Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Complement C5a”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,279 records · Page 71Linked to original sources

Staurosporine inhibits the respiratory burst and induces exocytosis in human neutrophils.

The protein kinase C inhibitor staurosporine influenced in different ways the functions of human neutrophils. Staurosporine prevented the enhanced protein phosphorylation in phorbol ester- and N-formylmethyionyl-leucylphenylalanine (fMLP)-stimulated cells, and was a powerful inhibitor of the respiratory burst induced by phorbol myristate acetate [IC50 (concentration causing 50% inhibition) 17 nM] and the chemotactic peptides fMLP and C5a (IC50 24 nM). It did not alter, however, the superoxide production by cell-free preparations of NADPH oxidase. Staurosporine had no effect on agonist-dependent changes in cytosolic free Ca2+ and exocytosis of specific and azurophil granules, and showed only a slight inhibition of the release of vitamin B12-binding protein induced by phorbol myristate acetate (decreased by 40% at 200 nM). On the other hand, staurosporine also exhibited neutrophil-activating properties: it induced the release of gelatinase (from secretory vesicles) and vitamin-B12-binding protein (from specific granules). These effects were protracted, concentration-dependent, insensitive to Ca2+ depletion, and strongly enhanced by cytochalasin B. Staurosporine, however, did not induce the release of beta-glucuronidase or elastase (from azurophil granules). Except for the sensitivity to cytochalasin B, these properties suggest a similarity between the exocytosis-inducing actions of staurosporine and PMA. The results obtained with staurosporine provide further evidence that different signal-transduction processes are involved in neutrophil activation, and suggest that protein phosphorylation is required for the induction of the respiratory burst, but not for exocytosis.

Alkaloids↗

Myosin light chain phosphorylation in neutrophil-stimulated coronary microvascular leakage.

Neutrophil-induced coronary microvascular leakage represents an important pathophysiological consequence of ischemic and inflammatory heart diseases. The precise mechanism by which neutrophils regulate endothelial barrier function remains to be established. The aim of this study was to examine the microvascular endothelial response to neutrophil activation with a focus on myosin light chain kinase (MLCK)-mediated myosin light chain (MLC) phosphorylation, a regulatory process that controls cell contraction. The apparent permeability coefficient of albumin (Pa) was measured in intact isolated porcine coronary venules. Incubation of the vessels with C5a-activated neutrophils induced a time- and concentration-dependent increase in Pa. The hyperpermeability response was significantly attenuated during inhibition of endothelial MLC phosphorylation with the selective MLCK inhibitor ML-7 and transfection of a specific MLCK-inhibiting peptide. In contrast, transfection of constitutively active MLCK elevated Pa, which was abolished by ML-7. In addition to the vessel study, albumin transendothelial flux was measured in cultured bovine coronary venular endothelial monolayers, which displayed a hyperpermeability response to neutrophils and MLCK in a pattern similar to that in venules. Importantly, neutrophil stimulation caused MLC phosphorylation in endothelial cells in a time course closely correlated with that of the hyperpermeability response. Consistently, the MLCK inhibitors abolished neutrophil-induced MLC phosphorylation. Furthermore, immunohistochemical observation of neutrophil-stimulated endothelial cells revealed an increased staining for phosphorylated MLC in association with contractile stress fiber formation and intercellular gap development. Taken together, the results suggest that endothelial MLCK activation and MLC phosphorylation play an important role in mediating endothelial barrier dysfunction during neutrophil activation.

Animals↗

In vitro migration of human large granular lymphocytes.

Large granular lymphocyte (LGL)-enriched peripheral blood mononuclear cells were prepared on discontinuous gradients of Percoll. Migration into nitrocellulose filters was studied in a 2-hr assay with the use of modified Boyden chambers. LGL migrated into filters in response to casein or C5a. Migration depended on the presence of a concentration gradient of chemoattractant between the lower and upper compartment of the chambers. Percoll-purified high density small lymphocytes had little or no migratory capacity under these conditions, requiring a longer incubation time (4 hr) for consistent migration. Migratory capacity in response to stimuli correlated with the frequency of LGL in the various fractions of Percoll gradients. Fractionation of LGL-enriched Percoll preparations with monoclonal antibodies and immunoadsorbent columns or a cell sorter revealed that cells with migratory capacity in response to stimuli were B73.1+ and OKT3-, thus confirming that migrating cells were LGL. LGL preincubated with interferon (IFN) showed enhanced spontaneous motility but no increased responsiveness to chemoattractants. IFN did not modify the migratory capacity of small lymphocytes. The prompt migration of LGL in response to stimuli is consistent with the hypothesis that these cells may serve as one of the first easily mobilizable lines of resistance against infectious agents and tumors. The migration assay described here may offer a better insight into the functions and regulation of LGL.

