Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0027819 (neuroblastoma)
27,800 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Adenosine 3',5'-cyclic monophosphate (cyclic AMP) phsophodiesterase activity in mouse neuroblastoma cells in culture markedly increased during exponential growth and reached a maximal level at confluency; whereas guanosine 3'5'-cyclic monophosphate (cyclic GMP) phosphodiesterase activity only slightly but significantly increased under a similar experimental condition. The increase in cyclic AMP phosphodiesterase activity was blocked by both cycloheximide and dactinomycin, whereas the increase in cyclic GMP phosphodiesterase was blocked by only cycloheximide. When the confluent cells were replated at low density, the cyclic nucleotide phosphodiesterase activity decreased; however, when they were plated at high cell density which equaled confluency, the enzyme activity did not decrease. Unlike cyclic AMP phosphodiesterase activity, cyclic GMP phosphodiesterase activity did not change significantly in prostaglandin E1-treated cells, but decreased in cells treated with the inhibitor of phosphodiesterase. Like cyclic AMP phosphodiesterase activity, cyclic GMP phosphodiesterase activity also did not change in cells treated with serum-free medium, X-irradiation, sodium butyrate and 6-thioguanine.
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PMID:A further study on the regulation of cyclic nucleotide phosphodiesterase activity in neuroblastoma cells: effect of growth. 19 56

Mouse neuroblastoma cells grown in the presence of 1 mM N6,O2'-dibutyryl-cyclic AMP showed a 3-fold increase in cyclic AMP-binding proteins. The role of dibutyryl cyclic AMP in the introduction of cyclic AMP-binding proteins in these cells has been studied. Induced cyclic AMP-binding proteins were observed in the cytoplasm 15 h after dibutyryl cyclic AMP treatment. The increase in cyclic AMP-binding proteins required RNA and protein synthesis. It is suggested that the 15-h lag occurs at the post-transcriptional and/or translational level. Cyclic AMP-binding proteins are found in both soluble and particulate cell fractions. Dibutyryl cyclic AMP increased binding proteins in both fractions. The control and dibutyryl cyclic AMP-induced binding proteins showed similar affinity for cyclic AMP. The data indicate that dibutyryl cyclic AMP caused the following sequential events: a 12-fold increase in cyclic AMP levels; a 40% increase in phosphodiesterase activity; and a 300% (3-fold) increase in cyclic AMP-binding proteins. It is suggested that the differentiation of mouse neuroblastoma cells involves increased levels of cyclic AMP and cyclic AMP-binding proteins.
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PMID:Induction of cyclic AMP-binding proteins by dibutyryl cyclic AMP in mouse neuroblastoma cells. 20 71

In the dose range of 4.0--32.0 mg/kg s.c., caffeine produced most of the signs which are commonly seen after the administration of naloxone (0.05 mg/kg s.c.) to morphine-dependent monkeys. The signs designated as lying on side or abdomen, avoiding contact, vocalizing, crawling or rolling, restlessness or pacing, tremors, retching, vomiting, coughing, vocalizing when abdomen palpated, rigid abdomen and salivation were noted. A randomized and blind experimental design, which included vehicle and positive (naloxone) controls was used. The significance of the differences between total scores for the whole syndrome was tested by the Mann-Whitney U-test. In preliminary studies in naive monkeys, caffeine was found to elicit some withdrawal signs but the results were equivocal. Na benzoate also elicited some withdrawal signs in morphine-dependent monkeys at 32.0 mg/kg s.c., but few signs were seen in naive monkeys. Caffeine was found to be approximately 10X more active than Na benzoate in inhibiting cAMP phosphodiesterase activity in a neuroblastoma cell whole homogenate assay. These results are consistent with the observations of Collier and Francis that morphine abstinence in rodents is associated with increased brain levels of cAMP.
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PMID:Caffeine elicited withdrawal signs in morphine-dependent rhesus monkeys. 21 Oct 41

The endogenous phosphorylation of specific proteins was studied in subcellular fractions from proliferating and cAMP-induced differentiated neuroblastoma cells. Fractions containing nuclear, membrane-bound, and cytosolic proteins were incubated with [gamma-32P]ATP, in the presence and absence of added cyclic nucleotides. Phosphate incorporation into specific proteins was determined by slab-gel electrophoresis of sodium dodecyl sulfate-solubilized reaction products. Cytosol fractions from differentiated cells demonstrated a twofold increase in cAMP-dependent phosphorylation of a specific protein with apparent mol wt of 59,000 daltons and a comparable decrease in cAMP-independent phosphorylation of another protein (97,000). The nuclear fraction of differentiated cells showed an increase in the cAMP-independent phosphorylation of two nonhistone proteins (110,000 and 102,000). Membrane fractions from differentiated cells exhibited a differential decrease in endogenous phosphorylation of specific proteins. Selective alterations in the phosphorylation of specific proteins in various subcellular components may be important biochemical events associated with the increased levels of differentiated functions in neuroblastoma cells in culture.
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PMID:Selective changes in the phosphorylation of endogenous proteins in subcellular fractions from cyclic AMP-induced differentiated neuroblastoma cells. 21 47

Neuroblastoma x glioma in NG108-15 cells possess opiate, alpha-adrenergic, and muscarinic acetylcholine receptors, which mediate an inhibition of adenylate cyclase. Growth of cells for 12--48 hours in the presence of a receptor--activator gradually results in a compensatory increase in adenylate cyclase activity. Withdrawal of the receptor ligand then results in relatively long-lived increases in adenylate cyclase activity and intracellular cAMP levels. Thus cells grown in the presence of morphine, norepinephrine, or acetylcholine seem to become dependent on the compound to maintain normal cAMP levels.
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PMID:Studies on synapse formation and opiate dependence. 21 60

