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Neoantigen of the polymerized ninth component of complement. Characterization of a monoclonal antibody and immunohistochemical localization in renal disease.

A monoclonal antibody to a neoantigen of the C9 portion of the membrane attack complex (MAC) of human complement has been developed and characterized. The distribution of this neoantigen was assessed by indirect immunofluorescence microscopy in nephritic and nonnephritic renal diseases. The antibody (Poly C9-MA) reacted on enzyme-linked immunosorbent assay (ELISA) with a determinant in complement-activated serum that was undetectable in normal human serum (NHS). Zymosan particles incubated in NHS had positive immunofluorescent staining with Poly C9-MA; however, binding of Poly C9-MA was not observed with zymosan particles incubated in sera deficient in individual complement components C3, C5, C6, C7, C8, or C9. Reconstitution of C9-deficient sera with purified C9 restored the fluorescence with Poly C9-MA. Poly C9-MA reacted positively by ELISA in a dose-dependent manner with purified MC5b-9 solubilized from membranes of antibody-coated sheep erythrocytes treated with NHS but not with intermediate complement complexes. Poly C9-MA also reacted in a dose-dependent manner on ELISA and in a radioimmunoassay with polymerized C9 (37 degrees C, 64 h) (poly C9) but not with monomeric C9. Increasing amounts of either unlabeled poly C9 or purified MC5b-9 inhibited the 125I-poly C9 RIA in an identical manner. These studies demonstrate that Poly C9-MA recognizes a neoantigen of C9 common to both the MAC and to poly C9. By immunofluorescence, Poly C9-MA reacted minimally with normal kidney tissue in juxtaglomerular loci, the mesangial stalk, and vessel walls. Poly C9-MA stained kidney tissue from patients with glomerulonephritis in a pattern similar to that seen with polyclonal anti-human C3. In tissue from patients with nonnephritic renal disease--diabetes, hypertension, and obstructive uropathy--Poly C9-MA was strongly reactive in the mesangial stalk and juxtaglomerular regions, tubular basement membranes, and vascular walls. Poly C9-MA binding was especially prominent in areas of advanced tissue injury. Poly C9-MA frequently stained loci where C3 was either minimally present or absent. These studies provide strong evidence for complement activation not only in nephritic but also in nonnephritic renal diseases.

Adult↗

Human complement in thrombin-mediated platelet function: uptake of the C5b-9 complex.

Thrombin-mediated platelet aggregation and release is enhanced by the presence of C3, C5, C6, C7, C8, and C9 of human complement. The interaction of thrombin with its receptor on the platelet membrane initiates activation of complement on the platelet surface. Trypsin-mediated platelet function is not enhanced by the addition of complement, probably because trypsin has no receptor on the platelet surface so activation of complement is triggered in the fluid phase and not on the platelet surface. Activation of complement by thrombin led to production of dimers of the C5b-9 complex on the platelet surface. These complexes were eluted from the platelet membrane and were identified physicochemically and morphologically. The mechanism of complement-induced enhancement of platelet function is not clear, however, it probably is mediated via the arachidonic acid transormation pathway because this activity was blocked by known inhibitors of cyclo-oxygenase, namely, aspirin and indomethacin.

Antithrombin III↗

Systemic meningococcal infections in patients with acquired complement deficiency.

Congenital deficiency of the late components of the complement may predispose the individual to systemic meningococcal infection. Assuming that patients with acquired complement deficiencies may also have an increased risk of contracting meningococcal infections, a retrospective and prospective study to assess this association was conducted. Over 20 years (1970-1989), 30 patients with meningococcemia or meningococcal meningitis, proven by blood or CSF culture, were treated at the Beilinson Medical Center. Only one patient died of the infection. Risk factors were found in three patients (10%). One had a congenital deficiency of C7, and two had acquired complement deficiency due to systemic lupus erythematosus (SLE) and membranoproliferative glomerulonephritis (MPGN). These latter two patients had low serum concentration of C3 and C4 and reduced complement hemolytic activity before onset of the infection. Since the incidence of culture-proven systemic meningococcal infection in the Jewish population in central Israel is 1/100,000, and the prevalence of SLE and MPGN is, at most, 250/100,000, the finding of two patients with meningococcal infection and these rare disorders is over 100 times the expected incidence. We conclude that patients with acquired complement deficiency are at significant risk of meningococcal infection.

