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Effect of lipopolysaccharide on C3 and C5 production by human lung cells.

Although studies to date have demonstrated the ability of the monocyte/macrophage to produce C components in vitro, very few studies on C production by nonhepatic tissue cells have been reported. Recently, using 35S-methionine incorporation and immunoprecipitation techniques our laboratory has demonstrated the ability of tissue cells, i.e., the human lung type II pneumocyte (A549) and human lung fibroblast (WI-38), to synthesize and secrete a variety of early and terminal complement components, as well as several regulatory proteins in vitro, i.e., C1r, C1s, C4, C3, C5, C6, C7, C8, C9, factor B, factor H, factor I, and C1s inactivator. In our studies, we extended these observations by demonstrating the capability of LPS to modulate C3 production by A549 pneumocytes. Specifically, using a sensitive ELISA we demonstrated that A549 pneumocytes exposed to LPS induced an 80 to 180% increase in C3 levels when compared to untreated A549 cells. Interestingly, LPS had no effect on C5 production or total protein synthesis by A549 pneumocytes. In the case of the WI-38 fibroblast, LPS had no effect on 1) C3 production, 2) C5 production, or 3) total protein synthesis in vitro. These studies demonstrate that agents such as LPS have the potential to selectively regulate C production (i.e., C3) in individual lung cells in vitro, and suggests that in vivo LPS may alter the local tissue reservoir of C components during infection and lung injury, thus impacting on pulmonary inflammation and host defense.

Animals↗

The mannose-binding lectin-pathway is involved in complement activation in the course of renal ischemia-reperfusion injury.

Ischemia-reperfusion (I/R) is an important cause of acute renal failure (ARF). The complement system appears to be essentially involved in I/R injury. However, via which pathway the complement system is activated and in particular whether the mannose-binding lectin (MBL)-pathway is activated is unclear. This tempted us to study the activation and regulation of the MBL-pathway in the course of experimental renal I/R injury and in clinical post-transplant ARF. Mice subjected to renal I/R displayed evident renal MBL-depositions, depending on the duration of warm ischemia, in the early reperfusion phase. Renal deposition of C3, C6 and C9 was observed in the later reperfusion phase. The deposition of MBL-A and -C completely co-localized with the late complement factor C6, showing that MBL is involved in complement activation in the course of renal I/R injury. Moreover, the degree of early MBL-deposition correlated with complement activation, neutrophil-influx, and organ-failure observed in the later reperfusion phase. In serum of mice subjected to renal I/R MBL-A, levels increased in contrast to MBL-C levels, which dropped evidently. In line, liver mRNA levels for MBL-A increased, whereas MBL-C levels decreased. Renal MBL mRNA levels rapidly dropped in the course of renal I/R. Finally, in human biopsies, MBL-depositions were observed early after transplantation of ischemically injured kidneys. In line with our experimental data, in ischemically injured grafts displaying post-transplant organ-failure extensive MBL depositions were observed in peritubular capillaries and tubular epithelial cells. In conclusion, in experimental renal I/R injury and clinical post-transplant ARF the MBL-pathway is activated, followed by activation of the complement system. These data indicate that the MBL-pathway is involved in ischemia-induced complement activation.

Animals↗

A reason for the cytolytic inefficiency of murine serum.

Murine serum exhibits very poor haemolytic and bactericidal activity. We report that this is due, at least in part, to the presence of a potent, naturally occurring plasma inhibitor of the terminal complement sequence. The inhibitor is a heat-stable euglobulin. It is highly effective in suppressing haemolysis following complement activation on target erythrocytes with heterologous serum. It also inhibits C3-independent reactive haemolysis of guinea-pig erythrocytes with human C5b-9. Current evidence indicates that the inhibitory factor acts at the C5b-7 stage by preventing binding of the terminal complement complex to cells undergoing complement attack. In this respect, the inhibitor differs from the previously recognized regulators of the terminal complement sequence including plasma S-protein. The inhibitor does not protect C5b-7-laden cells from the action of C8 and C9, and also does not suppress formation of haemolytically inactive SC5b-9 in the fluid phase. The action of murine inhibitory factor is not confined to the red cell, and its presence can totally abolish the bactericidal activity of human serum on a sensitive, rough E. coli K12 strain.

Animals↗

Acquired C1-inhibitor deficiency in essential cryoglobulinemia and macrocryoglobulinemia.

