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The possible mechanism of action of IgG antibodies and platelets protecting against Trypanosoma cruzi infection.

1. The role of IgG antibody and platelets in the mechanism of defense against Trypanosoma cruzi infection is reviewed. 2. Experimental data showing the participation of the different IgG subclasses in the immune lysis and immune clearance of the parasites are discussed. 3. The involvement of the platelets in the removal of the parasites from the circulation is considered. 4. It is suggested that IgG anti-T. cruzi antibodies interact with circulating parasites leading to formation of microaggregates, activation of C3 and deposition of C3b on the immune aggregates followed by adherence of platelets through C3b receptors. The immune aggregates would then be taken up by cells of the mononuclear phagocytic system.

Animals↗

Defective reticuloendothelial system C3b mediated clearance in rheumatoid arthritis and vasculitis.

C3b receptor mediated clearance by the reticuloendothelial system (RES) was tested in vivo using autologous C3b coated, technetium labelled erythrocytes in patients with rheumatoid arthritis (RA) and rheumatoid vasculitis. Diminished C3b mediated erythrocyte clearance was found in all patients with rheumatoid vasculitis and some patients with active RA. Normal C3b mediated clearance was found in some patients with previous vasculitis, in remission when tested. These results are consistent with the hypothesis that acquired dysfunction of RES C3b receptors is implicated in the pathogenesis of rheumatoid vasculitis.

Adolescent↗

Physicochemical characterization of C3b receptors isolated from human erythrocytes by immunoprecipitation.

A high yield of active C3b receptors was obtained by solubilizing human erythrocyte membranes with 2 M KBr, whereas other solubilization agents yielded no, or significantly less activity. Gel filtration of the KBr lysates revealed that the apparent molecular wieght of biologically active C3b receptor molecules was greater than 1 x 10(6). Immunoprecipitates prepared with radio-iodinated KBr lysates and anti-C3 receptor sera (AC3RS) were subjected to sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) or sodium dodecyl gel filtration. Unreduced SDS-PAGE and gel filtration profiles showed three predominant peaks with apparent mol. wts of 1--1.3 x 10(6), 80,000 and 60,000. Whereas the high mol. wt component decreased only slightly after reduction, the 80,000 and 60,000 mol. wt components disappeared and two new peaks with apparent mol. wts of 38,000 and 18,000 appeared in SDS-PAGE profiles. Although the high mol. wt component present in reduced SDS-PAGE profiles was detectable in some of the control experiments, none of the other peaks could be precipitated with control sera, and these components could be demonstrated only when KBr lysates of C3b receptor-positive erythrocytes and AC3RS that were able to inhibit ligand binding of the C3b receptors were used for precipitation. These findings suggest that (a) the C3b receptor of human erythrocytes in its biologically active state is a macromolecule with an apparent mol. wt higher than 1 x 10(6) and (b) the protein moiety consists predominantly of non-covalently linked protein molecules with apparent mol wts of 80,000 and 60,000. These protein molecules are composed of disulphide-bridged polypeptide chains with apparent mol. wts of 38,000 and 18,000.

Chromatography, Gel↗

Evaluation of CR1 expression in neutrophils from chronic myeloid leukaemia: relationship between prognosis and cellular activity.

The expression of the complement receptor CR1 has been evaluated using an immunoalkaline phosphatase staining method on peripheral blood neutrophils and granulocyte precursors from 22 patients with chronic myeloid leukaemia (CML) and 15 healthy subjects. The immunocytochemical labelling pattern of CR1 was evaluated semiquantitatively on cell smears using three different anti-CR1 monoclonal antibodies. The scoring method showed that seven patients with CML had a marked reduction in CR1 expression which did not change with in vitro stimulation of neutrophils with phorbol-myristate-acetate (PMA) whereas control cells responded to PMA, increasing the receptor level two-fold. In addition, functional analysis of neutrophils with low CR1 expression from CML patients showed a very low cytolytic activity against K562 tumour target, suggesting a relationship between the cellular content of CR1 and neutrophil tumouricidal activity. The involvement of CR1 in neutrophil-mediated lysis is consistent with complete lack of tumour toxicity following receptor neutralization by anti-CR1 monoclonal antibodies. Interferon therapy improved CR1 expression and the cytolytic response of neutrophils in three out of five CML patients with a moderately low CR1 score. CML patients non-responding to interferon therapy and those with a very low CR1 score, independent of the clinical stage, progressed more rapidly into the advanced clinical stage and blastic crisis.

