Dual function of insoluble polyanions. Formation of C1 and C42 sites in addition to activation of the alternative pathway of complement.
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Mouse monoclonal antibodies were raised against the human C3b receptor (CR1) molecule that had been purified from solubilized erythrocytes membranes. Four hybridomas were selected, cloned and expanded because their supernatants reacted strongly with insolubilized CR1 by ELISA and intensely stained B-dependent areas of the spleen and glomerular podocytes by indirect immunofluorescence. The four monoclonal antibodies, named J3D3, J8B10, J3B11 and J7C2, were IgG1 immunoglobulins. J3D3 immunoprecipitated two protein bands of apparent mol. wts 200,000 and 220,000 from 125I-surface-labeled human erythrocytes, which correspond to the two major allotypic forms of CR1. By indirect immunofluorescence, monoclonal antibodies stained polymorphonuclear leucocytes (PMN), most peripheral blood B-cells and a small subset of peripheral blood T-cells. J3D3 bound to CR1 on erythrocytes, PMN and lymphocytes with an affinity of 1-3 X 10(9) M-1 and recognized 170-1330 antigenic CR1 sites with an average of 740 sites/erythrocyte in 100 healthy individuals, approx. 50,000 sites/PMN and 15,000 sites/lymphocyte. There was a bimodal distribution of CR1 numbers on erythrocyte in the normal population. The four monoclonal antibodies similarly inhibited CR1-mediated decay of preformed cell-bound alternative- and classical-pathway C3 convertase sites. Two antibodies, J3D3 and J3B11, inhibited C3b-dependent rosette formation with lymphocytes, although much less efficiently than F(ab')2 polyclonal anti-CR1 antibody. Differences that were observed in the relative capacity of the antibodies to inhibit some of the functions of CR1 and in their ability to compete for binding of 125I-J3D3 to CR1 on erythrocytes, suggested that they are directed against different epitopes on CR1. Monoclonal antibodies provide useful means to assess and analyze the biological and immunoregulatory functions of the C3b receptor.
The levels of IgG immunoconglutinins in plasma from patients with rheumatoid arthritis, systemic lupus erythematosus and primary biliary cirrhosis were monitored by ELISA. High levels of IgG immunoconglutinins were found mainly in plasma from patients with systemic lupus erythematosus. These immunoconglutinins bound to microtitre plate-fixed C3, C3b and C3c but poorly to C3d. This binding was inhibited by particle-bound C3b and iC3b but not by the corresponding soluble fragments. Furthermore, Western blot analysis revealed no immunoconglutinin-binding to reduced C3 peptides and no binding was shown to soluble C3 alpha and beta chain by ELISA. IgG immunoconglutinins were purified from three plasma specimens by affinity chromatography on activated thiol sepharose ATS/C3 fragments. Two immunoconglutinin preparations that preferentially recognize ATS-C3b, inhibited C5-convertase function by 50-100% while one immunoconglutinin that recognized ATS-C3d,g had no effect. The two former immunoconglutinins also inhibited all three factor I cleavages in C3 alpha chain but the latter inhibited only the third cleavage. None of the immunoconglutinins affected the binding of complement-coated anti-BSA/BSA complexes to CR1 (CD35) on human erythrocytes, but the two immunoconglutinins that inhibited all factor I cleavages also inhibited the factor I-induced release of anti-BSA/BSA complexes from CR1. The results show that immunoconglutinins recognize specific epitopes on bound C3 fragments and that they are able to modulate C3-mediated functions.
