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

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

Amino Acid Sequence↗

Complement inhibition by human vitronectin involves non-heparin binding domains.

Vitronectin (complement S-protein), a multifunctional glycoprotein, inhibits complement-mediated cytolysis at two identified stages of terminal complement complex (TCC) formation: blocking of C5b-7 membrane binding, and prevention of C9 polymerization. However, the functional domain(s) of vitronectin involved in these reactions remains incompletely defined. In order to identify the complement inhibition site, a 12-kD heparin binding fragment and two other internal fragments (53 kD and 43 kD) of vitronectin were isolated after cyanogen bromide (CNBr) treatment of the native molecule. Potent inhibition of guinea pig erythrocyte (GPE) reactive lysis was demonstrated with native vitronectin, total CNBr digest and the 53-kD and 43-kD fragments, but only very poorly by the heparin binding 12-kD peptide. Similarly, the 43-kD fragment blocked the binding of C5b-7 to immobilized vitronectin, whereas the 12-kD fragment had no effect. These data localize the C5b-7 binding site to a 43-kD internal region. Further characterization of the fragments was carried out in an assay which detected C9 polymerization in the presence of C5b-8. Polymerized material was separated by PAGE, detected by autoradiography and quantified after excision from the gels. Results showed that polymerization did not occur in the presence of the 53-kD and 43-kD fragments. However, the 12-kD heparin binding fragment had no effect. It is proposed that prevention of C5b-8-induced C9 polymerization resides at a site in an internal region of the vitronectin molecule.

Amino Acid Sequence↗

Evaluation of low dose anaphylatoxic peptides in the pathogenesis of the adult respiratory distress syndrome (ARDS). Monitoring of early C5a effects in a guinea-pig in vivo model after i.v. application.

A guinea-pig in vivo model is presented that allows the infusion of purified C5a via a central vein catheter and the monitoring of its effects on granulocytes and platelets, the most important cells in the pathogenesis of several lung disorders, e.g. shock lung. After the infusion of C5a, which was adjusted to a quantity that caused slight and transient alterations of lung physiology, granulocytes disappeared from circulation within 1 min. Simultaneously the granulocyte content of the lung increased about three-fold as judged by histological evaluations. Morphologic destructions were not observed. After the drop a rebound of circulating Polymorpho-nuclear leucocytes (PMN) occurred, which was significantly higher than control values and the appearance of banded cells indicated a mobilization from bone marrow stores. Studies with 51-chromium labelled PMNs revealed that most, but not all, of the granulocytes returned to circulation after transient sequestration. The number of platelets also decreased after C5a infusion, but the rebound was delayed compared with the PMNs and did not exceed control values. The changes in circulating cells, lung histology, and lung physiology are comparable to those occurring during the onset of shock lung and thus strengthen the supposed importance of C5a concerning the pathogenesis of that syndrome.

Animals↗

Complement lysis: the ultrastructure and orientation of the C5b-9 complex on target sheep erythrocyte membranes.

The C5b-9 complex derived from human serum and assembled on target sheep erythrocyte membranes is a thin-walled cylinder rimmed by an annulus at one end. The total height of the cylinder is 150 A, towards which the annulus contributes 30 A. The cylinder has an apparently uniform internal diameter of 100 A. The external diameter of the annulus is 200 A. The classical complement 'rings' visualized on membranes after complement lysis represent such C5b-9 cylinders perpendicularly oriented on the membranes. The thin-walled cylinder is anchored in the membrane matrix and the annulus located in the exterior membrane glycocalyx. At the sites of attachment of the C5b-9 complexes, the continuity of the membrane bilayer is disturbed and the presence of trans-membrane pores is indicated. The data essentially support the 'doughnut' theory of complement lysis.

Animals↗

Quantification of the terminal complement complex in human plasma by an enzyme-linked immunosorbent assay based on monoclonal antibodies against a neoantigen of the complex.

