PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Complement Inactivator Proteins”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 343 records · Page 19Linked to original sources

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↗

Effects of sulphated polyanions on functions of complement factor H.

Heparin and two dextran sulphate preparations with a low or high average molecular mass (M(r) 5000 and 5 x 10(5), respectively) enhanced binding of radioactively labelled complement factor H to the complement protein C3b, coupled to Sepharose 4B, maximally 2.5-4-fold within a polyanion concn range of 12.5-400 micrograms/ml. Despite this, heparin or low molecular mass dextran sulphate had no effect on the activity of H as a cofactor of complement factor I, when C3b bound to Sepharose 4B was used as a substrate, and high molecular mass dextran sulphate inhibited. Heparin or low molecular mass dextran sulphate had also no effect on the decay-accelerating activity of factor H on the alternative pathway C3 convertase, C3b,Bb, and high molecular mass dextran sulphate inhibited this activity, too, regardless of whether Sepharose 4B or sheep erythrocytes were used as carriers of C3b,Bb. These results suggest strongly that fluid phase heparin or dextran sulphate do not inhibit activation of the alternative pathway of complement by augmenting functions of H.

Complement C3b↗

A small molecular weight factor in aqueous humor acts on C1q to prevent antibody-dependent complement activation.

PURPOSE: Aqueous humor inhibits activation of the classic complement pathway; however, the mechanism of this inhibition is unknown. We have examined at the molecular level potential factors responsible for the inhibition, and we have tried to determine where in the complement pathway the inhibition takes place. METHODS: Fresh rabbit aqueous humor was size fractionated by centrifuge concentrators and by size exclusion column chromatography, and each fraction was assayed for inhibition of the classic complement pathway in a standard CH50 hemolytic assay. Fractions with inhibitory activity were assayed for protein and the presence of ascorbic acid and were subjected to heat treatment. To identify where in the pathway the inhibitor(s) function, the expression of activated complement components bound to the surface of antibody-coated erythrocytes was analyzed by flow cytometry using fluorescein isothiocyanate-labeled antibodies to specific complement components. In addition, hemolytic assays were performed for the function of individual complement components. RESULTS: The most potent inhibition of the classic pathway was in a fraction of aqueous humor of less than 1.3 kDa. The inhibitory activity in the fraction was unassociated with detectable protein or ascorbic acid, and it remained present after heat treatment. The functional analysis through flow cytometry and hemolytic assays for individual complement components showed that the inhibitor in the less than 1.3-kDa fraction caused a blockade in the complement pathway at the level of C1q. CONCLUSIONS: The aqueous humor contains a unique potent anticomplementary factor that has a molecular weight less than 1.3 kDa. This heat-stable inhibitory factor inhibits the classic pathway at the level of C1q. These results imply that within the eye the complement pathway is inhibited at the earliest steps of its initiation. Such inhibition would prevent production of complement products that mediate inflammation and chemotaxis of inflammatory cells. Therefore, as part of the adaptation of immune privilege, the ocular microenvironment is protected from inflammation induced by antigen-antibody complexes.

Animals↗

Decay-accelerating factor protects human trophoblast from complement-mediated attack.

Approximately one-fifth of first trimester losses can be characterized by the onset of hypocomplementemia prior to ultrasonographic loss of embryonic viability. Monoclonal antibodies to the membrane complement regulatory protein, decay-accelerating factor (DAF), were bound to the surface of trophoblastic tissues, with the estimated number of DAF molecules in tissues obtained from hypocomplementemic women less than those from normocomplementemic women (approximately 10%). While trophoblastic tissue obtained from normocomplementemic women did not decomplement normal human sera, pretreatment of this tissue with anti-DAF antibodies resulted in activation of the complement (C') system via the alternate C' pathway (ACP). If trophoblastic tissue from normocomplementemic women was pretreated with phospholipase C, decomplementation of human serum occurred. These data strongly suggest that trophoblasts evade the ACP with functional DAF, possibly through absorption of the molecule's lipophilic diacylglycerol membrane-anchored moiety into the outer lipid bilayer of the trophoblast and may be a rational means for the utilization of immunotherapy in recurrent spontaneous aborters.

Abortion, Habitual↗

Expression of complement-regulatory proteins in normal and UW-preserved human liver.