Adolescent↗

Neisseria meningitidis and Neisseria gonorrhoeae bacteremia associated with C6, C7, or C8 deficiency.

We summarize data from 24 previously described or newly diagnosed cases of homozygous deficiency of the sixth, seventh, or eighth components of complement. Thirteen of 24 patients had at least one episode, and usually two or more episodes of Neisseria meningitidis or Neisseria gonorrhoeae bacteremia, or both. Deficiency of C6, C7, or C8 is a meaningful risk factor for repeated neisserial bacteremia; conversely, hemolytic complement studies are indicated in patients who develop recurrent neisserial infections. When a person with C6, C7, or C8 deficiency is identified, family members should also be studied.

Adolescent↗

Hereditary deficiency of the seventh component of complement.

Deficiency of the seventh component of complement has been found in the serum of a 42-yr-old Caucasian woman who has Raynaud's phenomenon, sclerodactyly, and telangiectasia. Partial deficiency was found in the serum of the patient's parents and children, indicating a pattern of inheritance of autosomal codominance. Transfusion experiments indicated that exogenous C7 had a 91-h halk-life in the patient. There was no evidence for C7 synthesis after transfusion. No C7 inhibitors were detected in the patient's serum. The patient's serum was found to support the activation of complement by both the classical and properdin pathways to the C7 stage. The addition of C7 to the patient's serum permitted it to support hemolytic reactions initiated by either pathway. No defects could be detected in plasma or whole blood coagulation. The patient's serum was deficient in opsonizing unsensitized yeast particles in serum and in the generation of chemotactic factor by antigen-antibody complexes and endotoxin. Both deficiencies were corrected by the addition of C7. These observations suggest a key role for C7 for in vitro yeast phagocytosis and chemotaxis generation. However, the patient's lack of infections indicates a relatively minor role for C7 in human resistance to infection.

Adult↗

Gene transcript changes in individual rainbow trout livers following an inflammatory stimulus.

Inflammatory stimuli elicit liver synthesis and subsequent release into the plasma of several proteins (positive acute phase proteins, APP) with functions in innate immunity, tissue repair and restoration of homeostasis. To expand the basis for evaluating the degree of conservation of the APR in vertebrates and to assess the extent to which genes encoding both cellular and plasma proteins are affected, we profiled transcriptional changes in livers of individual rainbow trout (Oncorhynchus mykiss) after intraperitoneal injection of Listonella (Vibrio) anguillarum bacterin in Freund's Incomplete Adjuvant. Twenty genes were down-regulated, some unexpectedly such as complement component 3 and alpha2-macroglobulin. Sixteen up-regulated genes included three encoding proteins involved in iron metabolism (hepcidin, haptoglobin, and intelectin), from which we infer that sequestration of iron is likely to be a major component of the trout APR. Activated genes encoding proteins of unknown functions included precerebellin-like plasma protein, and differentially regulated trout protein which is predicted to be cell surface associated. The only complement component that increased was C7. Genes encoding proteins that are probably not released into plasma included two fatty acid binding proteins, two transport proteins (SEC61 and a Na - Ca exchanger), GAPDH, an amino transferase, and a hydrolase. When microarray data and quantitative RT-PCR analyses were used to evaluate specific transcripts, variations were notable between individual fish, possibly a basis for natural variation in susceptibility to infectious diseases. This study suggests novel hypotheses relating to NFkappaB, albumin-related protein, pentraxin, hypoferremia and the complement cascade. While the capacity to mount an APR is conserved throughout vertebrate evolution, the responding genes vary from species to species, and considerable variation is observed from individual to individual within a species.

