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Structure and biology of complement protein C3, a connecting link between innate and acquired immunity.

Complement protein C3 is a central molecule in the complement system whose activation is essential for all the important functions performed by this system. After four decades of research it is now well established that C3 functions like a double-edged sword: on the one hand it promotes phagocytosis, supports local inflammatory responses against pathogens, and instructs the adaptive immune response to select the appropriate antigens for a humoral response; on the other hand its unregulated activation leads to host cell damage. In addition, its interactions with the proteins of foreign pathogens may provide a mechanism by which these microorganisms evade complement attack. Therefore, a clear knowledge of the molecule and its interactions at the molecular level not only may allow the rational design of molecular adjuvants but may also lead to the development of complement inhibitors and new therapeutic agents against infectious diseases.

Amides↗

Phagocytosis by human monocytes of particles activating the alternative pathway of complement.

The phagocytosis of particles activating the alternative pathway of complement by human monocytes cultured under serum-free conditions was studied. In contrast to native zymosan particles, which were easily ingested, rabbit erythrocytes and agarose beads had to be coated with C3b or C3bi to be engulfed by the monocytes. The binding and ingestion by monocytes of particles coated with C3bi were greater than for the same particles coated with the equivalent amount of C3b. The binding and uptake of rabbit erythrocytes and agarose beads were proportional to the amount of C3b or C3bi on the particles. In contrast to the complement activator particles, C3b- and C3bi-coated sheep erythrocytes, which are non-activators, were not ingested by the monocytes, although attachment to the monocytes took place. The presence of methylamine or cobra venom factor, which are complement inhibitors, strongly reduced the ingestion of native zymosan by the monocytes, whereas the uptake of C3b- or C3bi-coated zymosan particles were only weakly affected. This suggests that the binding of native zymosan to monocytes is sensitive to interference from a cell-derived alternative pathway C3 convertase (C3bBb). Binding and uptake of activators by human monocytes via complement receptor(s) are discussed.

Animals↗

Early recipient-donor switch of the complement type after liver xenotransplantation.

Liver transplantation is an immunological peculiarity with respect to the resistance of the graft to humoral rejection. We undertook a kinetic analysis of molecules involved in humoral rejection for a period of one week following xenografting in the hamster to rat model system. A complement-dependent lymphocytotoxicity test (CDC) was used to detect anti-donor antibodies in the recipient rats. Complement was studied by two methods. Function of the classical complement pathway was evaluated with a hemolytic assay, and C3 was measured by radial immunodiffusion. Conversion of the major plasma proteins from recipient to donor profile was studied by zone electrophoresis on agarose. CDC showed antibody titers rose during the first week post-transplantation, and they were of complement-activating isotypes. Zone electrophoresis showed almost complete replacement of rat C3 by hamster C3 within 72 hours. Hemolytic assay of complement on day 6 post-transplant showed serum of the xenograft recipients could lyse erythrocytes sensitized with rat antibody with 80% of efficiency of normal rat serum. Our data show the effector molecules for humoral rejection, rat antibodies with anti-hamster specificity and a functional complement cascade, were present within the first week following transplantation. Rapid conversion of serum complement to hamster proteins maintains compatibility with the species-specific membrane inhibitors of complement activation expressed by the xenografted hepatocytes, and could limit complement-mediated damage.

Animals↗

Inhibition of classical complement activation by sera from HIV-1-positive patients.

