Biomedical subjects
C W Parker
Publications and source records attributed to C W Parker.
Environmental stress and immunity: possible implications for IgE-mediated allergy.
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Do rhizobia produce cytokinins?
Two Rhizobium strains were cultured on a defined medium; one was a normal strain of the cowpea group (ANU240) while the other (IC3342) was an unusual but related strain of the same group which induced abnormal shoot development, including proliferation of lateral buds, in nodulated plants. Culture supernatants were examined for the presence of cytokinins by mass spectrometry using deuterium-labelled internal standards and by radioimmunoassay. In culture supernatants of both strains a range of cytokinins was detected and quantified, but N6-(2-isopentenyl)adenine (iP) and zeatin (Z) were the dominant cytokinins. The levels of Z and iP in supernatants of strain IC3342 were 26 and 8 times, respectively, those in supernatants of the strain ANU240. These results appear to provide the first unambiguous identifications of cytokinins in Rhizobium culture media. The cytokinin level in xylem sap of pigeonpea plants inoculated with strain IC3342 was markedly greater than that in plants inoculated with a normal nodulating strain. The abnormal proliferation of lateral buds in the former plants is probably linked to the elevation of cytokinin level in xylem sap caused by strain IC3342.
Preliminary characterization of phosphotyrosine phosphatase activities in human peripheral blood lymphocytes: identification of CD45 as a phosphotyrosine phosphatase.
A preliminary characterization of the protein phosphotyrosine phosphatase (PTPase) activity in human peripheral blood lymphocytes (PBL) has been made using two tyrosine-containing peptides and the epidermal growth factor receptor from A-431 cells as substrates. High PTPase activity with a pH optimum near 7.4 was observed in both the membrane and the cytosolic fractions. At least three distinct fractions with PTPase activity were separated on DEAE cellulose columns, indicating that the enzyme is heterogeneous. Vanadate, molybdate, and salts of zinc, copper, and mercury were all effective enzyme inhibitors, although the inhibition was generally incomplete and showed some variation with the enzyme preparation. The difficulty in completely inhibiting PTPase activity in lymphocytes may help explain the variation between laboratories in studies of tyrosine phosphorylation in these cells. Studies with highly purified T lymphocytes obtained by filtration of PBL through nylon wool columns indicated that the activity is present in T cells. Absorption with agarose containing anti-HLe-1, a mouse monoclonal IgG1 antibody specific for the leukocyte-specific surface protein T-200 (CD45), removed up to 40% of the PTPase activity. Enzyme activity was recovered on the immunoadsorbent after extensive washing, confirming that the enzyme was being bound to the beads. Immunoabsorbents containing other mouse IgG1 antibodies failed to bind PTPase activity, indicating that the binding to beads with anti-HLe-1 antibody is specific. Further characterization of the CD45 and PTPase activities in lymphocytes may provide a better understanding of the role of protein tyrosine phosphorylation in the regulation of proliferation and differentiation in these cells.
Radiolabeling of proteins.
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Changes in polyphosphoinositide metabolism during mediator release from stimulated rat mast cells.
The metabolism of the polyphosphoinositides, diphosphoinositide (DPI) and triphosphoinositide (TPI), was studied during mediator release from rat mast cells. Serosal mast cells were purified by density gradient centrifugation and prelabeled with 32PO4. Incorporation of 32PO4 into DPI and TPI was determined by thin-layer chromatography on oxalic acid impregnated silica gel plates. 32PO4 incorporation into DPI and TPI was increased by Concanavalin A (ConA) or compound 48/80. The concentration of ConA causing a half-maximal increase in DPI labeling was less than that required for a comparable change in histamine release. The increases in DPI labeling and histamine release in response to ConA were enhanced by phosphatidylserine. The addition of alpha-methylmannoside to mast cells after challenge with ConA rapidly halted DPI and TPI labeling. The results of these studies indicate that changes in the metabolism of polyphosphoinositides may be an intrinsic part of the biochemical mechanisms that control mediator release from mast cells.
Prostaglandins and leukotrienes.
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Secreted proteins of human monocytes. Analysis by two-dimensional gel electrophoresis and effect of lipopolysaccharide.