Acute-Phase Proteins↗

Inhibition of acute passive transfer experimental autoimmune myasthenia gravis with Fab antibody to complement C6.

The role of the lytic complement C5b-9 membrane attack complex (MAC) in acute passive transfer experimental autoimmune myasthenia gravis (EAMG) produced in rats was investigated by in vivo inhibition of MAC formation with anti-C6 Fab. Anti-C6 Fab totally inhibited in vitro serum hemolytic activity, but did not consume or inhibit early complement pathways. Injection of rats with 0.12 mg/ml anti-C6 Fab reduced serum C6 to 8% and inhibited the muscle weakness, electrophysiologic abnormalities and loss of acetylcholine receptor (AChR) associated with acute EAMG. This level of C6 inhibition reduced the total serum complement hemolytic activity to 29% of normal but did not reduce the serum levels of complement components C3, C5, or C7. Treatment of rats with lower amounts of anti-C6 Fab (0.08 mg/ml) also inhibited clinical and electrophysiologic signs of EAMG, however, the lower amount of anti-C6 did not prevent the loss of muscle AChR. Both the higher and the lower amount of anti-C6 Fab inhibited the accumulation of macrophages at muscle motor end-plates. The inhibition by anti-C6 indicates that muscle weakness and electrophysiologic abnormalities associated with EAMG are dependent on the complement MAC, and that muscle weakness results from tissue injury in addition to loss of muscle membrane and AChR.

Animals↗

Membrane fluidity change in erythrocytes induced by complement system.

The structural change in erythrocyte membranes induced by antibody and complement was studied using phospholipid spin-labels. Sheep erythrocytes were labeled with phosphatidylcholine spin-label and various intermediate cells (erythrocyte-antibody complex (EA), EA bound with complement components from C1 to C7 (EAC1-7), EAC1-8, and EAC1-9) were prepared. Electron spin resonance spectra of EA, EAC1-7, and EAC1-8 were very similar to that of the erythrocytes, while that of EAC1-9 was markedly different. The overall splitting value for the lysed EAC1-9 (53 G) was much smaller than that for the erythrocytes (57 G), indicating a marked fluidization around the phosphatidylcholine label. The unlysed EAC1-9 membranes contained a limited fraction of the fluidized area. When EA was reacted with complement in the presence of 36% bovine serum albumin, the membranes were fluidized similarly to the lysed EAC1-9, although the hemolysis was largely blocked. The membranes of unlysed EAC1-9 prepared in isotonic (ethylenedinitrilo)tetraacetic acid were also fluidized, but to somewhat smaller extent. The role of C9 in the modification of erythrocyte membranes was also demonstrated using Mg2+ ghosts, which were prepared by hypotonic hemolysis in the presence of Mg2+. The membranes of Mg2+ ghost of EAC1-7 were markedly fluidized when bound with C8 and C9, but not affected by binding of C8 only. The component C8 was found to give a latent effect on the membranes that caused irreversible fluidization upon osmotic shock. The terminal component thus creates a fluidized area in the erythrocyte membranes through which small ions and molecules may diffuse more easily and the resulting osmotic unbalance may finally cause hemolysis.

Animals↗

Three complement-type repeats of the low-density lipoprotein receptor-related protein define a common binding site for RAP, PAI-1, and lactoferrin.

The low-density lipoprotein receptor-related protein (LRP) is a 600-kD scavenger receptor that binds a number of protein ligands with high affinity. Although some ligands do not compete with each other, binding of all is uniformly blocked by the 39-kD receptor-associated protein (RAP). RAP is normally found in the endoplasmic reticulum and seems to function as a chaperone for LRP. To identify the binding sites for RAP, lactoferrin, and plasminogen activator inhibitor-1 (PAI-1), a bacterial expression system has been developed to produce soluble LRP fragments spanning residues 783-1399. These residues overlap most of the CNBr fragment containing the second cluster of complement-type repeats (C). Solid phase binding assays show that 125I-RAP binds to fragments containing three successive complement-type repeats: C5-C7. PAI-1 and lactoferrin bind to the same fragments. A fragment containing C5-C7 also blocks uptake and degradation of 125I-RAP by fibroblasts in a concentration-dependent manner. Binding competition experiments show that RAP, PAI-1, and lactoferrin each inhibit the binding of the others, suggesting that at this site in LRP, RAP acts as a competitive, rather than an allosteric, inhibitor of PAI-1 and lactoferrin binding.