It was shown that gp120/160-coupled CD4+ T cells could be lysed by complement activation, but the target cell lysis was strongly inhibited by the majority of HIV-1-positive sera. Significantly more sera from HIV-1-infected patients with CD4+ T cell count higher than 500 microl (N = 38) as well as from patients with 200-500/microl (N = 32) showed strong inhibition of complement activation as compared to sera from those with less than 200 CD4+ T cells/microl (N = 28) (P = 0.0064 and 0.0012, respectively). Consequently, highly significant correlation between CDL inhibitory activity and CD4+ T cell count in HIV-1-infected patients was found by Spearman's rank order analysis (R = 0.399, P < 0.001). CH50 titer and functional C1-inhibitor level were significantly lower in inhibitory as compared to the noninhibitory sera (P < 0.001) and to controls (P < 0.001). The C3 activation products-C3-circulating immune complexes were not increased in inhibitory sera (P = 0.014) suggesting that inhibition of complement activation occurred at or before C3 activation level. C4d fragments and antigenic C1-INH concentration were significantly increased in both categories of HIV-1-positive sera, P < 0.001. These findings indicate that persistent and massive stimulation of complement system with HIV-1 envelope glycoproteins during all stages of the disease induced impairment of classical pathway activation by an inhibitory factor in a majority of patients, which might contribute to the onset of opportunistic infections and AIDS.

Complement Activation↗

bFGF and VEGF synergistically enhance endothelial cytoprotection via decay-accelerating factor induction.

The complement-regulatory protein decay-accelerating factor (DAF) can be upregulated on endothelial cells (EC) by protein kinase C (PKC)-dependent and -independent pathways. We hypothesized that basic fibroblast growth factor (bFGF) might induce EC DAF expression, providing a cytoprotective mechanism for angiogenic neovessels against complement-mediated injury. Incubation of umbilical vein, aortic, and dermal EC with bFGF or vascular endothelial growth factor (VEGF) significantly increased DAF expression. Growth factor-induced EC proliferation was inhibited by PKC antagonists. In contrast, although PKC antagonists inhibited VEGF-induced DAF expression, bFGF-induced DAF was unaffected. Investigation of mitogen-activated kinase (MAPK) pathways also revealed differences, with bFGF-induced DAF dependent on p44/42 and p38 MAPK and VEGF requiring activation of p38 MAPK alone. Upregulation of DAF by bFGF was functionally relevant, reducing C3 deposition on EC after complement activation by 60% and resulting in marked reduction in complement-mediated EC lysis. bFGF and VEGF were synergistic in terms of DAF expression, resulting in enhanced cytoprotection. These observations reveal parallel PKC-dependent and -independent pathways regulating complement activation during angiogenesis. Further elucidation of these pathways may provide important insights into innate cytoprotective mechanisms in endothelium.

Antigens, CD↗

Fluid-phase activation of the alternative pathway of complement by excess factor D in regularly dialyzed patients.

We examined the effect of excess factor D on the alternative pathway of complement (APC). First, we demonstrated that the production of C3a is accelerated in the fluid-phase with the addition of purified factor D. Analysis by sodium dodecylsulfate polyacrylamide gel electrophoresis under reducing conditions showed that the serum iC3b level was elevated when incubated with excess factor D. Secondly, we demonstrated, by measuring the C5a-des-Arg level, that the generation of C5a was promoted in the fluid-phase with the addition of purified factor D. We then studied whether activation of APC is elevated in the blood of patients on maintenance hemodialysis whose sera contained a high concentration of factor D. First, we detected, by fluorescence activated cell sorter analysis, greater amounts of C3d on erythrocytes from the patients (mean fluorescence intensity +/- SD: 7.7 +/- 1.7 arbitrary units) than those from healthy individuals (5.4 +/- 0.5 arbitrary units; p less than 0.001). Secondly, serum C3 level was significantly lower (p less than 0.001) in patients (mean +/- SD: 63.3 +/- 8.2 mg/dl) than in healthy individuals (84.8 +/- 9.5 mg/dl), whereas there was no difference in serum C4 level between patients (32.4 +/- 6.9 mg/dl) and healthy individuals (33.0 +/- 7.4 mg/dl). Serum C5 level was almost the same in patients (10.5 +/- 1.5 mg/dl) and in healthy individuals (11.2 +/- 1.3 mg/dl). These results provide supportive evidence of elevated APC activation in patients with high serum factor D.

Blood Circulation↗

A solid-phase antibody capture assay for the measurement of C1-inhibitor consumption in vivo.