A monocyte-rich preparation from the adherent cell fraction of human peripheral blood leukocytes was incubated for 1-8 h with [35S]methionine or [3H]leucine in the presence and absence of bacterial lipopolysaccharide (LPS). The macromolecules released into the supernatant were analysed by two-dimensional gel electrophoresis and radioautography. A complex labelling pattern involving at least 20 easily demonstrable and apparently distinct products with a broad range of molecular masses and isoelectric points was observed. LPS or LPS plus actinomycin in combination markedly stimulated the labelling and release of at least twelve different macromolecules ranging in apparent Mr from 12,000 to 46,000. Studies with monocytes that had been additionally purified by centrifugal elutriation and with the monocyte-like human cell line U-937 indicated that monocytes rather than contaminating cells were the source of these products. The majority of the secreted products were unique and did not cross-react with antibodies to interleukin 1 or tumour necrosis factor. The high resolving capacity of two-dimensional gel electrophoresis may be useful to define further the diverse biological activities and potential monokines released from monocytes at various stages of their differentiation and activation.
Effect of serotonin (5-HT) and other monoamines on murine macrophages: modulation of interferon-gamma induced phagocytosis.
We have previously shown that serotonin (5-HT) suppresses interferon-gamma (IFN-gamma)-induced Ia expression. In the present report, we show that 5-HT as well as other monoamines, histamine and dopamine, modulate IFN-gamma-induced phagocytosis in murine bone marrow macrophages. The effect of 5-HT on IFN-gamma-induced phagocytosis varied according to the concentration of IFN-gamma to which the macrophages were exposed. At low concentrations of IFN-gamma, 5-HT augmented phagocytosis, whereas at high concentrations of IFN-gamma, 5-HT suppressed phagocytosis. At both low and high IFN-gamma concentrations the response to 5-HT was dose-related and occurred at physiologic concentrations; the half-maximal effect was 6 X 10(-7) M and 3 X 10(-7) M for low and high IFN-gamma concentrations, respectively. Both histamine and dopamine also augmented IFN-gamma (1 U/ml) induced phagocytosis, at half-maximal augmenting concentrations of 7 X 10(-8) M and 4 X 10(-7) M, respectively. The 5-HT effects were blocked by the 5-HT antagonists spiperone, ketanserin, LY53857, mCPP, and PAPP, but not by the histamine antagonists pyrilamine, chlorpheniramine, or cimetidine. Histamine augmentation of IFN-gamma-induced phagocytosis was blocked by the H1 antagonists pyrilamine and chlorpheniramine, but not by the H2 antagonist cimetidine. The dopamine effect was blocked by spiperone and pyrilamine, both of which have been shown to block dopaminergic effects in other systems. This data provides functional evidence that at least part of the modulation of IFN-gamma-induced phagocytosis by 5-HT occurs through a 5-HT receptor-mediated mechanism, and 5-HT, dopamine, and histamine modulate IFN-gamma-induced phagocytosis independently through their respective receptors.
Protein phosphorylation in rat mast cell granules. Cyclic AMP dependent phosphorylation of a 44K protein associated with broken granules.
When rat mast cells are prelabeled with 32PO4 and exposed to non-immunologic or immunologic stimuli under conditions that lead to mediator release from granules, they show rapid increases in labeling of a number of high molecular weight proteins. To determine if granule membrane proteins are subject to protein phosphorylation and perhaps participate in this response, granules with intact or broken membranes were isolated from sonicated, purified rat serosal mast cells on a Percoll gradient. When the granules with broken membranes were incubated with [gamma-32P]ATP and Mg2+ in the absence of exogenous protein kinases, one major radioactive band was recovered in the 44K area after electrophoresis in sodium dodecyl sulfate/polyacrylamide gels. The phosphorylation reaction with ATP required Mg2+, was enhanced by 0.05 to 0.5 microM cyclic AMP, and was inhibited by Ca2+ (0.5 mM and higher). The initial reaction was rapid, and the maximal response was seen at 30 degrees. The 44K band was absent in granules with intact membranes incubated with [gamma-32P]ATP but present when intact granules were lysed with distilled water before adding the [gamma-32P]ATP. These observations indicate that granules have an endogenous phosphorylating system and that the phosphorylation response is on the inner surface of the granule membranes. The possibility was not excluded that a portion of the phosphorylating activity was derived from the cytosol and became firmly associated with broken granules when the intact cells were sonicated. Analysis for possible phosphorylated amino acids in the 44K band after acid hydrolysis showed both phosphoserine and phosphothreonine, indicating that the radioactivity was in a phosphorylated protein or glycoprotein. The 44K phosphorylated protein was made up of several components ranging in pI from approximately 7.6 to 6.6. While the identity of the phosphorylated 44K polypeptide is uncertain, one important possibility is that it is part of an autophosphorylated cAMP dependent protein kinase. The cyclic AMP dependent phosphorylating activity present in granules provides a mechanism by which the granules might respond rapidly to cyclic AMP during mediator release.
Radioiodination of proteins by reductive alkylation.
