Search PubMed⌕ Search

Biomedical subjects

G Dawson

Publications and source records attributed to G Dawson.

At least 181 records · Page 10Linked to original sources

Neurochemical characteristics of a novel dorsal root ganglion X neuroblastoma hybrid cell line, F-11.

We investigated the properties of the novel dorsal root ganglion (DRG) hybrid cell line F-11 to see how closely these cells resembled normal DRG cells. Under normal growth conditions, F-11 cells appeared to contain several short neurite-like processes. However, these cells could also be grown under conditions in which they showed a much more extensive neuronal morphology, exhibiting many long neurites. Several differentiated features of DRG cells were present on F-11 cells. These included the presence of delta-opioid receptors, receptors for prostaglandins and bradykinin, and dihydropyridine-sensitive calcium channels. F-11 cells also synthesized and released a substance P-like compound, as determined by immunoreactivity. Both the number of bradykinin receptors and the voltage-sensitive calcium influx increased on cell differentiation. Opioid agonists (delta-specificity) were found to decrease cyclic AMP levels in F-11 cells in a naloxone- and pertussis toxin-reversible fashion. Bradykinin stimulated the synthesis of inositol-1,4-bisphosphate and inositol-1,4,5-trisphosphate. Ca2+ channel agonists stimulated voltage-sensitive Ca2+ influx in a dose-dependent, stereospecific manner, whereas Ca2+ channel antagonists inhibited Ca2+ influx. F-11 cells should, therefore, prove useful as models for authentic DRG neurons.

Animals↗

Modulation of bradykinin-induced inositol trisphosphate release in a novel neuroblastoma x dorsal root ganglion sensory neuron cell line (F-11).

In the mouse neuroblastoma x dorsal root ganglion hybrid cell line F-11, bradykinin receptor stimulation induced the release of inositol-1,4,5-trisphosphate (IP3) and inositol-1,4-bisphosphate (IP2). Maximal stimulation of [2-3H]IP3 and [2-3H]IP2 release by bradykinin in the absence of LiCl occurred at 7 (or less) and 15 s, respectively, with average levels of 5.7-(IP3) and 3.4-(IP2) fold of control values. The EC50 for bradykinin was 33 +/- 5 nM. IP3 and IP2 concentrations returned to basal levels approximately 1 min after bradykinin addition. Bradykinin-induced IP3 release was blocked by several novel bradykinin analogues. In particular, [D-Arg0]-Hyp3-Thi5,8-[D-Phe7]-bradykinin [Hyp, hydroxyproline; Thi, beta-(2-thienyl)-L-alanine] blocked IP3 production in a dose-dependent fashion. Several of these analogues alone showed little or no agonist activity. The bradykinin receptor may be coupled to phospholipase C via a GTP-sensitive protein (Gi or Go), as preincubation for 18-20 h with pertussis toxin decreased IP3 concentrations by 45%. Bradykinin is also known to modulate the concentrations of other second messengers in neurons, increasing the concentrations of Ca2+, diacylglycerol (DG), and cyclic GMP and decreasing the concentration of cyclic AMP. These second messengers modulated bradykinin-dependent IP3 release to varying degrees. A23187, a Ca2+ ionophore, produced a 37% decrease in IP3 concentration. 12-O-Tetradecanoylphorbol-13-acetate, which mimics the effects of DG and activates protein kinase C, inhibited IP3 release by 80%. Dibutyryl cyclic GMP produced little or no inhibition of IP3. [D-Ala2,D-Leu5]Enkephalin (DADLE), an opioid peptide that decreases cyclic AMP concentrations, likewise had no effect.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Regulation of GM2 ganglioside metabolism in cultured cells.