The fluid-phase terminal complement complex (TCC), consisting of the components C5b, C6, C7, C8, C9, and the S-protein, has recently been detected in normal human plasma by using antibodies against native terminal complement components. Increased amounts of TCC were then found in several patients with in vivo activation of complement. We now describe a sensitive, specific, and reliable enzyme-linked immunosorbent assay for quantification of the TCC, based on monoclonal antibodies against a neoantigen of the complex. The results indicate that the TCC is present in normal human plasma and in increased amounts in patients with complement activation in vivo, thus confirming previously obtained results. The assay is easy to perform and can be used for examination of large numbers of plasma samples.

Antibodies, Monoclonal↗

Differential sensitivities of purified human eosinophils and neutrophils to defined chemotaxins.

Functions of eosinophils and neutrophils isolated from normal human blood were determined by measuring chemotactic migration and release of beta-glucuronidase. Four well-characterized chemotaxins, the complement fragment C5a, formyl-methionyl-leucyl-phenylalanine (FMLP), platelet-activating factor (PAF), and leukotriene B4 (LTB4) were used as stimuli. Neutrophils showed remarkable chemotactic responses to all four chemotaxins. In contrast, eosinophils showed a significant chemotactic response to C5a and PAF, but only weak responses to FMLP and LTB4. Using these chemotaxins we found the following order of chemotactic potency (maximal number of migrated cells): C5a = LTB4 greater than FMLP greater than PAF for neutrophils and PAF = C5a greater than LTB4 = FMLP for eosinophils. Neutrophils elicited a significant beta-glucuronidase release when stimulated by C5a and FMLP, whereas only small amounts were released with PAF and LTB4. On the other hand, an amount of beta-glucuronidase released from eosinophils comparable to that from neutrophils was elicited only with C5a. FMLP, LTB4, and PAF caused the release of small percentages of beta-glucuronidase. The important cellular functions of eosinophils and neutrophils, chemotaxis and enzyme release, are thought to be controlled by differential responsiveness to stimuli.

Adult↗

Activation of complement by blood transfusion filters.

Fresh blood, stored blood and granulocyte concentrates were passed through 170-micron and microaggregate blood filters to determine the degree of complement activation that occurs during transfusion of citrated blood products. Complement activation was assessed by measurement of C3 conversion using crossed immunoelectrophoresis and by assessment of C5a using a leukocyte aggregation functional assay. Prefiltration, fresh or stored blood products showed 0-1% C3 activation. Postfiltration, the degree of C3 conversion did not change for fresh blood or granulocyte concentrates. For stored whole blood, the degree of C3 conversion increased slightly to 2-3%. Prefiltration results for all samples showed a low level of C5a which did not change after passage through any filter. Serum incubated with filter material at 37 degrees C showed 2-10% C3 conversion. In contrast, results with citrated plasma showed less than 3% conversion of C3. We conclude that although some filter materials may activate complement in serum, filtration of citrated blood products through microaggregate blood filters induces little complement activation.

Blood Transfusion↗

C5a fragment of bovine complement. Purification, bioassays, amino-acid sequence and other structural studies.

C5a and des-Arg-C5a have been purified from bovine serum in milligram amounts. The progress of the purification was followed by measuring the chemotactic activity of the complement fragments. The two polypeptides induce activation of neutrophil-oriented locomotion and secretion with very similar dose/response effects. After preparing a rabbit antiserum to bovine C5a/des-Arg-C5a, a competitive enzyme-linked immunosorbent assay (ELISA) was set up for the detection of C5a from 5 ng/mol to 1 microgram/ml. The complete primary structure of bovine C5a, which consists of 74 amino acids, has been determined by sequence analysis of the tryptic peptides, aligned by peptides derived from a chymotryptic digest, and by partially sequencing the intact molecule. Bovine C5a has a sequence homology of 78% and 70% with porcine and human C5a, respectively, reacts with an antiserum to porcine C5a and is recognized by cell surface receptors on human neutrophils. Finally, the secondary structure of bovine C5a was investigated by circular dicroic spectroscopy and predicted from the amino acid sequence. A comparison of the content and distribution of alpha-helical and/or hydropathic regions, suggests that the three-dimensional structure of C5a might be modeled from the known crystal structure of the homologous C3a molecule.

