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Human complement factor B: functional properties of a recombinant zymogen of the alternative activation pathway convertase.

The human complement factor B is a centrally important component of the alternative pathway activation of the complement system. Here we report the isolation, characterization and eukaryotic expression of the first full length cDNA transcript for human factor B. In a factor B dependent haemolysis assay, the recombinant human factor B generated by transient COS cell transfection was shown to reconstitute haemolytic activity of factor B depleted human serum. To study the biological activities assigned to factor B, the availability of recombinant polypeptides representing definite portions of the human factor B molecule is desirable.

Animals↗

Transfection of human CD59 complementary DNA into rat cells confers resistance to human complement.

We have examined the role of the human CD59 antigen in inhibiting complement-mediated lysis by transfer and expression of a CD59 cDNA in rat cells. A cDNA encoding CD59 was subcloned into the expression vector pSFSVneo and stably transfected into the rat T cell line NB2-6TG. Indirect immunofluorescence staining using the anti-CD59 monoclonal antibody YTH53.1 demonstrated the presence of human CD59 antigen on transfected cells and its attachment to the cell surface by a rat glycolipid anchor. Transfected cells were found to contain a single 3.3-kb species of CD59 mRNA by Northern blot hybridization. Immunoblotting revealed that this encoded a protein band of the same size as that observed in human erythrocytes. To determine the biological effect of expression of human CD59 in rat cells, an assay was devised which measured the relative lysis of transfected cells compared to untransfected cells in the presence of human complement and a lytic monoclonal antibody. It was observed that CD59-transfected rat cells are less susceptible to lysis by human complement and that this effect was blocked by a F(ab')2 fragment of YTH53.1. These experiments provide a direct demonstration that CD59 can function as an homologous complement restriction factor for nucleated cells.

Animals↗

Neutralization of cytomegalovirus virions: the role of complement.

Complement provides a key immunologic defense against invading pathogens; thus, a clear understanding of the interactions between cytomegalovirus (CMV) and complement may permit the development of strategies to enhance CMV neutralization. In the presence of specific anti-CMV antibodies, complement enhanced the neutralizing ability of serum by 2- to 3-fold. However, in the absence of specific anti-CMV antibodies, complement was ineffective in neutralizing CMV virions by plaque assay. Although complement alone did not mediate any neutralizing effect, CMV consumed complement activity from seronegative serum, resulting in the deposition of C3 on the virion. However, only in the presence of specific anti-CMV antibody did complement activation continue to the deposition of C9 on the virions. These results strongly suggest complement regulation by CMV virions that is modulated by anti-CMV antibody; this regulation may be attributed to three host complement regulators on the virions: CD55, CD46, and CD59.

Antibodies, Viral↗

[Effects on the amount of total hemolytic complement levels(CH50) and immunoglobulin in serum induced by the implantation of biomaterials into rats].

Three kinds of biomaterials, PES, YP and SR, were implanted into the subcutaneous tissue of rats and stayed there for 7, 14, 30, 60 and 90 days. Then using the immunity assaying system (Beckman, ICS) and the standard method of measuring the value of total hemolytic complement levels (CH50), we determined the values of immunoglobulin and CH50 in serum of rats. The results showed the amounts of IgG and IgA of rats with the implanted YP and SR materials were significantly higher than those of the control groups, and their value of CH50 was significantly lower than that of the control group. There was no significant difference between the PES group and the control group.

Animals↗

Vitronectin-mediated inhibition of complement: evidence for different binding sites for C5b-7 and C9.

In the activated complement system, vitronectin (complement S-protein) occupies the metastable membrane binding site of the nascent precursor complex C5b-7, so that the newly formed SC5b-7 is unable to insert into cell membranes. Some evidence also indicates that vitronectin limits on-going membrane-associated pore formation by inhibiting C9 polymerization. It has been assumed that these two stages of terminal complement complex (TCC) inhibition take place through charge interactions between the heparin-binding region of vitronectin and homologous cysteine-rich sequences of the late complement proteins C6, C7, C8 and C9. We examined SC5b-7 formation and inhibition of C9 binding in the TCC using separate haemolytic assays. The mode of action of vitronectin in these assays was compared with two 15mer peptides which span residues 348-379 of the heparin-binding region, and a heparin-affinity polypeptide, protamine sulphate. The results showed that vitronectin acts predominantly through SC5b-7 production with a lesser effect on the inhibition of C9 lytic pore formation. In contrast, protamine sulphate did not prevent C5b-7 membrane attachment, but was a potent inhibitor of C9-mediated lysis. The peptides did not inhibit C5b-7 membrane insertion and only one affected C9 binding. These data suggest that the two stages of TCC inhibition involve separate binding sites on the vitronectin molecule. The site for association with nascent C5b-7 is unknown, whereas inhibition of C9 binding and pore formation takes place through the heparin-binding region.