Soluble classical-pathway C3 convertase and proconvertase were prepared from purified C4b-C2ox complex in the presence of Ni2+; the two complexes, stable for at least 15 h at 4 degrees C, were isolated by sucrose-density-gradient ultracentrifugation. The C3 convertase alone was able to cleave C3, and its decay was accelerated in the presence of C4-binding protein. The individual roles of Ni2+ and I2 treatment of C2 in the stabilization of the complexes seemed to be different and additive. 63Ni2+ binding coupled to h.p.l.c. analysis showed that 63Ni2+ bound only to the C2ox proteolytic fragment a (1 mol/mol) with a Kd of 26 microM. Competition studies between Ni2+ and Mg2+ indicated that only half of the Ni2+ bound to the C3 convertase was removed by Mg2+, whereas, in the same conditions, Ni2+ bound to C2ox proteolytic fragment a was not displaced, suggesting the presence of two sets of sites on the convertase. EDTA prevented the formation of both C3 convertase and proconvertase; EDTA had no effect on the preformed C3 convertase, whereas it dissociated the preformed proconvertase.
Decay-accelerating factor (DAF) was purified from human pooled urine by conventional techniques. The urine DAF was separated into two peaks, pool I and pool II, by gel chromatography. DAF-U1 was isolated from pool I by hydrophobic chromatography, and DAF-U2 from pool II by anti-DAF IgG column. The specific activities of DAF-U1 and DAF-U2 to decay membrane-phase C5 convertase were about 3% and 70% of membrane form DAF, respectively. However, both urine DAFs revealed a similar activity to each other and slightly higher activity than that of membrane form DAF in decay-accelerating fluid-phase C3 convertase of the alternative pathway.
We have investigated the structural and functional similarities between insect (armyworm) major larval serum protein (LSP-I) and mammalian (Cat) C4 binding protein (i) by comparing the major chymotryptic peptide patterns using sodium dodecyl sulfate polyacrylamide gel electrophoresis and (ii) their ability to prevent assembly of classical C3 convertase (EAC142). Both Cat C4 bp and Spodoptera LSP-I are composed of identical subunits of Mr = 75,000 and Mr = 80,000, respectively and generate the characteristic cleavage product of Mr = 50,000 on limited proteolysis. These observations are interpreted as an indication that the major hemolymph protein (LSP-I) of fall armyworm is a homologue of the C4bp of the mammalian complement system.
This paper demonstrates that heparin-oligosaccharides with low anticoagulant activity have a high capacity to inhibit activation of the amplification pathway of complement in vitro. We prepared heparin-oligosaccharides by partial depolymerization of heparin using purified flavobacterial heparinase. The resulting oligosaccharide mixture was then fractionated using strong anion exchange-high pressure liquid chromatography to produce individual oligosaccharide components of this mixture, with degree of polymerization ranging from 2 to 16. These heparin-oligosaccharides were examined for both their anticoagulant activity and capacity to inhibit activation of the amplification pathway of complement. Although there was little difference among commercial heparins, a correlation between molecular weight and activity to inhibit convertase generation was clearly established for heparin-oligosaccharides between degree of polymerization 2 through 16. Heparin-oligosaccharides of degree of polymerization 10-16 (Mr 3888-5320) demonstrated up to 54% of heparin's activity on a molar basis (and up to 163% of heparin's activity on a weight basis) in inhibiting the amplification pathway of complement in vitro while showing almost no anticoagulant activity. These studies, for the first time, completely separate heparin's ability to inhibit complement activation from its anticoagulant activity.
Infective- and vertebrate-stage trypomastigotes of Trypanosoma cruzi resist serum killing by the alternative complement pathway, whereas noninfective vector-stage epimastigotes, from which trypomastigotes derive, are serum-sensitive. This form of developmental preadaption is commonly observed in protozoan parasites, but its mechanisms are poorly understood. We have demonstrated previously that trypomastigotes spontaneously shed molecules which interfere with formation and accelerate the intrinsic decay of complement C3 convertases, a finding which may explain the evasion of complement lysis by trypomastigotes. We now describe the partial purification and characterization of the T. cruzi C3 convertase inhibitor from the supernatant of culture metacyclic and tissue culture trypomastigotes. Decay-accelerating activity for both classical and alternative pathway C3 convertases copurifies on anion-exchange fast protein liquid chromatography and chromatofocusing with 35S-labeled molecules of 87-93 kDa, pI 5.6-5.8. The labeled components are destroyed by papain and retained on concanavalin A-Sepharose, procedures which remove functional decay-accelerating activity from the supernatant. The 87-93-kDa components are immunoprecipitated by sera from patients chronically infected with T. cruzi, but not by antisera to any known regulatory proteins of the human complement cascade. Lytic activity for tissue culture trypomastigotes in chagasic sera is associated with antibody reactivity against the 87-93-kDa 35S-labeled components and with inhibition of decay-accelerating activity. The T. cruzi factor is the first developmentally regulated microbial complement inhibitor to be biochemically characterized.