Complement C3b↗

B cell receptors and complement receptors target the antigen to distinct intracellular compartments.

The processing of exogenous Ags is an essential step for the generation of immunogenic peptides that will be presented to T cells. This processing relies on the efficient intracellular targeting of Ags, because it depends on the content of the compartments in which Ags are delivered in APCs. Opsonization of Ags by the complement component C3 strongly enhances their presentation by B cells and increases their immunogenicity in vivo. To investigate the role of C3 in the targeting of Ags, we compared the intracellular traffic of proteins internalized by complement receptor (CR) and B cell receptor (BCR) in B lymphocytes. Whereas both receptors are able to induce efficient Ag presentation, their intracellular pathways are different. CR ligand is delivered to compartments containing MHC class II molecules (MHC-II) but devoid of transferrin receptor and Lamp-2, whereas BCR rapidly targets its ligand toward Lamp-2-positive, late endosomal MHC-II-enriched compartments through intracellular vesicles containing transferrin receptor. CR and BCR are delivered to distinct endocytic pathways, and the kinetic evolution of the protein content of these pathways is very different. Both types of compartments contain MHC-II, but CR-targeted compartments receive less neosynthesized MHC-II than do BCR-targeted compartments. The targeting induced by CR toward compartments that are distinct from BCR-targeted compartments probably participates in C3 modulation of Ag presentation.

Antigen Presentation↗

Coligation of the B cell receptor with complement receptor type 2 (CR2/CD21) using its natural ligand C3dg: activation without engagement of an inhibitory signaling pathway.

C3dg is a cleavage product of the C3 component of complement that can facilitate the coligation of the complement receptor 2 (CR2/CD21) with the BCR via C3dg/Ag complexes. This interaction can greatly amplify BCR-mediated signaling events and acts to lower the threshold for B cell activation. Although previous studies have used anti-CR2 Abs or used chimeric Ags in the context of BCR transgenic mice as surrogate C3d-containing ligands, we have used a physiological form of C3d to study signaling in B cells from wild-type C57BL/6 mice. We find that while CR2-enhanced BCR signaling causes intracellular Ca2+ mobilization and total pTyr phosphorylation of an intensity comparable to optimal BCR ligation using anti-IgM Abs, it does so with limited activation of inhibitory effectors (such as CD22, Src homology region 2 domain containing phosphatase 1, and SHIP-1) and without substantial receptor cross-linking. In summary, we demonstrate that CR2-enhanced BCR signaling may proceed not only through the previously described amplification of positive signaling pathways, but is potentially augmented by a lack of normal inhibitory/feedback signaling.

Animals↗

The effect of IFN-gamma and colony-stimulating factors on the expression of neutrophil cell membrane receptors.

The recombinant cytokines IFN-gamma, granulocyte-macrophage (GM)-CSF, and granulocyte (G)-CSF are all known to affect the function of neutrophils. We have investigated their ability to alter the surface expression of neutrophil Fc gamma R and CR. FcRI, formerly considered to be mononuclear phagocyte specific, was found on a variable percentage of neutrophils after 12 h of tissue culture. These levels could be readily enhanced by IFN-gamma at 0.5 U/ml suggesting that neutrophil FcRI is extremely sensitive IFN-gamma. In addition, membrane expression of FcRIII, the most abundant receptor of neutrophils, could also be increased by IFN-gamma and by GM-CSF and G-CSF. However, the opposite effect was observed in samples in which the initial levels of FcRIII were high. In these situations IFN-gamma and GM-CSF caused a decrease in receptor expression. No consistent alterations were found in the levels of FcRII. Cytokine-induced increases in both FcRI and FcRIII were not evident within the first hour of treatment suggesting that these molecules are not available in an intracellular compartment but must be newly synthesized. In contrast, the CR, CR1 and CR3, could be rapidly induced by GM-CSF indicating that this cytokine causes the mobilization of preformed molecules to the membrane. G-CSF and IFN-gamma did not alter the expression of CR1 and CR3. Thus, the very different effects of IFN-gamma, GM-CSF, and G-CSF suggest that the neutrophil functional profile will be distinctively affected by exposure to each of these cytokines.