C1-inhibitor (C1-Inh) is a serine esterase proteinase inhibitor (serpin) which plays an important role in regulating serine proteinases of the early inflammatory response. In this study, we describe a novel and versatile polyclonal antibody capture assay to examine C1-Inh consumption in vivo. This assay has advantages over previously described methods of measuring C1-Inh consumption as it allows the assessment of the relative amounts of native, complexed and cleaved inhibitor circulating in plasma. By using polyclonal antibodies specific for other complement proteins, the C1-Inh capture assay was adapted to measure in vivo activation of C3, C4 and factor B. C1-Inh consumption and complement activation were examined in the plasma of 21 normal individuals, 24 individuals with systemic lupus erythematosus (SLE), nine individuals with adult respiratory distress syndrome (ARDS) and in the paired plasma and synovial fluid from 18 patients with rheumatoid arthritis (RA). The C1-Inh capture assay revealed native, cleaved and complexed C1-Inh migrating at 115 kDa, 96 kDa and 209-225 kDa respectively, in normal plasma. C1-Inh consumption was increased in the plasma of all the inflammatory disorders examined, in comparison to normal plasma. It is proposed that this serpin capture assay could be adapted to the study of serpin involvement in a wide variety of inflammatory disorders.

Arthritis, Rheumatoid↗

Lupus anticoagulant and transient severe bleeding tendency in a girl aged nine years.

A 9-year old girl admitted in our clinic for severe hemorrhagic syndrome was found to display a high level of lupus anticoagulant (LA) leading to an important prolongation of phospholipid-dependent coagulation. Positive antinuclear and anti DNA antibodies, as well as very low levels of complement C3 and C4 proteins confirmed the diagnosis of systemic lupus erythematosus. Therapy with cortisone and cyclophosphamide led to normalization of the clotting tests but could not arrest the development of renal and hepatic lesions. The patient is one of the few cases with presence of lupus anticoagulant associated with severe hemorrhagic diathesis, in opposition to the more frequently reported thrombotic tendency connected with antiphospholipid antibodies.

Acute Disease↗

Reduction in alternative complement pathway mediated C3 conversion following burn injury.

Studies were performed to further investigate an abnormality of the alternative complement pathway associated with burn injury. C3 conversion by inulin and cobra venom factor was measured in serial serum samples from 18 burned patients and in the sera from 25 normal controls. C3 conversion by both activating substances in the patients' sera was significantly decreased during 50 days postburn in comparison to C3 conversion in the normal sera. The most marked reduction in C3 conversion occurred in patients with large full-thickness injuries and infectious complications. However, the abnormality was not more severe in patients with pneumonia and bacteremia in comparison to patients with bacteremia only. It was also not predictive of fatal outcome resulting from infectious complications. Preliminary evidence was presented to suggest that the abnormality is caused by a serum inhibitor, which has an affinity for cellulose and/or is inactivated by it.

Adolescent↗

A neutrophil chemotactic factor and its inhibitor found in DNCB-induced skin inflammatory lesions.

Neutrophil chemotactic factor(s) and their inhibitors were explored in the acute inflammatory skin lesions induced by the application of 4% DNCB solution with acetone in guinea pigs. Skin biopsies were taken periodically and tissue extracts were made from the biopsy specimens. Neutrophil chemotactic activity found in such extracts reached a peak at 12 to 24 hr after the induction of the inflammation, when the lesions were found to be infiltrated predominantly with neutrophils. After 24 hr, the activity gradually diminished. Physicochemical and antigenic characterization studies on the chemotactic substance indicated that the material was most likely the cleavage product of C3. On the other hand, inhibitors against the neutrophil chemotactic factor were found in the tissue extracts which were obtained from the lesions at a later stage (48 to 96 hr after the induction of the inflammatory reaction). These inhibitors blocked not only the complement-derived chemotactic activity but also that obtained from bacterial culture filtrates. They were heat labile and showed striking heterogeneity in size on Sephadex gel filtration.

Animals↗

Reduction in C3 conversion in patients with severe thermal injury.