BACKGROUND/AIMS: Somatic cells are protected against complement-mediated injury by specialized membrane proteins, known as complement-regulatory proteins (CRP). The knowledge of the pattern of CRP expression in the liver is important to evaluate the role of complement-mediated injury in graft rejection. METHODS: We determined the distribution of four main CRP: membrane cofactor protein (MCP), decay accelerating factor (DAF), protectin, and complement receptor 1 (CR1) in 30 histologically normal livers, 13 samples from University of Wisconsin cold-storage solution (UW)-preserved tissue and 17 postoperative biopsies of UW-preserved allografts. RESULTS: In normal liver, hepatocytes expressed only MCP. Bile duct cells were reactive for MCP and protectin. Sinusoidal endothelial cells expressed MCP and protectin but displayed no or faint expression of DAF. Endothelial cells of portal vessels and centrilobular veins expressed high levels of DAF, MCP, and protectin. No expression of CR1 was observed. No change in CRP expression was usually detected after UW preservation, except for protectin, induced on hepatocytes in 9 samples of UW-preserved liver tissue and in 9 allografts. CONCLUSIONS: Hepatocytes and sinusoidal endothelial cells, which have a defective expression of CRP, might be at risk for complement-mediated injury. However, this risk is not aggravated after UW preservation.

Adenosine↗

A human CD46 transgenic pig model system for the study of discordant xenotransplantation.

BACKGROUND: The chronic shortage in the supply of human organs available for allotransplantation has turned attention toward the use of animals as potential donors, with pigs as the most likely species under consideration. Hyperacute rejection, the initial and immediate barrier to a pig-to-primate xenograft, has been addressed by generation of transgenic pigs that express the human membrane-bound complement-regulatory proteins CD59 and/or CD55. Difficulty has been encountered in generation of transgenic animals that express a third membrane-bound complement-regulatory protein, CD46. METHODS: We have generated transgenic animals by using a large genomic construct that encompasses the entire human CD46 gene. RESULTS: We report the first description of transgenic mice and pigs that express high levels of human CD46 in a cell and tissue type-specific manner, resembling patterns of endogenous CD46 expression observed in human tissues. Furthermore, when human CD46 transgenic porcine hearts were transplanted into baboons, the grafts did not succumb to hyperacute rejection, and survival extended for up to 23 days. Under the same conditions, nontransgenic grafts underwent hyperacute rejection within 90 min. CONCLUSIONS: This is the first report to describe generation of transgenic pigs that express human CD46, and the first in vivo demonstration of the ability of human CD46 expressed on pig organs to regulate complement activation and overcome hyperacute rejection upon transplantation of a vascularized organ into nonhuman primates.

Animals↗

Complement activation in amyloid plaques in Alzheimer's disease brains does not proceed further than C3.

In Alzheimer's disease (AD) patients, the complement components Clq, C4 and C3 can be detected in different types of beta/A4 plaques, one of the hallmarks of AD. Contradictory findings on the presence of late complement components in AD brains have been reported. Nevertheless, it was suggested in recent studies that in AD brain complement activation results in complement membrane attack complex (MAC) formation and that complement activation may act as an intermediate between beta/A4 deposits and the neurotoxicity observed in AD. In the present study the presence of a number of complement components and regulatory proteins in AD temporal cortex and, for comparison, in glomerulonephritis (GN) was analysed. In GN kidneys, besides Clq, Clr, Cls and C3, the late components and the C5b-9 complex are also associated with capillary basement membrane and mesangial immune complex deposits. In AD temporal cortex Clq, C4 and C3 are co-localized with beta/A4 deposits. However, in contrast to the GN kidney, the late complement components C5, C7 and C9, as well as the C5b-9 membrane attack complex cannot be detected in beta/A4 positive plaques. The absence of the cytolytic C5b-9 complex in AD brain suggests that in AD, the complement MAC does not function as the proposed inflammatory mediator between beta/A4 deposits and the neurofibrillary changes.

Aged↗

Role of complement in induction of antibody production in vivo. Effect of cobra factor and other C3-reactive agents on thymus-dependent and thymus-independent antibody responses.

In an in vivo study in mice, suppression by the C3-cleaving protein of cobra venom (CoF), and other C3-reactive agents (zymosan, aggregated IgG, anti-C3 antibodies, and type III pneumococcal polysaccharide) of the thymus-dependent antibody responses to sheep erythrocytes, ovalbumin, and human IgG was demonstrated. The thymus-independent antibody response to polyvinyl-pyrrolidone was however unaffected by CoF. These and other published observations suggest that there may be a requirement for functional C3 in induction of thymus-dependent but not thymus-independent antibody production. A model for the role of C3 in lymphocyte cooperation is proposed based on these data analyzed in the light of existing knowledge of this process. It is postulated that fixed C3 interacting with macrophage See PDF for Structure and B-cell C3 receptors might enhance or facilitate T-dependent presentation of antigen to B cells.