In 5 patients with mixed cryoglobulinemia, 3 with Waldenström's disease and 2 with essential cryoglobulinemia, a C1-inhibitor (C1-INH) deficiency was discovered. The complement profile was characteristic of the acquired type: the total hemolytic activity and the early components were reduced, C3 was diminished in 1 patient only, C5 and C9 were normal or elevated. 1 atient with Waldenström's disease and 1 with essential cryoglobulinemia experienced episodes of angioedema. Circulating immune complexes were found in all patients' sera by the 125I-radiolabelled C1q binding activity (C1q BA) test. The values of the C1q binding activity were correlated with the depletion of the early complement components and that of C1-inh. 4 patients showed circulating 7S IgM. Our data support the hypothesis of a complement activation by the cryoprecipitating immune complexes; the C1-INH depletion is secondary to its consumption following C1 activation.

Complement C1 Inactivator Proteins↗

[Interactions between complement system and bacterial walls].

The complement system is involved in the antibacterial defence either with a delay, following the specific antibody response, or immediately through a direct interaction between complement components and the bacterial cell wall. Several gram- bacteria initiate the classical pathway through direct interaction between C1 and the lipid A of the lipopolysaccharides; this activation depends upon the structure, the accessibility and the state of polymerization of the lipopolysaccharides. Gram+ and gram- bacteria are able to activate the alternative pathway through a covalent C3b binding. Capsules appear to prevent activation due to their high content of sialic acid, which probably accounts for the virulence. As targets, bacteria may undergo opsonization mainly by C3b, or lysis through transmembrane channels formed by terminal components from C5b to C9.

Bacteria↗

Role of TraT protein, an anticomplementary protein produced in Escherichia coli by R100 factor, in serum resistance.

Escherichia coli K12 strain W3110/SM bearing a plasmid containing the traT gene (traT+ strain) was more resistant to the bactericidal activity of guinea pig serum than the same strain bearing this plasmid without the traT gene (traT- strain). A murine mAb was generated against synthetic TraT peptide (86-99). This antibody reacted only with denatured TraT protein, but it was used for monitoring TraT protein by immunoblotting during purification of the protein. Six mAb were then generated against partially purified traT protein from the solubilized membrane fraction of the traT+ strain. These mAb reacted with the native protein even on living cells, and their F(ab) fragments were found to suppress the inhibitory effect of the TraT protein on the bactericidal activity of serum. TraT protein was purified from solubilized membranes of the traT+ strain by ion exchange and gel filtration chromatographies. The purified TraT protein inhibited the lysis of sensitized erythrocytes by serum complement. Its inhibitory action was mainly on the C6 step. It strongly inhibited the reaction of C6 with EAC14b2a3b and excess C5, C7, C8, and C9. TraT protein also inhibited the reaction of C7-deficient human serum with guinea pig erythrocytes when it was activated by cobra venom factor. It did not inhibit the reaction of preformed C5b6 complexes. However, TraT did not have any effect on the cleavage of 125I[C5] to 125I[C5b] in similar conditions. It also partially inhibited the reaction steps of C4, C5, and factor B and limited guinea pig complement serum in 0.1% gelatin veronal buffered saline, pH 7.4, containing 10 mM EDTA with their respective preceding intermediate cells. It had no effect on either the binding of C3 to EAC14b2a or the cleavage of C3b by factors H and I. TraT protein probably inhibits the formation of C5b6 complex or causes structural alteration of the complex to a nonfunctional form.

Amino Acid Sequence↗

Interaction of pneumococcal antigens with complement in rats.

Complement activation with pneumococcal antigens was studied both in vitro and after injection of the antigens into rats. Whole pneumococci of various serotypes activated C3-C9 in rat serum treated with ethyleneglycol-bis (beta-aminoethyl ether)-N,N'-tetraacetic acid, although serotypes differed greatly in the extent of activation. Some purified pneumococcal capsular polysaccharides also activated C3-C9 in rat serum, but only when the antigens were present in concentrations of 500 to 1,000 mug/ml. Much of the activation with capsular polysaccharides was eliminated by the use of ethyleneglycol-bis (beta-aminoethyl ether)-N,N'-tetraacetic acid. Activation of C3-C9 by capsular polysaccharides did not correlate with the level of reactivity observed with whole organisms of the same serotypes. After injection of 5 x 10(9) pneumococci (type 3 or type 4) intravenously into rats, there was a transient decline in serum C3-C9 activity, but there was no decline in C3-C9 levels after intravenous injection of 1,000 mug of type 3 or type 4 capsular polysaccharides. As determined by immunofluorescence, circulating capsular polysaccharide was deposited in several tissues, including the vascular endothelium and glomerular mesangium of the kidney. C3 was not detectable in these deposits, and there was no histological evidence of an inflammatory response. Capsular polysaccharides appear to be only weak activators of complement. Other pneumococcal antigens may be more important in the pathogenesis of hypocomplementemia in pneumococcal infection.