Caseins↗

Adhesion molecule mechanisms mediating monocyte migration through synovial fibroblast and endothelium barriers: role for CD11/CD18, very late antigen-4 (CD49d/CD29), very late antigen-5 (CD49e/CD29), and vascular cell adhesion molecule-1 (CD106).

Monocytes migrate through vascular endothelium, and then in connective tissue. As a model of this process, we investigated adhesion molecules involved in monocyte migration through HUVEC and a barrier of human synovial fibroblasts (HSF). Minimal spontaneous monocyte migration (6-7%) occurred through either cell barrier, but this increased markedly (27-35% of added monocytes) when a C5a chemotactic gradient was present. Migration across unstimulated HUVEC was partially inhibited (40%) by mAb to CD18 (beta2 integrin) and completely blocked by anti-CD18 plus anti-alpha4 (CD49d; very late Ag-4 (VLA-4)) mAbs. In contrast, migration across HSF induced by C5a or monocyte chemoattractant protein-1 was not inhibited by mAb to CD18 and was only partially inhibited (33%) in combination with anti-alpha4 mAb. The CD18- and VLA-4-independent migration across HSF was completely inhibited by mAb to alpha5 of VLA-5. The inhibitory effect of mAbs to VLA-4 and VLA-5 was on the monocyte and required blockade of CD11/CD18 to be observed. In contrast to HSF, no role for VLA-5 in monocyte transendothelial migration was detected. Both HSF and IL-1-stimulated HUVEC expressed vascular cell adhesion molecule-1 (VCAM-1). However, VLA-4-mediated monocyte migration across HSF was only partially dependent on VCAM-1, in contrast to transendothelial migration, which was completely blocked by anti-VCAM-1 mAbs. In conclusion, unlike transendothelial migration, for which VLA-4 is the alternative mechanism to CD11/CD18 on monocytes, both VLA-4 and VLA-5 can mediate monocyte migration through fibroblast barriers. In addition to VCAM-1, other ligand(s) on HSF are also involved in the VLA-4-mediated migration.

Antibodies, Monoclonal↗

Differences in the expression of Ly-6C on neutrophils and monocytes following PI-PLC hydrolysis and cellular activation.

All leukocytes, except some subsets of lymphocytes, express Ly-6C. However, virtually all of the regulation studies of this antigen have been done on lymphocytes only. Recently we showed that monocytes and neutrophils express 10-100 times the level of Ly-6C expressed by lymphoid cells. We compared Ly-6C expression on neutrophils and monocytes following short-term cell activation induced by C5a or phorbol esters or treatment with phosphatidylinositol-specific phospholipase-C (PI-PLC). Activation of the neutrophil led to a rapid ( < 30 min) increase in surface expression of Ly-6C, but similar treatment had little effect on or slightly diminished the expression of the monocyte molecule. Prolonged treatment of the monocyte with IFN-gamma (24 h) led to increased Ly-6C expression. Low doses of TNF-alpha inhibited the up-regulation of Ly-6C induced by IFN-gamma. Similar to what has been described for the lymphocyte, the monocyte form of Ly-6C was hydrolyzed by PI-PLC treatment within 30 min. In contrast, the neutrophil molecule was unaffected by PI-PLC for up to 2 h. SDS-PAGE Western blot analysis demonstrated that the neutrophil and monocyte molecules were in the same molecular weight range (14-18 kDa Mr). Our results clearly show differences in the regulation of Ly-6C expression on monocytes versus neutrophils. Thus, it is likely that the potential function of Ly-6C will be unique for each cell.

Animals↗

Two transduction sequences are necessary for neutrophil activation by receptor agonists.