Amino Acid Sequence↗

Airway responses in vitro following C5a des Arg-induced hyper-responsiveness in vivo in rabbits.

The mechanism of C5a des Arg-induced airway hyper-responsiveness in rabbits was investigated. Airway smooth muscle from rabbits which had been pretreated in vivo, was studied in vitro. Tracheal rings, segmental bronchial rings, subsegmental bronchial spirals and lung parenchymal strips were all prepared from each rabbit lung. Although C5a des Arg produces hyper-responsiveness to histamine in vivo, which is inhibited by indomethacin, the airway smooth muscle responses in vitro from control, C5a des Arg and C5a des Arg plus indomethacin pretreated rabbits did not differ. The neutrophil counts in the tracheal and subsegmental bronchial specimens were increased in the C5a des Arg-treated group. Indomethacin significantly (P less than 0.05) inhibited the neutrophil influx in the subsegmental bronchi. It is concluded that intrinsic smooth muscle function is unaltered following C5a des Arg-induced hyper-responsiveness in vivo.

Airway Resistance↗

Chemotactic activity for polymorphonuclear and mononuclear leukocytes in rheumatoid synovial fluids.

In order to why polymorphonuclear leukocytes (PMNs) are predominant and mononuclear leukocytes (MNLs) are few in rheumatoid synovial fluids, chemotactic factor(s) for PMNs and MNLs were studied in the synovial fluids of rheumatoid arthritis (RA-SF) and osteoarthritis (OA-SF) using both Boyden's and agarose methods. The RA-SF showed strong chemotactic activity for human peripheral blood PMNs compared with non-rheumatoid OA-SF. The chemotactic activity for PMNs was well correlated with the number of PMNs in RA-SF, suggesting that it was a natural mediator for PMN emigration into rheumatoid joint cavity. The major chemotactic factor for PMN in RA-SF was of apparent molecular weight of 14,000 and its activity was suppressed to less than 10 percent by anti-C5a antibody, but it failed to show any anaphylatoxin activity which was an attribute of C5a. It was, therefore, suggested to be C5a-like molecule but not C5a itself. The possibility that the factor may be a C5a des-Arg was discussed. On the contrary, the chemotactic activity for MNLs was not found neither in RA-SF nor OA-SF. These findings may explain the fact that PMNs are predominant in rheumatoid synovial fluids.

Arthritis, Rheumatoid↗

The complement system in infectious mononucleosis.

The complement system was investigated in 34 patients with infectious mononucleosis. Three had specific complications: one haemolytic anaemia, one severe arthralgia/myalgia and one proliferative glomerulonephritis. Complement changes consistent with classical pathway consumption were seen in ten of the uncomplicated group and the patients with haemolytic anaemia and arthralgia/myalgia. The patient with glomerulonephritis showed evidence of alternative pathway utilisation including C3 splitting activity and the deposition of properdin on renal biopsy. The complement findings suggest that circulating immune complexes are common in such patients and are likely to play a role in the pathogenesis of the complications. It is proposed that both complement pathways may be required for the effective clearance of viral material from the circulation.

Complement C1 Inactivator Proteins↗

Alternative pathway of complement activation by Candida albicans.

Activation of the alternative pathway of complement by Candida albicans was examined using a chemotactic assay. Two serologically defined strains and eight clinical isolates of Candida albicans were used in these experiments. The results showed that all ten strains of Candida albicans were capable of alternative complement pathway activation. These findings may provide an insight into host resistance to this infection.

Candida albicans↗

Release of leukotriene B4 from sublethally injured oligodendrocytes by terminal complement complexes.