Antigens, Differentiation↗

Recombinant human granulocyte colony-stimulating factor as an activator of human granulocytes: potentiation of responses triggered by receptor-mediated agonists and stimulation of C3bi receptor expression and adherence.

Recombinant human granulocyte colony-stimulating factor (rhG-CSF) enhanced superoxide release and membrane depolarization in parallel in human granulocytes stimulated by the receptor-mediated agonists, N-formyl-methionyl-leucyl-phenylalanine and wheat germ agglutinin, but not by the Ca2+ ionophore ionomycin and phorbol myristate acetate, which bypass the receptors to stimulate the cells. The optimal effect was obtained by pretreatment of cells with 25 to 50 ng/mL (1.3 to 2.6 nmol/L) rhG-CSF for 10 minutes at 37 degrees C. rhG-CSF produced by bacteria and mammalian cells had identical biological effects on a molar basis. rhG-CSF neither affected stimulus-induced increase in cytoplasmic free Ca2+ nor changed the number and affinity of N-formyl-methionyl-leucyl-phenylalanine receptors. The priming effect of rhG-CSF was temperature dependent and did not require new protein synthesis. rhG-CSF increased the expression of C3bi receptors on human granulocytes and enhanced granulocyte adherence to nylon fiber. The optimal effect was obtained by pretreatment of cells with 25 to 50 ng/mL rhG-CSF for 30 minutes at 37 degrees C. rhG-CSF had no effect on human monocytes. These findings demonstrate that rhG-CSF can selectively stimulate mature granulocyte functions.

Calcium↗

Extracellular stimulation by serum proteins required for maximal intracellular killing of microorganisms by mouse peritoneal macrophages.

Intracellular killing of catalase-positive Staphylococcus aureus by resident mouse peritoneal macrophages was very low in the absence of serum but maximal in the presence of fresh normal serum. A large proportion of catalase-negative Streptococcus pyogenes were killed in the absence of extracellular serum, and maximal killing was reached only when serum was present extracellularly. Further investigations revealed that stimulation of intracellular killing by extracellular serum is dependent on the interaction of immunoglobulin G and Fc receptors and of complement component C3b with C3b receptors in the macrophage membrane.

Animals↗

Lymphocyte immunological patterns in leukaemia: a review.

Investigation of the cell S--Ig in acute lymphocytic leukaemia (ALL), at the onset of relapse of the disease, shows quite marked differences from patient to patient according to the extent of the immunofluorescent-positive cells. They may vary from 0.5 to 25% or more. When these Ig-positive cells are treated with trypsin and then incubated "in vitro" for six hours, many of them are no longer Ig-positive, i.e. they do not synthesize Ig. It might be possible, that the membrane-Ig observed before trypsinization does not represent true Ig-determinants of mature B-cells (antibodies attached to leukaemia-specific determinants?). The extent of these features decrease in remission until their disappearance. Relationship between the cell immunological patterns and the treatment response in ALL could exist. In a group of ALL-patients under the same treatment, that is, vincristine and prednisone, the correlation between the course of the disease after the above-mentioned therapy showed quick and complete remission in patients with low percentage of Ig-positive cells (below 10%) and poor improvement (often without complete remission) in patients with higher percentage of Ig-positive cells. Among the most important B-lymphocyte abnormalities in chronic lymphocytic leukaemia (CLL) are the following: (a) fluorescence intensity may vary not only from patient to patient, but also from cell to cell in the same patient; (b) the Fc-receptor can be lacking; (c) the C3b-receptor is not always present, or it is from 2 to 20-folds less frequent than the C3d-receptor, whereas normal human lymphocytes do not show any outstanding differences between the number of EAC rosette-forming cells either when tested with mouse complement (C3d-receptor) or with human complement C3b-receptor); (d) the traffic capacity of peripheral-blood B-lymphocytes in CLL is quite defective. Results of the observations on lymphocytes in CLL, taken as a whole, suggest that CLL is in general given by the expansion of an abnormal clone of cells of B origin, arrested in their maturative development, non-responsive to the mitogen stimulation, accumulating in the peripheral-blood for a traffic deficiency. On the contrary, the T-cells class is apparently normal, and the T-cell extent in CLL-peripheral blood can be even greater than normal when taken as absolute value.