Animals↗

Interaction of complement proteins C5b-6 and C5b-7 with phospholipid vesicles: effects of phospholipid structural features.

Complement components C5b-6 and C7 assemble to form C5b-7, which then interacts with membranes and commits the membrane attack complex to a target site. This protein-membrane association event was investigated to determine possible structural features that could contribute to a selective membrane attack. This system may also suggest general properties of protein-membrane insertion events. Initial binding of C5b-6 to membranes could potentially determine the site of assembly. However, binding of C5b-6 to membranes required phosphatidylglycerol or phosphatidic acid produced from egg phosphatidylcholine while binding of C5b-6 to phosphatidylcholine, phosphatidylserine, or phosphatidylinositol was undetectable. Binding to phosphatidic acid was irreversible, and the bound C5b-6 could no longer interact with C7. In contrast, C5b-7 interacted with all phospholipids tested. The rate-limiting process was the interaction of C5b-6 and C7, which displayed bimolecular properties and an activation energy of 37 kcal/mol. The C5b-7 complex showed 20-fold selectivity for small unilamellar phospholipid vesicles over large unilamellar vesicles. Vesicles carrying high negative charge densities were selected over neutral vesicles by a factor of about 5. Vesicles formed from phospholipids with short, saturated hydrocarbon side chains (dimyristoylphosphatidylcholine and dipalmitoylphosphatidylcholine) were about 5-fold less effective than those formed from phospholipids with natural fatty acid distributions. The gel vs. fluid state had little influence on C5b-7 insertion.(ABSTRACT TRUNCATED AT 250 WORDS)

1,2-Dipalmitoylphosphatidylcholine↗

Molecular modeling of the domain structure of C9 of human complement by neutron and X-ray solution scattering.

C9 is the most abundant component of the membrane attack complex of the complement system of immune defense. This is a typical mosaic protein with thrombospondin (TSR) and low density lipoprotein receptor (LDLr) domains at its N-terminus and an epidermal growth factor-like (EGF) domain at its C-terminus. Between these lies a perforin-like sequence. In order to define the arrangement in solution of these four moieties in C9, high-flux neutron and synchrotron X-ray solution scattering studies were carried out. The neutron radius of gyration RG at infinite contrast is 3.33 nm, and its cross-sectional RG (RXS) is 1.66 nm. Similar values were obtained by synchrotron X-ray scattering after allowance for radiation effects. Stuhrmann analyses showed that the neutron radial inhomogeneity of scattering density alpha is 35 X 10(-5) from the RG data and 16 X 10(-5) from the RXS data. These values are typical for soluble glycoproteins and show no evidence for the existence of any large hydrophobic surface patches on free C9 that might form contacts with lipids. Indirect transformation of the neutron and X-ray scattering curves into real space showed that C9 had a maximum dimension estimated at 12 +/- 2 nm, and this suggests that the lengths of 7-8 nm deduced from previous electron microscopy studies in vacuo are underestimated. Molecular modeling of the C9 scattering curves utilized small spheres in the Debye equation, in which the analyses were constrained by the known volumes of the four moieties of C9 and the known sizes of the TSR and EGF-like domains. The most likely models for C9 suggest that these four regions of C9 are arranged in a V-shaped structure, with an angle of 10 degrees between the two arms, each of length 11.1 nm. This structure has a more hydrophobic character between the two arms. The scattering model is fully consistent with hydrodynamic sedimentation data on C9. Similar V-shaped hydrodynamic models could be developed for C6, C7, C8, and C9 of complement. Such a compact structure is atypical of other multidomain complement proteins so far studied by solution scattering and is fully compatible with mechanisms in which C9 is postulated, on activation, to undergo a drastic unfolding of its domain structure and to expose a more hydrophobic surface which can be embedded into lipid bilayers.