The effects of 17-hydroxywortmannin (HWT), a powerful inhibitor of the respiratory burst associated with phagocytosis (Baggiolini, M., Dewald, B., Schnyder, J., Ruch, W., Cooper, P. H., and Payne, T. G. (1987) Exp. Cell Res. 169, 408-418), were studied in human neutrophils stimulated with chemotactic agonists or phorbol myristate acetate. At nanomolar concentrations HWT inhibited superoxide production and the release of granule contents induced by N-formyl-Met-Leu-Phe, C5a, platelet-activating factor, and leukotriene B4, but not by phorbol myristate acetate, indicating that it interferes with receptor-mediated activation of the neutrophils, without directly affecting protein kinase C (Ca2+/phospholipid-dependent enzyme), the NADPH-oxidase, or the process of granule exocytosis. Moreover, HWT did not influence agonist-induced [Ca2+]i changes, indicating that it does not interfere with the function of agonist receptors, G-proteins or the phosphatidylinositol-specific phospholipase C. By studying the effect of HWT on the respiratory burst elicited in normal and Ca2+-depleted cells by combined stimulation with N-formyl-Met-Leu-Phe and phorbol myristate acetate, evidence was obtained that two transduction sequences, both of which are G-protein-dependent, are necessary for the induction of the response by receptor agonists. One sequence is Ca2+-dependent, HWT-insensitive, and leads to activation of protein kinase C, the other is Ca2+-independent and HWT-sensitive. Ca2+ depletion, which blocks the first, and HWT, which blocks the second, can be used to show that both processes must be functional for the transduction of agonist signals into a respiratory burst response.

Androstadienes↗

Plasma levels of bactericidal/permeability-increasing protein (BPI) and lipopolysaccharide-binding protein (LBP) during hemodialysis.

Several proteins modify the biological response to lipopolysaccharide (LPS). Both bactericidal/permeability-increasing factor (BPI), a protein stored in neutrophils, and the acute phase protein LPS-binding protein (LBP) bind to LPS; however, BPI inhibits while LBP enhances binding of LPS to leukocytes and subsequent induction of cytokines. We investigated plasma levels of BPI, LBP, elastase and C5a before, during and after hemodialysis (HD). Six patients were dialysed with Cuprophane (Cup) and polysulfone (PS) low-flux dialyzers on two consecutive HD sessions. There was a significant, 10.9 +/- 2.8-fold increase in BPI after 4-hour HD compared to predialysis and a 4.4 +/- 1.6-fold increase in elastase after 4-hour HD using Cup. Plasma levels of BPI and elastase decreased rapidly after the dialysis session. HD with PS resulted in a smaller, but still significant rise in BPI (3.7 +/- 1.6-fold at 4 hours) and elastase (1.69 +/- 0.2-fold at 4 hours). Levels for BPI and elastase were similar in the arterial and venous blood lines of the dialyzer. Plasma levels of LBP did not change during or after the HD session. These data indicate that BPI, but not LBP is released during HD with Cup and to a lesser extent with PS. Activation of neutrophils and release of BPI during HD may influence the biological response to bacterial products possibly introduced during HD.

Acute-Phase Proteins↗

Nonsteroidal anti-inflammatory drug as tools for analysis of neutrophil functions.

We investigated the effects of the nonsteroidal anti-inflammatory drugs diclofenac sodium, indomethacin and phenylbutazone on the activities relating to the migration and respiratory burst of polymorphonuclear leukocytes (PMN). When diclofenac sodium, was incorporated into the agarose gel at various concentrations below 100 micrograms/ml, it inhibited, in a dose-dependent fashion, spontaneous PMN migration and the directional migrations induced by both C5a-activated serum and peptide N-formyl-methionyl-leucyl-phenylalanine (FMLP). By contrast, phenylbutazone (below 100 micrograms/ml) only altered the directed PMN migration induced by FMLP, in two characteristic ways: by impairing the optimal response to 10(-7) M FMLP, and in particular, by restoring the loss of migration induced by higher but deactivating concentrations of 10(-6) and 10(-5) M. Indomethacin had similar effects to those of phenylbutazone on FMLP-induced PMN migration and in addition slightly impaired spontaneous PMN migration. The alterations in FMLP-induced migration caused by the three drugs tested were mainly chemokinetic and were due to changes in migratory speed. Of the three drugs, phenylbutazone and indomethacin also impaired FMLP-induced changes in the shape of PMN. All three interfered with the respiratory burst induced by FMLP but not with that induced by phorbol myristate acetate. These results demonstrate that phenylbutazone, indomethacin and diclofenac possess different spectra of biological activities as regards the parameters relating to PMN migration and respiratory burst, and therefore suggest that these drugs could serve as tools for investigating PMN functions.