B-Lymphocytes↗

Identification of a C3b/iC3 binding protein of rabbit platelets and leukocytes. A CR1-like candidate for the immune adherence receptor.

Immune adherence is the attachment of C-bearing immune complexes via the major activation fragment of the third component of C(C3b) to C3b binding membrane proteins. On primate E, the C3b-R, termed CR1, mediates immune adherence. In nonprimates, immune adherence involves platelets instead of E. However, these functional data have not been corroborated by the identification of the binding protein. In this work, we have identified a C3b/iC3 binding protein of rabbit platelets and characterized it as a single chain structure with a Mr of 150 kDa (nonreducing) or 175 kDa (reducing). This protein binds to rabbit iC3 or C3b but not C3d. This specificity of binding and the ability to rebind to a second column of iC3- or C3b-thiol-Sepharose are comparable to human CR1. Also, a molecule with the identical Mr as well as other structural and binding characteristics is present on rabbit PBMC. No such protein was isolated from rabbit E. Our data strongly suggest that the C3b/iC3 binding protein of rabbit platelets is the homologue of human CR1. If so, this represents an interesting evolutionary switch in the tissue specific expression of the immune adherence R from platelets in the nonprimate to E in the primate.

Animals↗

Upregulation of the p75 low-affinity neurotrophin receptor by phagocytically active perivascular active cells in the rat neural lobe.

Expression of the p75 low-affinity neurotrophin receptor (p75NTR) was investigated immunocytochemically at the light and ultrastructural level during the axonal degeneration that follows partial denervation of the rat neural lobe (NL) and following systemic administration of lipopolysaccharide (LPS). A significant increase in the intensity and extent of p75NTR immunoreactivity in the NL of partially denervated animals compared with age-matched, sham-operated controls was observed at 5-10 days postdenervation, with immunoreactivity returning to control values by 35 days. Dual-label confocal comparison of p75NTR localization with that of the C3bi complement receptor, a microglial marker, and S100, an astrocyte-specific Ca2+-binding protein, revealed no colocalization. Immunoelectron-microscopic examination demonstrated that the p75NTR immunoreactivity is present in a subpopulation of cells located within the extensive perivascular space of the NL. No examples of p75NTR-immunoreactive pituicytes or endothelia were observed at the light or ultrastructural level. Dense p75NTR immunoreactivity was frequently observed surrounding endocytotic omega profiles of plasmalemma engulfing extracellular debris as well as lining vacuoles within the cytoplasm of perivascular cells. The association of p75NTR with phagocytosis was confirmed by confocal microscopy, showing the presence of p75NTR in all cells expressing the ED-1 antigen, which is restricted to the lysosomal membrane of phagocytes (Damoiseaux et al. 1994). Likewise, a marked increase in p75NTR and ED-1 immunoreactivity was observed in the NL following systemic administration of LPS. These results suggest a strong correlation between modulation of p75NTR immunoreactivity and conditions that induce high levels of phagocytic activity by perivascular cells in the NL of the rat. Implications for understanding the mechanisms by which phagocytes may support compensatory responses to neuronal injury are discussed.

Animals↗

Anti-opsonic properties of staphylokinase.