GM2-ganglioside (II3NeuAcGgOse3Cer) is a minor component of adult nervous tissue, but is probably an oncofetal antigen. Its biological role is unknown, but several lines of evidence indicate its potential role in cell adhesion both in the retina and in oligodendrocytes. The biosynthesis of GM2-ganglioside appears to be tightly regulated, since it is a key intermediate in complex ganglioside synthesis. The specific GM3: hexosaminyl-transferase is activated under conditions which activate cyclic AMP-dependent protein kinase, and cell transformation with retroviruses inactivates it. Catabolism of GM2 requires the concerted action of three gene products (alpha-chain, beta-chain and activator protein in a thermolabile alpha beta 2 AP complex referred to as HexA). Defects in either three components results in the neuronal storage of GM2 ganglioside and the manifestations of Tay-Sachs Disease in children or motor neuron disease in adults.

Animals↗

Oligodendrocyte adhesion activates protein kinase C-mediated phosphorylation of myelin basic protein.

When isolated adult oligodendrocytes adhere to a substratum myelinogenesis occurs. Investigation of the mechanism by which this happens indicated that the oligodendrocyte-substratum interaction activated protein kinase C-dependent phosphorylation of myelin basic protein and promoted the synthesis of myelin basic protein. In addition, when agents that activate protein kinase C (second messenger diacylglycerol or a tumor-promoting phorbol ester) were added to nonattached oligodendrocytes, they mimicked the influence of the substratum by inducing phosphorylation of myelin basic protein; and reagents that increase cellular adenosine 3', 5'-monophosphate (cyclic AMP) inhibited phosphorylation of myelin basic protein. Thus, at least in vitro, the interaction between oligodendrocytes and the substratum may mediate myelinogenic events, and phosphorylation of myelin basic protein may be an early requirement in the sequence of steps that ultimately results in myelin formation.

1-Methyl-3-isobutylxanthine↗

Bradykinin induces a rapid release of inositol trisphosphate from a neuroblastoma hybrid cell line NCB-20 that is not antagonized by enkephalin.

In mouse neuroblastoma x Chinese hamster brain clonal cell line NCB-20, bradykinin (BK) receptor stimulation causes phosphoinositide hydrolysis and release of inositol phosphates. Maximum stimulation (4-fold) of [2-3H]inositol trisphosphate (IP3) release in the absence of Li+ from NCB-20's prelabelled for 20-24 hours with [2-3H]myo-inositol (15 microCi/confluent 60mm dish) occurred after 5-10 seconds of bradykinin exposure, with an EC50 of approximately 100nM. Inositol bisphosphate (IP2) and inositol monophosphate (IP1) also showed increases (2.9-fold and 1.5 fold, respectively), with peaks at 15-20 seconds and 50 seconds, respectively. Under these same conditions, D-Ala2-D-Leu5 enkephalin (DADLE) (10 microM), an opiate agonist with 2nM affinity, gave no stimulation of IP3 release. Furthermore, it did not block BK-initiated release, both when applied simultaneously with BK and when cells were preincubated with DADLE for 100 minutes to lower cyclic AMP levels. These results show that pain-inducing BK has a major acute stimulatory effect on receptor-phospholipase C-coupled IP3 release, the opioid peptide DADLE has no such effect and, DADLE does not block the IP3 release induced by BK.

Animals↗

Glycoprotein metabolism in normal and beta-mannosidase-deficient cultured goat skin fibroblasts.