Animals↗

Immunohistochemical localization of the terminal C5b-9 complement complex in human aortic fibrous plaque.

The terminal C5b-9 complex of the complement system was localized in 26 aortic, 3 iliac and 4 femoral human fibrous plaques using indirect immunofluorescence and immunoperoxidase. IgG, IgA, IgM, Clq, C3c, C4, C9 and fibrinogen were investigated simultaneously. All the fibrous plaques presented C5b-9 deposits appearing like thin threads in the fibrous cap and masses and spots in the amorphous areas. The extent and intensity were in agreement with the size of the fibrous plaques. The intimal thickenings presented less intense deposits which were absent in atherosclerosis-free samples. The C5b-9 deposits were frequently associated with immunoglobulins and complement components in the same areas. Whereas the demonstration of complement components reflected only a nonspecific trapping, the presence of assembled C5b-9 in the damaged tissues is more indicative of the involvement of complement activation in the tissue injury. The absence of C5b-9 in the atherosclerosis-free intima and its presence at lower intensity in the intimal thickenings than in the fibrous plaques suggest a pathogenic involvement in the chronic progression of the atherosclerotic lesion.

Adult↗

Formation of EAC142 and EAC1423 with macrophage culture supernatant containing the secreted complement components C1 to C3.

Culture supernatants of thioglycollate-elicited guinea pig peritoneal macrophages contained hemolytic C1, C4, C2 and C3, whereas hemolytic C5, C6, C7, C8 or C9 were not detected. Activity of C1, C2 and C3 increased up to a 48 h culture period, whereas C4 activity already declined in 2 day old cultures. After secretion, the hemolytic activity of C1 was least stable in culture supernatant. Sensitized sheep erythrocytes (EA) when incubated with culture supernatant initiated activation and functional cooperation of secreted C1 to C3 as indicated by formation of EAC142 and EA1423 intermediates. Decay and regeneration with purified C2 was shown for EAC142 and deposition of C3 fragments on EAC1423 was demonstrated with anti-C3. On an average, supernatants of 2 day old macrophage cultures were most suitable for formation of EAC142 and EAC1423 . The rate of EAC142 and EAC1423 formation, and also of C2 and C3 inactivation, during incubation of EA with culture supernatant was slow; addition of purified C1 to culture supernatant, however, greatly enhanced the same reactions of EA with supernatant which indicated that C1 was the rate limiting factor. Local secretion of hemolytic C1, C4, C2 and C3 by macrophages may have an important role in antimicrobial defense mechanisms due to the well-known functional cooperation between macrophages and activated C3.

Animals↗

Spontaneous classical pathway activation and deficiency of membrane regulators render human neurons susceptible to complement lysis.

This study investigated the capacity of neurons and astrocytes to spontaneously activate the complement system and control activation by expressing complement regulators. Human fetal neurons spontaneously activated complement through the classical pathway in normal and immunoglobulin-deficient serum and C1q binding was noted on neurons but not on astrocytes. A strong staining for C4, C3b, iC3b neoepitope and C9 neoepitope was also found on neurons. More than 40% of human fetal neurons were lysed when exposed to normal human serum in the presence of a CD59-blocking antibody, whereas astrocytes were unaffected. Significant reduction in neuronal cell lysis was observed after the addition of soluble complement receptor 1 at 10 microg/ml. Fetal neurons were stained for CD59 and CD46 and were negative for CD55 and CD35. In contrast, fetal astrocytes were strongly stained for CD59, CD46, CD55, and were negative for CD35. This study demonstrates that human fetal neurons activate spontaneously the classical pathway of complement in an antibody-independent manner to assemble the cytolytic membrane attack complex on their membranes, whereas astrocytes are unaffected. One reason for the susceptibility of neurons to complement-mediated damage in vivo may reside in their poor capacity to control complement activation.