Amino Acid Sequence↗

Complement-dependent antibody-mediated cytotoxicity (C'AMC) to pancreatic islet cells in the spontaneously diabetic BB/OK rat: interference from cell-bound and soluble inhibitors.

Sera from 30 newly diagnosed diabetic BB/OK rats were analyzed cross-sectionally for complement-dependent antibody-mediated cytotoxicity (C'AMC) to pancreatic islet cells using different 51Cr release test systems. The sera contained enough active complement to lyse either sheep erythrocytes or 51Cr-labelled rat islet cells that had been sensitized with specific rabbit antibodies, but, in the presence of BB/OK rat islet cell antibody they released significant amounts of islet cell-bound 51Cr only after addition of rabbit complement. In a one-step assay, 19 out of the 30 sera produced lysis significantly above that by sera from the non-diabetes-prone WOK strain. This was increased 2.5-fold (p less than 0.01) by briefly washing the serum-treated cells before adding complement (two-step assay), indicating that C'AMC inhibitory activity was present in the diabetic sera. Some inhibitory activity could still be detected in heated sera but only when they were added to the cells immediately before the rabbit complement. Islet cell lysis was still substantial after preferential inactivation of factor B of the alternative complement activation pathway (by heating at 50 degrees C), and thus mainly depended on the classical pathway. From these findings it is concluded that (a) islet cell surface antibodies in diabetic rats activate heterologous complement via the classical pathway, (b) anti-islet C'AMC is sensitive both to species-restricted interference in interactions between homologous antibody and homologous complement in the target cell membrane, and to a distinct serum inhibitor that impairs the ability of membrane-fixed BB/OK rat antibody to interact with rabbit complement.

Animals↗

Studies on activation and levels of haemolytic complement of buffalo (Bubalus bubalis). III. C3 haemolytic activity in health and chronic disease.

Estimation of haemolytic complement component C3 activity in serum was done by using buffalo serum functionally depleted of C3, with methylamine. In the one-step alternate pathway (AP) haemolytic assay, C3 activity in the serum was estimated by its capacity to reconstitute the AP haemolytic activity in C3 depleted serum. Levels of haemolytic C3 were determined in the sera of 70 apparently healthy buffaloes and of seven diseased buffaloes of which five were suffering from Johne's disease (JD) and two from JD and tuberculosis (TB). The haemolytic C3 levels in healthy animals varied with age, reaching peak values in the 2.5-3-year-old, declining after 4 years of age. The C3 levels in buffaloes suffering from chronic diseases was significantly higher (P < 0.05) than the levels in healthy buffaloes of the same age group.

Aging↗

Inhibition of complement, neutrophil, and platelet activation by an anti-factor D monoclonal antibody in simulated cardiopulmonary bypass circuits.

OBJECTIVES: Patients undergoing cardiopulmonary bypass frequently manifest generalized systemic inflammation and occasionally manifest serious multiorgan failure. Inflammatory responses of bypass are triggered by contact of blood with artificial surfaces of the bypass circuits, surgical trauma, and ischemia-reperfusion injury. We studied the effects of specific inhibition of the alternative complement cascade by using an anti-factor D monoclonal antibody (166-32) in extracorporeal circulation of human whole blood used as a simulated model of cardiopulmonary bypass. METHODS: Five healthy blood donors were used in the study. Monoclonal antibody 166-32 was added to freshly collected, heparinized human blood recirculated in a pediatric cardiopulmonary bypass circuit at a final concentration of 18 microg/mL. An irrelevant monoclonal antibody was used as a negative control with the same donor blood in a parallel bypass circuit on the same day. Blood samples were collected at different time points during recirculation for measurement of activation of complement, neutrophils, and platelets by immunofluorocytometric methods and enzyme-linked immunosorbent assays. RESULTS: Monoclonal antibody 166-32 inhibited the alternative complement activation and the production of Bb, C3a, sC5b-9, and C5a. Upregulation of CD11b on neutrophils and CD62P on platelets was also significantly inhibited by monoclonal antibody 166-32. This is consistent with the inhibition of the release of neutrophil-specific myeloperoxidase and elastase and platelet thrombospondin. The production of proinflammatory cytokine interleukin 8 was also suppressed by the antibody. CONCLUSIONS: The alternative complement cascade is predominantly activated during extracorporeal circulation. Anti-factor D monoclonal antibody 166-32 is effective in inhibiting the activation of complement, neutrophils, and platelets. Inhibition of the alternative complement pathway by targeting factor D could be useful in reducing systemic inflammation in patients undergoing cardiopulmonary bypass.