Cultured skin fibroblasts established from goats affected with beta-mannosidosis, an inherited neurovisceral storage disorder, showed an absence of lysosomal beta-mannosidase activity and the corresponding accumulation of a trisaccharide (TS) with the structure Man beta (1----4)GlcNAc beta (1----4)GlcNAc (0.4 mumol/g) and lesser amounts (0.15 mumol/g) of a Man beta (1----4)GlcNAc disaccharide (DS). By using purified storage TS isolated from fibroblasts metabolically labelled with [3H]GlcN, no conversion of TS into DS could be demonstrated in homogenates of affected cells at either lysosomal pH (4.4) or cytosolic pH (6.1), or in the culture medium (pH 7.0) of affected cells. Both TS and DS were secreted into the culture medium by affected fibroblasts. When affected fibroblasts were treated with tunicamycin before labelling with [3H]GlcN, the accumulation of both labelled TS and DS was completely inhibited. Treatment of both affected and normal goat fibroblasts with swainsonine resulted in the inhibition of lysosomal alpha-mannosidase activity and in the accumulation of the same labelled oligosaccharides in both. The major storage pentasaccharide from both normal and affected swainsonine-treated fibroblasts was sensitive to digestion with alpha-mannosidase and endo-beta-N-acetylhexosaminidase D, suggesting a branched mannose structure and a chitobiose core. In the absence of evidence for the existence of unusual N-linked glycoprotein-associated chitotriose oligosaccharide structures in affected goat fibroblasts, it must be concluded that degradative pathways for N-linked oligosaccharides are similar in both normal and affected goat fibroblasts, and that these pathways differ from catabolic pathways in human fibroblasts.

Alkaloids↗

Differential regulation of multiple neuroreceptors in a somatic cell hybrid by inhibitors of glycoprotein processing.

Specific binding of [3H][D-Ala2,D-Leu5]enkephalin, [3H]ethylketocyclazocine, 5-[3H]hydroxytryptamine, and [3H]spiperone was examined in neuroblastoma-brain hybrid cell line NCB-20 following exposure to inhibitors of N-linked protein glycosylation (tunicamycin, TM) and oligosaccharide processing (swainsonine, SW). TM treatment reduced ligand binding at delta- and sigma-opiate receptors and neuroleptic binding sites (20 to 50% of control), with no discernible effect on the binding properties of 5HT1-serotonin receptors. In contrast, exposure to SW resulted in a three-fold increase in binding capacity of sigma-receptors, while decreasing receptor affinity for ligand. SW treatment did not alter ligand interactions with either sigma-receptors or neuroleptic binding sites, but did reduce specific binding of serotonin to 5HT1-receptors. The effects of TM and SW on distinct receptor subpopulations were further demonstrated by attenuation of opiate and serotonin-mediated regulation of intracellular cyclic AMP.

Alkaloids↗

Stroke in renal transplant recipients.

Cerebrovascular events are the most common neurological complications seen in renal transplant recipients. Cerebral infarction and transient ischemic attacks are the most common events and may occur years after transplantation. Recipients older than 40 years at the time of transplantation and those with diabetes mellitus are at greater risk. No instances of aneurysmal subarachnoid hemorrhage occurred among 31 patients with polycystic kidney disease who had undergone transplantation.

Adolescent↗

N-acetyl-beta-hexosaminidase beta locus defect and juvenile motor neuron disease: a case study.

A patient with partial deficiency of N-acetyl-beta-hexosaminidase (Hex) developed a progressive motor neuron syndrome beginning at age 7, characterized by dysarthria, muscle wasting, fasciculations, and pyramidal tract dysfunction. Minor clinical features have included tremor and late distal sensory abnormalities. Rectal biopsy at age 24 demonstrated membranous cytoplasmic bodies in submucosal ganglion cells. Biochemical evaluation revealed nearly absent Hex B activity in serum, leukocytes, and fibroblasts, with partial Hex A activity in serum and leukocytes, and low normal Hex A activity in fibroblasts. Motor neuron disease can be a presentation of a Hex beta locus defect, in addition to the previously recognized Hex alpha locus defects.

Adult↗

Sensitivity and specificity of an HIV antibody assay.

We have evaluated a new enzyme immunoassay (EIA) to measure IgG antibodies (Abs) to HIV in patients with AIDS, AIDS-related complex (ARC), AIDS contacts (AC), and low risk controls. Twenty-nine (94%) of 31 AIDS, 27 (96%) of 26 ARC, 12 (54%) of 22 AC, and 1 (2%) of 60 control patients were anti-HIV Ab positive by this assay. Positive results were confirmed by Western blot analysis. The EIA for anti-HIV evaluated in this study is sensitive and specific in identifying individuals who have been infected by this retrovirus.

