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Unusual ultrastructure of complement-component-C4b-binding protein of human complement by synchrotron X-ray scattering and hydrodynamic analysis.

Solution X-ray-scattering experiments with the use of synchrotron radiation on the human complement-component-C4b-binding protein showed that its RG is 13 nm and that its Mr is 550,000. From the known primary amino acid sequence and estimated carbohydrate content, C4b-binding protein is inferred to have a total of 7.4 +/- 1 subunits. Heptameric computer models for C4b-binding protein were based on the X-ray-scattering curve to a resolution of 6.4 nm, and literature values for sedimentation coefficients and electron-microscopy images. The macromolecule was represented by a bundle of seven arms held together at the C-terminal end and spaced out by a base containing 23% of C4b-binding protein by volume. If the overall length of each arm is assumed to be 33 nm as seen in electron microscopy, the solution data indicate an average arm-axis angle of 5-10 degrees. The seven arms of C4b-binding protein are found to be close together, in distinction to the splayed-out images seen in electron micrographs.

Carrier Proteins↗

Interferon-induced transcriptional and post-transcriptional modulation of factor H and C4 binding-protein synthesis in human monocytes.

Cultured human monocytes synthesize factor H (H) and C4 binding protein (C4-bp), as assessed by measuring their presence in culture fluids, and demonstrating the presence of their corresponding mRNAs in total monocyte RNA by Northern blot analysis and by nuclear run-on experiments. H mRNA (4.3 kb and 1.8 kb) could only be detected when cycloheximide (2.5 micrograms/ml) was present in monocyte culture fluid. Recombinant interferon-gamma (IFN-gamma) and lymphoblastoid interferon-alpha (IFN-alpha) produce dose-related increases in the synthesis of H and C4-bp and in the abundance of C4-bp mRNA (2.5 kb). Increased abundance of H mRNA was also seen when cycloheximide (2.5 micrograms/ml) was present in the cultures. Both cytokines increased the transcription rates of the H and C4-bp genes. These changes in transcription were rapid, with significant increases being observed within 30 min of exposure. Following the removal of the cytokines from the cultures the transcription rates of both genes returned to control levels within 4 h. The effects of combining IFN-alpha and IFN-gamma on H and C4-bp transcription rates, mRNA abundances and protein secretion rates were not quantitatively additive. The half-life of H mRNA in monocytes was 15 min, whereas that of C4-bp mRNA was 2 h 45 min. Neither half-life was altered by IFN-gamma.

Carrier Proteins↗

Complement depletion aggravates Staphylococcus aureus septicaemia and septic arthritis.

The aim of the study was to assess the role of the complement system in Staphylococcus aureus arthritis and septicaemia. The murine model of haematogenously acquired septic arthritis was used, injecting intravenously toxic shock syndrome toxin-1 (TSST-1), producing S. aureus LS-1. Complement was depleted using cobra venom factor (CVF). Evaluation of arthritis was performed clinically and histopathologically. In addition, the effect of complement depletion on the phagocytic activity of leucocytes was assessed in vivo and in vitro. Six days after inoculation of S. aureus the prevalence of arthritis in decomplemented mice was three-fold higher than that in controls (91% versus 25%). The clinical severity of arthritis at the end of the experiment, expressed as arthritic index, was 7.3 and 1.9, respectively. These findings were confirmed by histological index of synovitis as well as of cartilage and/or bone destruction being significantly higher in decomplemented mice than in controls (9.8 +/- 1.7 versus 4.9 +/- 1.2, P < 0.05; and 7.9 +/- 1.7 versus 3.0 +/- 0.9, P < 0.05, respectively). Also, the septicaemia-induced mortality was clearly higher in decomplemented mice compared with the controls. CVF treatment significantly reduced in vivo polymorphonuclear cell-dependent inflammation induced by subcutaneous injection of olive oil and mirroring the capacity of polymorphonuclear cells (PMNC) to migrate and/or extravasate. Besides, the decomplementation procedure significantly impaired phagocytic activity of peripheral blood leucocytes in vitro, since the number of phagocytes being able to ingest bacteria decreased by 50% when the cells were maintained in decomplemented serum compared with those in intact serum. The conclusion is that complement depletion aggravates the clinical course of S. aureus arthritis and septicaemia, possibly by a combination of decreased migration/extravasation of PMNC and an impairment of phagocytosis.

Animals↗

Inhibition of human complement by beta-glycyrrhetinic acid.

Licorice, the root extract of Glycyrrhiza glabra I., is used as a medicine for various diseases. Anti-inflammatory as well as anti-allergic activities have been attributed to one of its main constituents, glycyrrhizin. These activities are mainly ascribed to the action of the aglycone, beta-glycyrrhetinic acid. beta-Glycyrrhetinic acid has a steroid-like structure and is believed to have immunomodulatory properties. To determine whether interference with complement functions may contribute to the immunomodulatory activity of beta-glycyrrhetinic acid, its effects on the classical and alternative activation pathways of human complement were investigated. We found that beta-glycyrrhetinic acid is a potent inhibitor of the classical complement pathway (IC50 = 35 microM), whereas no inhibitory activity was observed towards the alternative pathway (IC50 > 2500 microM). The anticomplementary activity of beta-glycyrrhetinic acid was dependent on its conformation, since the alpha-form was not active. It was also established that naturally occurring steroids, e.g. hydrocortisone and cortisone, did not inhibit human complement activity under similar conditions. Detailed mechanistic studies revealed that beta-glycyrrhetinic acid acts at the level of complement component C2.