Antibodies, Monoclonal↗

Inhibition of terminal complement complex formation and cell lysis by monoclonal antibodies.

Three monoclonal antibodies (mabs), two against C5 and one against C6, were identified and characterized. They inhibited the generation of the terminal complement complex (TCC) in serum to over 90% as assayed by a sensitive ELISA based on a neoepitope-specific mab, which recognized TCC-integrated C9. The haemolytic function of the TCC was markedly reduced by all three mabs implying that they are directed to epitopes on C5 and C6 which are essential for TCC formation in both the fluid phase and on erythrocyte membranes. Since the generation of C5a was also impaired by these mabs, they may serve as tools in investigations of the sequelae of the generation of C5a and of TCC.

Antibodies, Monoclonal↗

Patients with systemic lupus erythematosus are deficient in complement-dependent prevention of immune precipitation.

OBJECTIVE: A functional deficiency of complement has been implicated but not conclusively demonstrated in the pathogenesis of systemic lupus erythematosus (SLE). To test this, we studied several aspects of complement in 44 patients with SLE, 46 patients with rheumatoid arthritis and 102 blood donors. METHODS: Prevention of immune precipitation (PIP) was measured by an enzyme immunoassay, levels of C1q, C4 and C3 by rocket immunoelectrophoresis, C4A, C4B and C3d by enzyme-linked immunosorbent assay (ELISA), complement haemolysis (CH50) by standard methods and C4 allotypes by high-voltage agarose electrophoresis and sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE). RESULTS: PIP was significantly reduced in SLE (P<0.001); the defect was revealed by a sensitive assay measuring this function of complement but not by the other tests employed. The patients were clinically well at the time of study, and levels of C3d, which have been shown to correlate with disease activity, were normal. The defect was more common in patients with early disease (P = 0.009), supporting a role in aetiology or early pathophysiology. PIP was positively correlated with levels of C4 (P = 3 x 10(-5)) and in particular the C4A isotype (P = 9 x 10(-10)) whereas C4B was redundant. CONCLUSIONS: Our results reveal a defect in prevention of immune precipitation in SLE that is apparent at an early stage in the disease and correlates with low levels of C4A. These results indicate that subtle deficiencies of complement may predispose to SLE.

Adult↗

Interaction of poly(2-acrylamido 2-methylpropane sulfonate)-grafted polystyrene beads with cationic complement proteins.

Influence of various biomaterials on the complement system in serum has been intensively studied by many research groups, since activation of the complement pathway in vivo has been known to give rise to some pathological conditions, such as inflammation and anaphylaxis. Much effort has been devoted to develop new materials that do not activate or deteriorate the complement system. The present work is aimed at revealing the mode of reactions of anionic poly(2-acrylamido 2-methylpropane sulfonate) grafted on polystyrene bead (PAMPS-g-bead) with serum complement. Complement activity assay, determination of complement proteins levels, and immunoblot analysis were carried out for sera pretreated with PAMPS-g-beads. The results clearly showed that, when PAMPS-g-beads were incubated with serum, those beads adsorbed several complement proteins, i.e. C1q, factor D, factor P, C6, and C8, but the generation of activation fragments of complement components was not observed. Especially, factor D was most effectively removed from serum, resulting in potential inhibition of the alternative pathway. A larger amount of PAMPS-g-beads was needed to decrease the serum CH50 level. That may be caused by removal of C6. Although some polyanions, such as dextran sulfate, were reported to activate the complement system, the obtained results indicate that the PAMPS-g-bead is not an activator of the complement pathway, but acts as an adsorbent of complement components. One possible clinical application of the PAMPS-g-beads is adsorption of serum factor D by extracorporeal treatment of patients with renal failure with a high level of factor D, because the increased quantity of factor D in serum may cause consistent activation of the alternative pathway.

Biocompatible Materials↗

Extracts of wheat gluten activate complement via the alternative pathway.