Antibodies, Viral↗

Performance evaluation of the Abbott HTLV III EIA, a test for antibody to HTLV III in donor blood.

An enzyme immunoassay (EIA), designed to detect antibodies to human T-cell lymphotropic virus type III (HTLV III), was evaluated. The antibody test was found to be highly sensitive; serum from 221 of 223 (99.1%) patients with acquired immune deficiency syndrome (AIDS) was positive for antibodies to HTLV III. In addition, the antibody test was found to be highly specific; approximately 99.75% of 20,720 serum or plasma samples from blood donors were negative for antibody to HTLV III. In most cases, the Western Blot analysis agreed well with the EIA. Eighty-one of 82 (98.8%) EIA-positive samples from patients with AIDS were Western Blot positive. Of the EIA-positive blood donors, 21 of 36 (58%) were detected and confirmed by Western Blot analysis. A solid-phase competitive EIA also was evaluated as an alternate procedure. The preliminary results indicate that this immunoassay has a high degree of sensitivity and specificity and could serve as an alternate procedure to detect antibody to HTLV III.

Acquired Immunodeficiency Syndrome↗

Direct demonstration of the activation of UDP-N-acetylgalactosamine: [GM3]N-acetylgalactosaminyltransferase by cyclic AMP.

Treatment of NG108-15 cells in culture with the opiate peptide [D-Ala2,D-Leu5]enkephalin produces maximal inhibition of cyclic AMP synthesis in less than 15 min. The activity of [GM3]:N-acetylgalactosaminyltransferase is similarly inhibited, but maximal inhibition is not observed for at least 30 min following the addition of [D-Ala2,D-Leu5]enkephalin. Conversely, the phosphodiesterase inhibitor 3-isobutyl-1-methylxanthine rapidly potentiates the intracellular accumulation of cyclic AMP and, in a more gradual fashion, increases [GM3]:N-acetylgalactosaminyltransferase activity. The reductions in the activity of [GM3]:N-acetylgalactosaminyltransferase that occur following treatment of NG108-15 cells with indomethacin argues for a direct role of cyclic AMP in the observed changed in [GM3]:N-acetylgalactosaminyltransferase activity. By adding low concentrations of cyclic AMP (but not cyclic GMP) to microsomes derived from neonatal rat brain, we were able to demonstrate a dose-dependent phosphorylation of membrane protein and subsequent doubling of [GM3]:N-acetylgalactosaminyltransferase activity.

1-Methyl-3-isobutylxanthine↗

Relation of lead and social factors to IQ of low-SES children: a partial replication.

An independent replication of a previous study (Schroeder et al., 1985) of the effects of interactive social environmental factors on the relationship of lead and Stanford-Binet IQ was performed on 75 of 80 low-SES black children screened by county health departments in North Carolina. Children's mean blood lead (PbB) level was 20.8 micrograms/dl (range, 6.3 to 47.4). Multivariate regression analyses showed no significant interactions between PbB and age, sex, maternal IQ, Caldwell home environment score, or SES (Hollingshead Two-Factor Index). There was a highly significant negative relationship between both mean and maximum PbB levels with IQ, p less than .002; that is, IQ decreased linearly as PbB increased. The most accurate and precise regression model included lead, maternal IQ, home environment, and gender.

Child↗

Hemispheric specialization and the language abilities of autistic children.