The use of the aliphatic aldehyde, para-hydroxyphenylacetaldehyde as the reactive moiety in the radioiodination of proteins by reductive alkylation is described. The para-hydroxyphenyl group is radiolabeled with 125I, reacted through its aliphatic aldehyde group with primary amino groups on proteins to form a reversible Schiff base linkage which can then be stabilized with the mild reducing agent NaCNBH3. The introduction of the methylene group between the benzene ring and the aldehyde group increases its reactivity with protein amino groups permitting efficient labeling at low aldehyde concentrations. Using this method, radioiodinated proteins with high specific activity can be produced. The reductive alkylation procedure is advantageous in that the labeling conditions are mild, the reaction is specific for lysyl residues, and the modification of the epsilon-ammonium group of lysine results in ionizable secondary amino groups avoiding major changes in protein charge.
Biochemical changes taking place in mitogen-treated lymphocytes.
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Lipid mediators produced through the lipoxygenase pathway.
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Various roles of lipids and lipid metabolizing enzymes in inflammatory processes and their possible implications for therapy.
Even though therapeutic approaches using specific receptor antagonists are attractive as a means of controlling allergic and nonallergic inflammation in the lung, rapidly increasing evidence that allergic mediators are involved in the overall control of immune responsiveness raises concerns as to possible unexpected effects of such therapy. Agents directed toward specific enzymes involved either in the release or metabolism of arachidonic acid raise additional possibilities in regard to possible interference with normal intracellular signaling processes where lipids, including some of arachidonatic metabolites themselves, appear to participate at a number of different levels. Studies with anti-inflammatory agents therefore need to be interpreted cautiously with due cognizance of the possible complexities of agent action, of possible interactions between mediators, and of longer term changes in immune function and resistance that may be being initiated.
Effect of serotonin on murine macrophages: suppression of Ia expression by serotonin and its reversal by 5-HT2 serotonergic receptor antagonists.
Serotonin (5-HT), a mediator released from platelets at sites of inflammation, suppressed IFN-gamma-induced Ia expression in mouse bone marrow macrophages maintained in vitro. (Mean percent suppression = 63.9% +/- 9.2, n = 40.) This suppression was not toxic or endotoxin-related, was concentration-dependent, and occurred at the physiologic concentrations of 5-HT present at inflammatory sites. The concentration of 5-HT producing the half-maximal effect was 2.5 to 5.5 X 10(-8) M. Related compounds, dopamine, histamine, and tryptamine, were much less potent in suppressing IFN-gamma-induced Ia, with maximally suppressing concentrations more than 100-fold higher than the maximally suppressing 5-HT concentration. L-5-hydroxytryptophan (5-HTP), the most potent analog tested, was 10-fold less potent than 5-HT in suppressing Ia expression. The concentration of 5-HTP producing the half-maximal effect = 4 X 10(-7) M. 5-HT suppression of IFN-gamma-induced Ia expression was antagonized by the 5-HT2 type receptor antagonists spiperone, ketanserin, and LY53857. Concentrations of these agents resulting in 50% inhibition of the serotonin effect were 1.5 X 10(-8) M, 7.5 X 10(-8) M, and 4.5 X 10(-12) M, respectively. 5-HT was most effective in suppressing IFN-gamma-induced Ia when added early in culture simultaneously with IFN-gamma. These data provide functional evidence that 5-HT suppression of IFN-gamma-induced Ia expression is mediated through a 5-HT receptor with some characteristics of the 5-HT2 type. 5-HT may play a physiologic role at sites of inflammation as a modulator of the effects of IFN-gamma on macrophage function.
The glycoprotein nature and biosynthetic relationship of two molecularly distinct species of primate T-cell growth factor.
T-cell growth factor (TCGF) produced by the MLA 144 gibbon ape T-lymphosarcoma cell line was biosynthetically radiolabelled with [35S]methionine and isolated by reverse-phase h.p.l.c. [Milstone & Parker (1983) Biochem. Biophys. Res. Commun. 115, 762-768]. Two predominant species, of Mr 16300 and pI 6.8 and of Mr 14300 and pI 7.5, were resolved. Analysis of TCGF labelled with a mixture of [3H]glucosamine and [14C]methionine demonstrated that only the 16300-Mr protein contained detectable carbohydrate label, approx. 50% of which was present in sialic acid residues, which were largely responsible for the charge difference observed between the two forms of TCGF. The 14300-Mr protein was labelled within 5 min after addition of [35S]methionine and was the predominant intracellular form of TCGF, whereas the 16300-Mr protein was not detected until 25 min later and was the predominant extracellular form of TCGF. Pulse-chase experiments were consistent with the hypothesis that the 14300-Mr protein is an intracellular precursor that is glycosylated to form the 16300-Mr protein, which is then preferentially secreted from the cell.