Rosmarinic acid (RA) is a naturally occurring compound, isolated from Rosmarinus officinalis or Melissa officinalis which inhibits the in vitro immunohaemolysis of antibody-coated sheep erythrocytes by guinea pig serum. In further experiments this reduced immunohaemolysis was found to be due to inhibition of the C3-convertase of the classical complement pathway. The threshold concentration for inhibition of C3-convertase was 10(-6) mol/l. RA with an optimal inhibitory concentration between 5 and 10 mumol/l., resulting in about 70% inhibition of haemolysis. However, higher concentrations of RA were less effective at inhibiting C3-convertase. The inhibition may not be specific for C3-convertase, since another serine protease, elastase, was also weakly inhibited by RA in vitro. RA also exhibited inhibitory activity in three in vivo models in which complement activation plays a role. Thus, RA (0.316-3.16 mg/kg i.m.) reduced paw oedema induced by cobra venom factor (CVF) in the rat, and at 1-100 mg/kg p.o. inhibited passive cutaneous anaphylaxis in the rat. In addition, at 10 mg/kg i.m. RA impaired in vivo activation by heat-killed Corynebacterium parvum (i.p.) of mouse macrophages, as measured by the decreased capacity of the activated macrophages to undergo the oxidative burst. RA (0.1-10 mg/kg i.m.) did not inhibit t-butyl hydroperoxide-induced paw oedema in the rat, indicating selectivity for complement-dependent processes.
N-Acetyl-aspartyl magnesium glutamate (Rhinaaxia, NAAGA) is a topically active antiallergic dipeptide. The compound acts in two different ways. On the one hand NAAGA inhibits the mast cell-degranulation, on the other hand this compound blocks the activation of the C3-convertase, subsequently followed by a blocked cleavage of the fragments C3a and C5a, respectively. 20 patients suffering from pollinosis were treated for 2 weeks according to a randomized double-blind placebo-controlled study. Besides subjective complaints nasal obstruction was objectively documented via rhinomanometria. 9 out of 10 patients under placebo had to use the rescue drug tritoqualine, a histidine decarboxylase inhibitor, compared to none in the verum group (p less than 0.01). After 14 days of treatment with NAAGA the nasal peak flow rate increased by 21.5 l/min and 21.8 l/min in the tritoqualine/placebo group, respectively (not significant). Nasal obstruction improved statistically significantly after 7 and 14 days of treatment in both groups. Tolerance was reported to be good in either group.
Decay-accelerating factor (DAF) of human erythrocytes is a glycoprotein with a Mr of 65,000 that is anchored in the membrane via a glycolipid tail. During the purification of DAF, two lower m.w. forms were noted. DAF-A had an Mr of 63,000, and DAF-B had an Mr of 55,000. In a fluid phase assay, both forms accelerated the decay of the classical and the alternative C3 convertases with a specific activity similar to that of DAF. However, the decay-accelerating activity for the cell-bound C3 convertases was abolished, suggesting that neither could insert into E membranes and therefore that the glycolipid tail is altered. Analysis by molecular sieve high-pressure liquid chromatography demonstrated that DAF-A eluted with a Mr of approximately 450,000, similar to native DAF, and was thus in an aggregated form. In contrast, DAF-B eluted as a monomer with a Mr of approximately 60,000. DAF-A, but not DAF-B, bound to a hydrophobic column. To further characterize these two forms, surface-labeled human erythrocytes were incubated with phosphatidyl inositol-specific phospholipase C or papain. The phospholipase inefficiently released a form of DAF that was slightly larger (Mr of 64,000) than DAF-A. Papain efficiently released a 55,000 fragment that had the same Mr as DAF-B. To determine if DAF was cleaved by endogenous enzymes, surface-labeled erythrocytes were incubated with leukocytes. The kinetics of the leukocyte-induced degradation was similar to those observed with papain, and the released fragment aligned on seizing gels with the papain-derived fragment. We hypothesize that endogenous phospholipases and proteases cleave DAF to produce fragments similar to DAF-A and DAF-B, respectively.
