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Mutations in alpha-chain of C4BP that selectively affect its factor I cofactor function.

C4b-binding protein (C4BP) inhibits all pathways of complement activation, acting as a cofactor to the serine protease factor I (FI) in the degradation of activated complement factors C4b and C3b. C4BP is a disulfide-linked polymer of seven alpha-chains and a unique beta-chain, the alpha- and beta-chains being composed of eight and three complement control protein (CCP) domains, respectively. In previous studies we have localized cofactor activity and binding of C4b to alpha-chain CCP1-3 of C4BP, whereas the binding of C3b required additionally CCP4. Likewise, introduced point mutations that decreased binding of C4b/C3b caused a decrease in cofactor activity. In the present study, we describe two mutants of C4BP, K126Q/K128Q and F144S/F149S, clustered on alpha-chain CCP3, which selectively lost their ability to act as cofactors in the cleavage of both C4b and C3b. Both mutants show the same binding affinity for C4b/C3b as measured by surface plasmon resonance and have the same inhibitory effect on formation and decay of the classical pathway C3-convertase as the wild type C4BP. It appears that C4b and C3b do not undergo the same conformational changes upon binding to the C4BP mutants as during the interaction with the wild type C4BP, which then results in the observed loss of the cofactor activity.

Anilino Naphthalenesulfonates↗

Effect of antigen site and complement receptor status on the rate of cleavage of C3c antigen from red cell bound C3b.

C3b was bound to human red cells when serum complement was activated by addition of antibodies directed against different red cell antigens, and the rate of cleavage to C3dg was determined by assay for loss of bound C3c antigens using radiolabeled monoclonal anti-C3c. When C3b was bound by antibodies to antigens on branched-chain glycoproteins, cleavage to C3dg occurred more rapidly than when C3b was bound by antibodies to antigens closer to the red cell lipid bilayer. The rate of cleavage to C3dg also correlated directly with the number of complement receptors (CR1) per red cell, reflecting their role as cofactors in the cleavage of iC3b by factor I. Thus, the life span of C3b/iC3b on human red cells, which may be important for determining the rate and mechanism of clearance of C3-coated red cells, appears to depend on the CR1 status of the red cells and the characteristics of the antigen sites around which complement is bound.

Antigens↗

Increased expression of complement receptor type 1 (CR1, CD35) on human peripheral blood T lymphocytes after polyclonal activation in vitro.

The receptor for C3b and C4b--complement receptor type 1 (CR1, CD35)--is present on a variety of cell types including erythrocytes, phagocytic cells, B lymphocytes and a small subpopulation of T lymphocytes. The function of the receptor varies according to the different cell types, but on T lymphocytes the function is as yet not known. The present study concerns the influence of polyclonal stimulation on CR1-expressing T lymphocytes. Incubation with PHA resulted in a dose-dependent increase in the number of CR1-positive T lymphocytes. The CR1-expression T lymphocytes were found in both the CD4- and the CD8-positive subpopulation, but a significant stimulatory increase was only found in the CD4-positive population. A significant increase in the number of CR1-expressing T lymphocytes was found when monocytes were present during stimulation, indicating an importance of monocytes and/or monocyte products. However, the increase was not regulated by arachidonic acid metabolites of the cyclo-oxygenase pathway as indomethacin failed to inhibit the increase. Neither did rIL-1 alpha, rIL-1 beta, rTNF alpha nor rIL-6 alter the number of CR1-expressing T lymphocytes. The results of this study indicate a role for CR1 on T lymphocytes in the regulation of the immune system.

Concanavalin A↗

Effect of gamma-interferon on the synthesis of the functional alternative and terminal complement pathways by human umbilical vein endothelial cells in vitro.

The cytokine gamma-interferon (gIFN) has been reported to modulate synthesis by endothelial cells (EC) of alternative pathway complement factors (H, I, and B). However, the net effect of gIFN on the synthesis and expression of the functional alternative and terminal pathways has not yet been reported. EC cultured under serum-free conditions were treated with different concentrations of gIFN and simultaneously co-incubated with agarose beads, which activate the alternative pathway. C3b and the terminal complement complex (TCC) bound to co-incubated beads were measured by radioimmunoassay using anti-human C3c and TCC antibodies. gIFN in concentrations 500-4000 U/ml increasingly reduced the amount of C3b and TCC detected on the beads. The down-regulating effect of gIFN on EC complement biosynthesis may be physiologically relevant by locally controlling complement activation.