Adult↗

Biocompatibility differences with respect to the dialyzer sterilization method.

The impact of the method of sterilization (steam vs. ethylene oxide, ETO) on indices of biocompatibility is investigated using polysulfone membranes. Eight patients were treated with a random choice of the high-flux membranes F60S (steam) and F60 (ETO) and the low-flux membrane F6 (ETO). Blood samples were taken prior to and 5, 15, 30, 60, and 180 min after the start of hemodialysis. White blood cell count, platelet count, and plasma concentrations of polymorphonuclear neutrophil elastase, complements C3a and C5a, and beta2-microglobulin were determined. The dialysis procedure was associated with a significant decrease in white blood cell count and beta2-microglobulin level and a significant increase in polymorphonuclear neutrophil elastase and complement C3a and C5a levels. However, the steam-sterilized F60S membrane had a significantly lower impact on the biocompatibility indices than the ETO-sterilized F60 and F6 membranes (p < 0.05 or p < 0.001 for the individual markers). We conclude that using steam instead of ETO for sterilization may improve the biocompatibility of membranes.

Adult↗

Migration of human polymorphonuclear leukocytes through a synovial fibroblast barrier is mediated by both beta 2 (CD11/CD18) integrins and the beta 1 (CD29) integrins VLA-5 and VLA-6.

Polymorphonuclear leukocytes (PMNL) accumulate in joint fluid in inflammatory arthritides. We investigated the molecular mechanisms required for PMNL migration through a barrier of human synovial fibroblasts (HSF) grown on microporous filters, as a model of PMNL migration through synovial connective tissue and compared this process with PMNL migration through human dermal fibroblast (HDF) barriers and through human umbilical vein endothelium (HUVE). A small amount of PMNL migration occurred spontaneously only through the synovial fibroblast/filter unit (6-10%). Migration markedly increased through all cell monolayers when the chemotactic factors C5a, IL-8, or zymosan-activated plasma (containing C5adesArg) were added to form a chemotactic gradient. The migration induced by C5a, IL-8, or C5adesArg across HSF was partially inhibited (25-76% depending on stimulus) by mAb to CD18 (beta 2 integrin). The CD18-independent migration induced by IL-8 or C5adesArg was almost completely inhibited by mAbs to beta 1 integrin, but with C5a, inhibition by mAb to beta 1 integrin was only partial (40-50%). Inhibition by mAb to beta 1 integrin required treatment of the PMNL, but not the HSF and was only observed when the function of CD11/CD18 on PMNL was also blocked by a mAb. Treatment of PMNL with mAb to alpha 5 (VLA-5) plus alpha 6 (VLA-6) in combination, was required to inhibit CD18-independent migration through HSF to the degree observed with mAb to beta 1 integrin. There was no qualitative difference in the mechanisms utilized by PMNL for migration through HSF or HDF in response to chemotactic factors. In contrast, PMNL migration across HUVE was almost completely CD18-dependent (85%) with no role for beta 1 integrins. The results suggest that (a) PMNL migration through HSF in response to chemotactic factors utilizes both CD11/CD18 and beta 1 (CD29) integrins; (b) the VLA-5 and VLA-6 members of beta 1 integrins are involved in mediating migration; and (c) PMNL utilize similar mechanisms for migration through HSF and HDF, which are distinct from migration through HUVE.

Antibodies, Monoclonal↗

C3a(C3adesArg) induces production and release of interleukin 1 by cultured human monocytes.