In the present study, the interaction of the terminal complement complexes with oligodendrocytes was investigated for observation of its effect on membrane lipid hydrolysis. [14C]Arachidonic acid was incorporated into the membrane lipids of cultured oligodendrocytes before sensitization with anti-galactocerebroside antiserum. Cells were then exposed to excess C6-deficient rabbit serum reconstituted with limiting doses of C6 to form various numbers of C5b-9 complexes. Qualitative analysis of the supernatants by HPLC revealed the presence of compounds that coeluted with arachidonic acid and its oxygenated derivatives, prostaglandin E2, leukotrienes E4 and B4, and 15-hydroxyeicosatetraenoic acid. The kinetics of leukotriene B4 release by excess C5b-8 was quantitated by radioimmunoassay. Leukotriene B4 release approached a maximum around 30 min, and C6 dose-response studies performed at 1 h showed that maximal levels of leukotriene B4 were detected over a range of sublytic C5b-9 attack. Maximal release of leukotriene B4 was also achieved by C5b-8 without further enhancement by addition of lytic doses of C9. Results indicate that sublytic attack of oligodendrocytes by complement induces release of lipid-derived inflammatory mediators.

Animals↗

Inflammatory oedema induced by synergism between calcitonin gene-related peptide (CGRP) and mediators of increased vascular permeability.

The potent vasodilator calcitonin gene-related peptide (CGRP, human synthetic), when mixed with histamine and injected intradermally in the rabbit, induced a marked potentiation of local oedema. CGRP also potentiated oedema induced by other mediators of increased microvascular permeability in the rabbit; bradykinin, platelet-activating factor (Paf), C5a des Arg, N-formylmethionyl-leucyl-phenylalanine (FMLP) and leukotriene B4 (LTB4). Substance P alone, or mixtures of substance P and CGRP, failed to induce oedema in rabbit skin. In rat skin, however, substance P induced oedema and this was potentiated by CGRP. CGRP had a protracted potentiating action following intradermal injection in the rabbit. The time for half loss of activity for CGRP was 40.1 +/- 7.5 min compared to 18 +/- 1 min for prostaglandin E2 (PGE2). No loss of potentiating activity was detected after incubation of CGRP in rabbit plasma or blood for 60 min. We postulate that endogenous CGRP, if released locally from nerve endings, could have a marked enhancing effect on oedema induced by other mediators in an inflammatory reaction.

Animals↗

Effects of the C5a anaphylatoxin and its relationship to cyclo-oxygenase metabolites in rabbit vascular strips.

Strips of rabbit blood vessels were suspended in vitro and responses to complement peptides C3a and C5a were recorded isotonically. Human C3a (up to 1.5 microM) was inactive on rabbit vascular strips. Human C5a (2.9-59 nM) decreased spontaneous activity of the rabbit portal vein under resting baseline tension. The C5a relaxed strips of portal vein and pulmonary artery that were precontracted with noradrenaline (NA, 200 nM). On the portal vein, C5a-induced relaxation was preceded by a transient contractile phase which decreased with repeated applications of C5a. The magnitude of C5a-induced relaxation of both vessels increased with repeated stimulation by C5a. Maximal levels of relaxation for the third application of C5a at 59 nM averaged 44% and 17% of the NA-induced contraction plateau in portal vein and pulmonary artery, respectively. Strips of rabbit aorta responded minimally to C5a. Indomethacin (5.6 microM) significantly inhibited C5a-induced relaxation of the portal vein and pulmonary artery but had no effect on the early contractile response of the portal vein. Mepyramine (10 microM) failed to modify the C5a response from either vessel, but it reduced the contractile phase of the C5a response on the portal vein when applied in conjunction with indomethacin. The drug SKF 88046, an end organ antagonist of thromboxane (TX) A2 and some contractile prostaglandins, reduced the contractile phase and increased relaxation of the portal vein to C5a but did not modify the response of the pulmonary artery. Radioimmunoassays for 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha) and TXB2 were performed on the fluid bathing rabbit isolated blood vessels. C5a promoted release of 6-keto-PGF1, over the basal release rate in rabbit tissues. Only trace quantities of TXB2 were produced by rabbit vessels exposed to C5a. 7 It is concluded that the mechanical response of blood vessels to C5a is mainly determined by the type of cyclo-oxygenase products released and by the sensitivity of each blood vessel to these active lipids. Tissue histamine release is also responsible for a component of the response of rabbit portal vein to C5a. The relaxant effect of C5a on rabbit blood vessels may be a phenomenon related to the previously reported hypotensive action of classical anaphylatoxins in vivo.