Complement C9↗

Complement allotypes in Japanese patients with pemphigus and bullous pemphigoid.

The allotypes of C6, C7, factor B (BF) and factor I (IF) of the human complement system were studied in 11 Japanese patients with pemphigus (5 with pemphigus vulgaris and 6 with pemphigus foliaceus) and 17 with bullous pemphigoid (BP) to investigate the genetic background of these diseases. The allotypes were detected by using isoelectric focusing and immunoblotting. The frequency for IF*A allele in the pemphigus patients was significantly higher (p = 0.009) than that in healthy controls (n = 60). A significant association of IF A allotype with pemphigus was also observed (p = 0.027), with a relative risk of 6.3. There was no association between the C6, C7, BF or IF allotypes and BP. These data suggest that IF A allotype may be an etiological genetic factor in the development of pemphigus.

Alleles↗

Interaction between complement proteins C5b-7 and erythrocyte membrane sialic acid.

The initial phase of membrane attack by complement is the interaction between C5b6, C7, and the cell membrane that leads to the insertion of C5b-7. Here we investigate the role of sialic acid residues in the assembly of C5b-7 intermediates on erythrocyte cell membranes. We find that C5b6 binds to glycophorin, whereas C5 or C6 does not bind, and desialylation of the glycophorin abolishes C5b6 binding. Complement lysis is inhibited by either masking glycophorin sialic acid with F(ab) fragments of an mAb, or by removal of the sialylated region of glycophorin by mild trypsinization. Gangliosides inhibit C5b-7 deposition when added to the aqueous phase. Asialogangliosides and synthetic gangliosides lacking the carboxylic acid residue have no inhibitory activity. We conclude that C5b6 binds to sialylated molecules on the erythrocyte surface. We propose a new model of membrane attack in which C5b6 initially binds to membranes via ionic forces. C7 then binds to C5b6, disrupting the ionic interaction and leading to the exposure of hydrophobic domains. Sialic acid is known to inhibit complement activation. Thus, these findings reveal a paradoxical role for sialic acid in complement attack; the presence of sialic acid inhibits the generation of C5b6, but once the membrane attack pathway is initiated, sialic acid enhances complement lysis.

Animals↗

Synthesis of complement by alveolar macrophages from patients with sarcoidosis.

Sarcoidosis is a granulomatous disorder of unknown aetiology. Alveolar macrophages (AM) in sarcoidosis release a variety of mediators important to the pathogenesis of the disease. Complement is essential for the inflammatory response and we investigated whether there were any major defects in the potential for sarcoidosis AM to synthesize complement in vitro. AM from 11 patients with active sarcoidosis and three healthy controls were cultured under serum-free conditions. There was a significant binding of polyclonal (anti-C5, -C6, -C7, -C8) and monoclonal anti-complement antibodies (anti-C3c and anti-C9 neoepitope (aE11] to agarose beads incubated with unstimulated AM for 24, 48, or 72 h. A significant and inhibitable production of soluble C3c, C5, C9, and S-protein was found in the harvested medium as detected by enzyme immunoassays. Activated C3 and C9 were also detected based on neoepitope expression. Presence of co-cultured agarose beads reduced the amount of soluble S-protein due to deposition on the agarose. We argue that the C9 neoepitope is an integral part of the terminal complement complex (TCC), both in the fluid and solid phase when bound to the agarose. In the fluid phase, SC5b-9 was generated, whereas the agarose-bound S-protein is assumed not to be associated with TCC on the beads. The results demonstrate for the first time that AM from sarcoidosis patients synthesize the functional alternative and terminal pathway of complement.

Adult↗

Human seminal plasma inhibition of antibody complement-mediated killing and opsonization of Neisseria gonorrhoeae and other gram-negative organisms.