Animals↗

Isolation and properties of a complement inhibitor from Naja haje venom, distinct from known anticomplementary factors in cobra venom.

A complement inhibitor (CI) has been isolated from cobra (Naja haje) venom which is distinct from the two known anticomplementary factors in cobra venom [1], in functional properties as well as structure. CI is a small (mol. wt 26,000, determined by sodium dodecyl sulphate gel electrophoresis), heat-labile glycoprotein; the amino acid composition is that of a globular protein. CI interferes at various steps of the complement sequence, including reactions of the classical and alternative pathway. No effect was observed on C4 fixation and on the assembly of the membrane attack complex from C6-9 (minor inhibiting effects, if present, have not been excluded). Initiation of the alternative pathway is inhibited by CI already at the stage of cleavage of factor B. CI binds to C4, C4b, C3 and C3b; since the major inhibitory action of CI is lost after washing of cell intermediates, complex formation and, as a consequence, steric hindrance may be responsible for the inhibiting effects of CI. CI also interferes with binding of C3b to C3b receptors on human erythrocytes. CI is non-toxic in mice when given intraperitoneally in doses of 5 microgram/g.

Amino Acids↗

Effect of decay-accelerating factor on the assembly of the classical and alternative pathway C3 convertases in the presence of C4 or C3 nephritic factor.

Decay-accelerating factor (DAF) is a 70,000 MW membrane protein that regulates the complement system on the cell surface. In the present study, we found that DAF had no effect on the classical pathway C3 and C5 convertases that had been stabilized by C4 nephritic factor (C4NeF). In DAF-incorporated cells, however, the assembly of the classical pathway C3 convertase was markedly inhibited even in the presence of C4NeF. C3 nephritic factor (C3NeF) in the alternative pathway protected the C3 convertase from the action of DAF to some extent, while the generation of C3 convertase was also inhibited by DAF. These results indicate that under physiological conditions, DAF functions to inhibit the assembly of C3 convertases even in the presence of nephritic factors, although it has no or little effect on the stabilized convertases. Thus, it is likely that DAF plays an important role in protection of host cells from damage by autologous complement in patients with nephritic factors.

Autoantibodies↗

Complement inhibitors targeted to the proximal tubule prevent injury in experimental nephrotic syndrome and demonstrate a key role for C5b-9.

In glomerular diseases of diverse etiologies, dysfunction of the glomerular barrier to protein passage results in proteinuria, and proteinuria is considered an independent risk factor that plays a direct role in inflammation, interstitial fibrosis, and renal failure. The mechanism by which proteinuria leads to nephrotoxic injury is unclear, but a role for complement in mediating interstitial damage appears likely. We describe a strategy for Ag-specific targeting of complement inhibitors using a single chain Ab fragment and show that complement inhibitors targeted to the tubular epithelium protect against tubulointerstitial injury and renal dysfunction in a rat model of puromycin-induced nephrosis. The targeting of systemically administered complement inhibitors markedly enhanced their efficacy and obviated the need to systemically inhibit complement, thus reducing the risk of compromising host defense and immune homeostasis. Targeted inhibition of complement activation by Crry, and of membrane attack complex (MAC) formation by CD59 was equally therapeutic, demonstrating that the MAC plays a key role in proteinuria-induced tubulointerstitial injury. CD59 activity was dependent on its being targeted to the site of complement activation, and this is the first report of specific inhibition of the MAC in vivo after systemic administration of inhibitor. The data establish the MAC is a valid target for pharmaceutical intervention in proteinuric disorders and provide an approach to investigate the role of the MAC in complement-dependent disease under clinically relevant conditions.

Animals↗

Inhibition of complement-mediated cytolysis by the terminal complement inhibitor of herpesvirus saimiri.

Herpesvirus saimiri (HVS) is a lymphotropic herpesvirus that induces T-cell transformation in vitro and causes lymphomas and leukemias in New World primates other than its natural host, the squirrel monkey. Nucleotide sequence analysis of the HVS genome revealed two open reading frames with significant homology to genes for human complement regulatory molecules. One of these genes encodes a predicted protein (designated HVSCD59) with 48% amino acid sequence identity to the human terminal complement regulatory protein CD59 (HuCD59). The CD59 homolog from squirrel monkey (SMCD59) was cloned, and the corresponding amino acid sequence showed 69% identity with HVSCD59. BALB/3T3 cells stably expressing HVSCD59, SMCD59, or HuCD59 were equally protected from complement-mediated lysis by human serum. However, only HVSCD59-expressing cells were effectively protected from complement-mediated lysis when challenged with rat serum, suggesting that HVSCD59 was less species restrictive. The complement regulatory activity of HVSCD59 and SMCD59 occurred after C3b deposition, indicating terminal complement inhibition. Treatment of BALB/3T3 stable transfectants with phosphatidylinositol-specific phospholipase C prior to complement attack decreased the complement regulatory function of HVSCD59, suggesting cell surface attachment via a glycosyl-phosphatidylinositol anchor. Cells expressing HVSCD59 effectively inhibited complement-mediated lysis by squirrel monkey serum in comparison with SMCD59-expressing cells. Finally HVSCD59-specific transcripts were detected in owl monkey cells permissive for lytic HVS replication but not in T cells transformed by HVS, which failed to produce virions. These data are the first to demonstrate a functional, virally encoded terminal complement inhibitor and suggest that HVSCD59 represents a humoral immune evasion mechanism supporting the lytic life cycle of HVS.