Purified human C3a(C3adesArg) induced dose-dependent generation of intracellular IL 1 activity and release of IL 1 in cultures of human mononuclear adherent cells in serum-free conditions. Concentrations of C3a(C3adesArg) of 10(-8) M and 6 hr of culture were sufficient to induce production of cell-associated IL 1, as detected in monocyte lysates. Ten- to 100-fold higher concentrations of C3a(C3adesArg) and 24 hr of culture were required for induction of IL 1 release. Release of IL 1 induced by suboptimal amounts of C3a(C3adesArg) was greatly enhanced by the addition of indomethacin to the culture medium. Contamination with C5a of the C3a(C3adesArg) preparation did not account for C3a(C3adesArg)-induced IL 1 production. Induction of IL 1 activity by C3a(C3adesArg) was not due to contaminating LPS, as indicated by the following observations: the amount of contaminating LPS in C3a(C3adesArg) was below that which could induce IL 1 release from human monocytes in serum-free conditions; induction of IL 1 by C3a(C3adesArg) was not suppressed by polymyxin B; kinetics of IL 1 production and release in the presence of C3a(C3adesArg) differed from those observed in the presence of LPS; and sialated gangliosides, which inhibit IL 1 release induced by LPS, had no effect on the induction of IL 1 by C3a(C3adesArg). The C3a(C3adesArg) preparation used in this study mostly contained the desArg derivative, suggesting that, in contrast with the requirement for an intact C-terminal arginyl residue for the spasmogenic activity of C3a, both C3a and its C3adesArg derivative may interact with receptors on human monocytes. By inducing IL 1 production and release, C3a(C3adesArg) may contribute to the generation of the inflammatory process and the regulation of the immune response.

Cells, Cultured↗

Differential regulation of beta 1 and beta 2 integrin avidity by chemoattractants in eosinophils.

The CC chemokines regulated on activation normal T expressed and secreted (RANTES) and monocyte chemotactic protein 3 (MCP-3), and the anaphylatoxin C5a, induce activation, degranulation, chemotaxis, and transendothelial migration of eosinophils. Adhesion assays on purified ligands showed differential regulation of beta 1 and beta 2 integrin avidity in eosinophils. Adhesiveness of VLA-4 (alpha 4 beta 1, CD29/CD49d) for vascular cell adhesion molecule 1 or fibronectin was rapidly increased but subsequently reduced by RANTES, MCP-3, or C5a. The deactivation of VLA-4 lead to cell detachment, whereas phorbol 12-myristate 13-acetate induced sustained activation of VLA-4. In contrast, chemoattractants stimulated a prolonged increase in the adhesiveness of Mac-1 (alpha M beta 2, CD11b/CD18) for intercellular adhesion molecule 1. Inhibition by pertussis toxin confirmed signaling via G protein-coupled receptors. Chemoattractants induced transient, while phorbol 12-myristate 13-acetate induced sustained actin polymerization. Disruption of actin filaments by cytochalasins inhibited increases in avidity of VLA-4 but not of Mac-1. Chemoattractants did not upregulate a Mn2+-inducible beta 1 neoepitope defined by the mAb 9EG7, but induced prolonged expression of a Mac-1 activation epitope recognized by the mAb CBRM1/5. This mAb inhibited chemoattractant-stimulated adhesion of eosinophils to intercellular adhesion molecule 1. Thus, regulation of VLA-4 was dependent on the actin cytoskeleton, whereas conformational changes appeared to be crucial for activation of Mac-1. To our knowledge, this is the first demonstration that physiological agonists, such as chemoattractants, can differentially regulate the avidity of a beta 1 and a beta 2 integrin expressed on the same leukocyte.

CD18 Antigens↗

Human recombinant C5a enhances lipopolysaccharide-induced synthesis of interleukin-6 by human monocytes.

The effect of human recombinant C5a (hrC5a) on the synthesis of interleukin-6 (IL-6) was studied in human monocytes. Monocytes incubated in the absence of hrC5a and of bacterial lipopolysaccharide (LPS) produced only low amounts (less than 100 U/2 x 10(6) cells/16 h) of IL-6 activity. LPS in concentrations from 10 pg ml-1 to 10 ng ml-1 greatly stimulated the synthesis of IL-6 to about 50.000 U/10(6) cells/16 h. When hrC5a was added to the monocyte media maximal IL-6 synthesis was reached at lower LPS concentrations, i.e. at 0.1 ng ml-1 LPS in the presence of 100 ng ml-1 hrC5a. Maximal IL-6 production was not significantly enhanced by hrC5a. Metabolic labelling with [35S]-methionine followed by immunoprecipitation of IL-6 showed that the increased IL-6 activity in the medium of hrC5a treated monocytes was due to a stimulation of the de novo synthesis of IL-6. Increased amounts of IL-6 mRNA were found in monocytes treated with LPS and hrC5a compared with monocytes stimulated only with LPS. HrC5a prolonged the elevation of IL-6 mRNA levels after stimulation of monocytes with LPS. HrC5a thus enhanced the LPS-induced synthesis of IL-6 by human monocytes.