Serum opsonic activity for E. coli 075, concentration of native C3 and C3 conversion by inulin were determined in the sera of five patients with burns involving 45% to 80% total body surface during 3 weeks postburn. In all patients, opsonic activity, C3 concentration, and C3 conversion were reduced during the first week following the injury. C3 was restored to normal or elevated levels by the end of the first week postburn and remained normal or elevated thereafter for the duration of the study. In two patients, opsonic activity and C3 conversion were markedly reduced during the entire 3-week postburn period. In the other three patients, opsonic activity was fully restored to normal within 1 week postburn and, in two of these patients, remained normal thereafter for the duration of the study. In the other patient, opsonic activity became reduced again during the third postburn week. C3 conversion in all five patients remained at a low normal or abnormal level during the entire period of study. Addition of normal human serum to the burn sera fully restored opsonic activity to normal but did not normalize C3 conversion. The results suggest that reduced opsonization is related to a deficiency of serum proteins, whereas reduced C3 conversion may be caused by a circulating inhibitor. Both abnormalities were shown to be associated with microbial infections in burned patients.

Acinetobacter Infections↗

In vivo characterization and therapeutic efficacy of a C5-specific inhibitor from the soft tick Ornithodoros moubata.

The involvement of complement (C) in inflammatory diseases has driven the search for agents capable of inhibiting dysregulated complement activation. Many of these reagents inhibit the C3 convertases during the early stages of the cascade. However, a drawback of total systemic C inhibition, particularly in longterm treatment of chronic disease, is potentiation of infection and immune complex disease due to an inability to opsonize complexes and foreign cells and to lyse pathogens. Recent identification of a C5-binding protein in the salivary gland of the soft tick Ornithodoros moubata has enabled development of a terminal pathway-specific reagent, OmCI, with potential to ameliorate disease while leaving key physiological processes unaffected. Here we demonstrated that OmCI has broad cross-species activity. When given intravenously to rodents, OmCI totally ablated complement hemolytic activity, which gradually restored as C5 was resynthesized. The circulating half-life of OmCI was 30 h, demonstrating a much slower clearance than other small, biological agents. Using C5-sufficient and C5-deficient mice we showed that prolonged half-life was due to binding to plasma C5. Surface plasmon resonance analysis of C5 binding to OmCI confirmed a high binding affinity with a slow dissociation rate. OmCI was effective in preventing experimental autoimmune myasthenia gravis induced by passive transfer in normal Lewis rats. OmCI ablated clinical disease, reduced C3 and C9 deposition at the neuro-muscular junction, and effected a marked reduction in cellular infiltration at this site. These data offer exciting prospects for targeted treatment of complement-mediated diseases without the detrimental inhibition of the opsonic roles of complement.

Animals↗

Studies on prothrombin complex concentrates contact factors, complement components and proteinase inhibitors.

The behaviour of contact factors, complement components and antiproteases during the preparation of prothrombin complex concentrates by adsorption of the clotting components on DEAE-Sephadex has been studied. The pro-enzymes: factors XII, XI and prekallikrein were removed by pre-elution in function of the salt concentration. In contrast, high molecular weight kininogen was considerably enriched in PCC preparations. C4 of the complement system displayed an analogous behaviour. C1s reached a 4-5 fold plasma concentration but C3 only 30% of the normal plasma level. The prothrombin complex concentrate contained no antithrombin III nor alpha 2M nor alpha 2 antiplasmin but a three fold plasma concentration of C1-inactivator and a 15 fold increase of inter-alpha-trypsin inhibitor. NAPTT (Non Activated Partial Thromboplastin Time) ratios did not seem to be in accordance with either the presence or the absence of contact enzymes. Moreover 0.20 M NaCl appeared as the minimal pre-elution molarity necessary to ensure a NAPTT ratio above thrombogenic values. Molecular alteration of high molecular weight kininogen and C4 was observed and its significance discussed. Complex formation between C1-inactivator and proteases was shown to be another sign of undesirable proteolytic events.

Blood Coagulation Factors↗

A low molecular weight inhibitor of the alternative complement pathway. I. Its isolation from human urine and the reaction mechanism.