6-Ketoprostaglandin F1 alpha↗

Kinetics of the generation and action of chemical mediators in zymosan-induced inflammation of the rabbit peritoneal cavity.

Acute inflammation was induced by intraperitoneal injection of zymosan (yeast cell walls) in the rabbit. Peritoneal inflammation was monitored by the local accumulation of intravenously-injected Evans blue dye (which binds to plasma albumin) and of polymorphonuclear leukocytes (PMNLs). The zymosan-induced exudate fluid contained a microvascular permeability-increasing factor or factors which, unlike histamine and bradykinin, had a long duration of action when tested in rabbit skin and was dependent on circulating PMNLs. Using radioimmunoassay, high levels of rabbit C5a, or C5a des Arg, were detected in the exudate fluid and accounted for much of the permeability-increasing activity, as judged by skin bioassay after separation on Sephadex G-100. The vasodilator prostaglandin, prostaglandin I2 (PGI2), was generated in the inflammatory reaction, as judged by the presence of high levels of 6-oxo-PGF1 alpha detected in the exudate by radioimmunoassay. However, in contrast to observations in rabbit skin, inhibition of prostaglandin generation had a relatively small effect on peritoneal oedema formation. C5a and C5a des Arg increase microvascular permeability by a PMNL-dependent mechanism in the rabbit. However, in response to zymosan, protein leakage was detected considerably earlier than PMNL accumulation. A hypothesis to account for this difference is proposed.

Animals↗

Prostacyclin biosynthesis and reduced 5-HT uptake after complement-induced endothelial injury in the dog isolated lung.

1. Pulmonary prostacyclin (PGI2) biosynthesis was evaluated in relation to endothelial integrity before and after complement activation in isolated plasma-perfused lung lobes of the dog. 2. The plasma was activated with zymosan (ZAP, n = 4), yeast cells (YAP, n = 4) or yeast with 3 microM indomethacin (Indo + YAP, n = 3). Immunoreactive 6-oxo-prostaglandin F1 alpha (i-6-oxo-PGF1 alpha) and thromboxane B2 (iTXB2) were measured to monitor PGI2 and TXA2 biosynthesis. 3. The kinetic parameters Km and Vmax of 5-hydroxytryptamine (5-HT) uptake were calculated on the basis of multiple indicator diffusion data to evaluate endothelial integrity. 4. YAP and ZAP induced a biphasic increase of the arterial perfusion pressure. The immediate pressure peak was partly mediated by TXA2 and the TXB2 was subsequently cleared by the lung. 5. The apparent Vmax of 5-HT uptake remained constant throughout the experiment. Thus, complement activation did not affect the number of endothelial 5-HT carrier sites available to the perfusate. 6. The apparent Km of 5-HT uptake was enhanced in 9 lungs exposed to activated plasma complement for 20 min. This decreased affinity for 5-HT probably reflects endothelial injury. It was transient as the apparent Km had returned to the baseline value after 60 min. 7. PGI2 clearance and biosynthesis were virtually absent in the control period. PGI2 formation increased drastically after infusion of ZAP or YAP and was proportional to the endothelial injury expressed as elevated Km or pulmonary oedema. Thus, PGI2 biosynthesis might be a marker of severe endothelial distress.

Animals↗