We studied the ability of wheat gluten and its subfractions to activate complement directly. A sensitive sandwich ELISA employing a monoclonal antibody (MoAb) to a C9 neoepitope exposed in the terminal complement complex (TCC), a functional haemolytic assay for C5b6 generation, and Laurell's electrophoretic method of estimating C3 conversion to C3bi were used. On a weight-for-weight basis, enzyme solubilized Frazer's fraction three of gluten (FIII) produced approximately 75% of the complement activation seen with the potent activator zymosan. By contrast, activation with whole insoluble undigested gluten was very weak and similar to that seen with ovalbumin or beta-lactoglobulin. The results were the same using normal human serum or sera from patients with coeliac disease, dermatitis herpetiformis, or hypogammaglobulinaemia as the complement source. Activation by both zymosan and FIII was blocked in 0.01 M EDTA, but not in 0.01 M EGTA with 0.0025 M magnesium chloride. Zymosan and FIII activated complement in a serum from a patient with an intact alternative pathway but classical pathway haemolytic activity (CH50) of zero. Preferential heat inactivation of the alternative pathway inhibited both zymosan- and FIII-induced activation. Our results confirm that FIII is a strong activator of the alternative pathway. We discuss how gluten enteropathy might be initiated by complement.

Adult↗

Classical and alternative complement pathway activation in paracoccidioidomycosis.

The following study presents evidence of complement activation in paracoccidioidomycosis (PCM). Twenty-eight untreated patients were studied from endemic areas of Parana in southern Brazil. The activation of the classical pathway, evaluated by the C4d/C4 ratio, was significantly elevated in the patients compared to the control population (p < 0.005). Six patients were examined prospectively with the C4d/C4 assay during treatment and they showed a decrease in this ratio associated with clinical improvement. The activation of the alternative pathway was determined by rocket immunoelectrophoresis of fragment Ba. These levels were also significantly higher in the patient group in comparison to the controls (p < 0.0005). The prospective study also showed a significant variation in the Ba levels associated with clinical improvement (p < 0.01). Furthermore, the levels of C3, C4, CH50 and anti-Paracoccidioides brasiliensis IgG were determined in all patients. The anti-P. brasiliensis IgG levels showed a weak positive correlation with the C4d/C4 ratio (r[S] = 0.45; p < 0.03). The C3, C4 and CH50 levels did not show significant variations from the normal ranges. Our results suggest the involvement of both complement pathways, classical and alternative, in PCM and their association with disease activity.

Adolescent↗

Analysis of high complement levels in Mus hortulanus and BUB mice.

BUB/BnJ mice were previously identified as having exceptionally potent complement activity, relative to common mouse strains, in the lysis of antibody-coated human tumor cells. We describe herein our investigation into the molecular and genetic basis for this difference between mouse strains, and also our results with wild mice and mouse strains recently derived from the wild, to determine whether low complement levels are characteristic of wild mice. BUB complement was compared with complement from BALB/c and C57BL/6 mice. BUB mice had higher levels of most individual classical pathway components, except for C1, than the other two strains, but the difference was generally only 2-3-fold, so insufficient to fully explain the difference observed with tumor target cells. CH50 titers on antibody-coated sheep erythrocytes also demonstrated only a 2-4-fold difference. However, CH50 titers on antibody-coated human erythrocyte target cells demonstrated a difference similar in magnitude to that seen with human tumor targets. These results suggest that the difference between mouse strains depends partly on the use of human, rather than sheep, target cells. In an assay for alternative complement pathway activity using neuraminidase-treated human erythrocytes as targets, complements of BALB/c and BUB mice were similar in activity, suggesting that the difference between mouse strains is manifested in the early steps of complement activation. Analysis of F1 and backcross mice suggested that the difference in complement level between BUB and BALB/c or C57BL/6 mice is controlled by semi-dominant genes, and cannot be attributed to a single gene. Wild mice and mice recently derived from the wild generally had low complement levels, similar to most laboratory mice. However, three strains of aboriginal mice, including Mus hortulanus (spicilegus) and Mus spretus, had complement levels higher than that of BUB mice, and as high as sera from the rabbit or rat, which are the most potent known complement sources for the lysis of human tumor cells. In comparison with BUB mouse sera, M. hortulanus sera had at least four-fold higher levels of C3, C6, C8 and C9, and some or all of these differences may explain its higher total complement activity. In the lysis of antibody-coated human erythrocytes, M. hortulanus serum was more potent than any other complement source tested, including sera of the guinea pig, rat, rabbit or human. These strains may be useful in investigating the role of complement in various pathological processes, and in investigating the genetic regulation of the complement system.