Cells, Cultured↗

Inhibition of neutrophil activation by fibrinogen.

Physiological levels of human fibrinogen markedly inhibited the chemotactic activity of human neutrophils triggered by zymosan-activated serum (ZAS), C5a, or IL-8 in a Boyden chamber assay. Fibrinogen also slightly inhibited the N-formyl-methionyl leucyl-phenylalanine (FMLP)-induced migration of human neutrophils. Albumin was devoid of the inhibitory activities displayed by fibrinogen in this system. The inhibition of chemotaxis by fibrinogen was dose-dependent and saturable. Fibrinogen placed in the upper compartment of the Boyden chamber produced a larger inhibition than that obtained with fibrinogen placed in the lower compartment. Lysine as well as the lysine analog 6-aminohexanoic acid (AHA) decreased the inhibitory capacity of fibrinogen. In contrast, both arginine and glutamine failed to suppress the fibrinogen-mediated inhibition of neutrophil chemotaxis. AHA counteracts the inhibition of ZAS-induced chemotaxis by anti-CD18 monoclonal antibody, suggesting that lysine binding sites are required for integrin function in chemotaxis. Fibrinogen also inhibited, in a dose-dependent manner, the oxygen consumption of neutrophils activated by opsonized zymosan. Taken together, the present results indicate that fibrinogen modulates neutrophil functions and suggest that in addition to its role in blood coagulation, circulating fibrinogen may be involved in regulation of the inflammatory response.

Amino Acids↗

Atopic dermatitis: influence of bacterial infections on human monocyte and neutrophil granulocyte functional activities.

In 15 patients with atopic dermatitis (AD) and without concomitant viral or bacterial infections, chemotaxis, superoxide-anion (O2-) generation, and beta-glucuronidase release of purified monocytes (MO) and neutrophils (PMN) were determined. Defined receptor-dependent stimulators (i.e., N-formyl-methionyl-leucyl-phenylalanine, C5a, and leukotriene B4, as well as native and opsonized zymosan particles) were used for phagocyte stimulation. PMN functional activities in response to the stimuli tested were found to be normal in patients with AD and without infections. MO from these patients revealed a slight enhancement of O2- production after stimulation with opsonized zymosan and a small increase of N-formyl-methionyl-leucyl-phenylalanine-induced chemotaxis. Other MO functions tested were within the normal range. However, investigations of MO and PMN functions during the course of concomitant bacterial infections of three patients with AD demonstrated striking alterations of cellular responsiveness. These changes ranged from enhanced to decreased phagocyte functions, depending on the activity of the infectious disorder. Chemotaxis of PMN and MO was depressed around the third day after onset of the infectious disease. In the beginning of infection, there was a decreased O2- generation and beta-glucuronidase release in PMNs. In MOs, both parameters were enhanced. The results of these investigations provide evidence that functional abnormalities of phagocytes observed in patients with AD are sequelae of concomitant skin infections and not signs of an intrinsic defect present in MOs and PMNs.

Adolescent↗

Transient adhesion of neutrophils to endothelium.

Fluorescently labeled polymorphonuclear leukocytes (PMN) were used to measure adhesion to human umbilical vein endothelial cells (EC) cultured in vitro. Stimulation of PMN with phorbol dibutyrate (PDB), TNF, or C5a caused an increase in adhesion followed by a return to prestimulation levels of adhesion of longer times of incubation. Maximal adhesion of PMN to EC occurred rapidly in response to C5a (5 min) and more slowly with TNF or PDB (15 min). PMN stimulated to adhere with C5a detached from EC by 15 min. PMN from CD11/CD18-deficient patients and PMN incubated with anti-CD18 mAbs failed to bind to EC despite maximal stimulation. Anti-CD11a/CD18 and anti-CD11b/CD18 each partially inhibited adhesion, and a combination of these two reagents completely blocked adhesion. The adhesion we measured was therefore completely dependent on CD11/CD18, and CD11a/CD18 and CD11b/CD18 each contributed to adhesion. Stimuli that enhanced adhesion of PMN to EC also enhanced expression of CD11b/CD18 on the cell surface, but the time course of expression correlated poorly with changes in adhesivity. To determine if changes in the expression of CD11b/CD18 are necessary for the changes in adhesivity, we used enucleate cytoplasts that did not increase expression of CD11b/CD18. Cytoplasts showed a normal rise and fall in adhesivity in response to PDB. We conclude that the transient adhesion of stimulated PMN to naive EC is regulated by changes in the nature of existing CD11/CD18 molecules on the PMN surface. Changes in expression of CD11b/CD18 may contribute to enhancement of adhesivity, but a definite role for this phenomenon has yet to be established.