Antibody Specificity↗

[Erythrocyte CR1 receptor: binding and transport of immune complexes in the blood circulation].

Immune complexes (IC), after reacting with the complement system, bear C3b fragments (opsonized IC) and bind to the CR1 receptor that is present on human erythrocytes (CR1 = complement receptor type 1). This efficient binding reaction prevents random vascular IC deposition, and allows IC to be transported through the circulation to the fixed macrophage system of the liver and spleen, where they are safely eliminated. The structure of CR1, with multiple C3b binding sites, and the clustered distribution of CR1 on the erythrocyte surface favor the multivalent binding of opsonized IC to erythrocytes. CR1 on erythrocytes serves as a cofactor for the inactivation of C3b by factor I, thus allowing the release of IC from the erythrocyte surface and their transfer to fixed macrophages. Under normal circumstances, the erythrocyte plays a major role in the processing of IC in humans.

Antigen-Antibody Complex↗

Surface loops adjacent to the cation-binding site of the complement factor B von Willebrand factor type A module determine C3b binding specificity.

The interaction of factor B with C3b deposited on the surface of pathogens is the first step in the activation of the alternative complement pathway. The role of the von Willebrand factor type A (VWFA) module of factor B in this interaction has been investigated by generating three chimeras, Ch1-Ch3, in which surface loops of the VWFA module flanking the cation-binding residues were replaced by the corresponding sequences of C2, a factor B-like molecule which does not bind C3b. The location of the three loops was inferred from a homology model based on the structure of the integrin alphaM VWFA module [Ch1, betaA-alpha1 loop: Ch2, alpha3-alpha4 loop; and Ch3, betaD-alpha5 loop; Lee, J.-O., et al. (1995b) Cell 80, 631-638]. The function of the chimeras was studied by means of hemolytic assays and assays of the individual steps of the alternative complement pathway, i.e., binding to the C3b analogue cobra venom factor and factor D cleavage. These experiments showed that Ch1 and Ch3 define regions that are involved in C3b binding whereas Ch2 does not appear to be involved in binding specificity. The inability of Ch1 to register the enhancement of cobra venom factor binding normally seen after factor D cleavage suggested that the betaA-alpha1 loop mediates the conformational regulation of ligand binding affinity. Homology modeling of the chimeras has been used to visualize the surface structures which potentially define the C3b binding site.

Amino Acid Sequence↗

Mapping of the C3b-binding site of CR1 and construction of a (CR1)2-F(ab')2 chimeric complement inhibitor.

CR1/CR2 chimeric receptors in which various short consensus repeats (SCRs) of CR1 were attached to CR2 were transiently expressed on COS cells, and assessed for the binding of polymerized C3b (pC3b) and anti-CR2 by immunofluorescence. Of COS cells expressing chimeras containing SCR 1-4, 1-3, 2-4, 1-2, and 2-3 of the long homologous repeats (LHRs) -B or -C, 96%, 66%, 23%, 0%, and 0%, respectively, bound pC3b. K562 cells were stably transfected with wild-type CR1, deletion mutants of CR1, and the CR1/CR2 chimeras, respectively, and assayed for binding of 125I-pC3b. The dissociation constants (Kd) for pC3b of wild-type CR1 and the LHR-BD and -CD constructs were in the range of 1.0-2.7 nM, and of the CR1/CR2 chimeras containing SCRs 1-4, 1-3, and 2-4 of LHR-B or -C were 1.8-2.4, 6-9, and 22-36 nM, respectively. The factor I-cofactor function of the CR1/CR2 chimeras paralleled the C3b-binding function of the constructs. A CR1/immunoglobulin (Ig) chimeric protein was prepared by fusing SCRs 1-4 of LHR-B to the heavy chains of a murine F(ab')2 anti-nitrophenacetyl (NP) monoclonal antibody. The (CR1)2-F(ab')2 chimera, which retained its specificity for NP, was as effective as soluble, full-length CR1 in binding pC3b, serving as a cofactor for factor I-mediated cleavage of C3b, and inhibiting activation of the alternative pathway, indicating that the bivalent expression of these SCRs reconstitutes the alternative pathway inhibitory function of CR1. The feasibility of creating CR1/Ig chimeras makes possible a new strategy of targeting complement inhibition by the use of Ig fusion partners having particular antigenic specificities.

