cells than those of 1321N1 cells and the Ki of methacholine was 3.5-fold lower for 1321N1 cells than for NG108-15 cells. The affinities of oxotremorine and arecoline were similar between the two cell lines. These differences in agonist affinities between the two cell lines were much smaller in analyses of muscarinic receptor-mediated effects on cyclic AMP metabolism in intact cells. Taken together, these data suggest that muscarinic receptors of differing pharmacological specificities regulate cyclic AMP metabolism by different mechanisms in 1321N1 and NG108-15 cells.

Animals↗

Combination of immunocytochemistry and radioligand receptor assay to identify beta-adrenergic receptor subtypes on astroglia in vitro.

There is an increasing need to assess the distribution of receptors for neuroactive substances on specific neural cell types. This study describes the establishment of methodology that combines the quantification of beta-adrenergic receptor subtypes by radioligand binding assays with immunocytochemical analysis of the contribution of astroglia (identified by the presence of glial fibrillary acidic protein) and fibroblasts (identified by the presence of fibronectin) to cultures prepared from neonatal rat cerebral cortex. The effects of subtle changes in culture methodology on the cellular composition of cerebral cortical cultures and the distribution of beta-adrenergic receptor subtypes were examined. The data indicate that (1) a decrease in the density of the initial plating suspension, (2) an increase in the age of the animals, or (3) supplementation of the cortical cell suspension with meningeal fibroblasts all result in an increase in fibronectin staining and a decrease in glial fibrillary acidic protein antibody staining. This change in the cellular composition of the cortical cultures correlated with an increase in the number of beta 2-adrenergic receptors and a corresponding decrease in the number of beta 1-adrenergic receptors. These observations point out the care which must be exercised when preparing primary astroglial cultures of sufficient purity for large-scale biochemical and pharmacological studies.

Animals↗

Conformation of promoter DNA: fine mapping of S1-hypersensitive sites.

Larsen and Weintraub showed that a feature of active (but not inactive) chromatin is the appearance of S1-nuclease-hypersensitive sites in the 5'-flanking regions of expressing genes. Such sites are also present in supercoiled, but not relaxed, plasmids carrying these gene sequences. We have developed an in vitro approach to map, at the nucleotide level, S1-hypersensitive sites in artificially generated supercoiled circles of naked DNA. In the case of the adult chicken beta-globin gene, our results correlate extremely well with the coarser in vivo mapping. These sites reside in homopurine-homopyrimidine tracts, and, despite their S1 sensitivity, they do not seem to be single-stranded.

Animals↗

Cyclin: a protein specified by maternal mRNA in sea urchin eggs that is destroyed at each cleavage division.

Cleavage in embryos of the sea urchin Arbacia punctulata consists of eight very rapid divisions that require continual protein synthesis to sustain them. This synthesis is programmed by stored maternal mRNAs, which code for three or four particularly abundant proteins whose synthesis is barely if at all detectable in the unfertilized egg. One of these proteins is destroyed every time the cells divide. Eggs of the sea urchin Lytechinus pictus and oocytes of the surf clam Spisula solidissima also contain proteins that only start to be made after fertilization and are destroyed at certain points in the cell division cycle. We propose to call these proteins the cyclins.

Alkaloids↗

Acceleration of ventricular rate by fibrillation associated with the Wolff-Parkinson-White syndrome.

Amiodarone has proved to be a valuable drug in atrial fibrillation associated with the Wolff-Parkinson-White syndrome. When it was administered to a patient with this syndrome in atrial fibrillation, who had previously suffered an inferior myocardial infarction, the ventricular rate accelerated from 170 to 230 beats/minute.This unusual case emphasises the need for full electrophysiological assessment of patients with the Wolff-Parkinson-White syndrome for whom amiodarone treatment is being considered.

Aged↗