3T3 Cells↗

Complement activity in children with protein-calorie malnutrition.

Using the hemolytic complement (CH50) assay, we evaluated the complement system of 28 children with severe protein calorie malnutrition (PCM) during their hospital admission and recovery. The mean CH50 activity in children with kwashiorkor was significantly less on hospital days 1 and 4 than in 17 healthy control subjects. On day 8 it rose to normal, and by day 50 it was significantly higher than the controls. The mean CH50 titer of 16 well-nourished febrile children was, in contrast to that of untreated PCM, significantly greater than the healthy controls. Of the children with PCM, 11 (40%) evidenced anticomplementary (AC) activity in their serum on either day or 1 or 4, but only two (7%) had detectable serum AC activity during later convalescence. Significantly, the CH50 titer in a PCM serum correlated inversely to the amount of AC activity in that serum (P less than 0.01). These results indicate that, in children with PCM, the complement system is compromised functionally, and that its repair coincides with intake of adequate diet. The presence of AC activity provides a possible mechanism for depressed complement activity in some untreated PCM children.

Child, Preschool↗

Complement regulatory activity of normal human intraocular fluid is mediated by MCP, DAF, and CD59.

PURPOSE: To identify the molecules in normal human intraocular fluid (aqueous humor and vitreous) that inhibit the functional activity of the complement system. METHODS: Aqueous humor and vitreous were obtained from patients with noninflammatory ocular disease at the time of surgery. Samples were incubated with normal human serum (NHS), and the mixture assayed for inhibition of the classical and alternative complement pathways using standard CH(50) and AH(50) hemolytic assays, respectively. Both aqueous humor and vitreous were fractionated by microconcentrators and size exclusion column chromatography. The inhibitory molecules were identified by immunoblotting as well as by studying the effect of depletion of membrane cofactor protein (MCP), decay-accelerating factor (DAF), and CD59 on inhibitory activity. RESULTS: Both aqueous humor and vitreous inhibited the activity of the classical pathway (CH(50)). Microcentrifugation revealed the major inhibitory activity resided in the fraction with an M(r) >/= 3 kDa. Chromatography on an S-100-HR column demonstrated that the most potent inhibition was associated with the high-molecular-weight fractions (>/=19.5 kDa). In contrast to unfractionated aqueous and vitreous, fractions with an M(r) >/= 3 kDa also had an inhibitory effect on the alternative pathway activity (AH(50)). The complement regulatory activity in normal human intraocular fluid was partially blocked by monoclonal antibodies against MCP, DAF, and CD59. Immunoblot analysis confirmed the presence of these three molecules in normal intraocular fluid. CONCLUSIONS: Our results demonstrate that normal human intraocular fluid (aqueous humor and vitreous) contains complement inhibitory factors. Furthermore, the high-molecular-weight factors appear to be the soluble forms of MCP, DAF, and CD59.

Antigens, CD↗

The influence of tumour necrosis factor-alpha, interleukin-1 beta and interferon-gamma on the expression and function of the complement regulatory protein CD59 on the human colonic adenocarcinoma cell line HT29.

CD59 is a 18-25 kDa glycoprotein which, by inhibiting the formation of the membrane attack complex, protects homologous cells from complement mediated damage. We have described recently the expression and complement regulatory function of CD59 on colonic adenocarcinoma cells both in vivo and in vitro. In this study we have examined the influence of cytokines on the expression and complement regulatory function of CD59 on the colonic adenocarcinoma cell line HT29. CD59 expression on the HT29 cells was up-regulated after stimulation by mononuclear cells activated by mixed lymphocyte reaction and by culture supernatants from activated mononuclear cells. Similarly, a dose-dependent increase in CD59 expression was observed after stimulation with both tumour necrosis factor-alpha and interleukin-1 beta. A dose-dependent increase in the level of CD59 expression was also seen using low concentrations of interferon-gamma (IFN-gamma), while CD59 expression on cells cultured with high IFN-gamma concentrations was comparable to non-stimulated cells. Cytokine treated cells were more resistant to lysis by homologous complement than non-stimulated cells, and the increase in CD59 expression was shown to be partially responsible for this. The present data strengthen the role of CD59 as a possible participant in tumour escape.