Antibodies, Blocking↗

The cleavage site of C5 from man and animals as a common target for neutralizing human monoclonal antibodies: in vitro and in vivo studies.

The isolation of an anti-C5 single-chain fragment variable (scFv) antibody, TS-A12/22, from a human phage display library, is described. This antibody inhibits the activation of C5 and the assembly of the terminal complement complex implicated in cell and tissue damage. Using antibody-sensitized sheep erythrocytes and rabbit red cells as target cells in hemolytic assays, we found that TS-A12/22 inhibited the activation of C5 by the convertases of both classical and alternative pathways. Western blot analysis and competition experiments with synthetic peptides showed that TS-A12/22 reacted with the alpha chain of C5 and recognized the cleavage site of this complement component by the C5 convertase. As a result, the antibody prevented splitting of C5 and inhibited the generation of C5a and of the terminal complement complex. The identification of the TS-A12/22 recognition site as a conserved sequence in man, mouse, rat and rabbit enabled the demonstration of in vitro inhibition of complement activity in these species. The scFv TS-A12/22 was tested in a rat model of antigen-induced arthritis and proved to be effective in preventing influx of polymorphonuclear cells into the knee joint and C9 deposition on synovial tissue.

Animals↗

Complement-induced vesiculation and exposure of membrane prothrombinase sites in platelets of paroxysmal nocturnal hemoglobinuria.

Paroxysmal nocturnal hemoglobinuria (PNH) is an acquired stem-cell disorder in which the glycolipid-anchored membrane proteins, including the cell-surface complement inhibitors, CD55 and CD59, are partially or completely deleted from the plasma membranes of mature blood cells. To gain insight into the pathogenesis of thrombosis that is frequently observed in this disorder, the procoagulant responses of PNH platelets exposed to the human terminal complement proteins C5b-9 were investigated. C5b-9 complexes were assembled on gel-filtered platelets by incubation with purified C5b6, C7, C9, and limiting amounts of C8. Platelet microparticle formation and exposure of plasma membrane-binding sites for coagulation factor Va were then analyzed by flow cytometry. PNH platelets exhibiting undetectable levels of surface CD59 antigen showed an approximately 10-fold increase in sensitivity to C5b-9-stimulated expression of membrane-binding sites for factor Va when compared with platelets from normal controls. Expression of catalytic surface for the prothrombinase complex (VaXa) paralleled the exposure of factor Va-binding sites; the rate of prothrombin conversion by C5b-9-treated PNH platelets exceeded that of C5b-9-treated normal controls by approximately 10-fold at the maximal input of C8 tested (500 ng/mL). These data indicate that PNH platelets deficient in plasma membrane CD59 antigen are exquisitely sensitive to C5b-9-induced expression of prothrombinase activity, and suggest that the tendency toward thrombosis in these patients may be due, at least in part, to the deletion of this complement inhibitor from the platelet plasma membrane.

Adult↗

Multiple effects of a diamidine (propamidine) on complement activation.

Propamidine, one of the diamidines used against infections with babesiae has inhibitory and enhancing effects on complement activation as assessed by immune haemolysis of sensitized sheep red cells. Utilization of C1 is powerfully, that of C3 weakly improved by propamidine while activation and/or fixation of C4, C5 and to a lesser degree of C8 and C9 are inhibited. At low concentrations of propamidine (less than 2 mM) the enhancing effects, at higher concentrations the inhibitory effects predominate. Inhibition is produced, in some cases certainly, in others likely, by interference of propamidine with binding properties of complement components. None of the complement enzymes, C1s, C42 or C3bBb was inhibited in its hydrolytic activity. The possible significance of propamidine actions is discussed.

Amidines↗

Elastase of Pseudomonas aeruginosa: inactivation of complement components and complement-derived chemotactic and phagocytic factors.

A purified elastase from Pseudomonas aeruginosa was highly destructive for fluid-phase and cell-bound C1 and C3 and fluid-phase C5, C8, and C9. Inactivation of C4, C2, C6, and C7 by the enzyme varied from 0 to 67%. Low concentrations of elastase generated, then inactivated, a chemotactic factor from human C5 but not from C3. Higher enzyme concentrations inactivated the C5 chemotactic activity at a faster rate. Elastase treatment of sensitized pseudomonads containing cell-bound C3 reduced the phagocytic indexes of polymorphonuclear leukocytes. The data support the proposed chemopathogenic role of the elastase in generation of the characteristic non-inflammatory Pseudomonas vasculitis.