Animals↗

Induction of receptors for complement and immunoglobulins by herpesviruses of various species.

Cells infected with herpes simplex virus type 1 (HSV-1) express a viral glycoprotein on the cell surface, which can function as a receptor for a cleavage product of complement factor 3 (C3b), and it has been suggested that this has biological relevance in the infected host (Smiley et al., 1985, J. Virol. 19, 217). As herpesviruses of different species share common determinants on their glycoproteins, a possible conservation of biological function was investigated for bovine herpesviruses type 1 and 2 (BHV-1 and -2), equine herpesvirus type 1 (EHV-1) and HSV-1 and -2, respectively. Only HSV-1 and EHV-1 induced C3b-receptors on infected cells. Nevertheless, BHV-1 infected cells could be killed by complement-dependent neutrophil mediated cytotoxicity (CDNC) as could EHV-1-infected cells. HSV-1-infected cells were not killed by this mechanism, but were highly susceptible to direct C-lysis. Four different scenarios for interaction between herpesvirus-infected cells and the nonspecific host defense system are presented.

Animals↗

The complement system in bullous pemphigoid: VII. Fixation of the regulatory protein beta 1H globulin by pemphigoid antibody.

Using in vitro complement immunofluorescent staining methods, serum samples from 5 active cases of bullous pemphigoid, with pemphigoid antibody titers of 320 or greater, were tested for their ability to fix the regulatory protein beta 1H globulin in addition to C4 and C3. All 5 samples yielded positive C3, C4 and beta 1H staining reactions in a linear fashion along the basement membrane zone. Heat inactivation or treatment of the complement source (fresh normal human serum) with EDTA, Mg2-EGTA abolished all 3 staining reactions. Substitution of C2-deficient serum as the source of complement inhibited both C3 and beta 1H staining but had no effect on C4 staining. Use of serum devoid of beta 1H (R beta 1H) minimally enhanced C3 staining while no beta 1H staining was observed. The addition of beta 1H to R beta 1H restored positive beta 1H staining. Skin biopsies of perilesional skin from 6 patients with bullous pemphigoid demonstrated heavy in vivo deposition of beta 1H in addition to C3. These studies suggest that pemphigoid antibodies will fix the regulatory protein beta 1H in addition to other complement components, a phenomenon which requires activation of the classical complement pathway and generation of the C3b amplification convertase.

Antibodies↗

Activation of complement by Treponema denticola.

Oral spirochetes have been shown to be associated with periodontal diseases and are present in increased numbers in lesions of greater severity. In this study, the interaction of Treponema denticola with human complement, a major antibacterial defense system, was examined. For each of two strains of T. denticola, it was found that both the classical and alternative pathways of human complement were activated in human serum upon incubation at 37 degrees C. C3 fragments were deposited on the surface of this organism following complement activation; the fragments bound included both of the major C3-derived opsonic fragments C3b and iC3b. Under incubation conditions identical to those carried out for complement activation in serum, T. denticola failed to degrade purified, hemolytically-active C3, although it readily degraded inactivated C3. Thus, despite the documented proteolytic activity of this organism, complement activation and deposition of complement-derived opsonins may be important defense mechanisms in the control of infections with T. denticola.

Complement C3↗

How pre-existing, germline-derived antibodies and complement may help induce a primary immune response to nonself.

In the hypothesis that pre-existing, germline-encoded antibodies (naturally occurring antibodies, NAb) bind to conserved epitopes on invading nonself antigens, bound NAbs may initiate complement deposition and become targets of nascent C3b, which generates C3b-C3b-NAb complexes that remain associated with the nonself antigen (C3b-C3b-NAb...antigen). The inactivated form of these complexes (C3dg-C3dg-NAb...nonself antigen) may bind bivalently and thus firmly to B cells via CR2, a process stimulating antigen presentation. In some cases, CR2-bound 'C3dg-C3dg-NAb...antigen complexes' may further be recognized by immunoglobulin (Ig) determinants on B cells, whereby an immune response is elicited. As conserved epitopes on the nonself antigen are already complexed to NAbs, only B cells carrying Ig determinants specific for nonself epitopes may be stimulated. This hypothesis can explain directed affinity maturation towards nonself, protection from a strong immune response to conserved epitopes, down-regulation of antibody formation and unresponsiveness to high-dose antigen.

