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Biomedical subjects

F Lund-Johansen

Publications and source records attributed to F Lund-Johansen.

29 records · Page 2Linked to original sources

CD53, a protein with four membrane-spanning domains, mediates signal transduction in human monocytes and B cells.

CD53 is a member of a novel family of molecules with four presumably membrane-spanning domains. The structure and functional characteristics of these molecules indicate that they may play an important role in transmembrane communication. We therefore investigated whether CD53 is involved in activation of human leukocytes. Cross-linking of cell-bound F(ab')2 fragments of two different anti-CD53 mAb with F(ab')2 anti-mouse Ig led to cytoplasmic calcium fluxes in B cells, monocytes, and granulocytes and activation of the monocyte oxidative burst. These responses were specific for CD53, as cross-linking of CD11a, CD18, CD35, CD43, CD44, CD45, or CDw50 did not induce leukocyte activation. Low concentrations of staurosporine (10 to 20 nM) completely inhibited PMA-mediated activation, but had no effect on CD53-mediated calcium fluxes and inhibited only partially CD53-mediated oxidative burst. This suggests that CD53-mediated signaling is largely independent of protein kinase C. CD53-mediated calcium fluxes were inhibited by high concentrations of staurosporine (300 to 500 nM) but not by ADP-ribosylating toxins, suggesting dependence on tyrosine kinases rather than GTP-binding proteins. The results indicate that CD53, like several other leukocyte Ag with four membrane-spanning regions, has the ability to mediate cell activation, and support the view that these molecules are involved in transmembrane communication.

Adenosine Diphosphate Ribose↗

Activation of human monocytes and granulocytes by monoclonal antibodies to glycosylphosphatidylinositol-anchored antigens.

The present study investigated possible receptor-like characteristics of glycosylphosphatidylinositol (GPI)-linked antigens on human monocytes and granulocytes by measuring cytoplasmic calcium fluxes and the oxidative burst in cells following cross-linking of GPI-linked antigens. Cross-linking of cell-bound anti-CD14, -CDw52 and -CD55 induced cytoplasmic calcium fluxes and oxidative bursts in unprimed human monocytes similar to those observed following Fc gamma R cross-linking. In granulocytes primed with 200 mM N-formyl-Met-Leu-Phe (FMLP), cross-linking of cell-bound anti-CD16, -CD24, -CD59 and -CD67 led to calcium fluxes and activation of the oxidative burst. The oxidative bursts mediated by GPI-linked antigens were stronger than those induced by 200 nM FMLP, even though FMLP induced a larger increase in cytoplasmic calcium concentration. The responses were likely to be independent of Fc gamma R interactions as F(ab')2 fragments of IgG or IgM antibodies were used in the experiments. Activating effects of monoclonal antibody to GPI-linked antigens were not observed in cells from patients with paroxysmal nocturnal hemoglobinuria, which are deficient in GPI-linked antigens. In addition, treatment with GPI-specific phospholipase C led to inhibition of cell activation through GPI-linked antigens but not through transmembrane receptors. Cross-linking of a number of non-GPI-linked antigens (CD11a, CD18, CD31, CD35, CD43, and CD45) neither induced calcium fluxes, nor activated the oxidative burst. The results indicate that most, if not all, GPI-linked surface glycoproteins on myeloid cells are capable of mediating cell activation and suggest that the GPI anchor is a structure facilitating signal transduction.

Adult↗

Differential surface expression of cell adhesion molecules during granulocyte maturation.

Individual steps of granulocyte maturation, such as lineage commitment, proliferation, maturation, and migration from the marrow to the peripheral blood, may be influenced by distinct interactions with the bone marrow stroma. To identify candidates of membrane components involved in maturational stage-specific interactions, we studied changes in the expression of cell adhesion molecules along the granulocyte maturational pathway. Three-color flow cytometric measurements were used to measure levels of cell adhesion molecules along this pathway. The alpha chains of VLA-4 (CD49d) and VLA-5, the integrin beta 1 chain (CD29), and CD31 (PECAM-1) were expressed in high density on all early myeloid cells but down-modulated during postproliferative maturation. CD44 and L-selectin were expressed on CD34+ myeloid progenitor cells and mature granulocytes but down-modulated during the intermediate stages of maturation. The granulocyte receptor for endothelial selectins, sLex, was specifically expressed by myeloid progenitor cells. sLex was down-modulated during the intermediate stages of granulocyte maturation but up-regulated again during terminal maturation. In contrast, CD67, a putative granulocyte adhesion molecule, was negative on progenitors, transiently up-regulated during the intermediate stages of maturation, and almost absent from the surface of mature granulocytes. These results show that each stage of granulocyte maturation is associated with the expression of a unique combination of cell adhesion molecules. L-selectin, CD44, and beta 1 integrins were regulated as previously described for immature lymphopoietic cells and may therefore play general roles in the compartmentalization and development of leukocytes. In contrast, sLex and CD67 were specifically expressed by myeloid cells and could be specifically important for compartmentalization of distinct phases of granulocyte maturation.

Antigens, CD↗

Activation of human phagocytes through carbohydrate antigens (CD15, sialyl-CD15, CDw17, and CDw65).

The leukocyte carbohydrate (CHO) Ag CD15, sialyl-CD15, and CDw65 have recently been found to function as ligands for CD62 and ELAM-1 cell adhesion molecules on platelets and endothelium, respectively. Cell adhesion ligands also may act as receptors capable of signal transduction. We therefore investigated the possibility that these CHO Ag and CDw17, a glycolipid Ag whose expression is regulated by leukocyte activation, may have receptor-like characteristics. The effects of antibody cross-linking of CHO Ag on phagocyte activation were measured by using flow cytometry and fluorescent indicators for cytoplasmic calcium ions, oxidative burst, and the granule-associated proteins CD11b and CD67. Cross-linking of CD15, sialyl-CD15, CDw65, or CDw17 induced a moderate release of calcium ions into the cytoplasm of granulocytes, a strong activation of oxidative burst, and a low up-regulation of CD11b and CD67 compared to the effects of treatment with 4 microM FMLP. The results suggest a role for CHO Ag in leukocyte signal transduction and support the view that these molecules are involved in phagocyte activation.