The purpose of the present study was to investigate the relationship between patterns of hemispheric specialization for speech processing and language ability in autistic children. 17 male autistic children, 6-18 years of age, and 17 normal children, matched for chronological age and gender, were tested. Measures of hemispheric asymmetry were differences in the averaged cortical evoked responses taken from right and left hemisphere scalp locations to linguistic and nonlinguistic auditory stimuli. A comprehensive battery of language tests was administered to autistic subjects. Autistic children's direction of hemispheric asymmetry in response to linguistic stimuli differed significantly from that of normal subjects. The majority of autistic subjects showed reversed (right hemisphere dominant), but not necessarily reduced, patterns of hemispheric asymmetry. Autistic children with more advanced language abilities were more likely to exhibit a normal direction of hemispheric asymmetry. The possibility that a shift from right to left hemisphere processing of speech occurs as the autistic child acquires spoken language is discussed.

Adolescent↗

Molecular defect in processing alpha-fucosidase in fucosidosis.

In normal human skin fibroblasts, an enzymatically active 53,000-dalton form of alpha-fucosidase is processed to a 50,000-dalton mature form. Endoglycosidase-H treatment of [35S]methionine pulse-chase labelled material immunoprecipated with a polyclonal antibody to alpha-L-fucosidase (Andrews-Smith & Alhadeff, Biochim. Biophys. Acta 715: 90-96 (1982)) indicated the removal of a single N-linked oligosaccharide unit from both precursor and mature form of alpha-L-fucosidase. Tunicamycin pretreatment of normal fibroblasts indicated that no other N-linked oligosaccharide units were present. Studies on fibroblasts from patients with less than 5% of normal alpha-L-fucosidase activity (fucosidosis) showed 8 of 11 patients synthesized no detectable alpha-fucosidase protein whereas 2 synthesized normal amounts of 53,000 dalton precursor, none of the mature 50,000 dalton form was detectable and one contained small amounts of cross-reacting material. This is the first evidence for processing of alpha-L-fucosidase in cells and the first precise evidence of a molecular defect in fucosidosis.

Cells, Cultured↗

N-acetyl-beta-hexosaminidase B deficiency in cultured fibroblasts from a patient with progressive motor neuron disease.

A patient with a 20-year history of progressive motor neuron disease was previously found to have profoundly low levels of N-acetyl-beta-hexosaminidase (Hex) in serum and leukocytes; Hex activity in cultured skin fibroblasts was in the low normal range. By thermal inactivation and cellulose acetate electrophoresis, the residual activity appeared to be Hex A. In the present study, the residual activity in cultured skin fibroblasts was further characterized as Hex A by thermal inactivation at reduced temperatures and ion exchange chromatography; no evidence was obtained for a diffusible inhibitor of Hex activity. After labeling with [3H]leucine, immunoprecipitation with polyclonal antibody to Hex B, and SDS-polyacrylamide gel electrophoresis, both alpha and beta polypeptide chains were visualized, confirming the presence of Hex A. The results suggest that, in the patient's fibroblasts, a defect in beta-chain synthesis or processing precludes the self-association of beta-chains to form Hex B, but does not prevent the association of alpha- and beta-chains to form Hex A.

Cells, Cultured↗

Functional lysosomal hydrolase size as determined by radiation inactivation analysis.

Electron inactivation analysis with 16 MeV electrons was used to determine the functional target size of a number of commonly studied lysosomal hydrolases. Observed values ranged from a low of 62 000 +/- 4000 Da for beta-galactosidase to a high of 200 000 +/- 17 500 Da (mouse beta-glucuronidase). One group of lysosomal hydrolases (N-acetyl-beta-glucosaminidase, N-acetyl-beta-galactosaminidase, alpha-galactosidase, beta-mannosidase, beta-glucosidase, arylsulphatase A and sphingomyelinase) had target sizes in the range 100 000-120 000 Da, whereas alpha-glucosidase and alpha-fucosidase exist as complex multimers in the 150 000-160 000 Da range. Analysis of freeze-dried cell material showed little evidence of species (mouse versus human) variation in the functional size of most lysosomal hydrolases with the exception of beta-glucuronidase. Our findings suggest the potential usefulness of lysosomal hydrolases as endogenous marker enzymes in studies where the target size of proteins of unknown molecular mass is to be determined.

Animals↗