Adenocarcinoma↗

Membrane cofactor protein (MCP; CD46). Isoforms differ in protection against the classical pathway of complement.

Membrane cofactor protein (MCP; CD46) is a widely distributed C3b/C4b-binding glycoprotein that inhibits complement activation on host cells. MCP is expressed primarily as four isoforms that arise by alternative splicing of a single gene. The differences reside in the domains for O-glycosylation and cytoplasmic tails. Tissue-specific expression of isoforms and the differential processing of precursors mediated by the cytoplasmic tails suggest that isoform variations are biologically significant. The goal of these experiments was to characterize the complement inhibitory profile of the four commonly expressed isoforms. The MCP isoforms (BC) with a larger O-glycosylation domain bound C4b more efficiently than the C isoforms, which are smaller and less glycosylated in this region. Additionally, cytoprotection assays of individual clones of transfected isoforms bearing equivalent copy numbers demonstrated that the BC isoforms also provided enhanced protection in a classical pathway-mediated system and cleaved cell-bound C4b more efficiently than the C isoforms. Taken together, these data demonstrate that BC isoforms preferentially protect against the classical pathway of complement. Such findings indicate a physiologic role for isoform variation and have therapeutic implications for use of MCP isoforms as complement inhibitors in such areas as xenotransplantation.

Amino Acid Sequence↗

Release of histamine from rat mast cells by the complement peptides C3a and C5a.

Suspensions of rat mast cells were used to study the histamine-releasing actions of anaphylatoxins C3A and C5a in vitro. The peptides, derived from human or porcine complement proteins C3 and C5, were less potent than 48/80 but more potent than bradykinin in stimulating release of histamine from mast cells. The pattern of release resembled that of the anaphylactic release action, e.g. release was limited to less than 30 per cent of the cell histamine, the reaction was calcium-dependent and was potentiated by phosphatidyl serine. When C3a and C5a were added together to mast cell suspensions, the amount of histamine released was additive. Similarly, release by either peptide combined with bradykinin was additive. Histamine-releasing activity (as well as smooth muscle-stimulating activity) was abolished when the peptides were treated with pancreatic carboxy-peptidase B. Active or inactive peptides were bound by mast cells and addition of active C3a in combination with the inactive, des-arginine derivative, C3ai, resulted in partial inhibition of histamine release.

Anaphylaxis↗

Protection of human nasal respiratory epithelium from complement-mediated lysis by cell-membrane regulators of complement activation.

Complement in the respiratory tract protects the host from invading micoorganisms and other inhaled insults, but may damage normal tissue. Recently we reported that human respiratory epithelium from the nose to the alveoli expresses three cell-membrane regulators of complement activation: membrane cofactor protein (MCP, CD46), decay accelerating factor (DAF; CD55), and CD59. In this study we investigated whether two of these complement-regulatory proteins, DAF and CD59, protect human nasal epithelial cells from complement-mediated lysis. Treatment of nasal epithelial cells in suspension with 50% or 100% normal human serum (NHS) lysed small percentages of cells (8% and 16%, respectively). Addition of complement activators, rabbit serum antinasal epithelial cells (anti-NEC), or lipopolysaccharide (LPS) increased cell lysis in the presence of 50% NHS in a dose-dependent manner up to 50% and 35% lysis, respectively. Human serum deficient in C3 or C7 did not lyse nasal epithelial cells even in the presence of anti-NEC. To assay the contribution of DAF and CD59 to cell protection against lysis, nasal epithelial cells in suspension were treated with appropriate blocking antibodies. Both anti-DAF and anti-CD59 markedly increased the susceptibility of human nasal epithelial cells to lysis by complement. At 50% NHS, anti-DAF and anti-CD59 antibodies increased epithelial cell lysis from 8% to 24% and 67%, respectively. A similar pattern of response to complement was demonstrated by monolayers of substrate-anchored cultured cells. These results indicate that DAF and CD59 protect human nasal epithelial cells from complement-mediated lysis; however, intense activation of complement may overcome this protection, leading to cell death and tissue injury. We speculate that imbalance between complement regulation and complement activation in the human respiratory tract in disease may result in tissue injury and impaired tissue function.

Adolescent↗