Recently we described a novel bacteriophage-encoded pathogenicity island in Staphylococcus aureus that harbors a number of virulence factors that are all involved in the evasion of innate immunity. Here we describe a mechanism by which staphylokinase (SAK), frequently present on this pathogenicity island, interferes with innate immune defenses: SAK is anti-opsonic. By activating human plasminogen (PLG) into plasmin (PL) at the bacterial surface, it creates bacterium-bound serine protease activity that leads to degradation of two major opsonins: human immunoglobulin G (IgG) and human C3b. Incubation of opsonized bacteria with PLG and SAK resulted in removal of anti-staphylococcal IgGs and C3b from the bacterial surface. In phagocytosis assays this proved to be a very efficient mechanism to reduce the opsonic activity of human IgG and serum. The fact that SAK activates human PLG at the bacterial surface and removes IgG as well as C3b makes this protein a unique anti-opsonic molecule.

Complement C3b↗

Phagocytosis by rat peritoneal mast cells: independence of IgG Fc-mediated and C3-mediated signals.

Phagocytosis of sheep erythrocytes (E) bearing rabbit immunoglobulin and rat C3 by rat peritoneal mast cells was quantitated by using 51Cr-labeled E and was confirmed by electron microscopy. The relative importance of IgG Fc receptor interaction in C3-mediated phagocytosis was assessed. Removal of any traces of IgG antibody by absorption of IgM antibody with protein A-Sepharose and absorption of the other reagents with sheep E had no effect on the phagocytosis of C3b- and C3bi-coated cells. IgG antibody enhanced the phagocytosis of intermediates prepared with IgM, purified components and rat C3 (EaIgMClgp4hu oxy2hu3brat) with a graded dose response, but was only additive and not synergistic with C3. The independence of the C3- and Fc-mediated signals was confirmed by using chemically produced polymers of rabbit IgG to inhibit phagocytosis. These polymers, especially tetramers and higher aggregates, completely blocked ingestion of EAIgG, but not that of EAIgMC1423b or -3bi. When IgG was substituted for IgM in the C3b intermediate, the IgG polymers inhibited about 50% of the phagocytosis. Cumulatively, the data demonstrated that in the case of rat mast cells, the stimuli to phagocytosis induced by C3 and IgG are independent; either is sufficient by itself.

Animals↗

Viral interference with antibody and complement.

Viruses have evolved strategies to evade immunity mediated by antibody and complement. Herpesviruses and coronaviruses encode IgG Fc binding proteins that inhibit IgG activity, enabling the virus or infected cell to escape antibody attack. Herpesviruses, vaccinia virus and HIV-1 have the capacity to interfere with complement, either by incorporation of cellular complement regulatory proteins into the virion envelope or cell membrane, or by expression of viral molecules that mimic functions of complement regulatory proteins. The structure and biological activities of herpes simplex virus type 1 (HSV-1) glycoproteins gE, gI and gC are described. These glycoproteins protect HSV from immune attack; HSV-1 gE/gI form a complex that binds the Fc domain of IgG while gC is a C3b binding complement regulatory protein, providing a survival advantage to the virus in vitro and in vivo by inhibiting immune functions.

Animals↗

Cleavage of the complement system C3 component by HIV-1 proteinase.

The C3 factor of the complement system and its C3b fragment are cleaved in vitro by the proteinase of the human immunodeficiency virus, type 1 (HIV PR). The cleavage occurs in the alpha-chain of both substrates at multiple sites yielding a 100 kDa fragment of the C3 alpha-chain and multiple fragments of the C3b alpha-chain. The scissile bonds are: Ala86-Glu87, Leu310-Leu311, His641-Trp642 and Arg649-Ser650. The resulting fragments resemble the physiologically occurring inactive fragments of C3: C3c and C3d, suggesting a possible biological role of the HIV-proteinase in the complement inactivation process.

Amino Acids↗

Localization of the C3b receptors in human renal glomeruli.

Cryostat sections of human kidney were incubated with C3b containing immune complexes. The complexes were horseradish peroxidase (HRP) and F(ab')2 fragments of rabbit IgG anti-HRP incubated in C4-deficient guinea pig serum. The peroxidase activity was revealed histochemically. The sections were studied using light and electron microscopy. The bound complexes were localized to the foot processes of the visceral epithelial cells and to the surface of the parietal epithelial cells facing Bowman's space. No receptors could be demonstrated on the endothelial or mesangial cells.

Antigen-Antibody Complex↗