Animals↗

[Activation of human serum complement with inulin and purification of SC5b-9].

During a study of the effect of inulin on human complement, we found that complements were partially activated after incubation with inulin for one hour and completely activated after incubation for three hours at 37 degrees C. SC5b-9 was purified by DEAE-Sephacel chromatography, linear sucrose density gradients centrifugation and anti-IgM-protein A affinity chromatography. Purified SC5b-9, as assayed by immunoelectrophoresis, was a single fraction and had C5b, C6, C7/C8 alpha gamma, C8 beta, C9, C92, and S-protein bands appearing in the 10% SDS-PAGE.

Complement Activation↗

The cytolytic C5b-9 complement complex: feedback inhibition of complement activation.

We describe a regulatory function of the terminal cytolytic C5b-9 complex [C5b-9(m)] of human complement. Purified C5b-9(m) complexes isolated from target membranes, whether in solution or bound to liposomes, inhibited lysis of sensitized sheep erythrocytes by whole human serum in a dose-dependent manner. C9 was not required for the inhibitory function since C5b-7 and C5b-8 complexes isolated from membranes were also effective. No effect was found with the cytolytically inactive, fluid-phase SC5b-9 complex. However, tryptic modification of SC5b-9 conferred an inhibitory capacity to the complex, due probably to partial removal of the S protein. Experiments using purified components demonstrated that C5b-9(m) exerts a regulatory effect on the formation of the classical- and alternative-pathway C3 convertases and on the utilization of C5 by cell-bound C5 convertases. C5b-9(m) complexes were unable to inhibit the lysis of cells bearing C5b-7(m) by C8 and C9. Addition of C5b-9(m) to whole human serum abolished its bactericidal effect on the serum-sensitive Escherichia coli K-12 strain W 3110 and suppressed its hemolytic function on antibody-sensitized, autologous erythrocytes. Feedback inhibition by C5b-9(m) represents a biologically relevant mechanism through which complement may autoregulate its effector functions.

Complement Activation↗

The computer analysis of volume distribution curves. Demonstration of two erythrocyte populations of different size in the young guinea pig and analysis of the mechanism of immune lysis of cells by antibody and complement.

Guinea pig, rat and sheep erythrocytes were sized electrically using the hydrodynamic focusing technique. The experimental curves were approximated with a computer by linear and logarithmic normal distributions. Rat and guinea pig erythrocytes from adult animals were best approximated by one linear normal distribution. Two populations (I, II) of erythrocytes with different mean volume could be demonstrated in young guinea pigs by this analysis. Population I erythrocytes are small, have a lower electrophoretic mobility and are mainly present at birth. They are gradually replaced by the larger population II erythrocytes. Both types of erythrocytes are probably the result of separate differentiation pathways. The analysis of erythrocyte volume distribution curves during immune lysis by antibody and complement shows that intact and ghost erythrocytes are measured by electrical sizing. No volume changes were observed up to the EAC1-8 intermediate. After the addition of C9, a C9 dose-dependent part of the erythrocytes swell permanently to spheroids. The spheroid transformation is a temperature-dependent, all or nothing reaction which is independent of protein osmotic forces from the interior of the cell.

Animals↗

Effect of a protein-bound polysaccharide PS-K on the complement system.

A protein-bound polysaccharide from mycelia of Coriolus versicolor PS-K, clinically used as an immunomodulator, has been shown to restore the decreased cellular immune response and to exhibit host-mediated antitumor activity. In this experiment, PS-K was found to increase serum complement level in guinea pig and in human without malignancy, when hemolytic assay of complement was performed using sensitized sheep erythrocytes for the classical pathway activity and unsensitized rabbit erythrocytes for the alternative pathway activity. Assay of complement components revealed increase in C3 level in guinea pig, but no significant changes in C1q, C4, C3, properdin, C3 activator, and C1-inhibitor in human, while C5 and C9 were depressed. Conversion of beta 1C to beta 1A was observed in the 7th day's plasma of these patients by crossed immunoelectrophoresis. Biosynthesis of guinea pig C3 was accelerated by administration of PS-K, but that of C4 was not affected. These evidences suggested that PS-K might potentiate immune response of the host by elevating serum complement level, in addition to the activation of the complement system.

Animals↗