A low molecular inhibitor (LMW-INH) of the alternative pathway activation was isolated form healthy human urine. Its molecular weight was slightly higher than 1000. LMW-INH inhibited C3 convertase formation in fluid phase, on sheep erythrocytes and on zymosan particles. In contrast with beta 1H globulin LMW-INH showed no effect on the C3b binding site for B, and it inhibited the activation of CVF.B complex by D only when LMW-INH was simultaneously present with D. These results indicate that the reaction mechanism of LMW-INH is different from that of beta 1H globulin.

Chromatography, Gel↗

Synovial fibroblast-like cells synthesize seven proteins of the complement system.

Fibroblast-like cells from synovial tissue obtained during arthroscopy in 4 young adults with recent knee trauma were biosynthetically labeled with 35S-methionine, and protein production was quantitated by immunoprecipitation and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Synovial fibroblast-like cells synthesized C1r, C1s, C1 inhibitor, C2, C3, factor B, and factor H, all with the same sizes and subunit structures as the proteins synthesized in skin fibroblasts. The capacity to synthesize these proteins was not lost with passages or freeze-thawing. Gamma-interferon stimulation increased synthesis of all 7 proteins. Lipopolysaccharide increased synthesis of only C3 and factor B. Unlike in whole rheumatoid tissue, C4 and C5 were not detected. Synovial lining cells may be an important source of local complement for participation in local defense or development of pathologic states.

Cell Adhesion↗

Antimicrobial activities of heparin-binding peptides.

Antimicrobial peptides are effector molecules of the innate immune system. We recently showed that the human antimicrobial peptides alpha-defensin and LL-37 bind to glycosaminoglycans (heparin and dermatan sulphate). Here we demonstrate the obverse, i.e. structural motifs associated with heparin affinity (cationicity, amphipaticity, and consensus regions) may confer antimicrobial properties to a given peptide. Thus, heparin-binding peptides derived from laminin isoforms, von Willebrand factor, vitronectin, protein C inhibitor, and fibronectin, exerted antimicrobial activities against Gram-positive and Gram-negative bacteria. Similar results were obtained using heparin-binding peptides derived from complement factor C3 as well as consensus sequences for heparin-binding (Cardin and Weintraub motifs). These sequence motifs, and additional peptides, also killed the fungus Candida albicans. These data will have implications for the search for novel antimicrobial peptides and utilization of heparin-protein interactions should be helpful in the identification and purification of novel antimicrobial peptides from complex biological mixtures. Finally, consensus regions may serve as templates for de novo synthesis of novel antimicrobial molecules.

Amino Acid Motifs↗

Specific inhibition of the classical complement pathway by C1q-binding peptides.

Undesired activation of the complement system is a major pathogenic factor contributing to various immune complex diseases and conditions such as hyperacute xenograft rejection. We aim for prevention of complement-mediated damage by specific inhibition of the classical complement pathway, thus not affecting the antimicrobial functions of the complement system via the alternative pathway and the lectin pathway. Therefore, 42 peptides previously selected from phage-displayed peptide libraries on basis of C1q binding were synthesized and examined for their ability to inhibit the function of C1q. From seven peptides that showed inhibition of C1q hemolytic activity but no inhibition of the alternative complement pathway, one peptide (2J) was selected and further studied. Peptide 2J inhibited the hemolytic activity of C1q from human, chimpanzee, rhesus monkey, rat, and mouse origin, all with a similar dose-response relationship (IC(50) 2-6 microM). Binding of C1q to peptide 2J involved the globular head domain of C1q. In line with this interaction, peptide 2J dose-dependently inhibited the binding of C1q to IgG and blocked activation of C4 and C3 and formation of C5b-9 induced via classical pathway activation, as assessed by ELISA. Furthermore, the peptide strongly inhibited the deposition of C4 and C3 on pig cells following their exposure to human xenoreactive Abs and complement. We conclude that peptide 2J is a promising reagent for the development of a therapeutic inhibitor of the earliest step of the classical complement pathway, i.e., the binding of C1q to its target.

Amino Acid Sequence↗