Animals↗

Hereditary C6 deficiency in a strain of PVG/c rats.

A chance observation has led to the discovery of a strain of PVG rats (PVG/c-) which are deficient in complement (C) component C6. Analysis of total haemolytic activity (CH50) of PVG/c- serum revealed an absent CH50 activity compared with serum of other rat strains and of a PVG/c rat (PVG/c+) that showed normal C activity. Thus, the PVG/c- rat was unable to activate the C5b-9 membrane attack complex. To gain insight into the complement abnormalities, analysis of individual C components was performed. Testing the PVG/c- serum in a C6 haemolytic assay and using deficient human sera showed a deficiency of C6 in the PVG/c- rat. Highly purified human C6 and human sera deficient in other components were able to reconstitute the CH50 activity of the PVG/c- rat. The possibility that an inactivator of C was present in PVG/c- serum was excluded. The deficiency was found to be inheritable and under the control of an autosomal recessive gene. Furthermore, tissue antigens and immunity of the PVG/c- rat were found to be identical to those determined in the PVG/c+ rat. With regard to their health status, the PVG/c- animals seem to have no disadvantages compared with PVG/c+ rats when held under the same conditions within the protected environment of animal facilities. Taken together, both rat strains provide an unique animal model for studying the biological role of C, particularly the C5b-9 membrane attack complex in experimental medicine.

Animals↗

The role of complement in the early phase of Leishmania (Leishmania) amazonensis infection in BALB/c mice.

Complement-depleted and -non-depleted BALB/c mice were inoculated with Leishmania (Leishmania) amazonensis promastigotes into the hind footpad to study the role of the complement system in cutaneous leishmaniasis. Total serum complement activity was measured by hemolytic assay and C3 fragment deposit at the inoculation site was determined by direct immunofluorescence in the early period of infection, i.e., at 3, 24, 48 h and 7 days post-infection. The inflammatory reaction and the parasite burden were evaluated in the skin lesion at 7 and 30 days post-infection. Total serum complement activity decreased in the early phase of infection, from 3 to 24 h, in non-depleted mice compared to non-infected and non-depleted mice. C3 fragment deposit at the site of parasite inoculation was present throughout the period of infection in non-depleted mice. In contrast, no C3 fragment deposit was observed at the inoculation site in complement-depleted mice. Complement-depleted mice showed a significant decrease in the inflammatory response and a significant increase in the number of parasites (70.0 +/- 5.3 vs 5.3 +/- 1.5) at 7 days of infection (P<0.05). A higher number of parasites were also present at 30 days of infection at the inoculation site of complement-depleted mice (78.5 +/- 24.9 vs 6.3 +/- 5.7). These experiments indicate that complement has an important role at the beginning of experimental cutaneous leishmaniasis caused by L. (L.) amazonensis by controlling the number of parasites in the lesion.

Animals↗

A hemolytic assay for the measurement of equine complement.

A hemolytic assay was developed for the measurement of functional equine complement activity. The assay utilizes antibody sensitized chicken erythrocytes as the target cell and was specific for classical pathway (antibody dependent) complement activity. The assay was found to be reproducible and more sensitive than previous reports using other species of target cells. Total serum complement (CH50) values were determined for five mares and their foals and followed over a period of 3 months.

Animals↗

The effects of complement depletion on corneal inflammation in rats.

There are indications that complement activation may be involved in inflammatory processes of the cornea. To investigate the role of the complement system in experimental keratitis, rats were depleted of their plasma complement by treatment with cobra venom factor (CVF). intraperitoneal injection of CVF resulted in undetectable complement serum activity for 6 days when measured by a hemolytic assay. The corneal inflammatory response, induced by a single intracorneal injection of heterologous serum into nonsensitized CVF-treated rats, was suppressed significantly. The onset of the clinical symptoms of keratitis was delayed, and the severity was reduced. In addition, analysis of the serum antibody titers showed impaired antibody synthesis in the CVF-treated group. When keratitis was induced by an intracorneal antigen challenge in sensitized rats, no difference was observed when comparing the clinical signs of keratitis of CVF-treated animals with sham-treated animals. In addition, CVF treatment did not alter the course of lipopolysaccharide (LPS)-induced corneal inflammation. These findings suggest that the role of plasma complement activation in antigen- and LPS-induced keratitis appears to be limited. The implications for the immunopathologic mechanisms underlying keratitis are discussed.

Animals↗