Seminal plasma diluted 1:5-1:1,000 gave marked inhibition of serum antibody complement-mediated bactericidal and opsonic effects against Neisseria gonorrhoeae and other gram-negative organisms. Serum that was bactericidal at a dilution of 1:5,120 was not bactericidal at a dilution of 1:10 when seminal plasma was added. Bactericidal action of immune human or rabbit sera, or purified immunoglobulin (Ig)G or IgM plus complement for six strains of N. gonorrhoeae, serogroups A, B, C, and Y of Neisseria meningitidis, Escherichia coli and other gram-negative rods was inhibited by seminal plasma. Using C8- or C7-deficient sera as antibody and complement sources, opsonization, phagocytosis, and killing of N. gonorrhoeae and E. coli 014-K7 were inhibited by seminal plasma. Opsonization, phagocytosis, and killing of Staphylococcus aureus 502A was not inhibited. For the gram-negative organisms, the early phase of the opsonization process, probably complement activation, appeared to be inhibited rather than the ingestion or polymorphonuclear leukocyte killing steps; addition of seminal plasma yielded a significant reduction in the percentage of polymorphonuclear cells with associated bacteria. Seminal plasma did not prevent attachment of IgG, IgM, or IgA antibodies to gonococci. It reduced serum hemolytic whole complement activity by 25%. The seminal plasma inhibitor was of low molecular weight and was stable at 56 degrees C for 30 min, but inhibitory activity was lost after heating to 100 degrees C for 10 min. It is likely that the inhibitory factor(s) is a low-molecular weight protease or protease inhibitor. Seminal plasma probably has an important role in inhibition of complement and antibody functions in the genital tract. It may enhance pathogenesis of agents of sexually transmitted diseases.

Antibodies, Bacterial↗

The role of adhesion molecules in the regulation of antibody responses.

We used the T-cell-dependent antigen, bacteriophage (phage) phi X174, to study antibody synthesis in patients, guinea pigs, and dogs with complement component deficiencies (C2, C4, C3, C7); in patients with adhesion molecule deficiencies (CD11/CD18 or sialylated Lewisx); and in patients with the hyper IgM (HIM) syndrome (absence of functional gp39 expression by activated T cells). Patients and guinea pigs deficient in early complement components, patients deficient in CD11/CD18, and patients lacking functional gp39 on activated T cells responded to repeated phage immunizations with depressed antibody titers, lack of or inadequate amplification, and failure to switch from IgM to IgG, suggesting that defective T-cell-B-cell interaction is the cause of the antibody deficiency observed in these patients.

Animals↗

[The complement system].

The complement system represents a multitude of activating factors, associated with the cellular membrane and providing for cell lysis. The system is composed of 21 serum proteins and 8 receptors and may be found in cells of various types. The major function of the system consists in its activation which entails a cascade of events terminated by cell lysis. Two complement system activation mechanisms are generally distinguished, one of which is classical and one is alternative. These two mechanisms converge after the activation of the third component (C3) or as a result of interaction between the terminal components (C5, C6, C7, C8 and C9) of the complement cascade. The complement system is linked with the fibrinolytic, blood coagulating and kinin systems.

Complement Activation↗

Discordant renal histopathologic findings and complement profiles in membranoproliferative glomerulonephritis type III.

Patients with membranoproliferative glomerulonephritis (MPGN) type III and a low serum C3 concentration tend to have evidence for a nephritic factor of the terminal complement pathway (Nft). Complement profiles were studied in three patients with MPGN type III and low serum C3 concentrations. Serum C3 concentrations were 52, 21, and 14 mg/dL (normal range, 83 to 177 mg/dL). Serum Clq, C2, C4, properdin, and C5 concentrations were normal in all patients, whereas two had a slight decrease of C7 or C8. This pattern of complement activation resembles that seen with MPGN type II in which a nephritic factor activates the amplification loop (NFa). We conclude that in patients with MPGN type III the previously reported profile/presence of Nft is not always found, at least in the chronic stage of the disease, despite a low C3 value.

Biopsy↗