The melanotic neuroectodermal tumor of infancy is an uncommon neoplasm typically of early childhood which has a predilection for the head and neck region, particularly the maxilla. Except for one previous example in the literature, this tumor has consistently behaved in a benign fashion. This study documents the clinical course and pathologic findings of a tumor which began in the maxilla of a 4-month-old boy, followed by a local recurrence, metastasis to a cervical lymph node and finally, widespread dissemination and death at 18 months, 24 months and 38 months, respectively. The tumor was initially composed of nests consisting of melanin-containing cells and small dark cells. An elevated vanillylmandelic acid level was recorded during the course of the disease. At autopsy, the tumor in lymph nodes, liver, bone and soft tissues had a monotonous pattern of small dark cells similar to a conventional neuroblastoma. Previous ultrastructural studies indicate that the melanotic neuroectodermal tumor of infancy is composed of melanocytes and neuroblast-like cells. Our case provided the unique opportunity to examine in sequence the ultrastructural and in vitro characteristics of a recurring and eventually metastasizing melanotic neuroectodermal tumor. Although the neuroblast-like cells were initially difficult to identify by electron microscopy, a melanin-producing cell line and a separate nonpigmented cell line were successfully isolated from various tumor explants. Various stages of melanosome development were identified in the pigmented cells from the local recurrences and in vitro. Dibutyryl cAMP accentuated the formation of pigment and dendritic development in the melanocytes and dendrites only in the small nonpigmented cells. Electron dense granules were observed in the cultured smaller cells and also in the lymph node and soft tissue metastases. Tyrosine hydroxylase activity was demonstrated in the neuroblast-like cells. In the final biopsy and autopsy material, only the neuroblast-like cells remained and the tumor resembled a conventional neuroblastoma.
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PMID:Malignant melanotic neuroectodermal tumor of infancy: a clinical, pathologic, ultrastructural and tissue culture study. 22 Oct 89

Phosphorus nuclear magnetic resonance is used to study changes in the levels of the major phosphate-containing intermediary metabolites concomitant with induced cellular differentiation in the N-18 and C-46 neuroblastoma clonal lines. The study reveals differences between the 31P-NMR profiles of the two clonal lines and also striking differences attendant to dibutyryl cAMP-mediated morphological differentiation in the N-18 clone. Phosphorus-31 NMR would appear to provide a new technique with which to study genetic differentiation.
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PMID:Phosphorus 31 NMR of neuroblastoma clonal lines. Effect of cell confluency state and dibutyryl cyclic AMP. 23 46

Induction of neurite formation in neuroblastoma cells by dibutyryl cyclic 3':5'-AMP (db-cAMP) or prostaglandin EI (PGE1) was enhanced after enucleation. Cells selected for resistance to db-cAMP were induced to form neurites by db-cAMP or PGE1 only after, but not before enucleation. Inhibition of protein synthesis inhibited neurite induction in nucleated, but not in enucleated cells, and enucleated cells were less sensitive to inhibition of neurite formation by concanavalin A (ConA). Colchicine, vinblastine and cytochalasin B (CB), compounds that interfere with the assembly of microtubules and microfilaments, inhibited induction in both types of cells. It is suggested that enucleation removes a nuclear inhibitor of neurite induction by db-cAMP and PGE1, and that neurite induction in nucleated cells requires that cAMP activates the assembly of microtubules and microfilaments and inactivates the nuclear inhibitor.
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PMID:Nuclear control of neurite induction in neuroblastoma cells. 23 69

The inhibitors of cyclic AMP phosphodiesterase (papaverine and 4-(-3-butoxy-4-methoxybenzyl)-2-imidazolidinone), serum-free medium, and x irradiation caused cell death and neurite formation in human neuroblastoma cells in culture (IMR-32), whereas theophylline was ineffective. Prostaglandin (PG) E1, N6O'2-dibutyryl adenosine 3',5'-cyclic monophosphate (dbcAMP) induced neurites without causing cell lethality. Inhibitors of phosphodiesterase and PGE1 increased the intracellular level of cAMP by about 2- and 4-fold respectively, whereas serum-free medium and x irradiation did not. The combination of PGE1 and phosphodiesterase inhibitor was more effective in causing morphological differentiation and in increasing the cAMP level than the individual agent. Sodium butyrate induced cell death and neurites, probably in part by increasing the cAMP level. cAMP, guanosine 3',5'-cyclic monophosphate, and adenosine had no detectable effect on the growth or morphology of neuroblastoma cells in culture. Adenosine 5'-monophosphate produced cell death without causing neurite formation. DbcAMP, and to a much lesser degree, sodium butyrate increased the tyrosine hydroxylase activity.
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PMID:Role of cyclic AMP in differentiation of human neuroblastoma cells in culture. 24 May 3

Catecholamines induce bone resorption and hypercalcaemia by the beta-adrenergic effect in bone and hypercalciuria by the alpha adrenergic effect in kidney. The interplay between the alpha-adrenergic hypercalciuria and beta-adrenergic hypercalcaemia explains why in some, but not all, phaeochromocytomas hypercalcaemia occurs. The hypothesis predicts hypercalciuria in both phaeochromocytoma and neuroblastoma. In hyperthyroidism, negative calcium balance and hypercalcaemia cannot be attributed to the direct effect of thyroid hormones on the bone but can be explained by augmentation of the catecholamine effects on bone and kidney by thyroid hormones. The hypothesis offers a solution for an apparent paradox in hyperthyroidism of increased urinary cAMP while nephrogenous cAMP is decreased. It also explains why propranolol corrects hypercalcaemia without influencing renal calcium loss.
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PMID:Catecholamines cause the hypercalciuria and hypercalcaemia in phaeochromocytoma and in hyperthyroidism. 33 Oct 32


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