Antibodies, Monoclonal↗

Signal transduction in monocytes and granulocytes measured by multiparameter flow cytometry.

The novel calcium indicator fura red and the oxidative burst indicator dihydrorhodamine (both excited at 488 nm) were used in combination with multiparameter flow cytometry to allow simultaneous kinetic measurements of calcium fluxes and oxidative bursts in monocytes and granulocytes. Using this method it was possible to obtain direct evidence for the following cell type- and stimulus-specific differences in signal transduction pathways: 1) n-formyl-methionyl-leucyl-phenylalanine (FMLP)/cytochalasin B-induced oxidative burst is several-fold higher in granulocytes than in monocytes although the calcium fluxes have similar amplitudes in the two cell types; 2) stimulus-induced calcium fluxes in granulocytes are mainly due to release from intracellular stores, whereas monocytes mobilize calcium mainly by influx from the medium; 3) the FMLP/cytochalasin B-induced calcium flux in monocytes is less sensitive to the G-protein inhibitor pertussis toxin than the flux in granulocytes; 4) in contrast to FMLP/cytochalasin B, the protein kinase C activator phorbol myristate acetate (PMA) induces an oxidative burst that is not preceded by a cytoplasmic calcium flux; 5) the PMA-induced oxidative burst can be triggered in monocytes and granulocytes that are depleted of intracellular calcium ions, whereas that induced by FMLP/cytochalasin B can not; 6) the G-protein inhibitor pertussis toxin blocks an early event in the signal transduction pathway of FMLP/cytochalasin B, as shown by inhibition of both calcium fluxes and oxidative burst; and 7) 100 nM of the protein kinase inhibitor staurosporine blocks the FMLP/cytochalasin B-induced respiratory burst by interfering with a step downstream to cytoplasmic calcium fluxes, whereas only 10-20 nM is necessary to block PMA-induced oxidative burst.

Alkaloids↗

Negative selection of human monocytes using magnetic particles covered by anti-lymphocyte antibodies.

We have developed a standardized procedure for the isolation of monocytes from peripheral blood by negative selection using magnetic polymer particles coated with monoclonal antibodies against T and B lymphocytes. The average purity of the monocyte suspension was 85%, and monocyte recovery was 72% from Ficoll-Hypaque gradient separated mononuclear cells and 32% from whole blood. In a lucigenin enhanced chemiluminescence assay there was no significant difference between cells separated immunomagnetically and those separated on a gradient. Nor did electron microscopy show any significant difference in morphology between such monocytes. Negative selection using magnetic polymer particles is an efficient method for the separation of monocytes with intact morphology and function as measured by chemiluminescence.

Antibodies, Monoclonal↗

The IgG FcRII and the PI-linked IgG FcRIII trigger cytoplasmic calcium fluxes independently in human granulocytes.

The aim of this study was to investigate signal transduction through the two Fc receptors for IgG on human granulocytes. Using flow cytometry and the calcium indicator Fluo-3, we measured changes in leucocyte cytoplasmic calcium concentrations following cross-linking of cellular Fc receptors with specific antibodies. Two different approaches were used in order to study the two Fc receptors independently of each other. One was to avoid the presence of IgG Fc fragments, capable of binding to both types of receptors. The other was to use leucocytes from a patient with paroxysmal nocturnal haemoglobinuria (PNH) deficient in granulocyte FcRIII. In contrast to earlier reports, both approaches showed that the two types of IgG Fc receptors on granulocytes are capable of increasing cytoplasmic free calcium concentrations independently of each other. The results suggest that free cytoplasmic calcium ions are involved in the signal transduction pathway of both types of IgG Fc receptors on human granulocytes.

Adult↗

Signal transduction in human monocytes and granulocytes through the PI-linked antigen CD14.

A possible role for the PI-linked CD14 molecule in human monocyte and granulocyte signal mediation was investigated. Using flow cytometry and the fluorescent indicators Fluo-3 and dihydrorhodamine-123 it was shown that crosslinking of the CD14 molecule induces an increase in monocyte and granulocyte cytoplasmic calcium concentration and monocyte H2O2 production. These responses were found to be independent of IgG Fc receptors and suggest an intrinsic signal mediating capacity of the CD14 molecule.

Antigens, CD↗

Flow cytometric assay for the measurement of human bone marrow phenotype, function and cell cycle.

A flow cytometric assay for the measurement of human bone marrow and blood leukocyte antigen expression, phagocytosis, and proliferation is described. Subpopulations of leukocytes were identified by their light scatter characteristics, and the expression of a myeloid differentiation antigen (designated CDw65) determined following incubation with CDw65 specific fluorescein-isothiocyanate (FITC) conjugated monoclonal antibodies (VIM2). Incubation of leukocytes with ethidium monoazide (EMA) labeled Candida albicans followed by staining with FITC conjugated VIM2 allowed the combined determination of cellular CDw65 expression and phagocytic capacity. In addition, immunostained leukocytes were fixed, and their DNA labeled with propidium iodide (PI), before CDw65 expression was measured for cells in different phases of the cell cycle. The method allows evaluation of phenotypic and functional heterogeneity, as well as cell cycle parameters, within subpopulations of cells during hematopoietic differentiation.

Adult↗