Administration, Topical↗

Decomplementation with cobra venom factor prolongs survival of xenografted islets in a rat to mouse model.

Although the involvement of complement in hyperacute rejection of xenotransplants is well recognized, its role in rejection of devascularized xenografts, such as pancreatic islets, is not completely understood. In this study, we investigated whether complement participates in the immunopathology of xeno-islet transplantation in a concordant rat to mouse model. Rat pancreatic islets were implanted under the kidney capsule of normal and cobra venom factor (CVF)-decomplementized diabetic C57BL/6 mice. Graft survival was monitored by blood glucose levels. Deposition of IgM and C3 on grafted islets in vivo or on isolated islets in vitro (after incubation with normal and decomplementized mouse serum), as well as CD4- and CD8-positive leucocyte infiltration of grafts, was checked by immunohistochemistry. In addition, complement-mediated cytotoxicity on rat islet cells was evaluated by a 3-(4, 5-dimethythiazolyl)-2.5-diphenyl-2H-tetrazolium-bromide (MTT) assay. A significant C3 deposition was found on grafted islets from the first day after transplantation in vivo, as well as on isolated islets after incubation with mouse serum in vitro. By MTT assay, complement-mediated cytotoxicity for islet cells was found. Decomplementation by CVF decreased C3 deposition on either isolated or grafted islets, delayed CD4- and CD8-positive leucocyte infiltration, led to significant inhibition of complement-mediated cytotoxicity for islet cells, and prolonged graft survival (mean survival time 21.3 versus 8.5 days; P<0.01). Our results indicate that decomplementation can prolong the survival time of devascularized xenografts across concordant species. The deposition of complement on transplanted islets may contribute to xenograft rejection by direct cytotoxicity and by promoting leucocyte infiltration.

Animals↗

Plasmapheresis with a substitution solution of human serum protein (5%) versus plasmapheresis with a substitution solution of human albumin (5%) in patients suffering from autoimmune diseases.

Therapeutic plasma exchange (TPE) has been used extensively for over 2 decades to treat a variety of autoimmune and congenital diseases and is now widely accepted. The primary objective of this study was to compare the clinical efficacy of two plasma exchange preparations, human serum protein (HSP) and human albumin (HA). Twenty-four patients in the following disease categories underwent TPE using either HSP (Biseko, 5%) or HA (5%): systemic lupus erythematosus, 8; glomerulonephritis, 8; myasthenia gravis, 2; Guillain-Barré-syndrome, 2; recurrent iritis, 1; pemphigoid, 1; uveitis, 1; and vascular retinitis, 1. There was no statistically significant difference in the average number of TPEs needed in the HSP group (13.5) and HA (13.8) measured over the first 6 weeks of treatment. The secondary parameters, in particular the immunological parameters IgG and IgA, provided evidence that plasma exchange with HSP may have some advantages over HA, and confirmatory studies in a larger group of patients are indicated. Adverse events during TPE occurred in both the HAS group (4 patients) and the HA group (4 patients). However, patients in the HSP group were older (12.3 years), were suffering from more complicated autoimmune diseases, and the number of occasions (days) on which these were reported (6 days) was less than in the HA group (11 days). One patient in the HA group died from septic-toxic circulatory collapse on Day 49 due to an infection with resistant strains of Staphylococcus aureus. Infections in other patients did not occur; all showed considerable improvement in their symptoms and completed the study in good general condition.

Adult↗

Clionasterol: a potent inhibitor of complement component C1.

Clionasterol (1a), clionasterol monoacetate (1b) and 5alpha,8alpha-epidioxy-24alpha-ethylcholest-6-en-3-ol (2), isolated from the marine sponge Xestospongia exigua, and beta-sitosterol (3) were tested for their influence on the classical (CP) and alternative (AP) pathways of activation of the human complement system in vitro. All the sterols inhibited the CP in a dose-dependent manner but no detectable effect was observed in the AP even at concentrations of 400 microM. Clionasterol was found to be a potent inhibitor of CP (IC50 = 4.1 microM) being ten-fold more active than beta-sitosterol. The presence of the epidioxy group on C-5 and C-8 of compound 2 caused a pronounced decrease of the inhibitory effect. Mechanistic studies on the anticomplementary effect of clionasterol revealed that it interferes with the complement component C1.

Animals↗

High molecular weight complex in human plasma between vitamin K-dependent protein S and complement component C4b-binding protein.

Protein S, a recently described vitamin K-dependent plasma protein, is shown to exist in two forms in plasma--free protein and in complex with C4b-binding protein. C4b-binding protein is involved in the regulation of the rate of complement activation. A major proportion of C4b-binding protein in plasma is in complex with protein S. The complex is a major and previously unrecognized component of the group of plasma proteins that adsorbs to barium citrate. The complex dissociates in the presence of NaDodSO4, indicating that C4b-binding protein and protein S are held together by noncovalent bonds. Uncomplexed C4b-binding protein was purified from the supernatant after barium citrate adsorption. On NaDodSO4/polyacrylamide gels without reduction, it appeared to have a slightly faster migration rate than the C4b-binding protein dissociated from the complex with protein S. After reduction, the subunits of the two forms of C4b-binding protein appeared to have identical molecular weights. Furthermore, there is an equilibrium between free and bound protein S in plasma. The role of protein S in the complex is unknown.

Barium↗