Animals↗

Defective immune-adherence (C3b) receptor on erythrocytes from patients with systemic lupus erythematosus.

Erythrocytes from 56 patients with systemic lupus erythematosus (SLE) were tested for the immune-adherence (C3b) receptor reactivity for incubation with aggregated human gamma-globulin (AHG) in the presence of complement. The reactivity of the C3b receptors was expressed as the highest two-fold dilution of AHG that induced haemagglutination. Erythrocytes from 37 (66%) of the SLE patients failed to show any detectable reactivity with AHG, whereas the erythrocytes of only 1 of 51 normal controls matched for age and sex were found to be unreactive. The defect of the C3b receptor reactivity was persistent and could not be restored even after SLE patients had gone into remission with steroid therapy. Moreover, the defect was found frequently in the relatives of patients without detectable immune-adherence reactivity. Owing to its high prevalence and persistence in SLE, the defective erythrocyte C3b receptor may be a useful marker for identifying SLE patients and those predisposed to the disease.

Adolescent↗

Structural analysis of engineered Bb fragment of complement factor B: insights into the activation mechanism of the alternative pathway C3-convertase.

The C-terminal fragment, Bb, of factor B combines with C3b to form the pivotal C3-convertase, C3bBb, of alternative complement pathway. Bb consists of a von Willebrand factor type A (vWFA) domain that is structurally similar to the I domains of integrins and a serine protease (SP) domain that is in inactive conformation. The structure of the C3bBb complex would be important in deciphering the activation mechanism of the SP domain. However, C3bBb is labile and not amenable to X-ray diffraction studies. We engineered a disulfide bond in the vWFA domain of Bb homologous to that shown to lock I domains in active conformation. The crystal structures of Bb(C428-C435) and its inhibitor complexes reveal that the adoption of the "active" conformation by the vWFA domain is not sufficient to activate the C3-convertase catalytic apparatus and also provide insights into the possible mode of C3-convertase activation.

Animals↗

Phosphorylation of complement component C3 and C3 fragments by a human platelet protein kinase. Inhibition of factor I-mediated cleavage of C3b.

Phosphorylation of C3 in vitro has been shown previously to lead to significantly altered function of the protein. Platelets are known to contain and release considerable amounts of protein kinases and ATP, which are prerequisites for protein phosphorylation. The aim of the present study was to investigate whether C3 is phosphorylated extracellularly by human platelets. Platelet-rich plasma was stimulated by human aggregated gamma-globulin or ADP. The remaining cells were removed by centrifugation, and the plasma was incubated with [gamma-32P]ATP. After precipitation with Sepharose-bound Abs to C3c followed by SDS-PAGE, it was shown that C3 was phosphorylated in the alpha-chain by a protein kinase dependent on Mn2+, Ca2+, or Mg2+ ions. The supernatant from washed, activated platelets was incubated with purified C3 or soluble or activated thiol Sepharose-bound C3b, together with [gamma-32P]ATP. Phosphorylation was seen in the alpha-chain of C3, and to the same extent in the alpha'-chain of both C3b preparations. The analysis of acid hydrolysate demonstrated that C3 contained 32P-labeled Thr and 32P-labeled Ser. After extensive proteolysis with trypsin, the major phosphorylation site was located to a peptide of 3 to 4 kDa that was bound to the activated thiol Sepharose via the free sulphydryl group in the C3d fragment. Incubation of phosphorylated C3b with factors I and H showed that phosphorylation inhibited the cleavage of the alpha'-chain of C3b. The results in this study suggest that phosphorylation is a regulator of C3 during platelet activation induced, for example, by immune complexes.

Binding Sites↗

Mechanistic studies of the effects of anti-factor H antibodies on complement-mediated lysis.