Antibodies, Monoclonal↗

The effect of pertussis toxin on mediator release from human basophils.

We have found that basophils (n = 9) treated with pertussis toxin (1.0 microgram/ml) fail to respond to a subsequent challenge with either 1.0 microM f-Met peptide (p less than 0.0005) or 0.24 microgram/ml of C5a (p less than 0.0005) although their responses to anti-IgE (0.1 microgram/ml) and A23187 (1.0 microgram/ml) were unaltered. These results were confirmed in purified (average purity = 89 +/- 3%) basophils (n = 4). Leukotriene C4 release was also reduced to 15 +/- 5% of control (p less than 0.005) when pertussis toxin-treated basophils were exposed to 1.0 microM f-Met peptide, although no inhibition was noted when anti-IgE or A23187 were used as the stimuli. The effect of pertussis toxin on basophils appears to be independent of the presence of contaminating mononuclear cells. We found that pertussis toxin inhibited f-Met peptide-induced histamine release regardless of the magnitude of the stimulus (0.01 microM to 1.0 microM f-Met peptide), although anti-IgE-induced release was unaffected over a dose-response curve. The effect of pertussis toxin was found to be both time- and concentration-dependent. The maximum effects were obtained after a 3-hr incubation with 1 microgram/ml of toxin. Lower (0.01 to 0.05 microgram/ml) concentrations of toxin or shorter (30 to 60 min) incubation periods did not significantly (p greater than 0.05) inhibit mediator release.

Antibodies, Anti-Idiotypic↗

Characterization of a 64-kd protein phosphorylated during chemotactic activation with IL-8 and fMLP of human polymorphonuclear leukocytes. I. Phosphorylation of a 64-kd protein and other proteins.

Interleukin-8 (IL-8) such as LUCT (lung giant cell carcinoma-derived chemotactic protein), NAP (neutrophil activating protein) and MDNCF (monocyte-derived neutrophil chemotactic factor), and formylmethionyl-leucyl-phenylalanine (fMLP) are well-known chemoattractants for human polymorphonuclear leukocytes (PMNs) and are able to stimulate phosphorylation of 64-kd protein (p64) in these leukocytes. To elucidate the molecular mechanism of PMN activation with chemoattractants, we investigated the phosphorylation process of p64 in an intact cell. 32P-Labeled PMNs were stimulated with LUCT/IL-8, fMLP, leukotriene B4, or C5a, and phosphorylated proteins were analyzed by two-dimensional electrophoresis and autoradiography. A marked phosphorylation of p64 was observed after stimulation. A new spot of phosphorylated p64 (pp64) could be detected on the gel stained with Coomassie Brilliant Blue, indicating that the isoelectric point (pI) of p64 shifted from 5.3 to a more acidic pI by the phosphorylation forming pp64. The spot of pp64 was shown to be dephosphorylated to p64 by treatment with calf intestine alkaline phosphatase. Other proteins having molecular masses 82, 66, 58, 55 and 50 kd were also phosphorylated. The fMLP-stimulated phosphorylation was time-dependent and saturated within 5 min. Maximum stimulation was achieved with 10 nM fMLP. Phosphoamino acid analysis revealed phosphorylation of serine residues in pp64. Staurosporine (100 nM) and W-7 (100 microM) significantly inhibited the phosphorylation of p64, but H-7 slightly inhibited it. H-8 and herbimycin A did not effect phosphorylation. Phorbol myristate acetate was found to stimulate significantly. Protein kinase C did not stimulate the phosphorylation. These data suggest that protein kinase C and calmodulin-like protein are indirectly involved in the phosphorylation of p64 during chemoattractant-activation of PMN.

Alkaline Phosphatase↗