We studied the fluctuation of autoantibody to the alternative pathway C3/C5 convertase (C3NeF) and its autoantidiotypic antibodies, Ab2 alpha and Ab2 beta, in normal individuals, patients with membranoproliferative glomerulonephritis (MPGN), and New Zealand white rabbits. In normal individuals, serum levels of Ab2 alpha (anti-id Ab without internal imagery to the native antigen) are several times higher than those for Ab2 beta (anti-id Ab bearing the internal image of the native antigen). When normal rabbits are immunized with Ab2 beta, Ab3 is produced which has strong C3NeF activity. Ab3 acts to stimulate the prompt production of Ab4 alpha. Ab3 (C3NeF) titers then fall, followed by the appearance of Ab4 beta. Patients with MPGN and C3NeF activity were also studied. Untreated patients at the time of diagnosis have a two- to fourfold predominance of Ab2 beta which is a direct reversal of the normal situation. When the patients were treated with prednisone, C3NeF levels fell and Ab2 alpha again predominated. These data suggest that the idiotypic network acts to control the production of autoantibody in a balanced fashion. Moreover, these data suggest that the patients' response to Ab1 is quite different than that found in normal individuals.
A cobra venom factor (CVF)-induced C3 convertase has been generated from the hemolymph of Galleria mellonella. CVF was immobilized on Sepharose 4B and treated with cell-free hemolymph obtained from either unvaccinated G. mellonella larvae or larvae immunized with formalized Pseudomonas aeruginosa. The C3-cleaving activity was detected by the ability to cleave the alpha-chain of bovine C3 in a manner analogous to the CVF-induced mammalian C3 convertase, CVF,Bb. The insect-derived C3 convertase formed at 28 degrees C but not at 37 degrees C, then once formed was active at both 28 degrees C and 37 degrees C. EDTA did not inhibit the formation and action of the insect derived C3 cleaving activity.
Large immune complexes are present in the circulation of patients with primary biliary cirrhosis and result in the activation of complement by the classical pathway. Such large complexes are capable of producing tissue damage. The granulomatous lesions surrounding the small bile-ducts within the liver of patients with primary biliary cirrhosis and the vasculitis, rheumatoid arthritis, and associated lesions are all compatible with immune complex injury. It is postulated that such large complexes could be formed in the vicinity of the bile-ducts by an antigen absorbed from the bile or biliary epithelium. Complexes reaching the systemic circulation might be responsible for the associated extra-hepatic diseases.
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Components of the plasma kallikrein-kinin and complement systems were determined in patients undergoing open heart surgery with cardiopulmonary bypass. Spontaneous kallikrein activity (KK), plasma prekallikrein (PKK), functional kallikrein inhibition capacity (KKI), C3 activation products (C3-act), and the terminal complement complex (TCC) were measured. A marked, transitory increase in KK and a decrease in PKK were found prior to cardiopulmonary bypass just after heparin injection. An additional decline in PKK and KKI during bypass with a return to near control levels in the postoperative period was observed. C3-act increased in all patients during bypass, reaching a peak value at wound closure. The TCC concentration also increased significantly during cardiopulmonary bypass, returned to control levels in the early postoperative period, and then increased again in the late postoperative period. It is concluded that activation of the kallikrein-kinin system started after injection of heparin, prior to cardiopulmonary bypass. Activation of both the initial and the terminal complement cascade, however, started only after onset of cardiopulmonary bypass.