We have recently reported that complement factor H, a negative regulator of complement-mediated cytotoxicity, is produced and secreted by most bladder cancers. This observation was exploited in the development of the BTA stat and BTA TRAK diagnostic assays, both of which make use of two factor H-specific monoclonal antibodies in sandwich format. Here we show that both antibodies exert interesting effects on the biochemistry of complement activation in in vitro systems. Antibody X13.2 competes with C3b for association with factor H and strongly inhibits factor H/factor I-mediated cleavage of C3b, thereby evidently inactivating a negative regulator of complement; yet, the antibody strongly inhibits complement-mediated lysis as well. Conversely, antibody X52. 1, which does not compete with C3b and has no effect on solution-phase cleavage of C3b, is capable of enhancing complement-mediated lysis of various cell types, including cancer cells, by over 10-fold. Our observations indicate that it is possible to deconvolute the biochemical roles of factor H in complement by means of appropriate inhibitors, a finding with potentially valuable implications for both basic research and cancer therapy.

Animals↗

NIH conference. Primary biliary cirrhosis and the complement system.

Primary biliary cirrhosis is a disease characterized by slowly progressive intrahepatic cholestasis, destructive lesions of the septal and larger interlobular bile ducts, and granulomas. It is associated with defects of both humoral and cellular immune function. As part of the detailed evaluation of these defects, the status of the complement system has been evaluated. Striking abnormalities of serum complement levels are found but are difficult to interpret. However, the demonstration of marked hypercatabolism of C3, but not albumin, suggests that the complement system may be in a chronically activated state. Furthermore, an unequivocal defect in the clearance of sensitized erythrocytes by receptors for C3b on Kupffer cells has been found. One possible explanation for this finding would be that a large proportion of these receptors are occupied either by immune complexes containing C3b or excess free C3b that is generated by complement activation. Major defects of C3 catabolism and C3b-receptor-mediated clearance are not found in patients with HBsAg-negative chronic active hepatitis. These findings suggest a role for the complement system in the pathophysiology of primary biliary cirrhosis.

Cell Membrane↗

Identification of C3b as the major serum protein that stimulates prostaglandin and thromboxane synthesis by macrophages.

We have previously reported that heterologous, homologous and autologous sera, all stimulated rabbit alveolar macrophages to synthesize prostaglandins (PG). Gel permeation chromatography of serum showed multiple fractions possessing this stimulatory activity, with the major one at 150-160K daltons. In the present study, we have shown that: (a) Fresh rabbit serum stimulated PG release by macrophages. (b) Serum depleted of C3 and C5 lost its stimulatory activity. (c) Trypsinized serum, sera activated by aggregated IgG and zymosan, partially purified C3, C5 and the C3, C5 preparation or purified C3 activated by zymosan, all stimulated PG release by macrophages with the following order of potency: activated C3, C5 = activated C3 = zymosan-activated serum greater than trypsinized serum = aggregated IgG-activated serum greater than partially purified C3, C5 = serum. PGE2 was the predominant PG synthesized by stimulated macrophages. However, thromboxane (TX) production seemed to be more selectively enhanced i.e., increase in TX production was more pronounced than the increase in PGE release. To further identify the active complement component, we blocked the C3b receptor (C3 b R) by preincubating macrophages with anti-C3bR, and showed that subsequent treatment with activated C3 and C5 failed to elicit any PG release. This pretreatment with anti-C3bR had no inhibitory effect on subsequent zymosan stimulation of PG release. Thus we concluded that C3b was the major serum protein that stimulates PG synthesis by macrophages.

Animals↗

Regulation of complement activity by vaccinia virus complement-control protein.

A major protein secreted by vaccinia virus-infected cells has structural similarity to the super-family of complement-control proteins. This vaccinia complement-control protein (VCP) was studied to determine how it regulates complement activation. VCP was bound by C4b and C3b and served as a cofactor with factor I in cleaving these two molecules. VCP inhibited the formation and accelerated the decay of the classical C3 convertase. It also accelerated decay of the alternative pathway convertase, although higher concentrations were apparently needed. In vitro, therefore, VCP interfered with the classical and alternative complement pathways at several steps. In vivo, this interference may increase the virulence of vaccinia virus by enabling it to escape attack by the host's complement system.

Complement Activation↗