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Separation of different forms of the fourth component of human complement by fast protein liquid chromatography.

Disruption of the thiolester in native C4 yields a 'C4b-like C4' molecule (iC4) that functionally resembles C4b and is therefore probably accompanied by conformational changes in the C4 molecule. In most purified C4 preparations, iC4 and C4b are present to a variable extent. In this study we evaluated the use of fast protein liquid chromatography (FPLC) to resolve and isolate these various forms of C4. C4 was purified from fresh human plasma in a 4-step procedure that included barium citrate adsorption, polyethylene glycol 6000 (PEG) precipitation, Q-Sepharose Fast Flow and mono Q ion exchange chromatography. The final preparation appeared to be homogeneous on SDS-PAGE and under reducing conditions consisted of three bands that corresponded to the intact alpha, beta and gamma chains of C4. In some preparations the alpha' chain of C4b was also observed. On a Mono Q column the purified C4 preparations could be separated into three peaks that by hemolytic assay and SDS-PAGE were characterized as representing native C4, and monomeric and dimeric iC4 (or monomeric and dimeric C4b). Finally, the apparent KA of the various forms of C4 for C4b-binding protein (C4BP) was investigated. The monomeric iC4 and C4b species demonstrated similar C4BP binding affinity with an apparent KA of 5.6-6.4 x 10(8) M-1, whereas their dimeric forms demonstrated a higher affinity for C4BP with an apparent KA: 0.9-2.3 x 10(9) M-1. Binding of native C4 to C4BP was undetectable.

Animals↗

Induction of contact sensitivity by cell-associated immunocomplexes requires activation of the early complement components.

Lymph node cells collected from CBA/J mice 4 days after painting the skin with picryl chloride behave like antigen presenting cells and induce contact sensitivity when injected into naive recipient mice. The immunizing capacity of these '4-day' cells is due to T cells which carry on their membrane hapten-IgM immunocomplexes. Incubation of the cells with complement from mouse strains that express high C4 serum levels (C4H), abolishes their immunizing capacity. This effect is related to the activation of the early components of the classical complement pathway, as supported by experiments using C3 and C4-depleted or C5 and C6-genetically deficient mouse sera. The detection of different amounts of C3b and C4b on the surface of 4-day T cells after incubation with C4L and C4H sera supports the possibility that membrane bound activated complement components could modify the immunizing capacity of these cells. Results herein reported suggest that membrane-bound C3b and C4b are not per se inhibitory but interfere with the residual complement activating capacity of 4-day T cells. The role of complement activation by 4-day T cells is pivotal as complement depletion of recipient mice by cobra venom factor (CVF) inhibits the immunizing capacity of untreated 4-day T cells, while 4-day T cells treated with complement in vitro and injected together with C4a anaphylatoxin are able to immunize recipient mice.

Animals↗

Possible association between HLA-DR5 and superficial spreading melanoma (SSM).

Previous analyses of possible associations between MHC determinants and cutaneous malignant melanoma (MM) have been inconclusive. We have investigated 98 patients with special emphasis on histologically determined subtypes of MM, and 5 multiple-case families. In addition to HLA-ABC and DR typing, complement allotypes of C2, C4A, C4B, BF were determined. Among the unrelated patients HLA-DR5 and, secondarily, B49 were observed to be associated with superficial spreading (SSM) but not with nodular (NM) or lentigo maligna melanoma (LMM). In families with MM, no definite segregation of the disease according to HLA and complement haplotypes was discernible. Moreover, no coincidence of haplotypes occurred in patients of the different families. HLA region recombinations including B/DR and/or DR/GLO were found in all the families investigated.

Adolescent↗

Mapping of regions within the vaccinia virus complement control protein involved in dose-dependent binding to key complement components and heparin using surface plasmon resonance.

The vaccinia virus complement control protein (VCP) is involved in modulating the host inflammatory response by blocking both pathways of complement activity through its ability to bind C3b and C4b. Other activities arise from VCP's ability to strongly bind heparin. To map regions within VCP involved in binding complement and heparin experimentally, surface plasmon resonance (SPR) and recombinantly expressed VCP (rVCP) constructs were employed. Using C3b or heparin as the immobilized ligand, various rVCP constructs were tested for their ability to bind. Results suggest that VCP is the smallest functional unit able to bind C3b, thereby blocking complement activity, and only a single site, the large basic region near the C-terminus, is involved in heparin binding. Kinetic analysis was also performed to determine the relative binding affinities between rVCP and complement (C3-MA and C4b), as well as rVCP and heparin. rVCP was found to possess a significantly greater affinity for C3-MA than C4b, as indicated by the 1.50e3-fold greater association rate constant (k(a)). This study provides insights for the design of new therapeutic proteins capable of blocking complement activation.

Binding Sites↗

[A factor from the venom of the Central Asiatic cobra Naja naja oxiana, which inactivates component C4 of human complement].

An acid glycoprotein (mol. m. 60 kDa) containing 6 sialic acid residues and N-terminal Thr was isolated from the venom of the central asian cobra Naja naja oxiana. The protein has an anticomplementary activity selectively inactivating of the C4 component of the human complement. This factor (CFA-Ib) binds C4 with Ki = 0.27 +/- 0.13 microM and then irreversible inactivates it with a rate constant k = 0.75 +/- 0.25 min-1. Membrane bound C4b restores its ability of CFA-Ib binding. This binding hinders component C2 sorption on C4b and C3 convertase formation.

Complement C3-C5 Convertases↗

A novel interaction of outer membrane protein A with C4b binding protein mediates serum resistance of Escherichia coli K1.

Escherichia coli is an important pathogen that causes meningitis in neonates. The development of bacteremia preceding the traversal across the blood-brain barrier is a prerequisite for this pathogen that obviously must survive the bactericidal activity of serum. Here we report that outer membrane protein A (OmpA) of Escherichia coli contributes to serum resistance by binding to C4b binding protein (C4bp), a complement fluid phase regulator. C4bp contains seven identical alpha-chains and one beta-chain linked together with disulfide bridges. We found that OmpA binds the alpha-chain of C4bp, which is composed of eight homologous complement control protein (CCP) modules. Binding studies using mutants of recombinant C4bp that lack one CCP at a time suggest that CCP3 is the major site of interaction with OmpA. Furthermore, we demonstrate that the N terminus of OmpA interacts with C4bp. Binding of C4bp to OmpA is not significantly inhibited in the presence of either C4b or heparin and is not salt sensitive, implying that it is hydrophobic in nature, suggesting a novel interaction between OmpA and C4bp. A compelling observation in this study is that synthetic peptides corresponding to CCP3 sequences block the binding of C4bp to OmpA and also significantly enhance serum bactericidal activity.

Amino Acid Sequence↗

Molecular genetics of the fourth component of human complement.

The fourth component of human complement is encoded by two separate, but closely linked, loci, C4A and C4B, that have been positioned within the class III region of the HLA complex. While the two isotypes vary by only six amino acid residues, they differ significantly in haemolytic activity. Both loci are considerably polymorphic and this may be biologically relevant to ensure interaction with a wide range of pathogens. The number of C4 genes expressed is polymorphic as null alleles, total deficiency and duplication has been shown based on protein studies. Southern analysis of 24 different haplotypes with either C4A or C4B null alleles using the C4 probes showed that three of the null alleles were due to deleted genes but the majority appeared normal. A cosmid library was prepared from DNA of one of the deleted haplotypes and the region of deletion analysed by restriction mapping.

Alleles↗

Quantitative and antigenic differences in complement component C4 between American blacks and whites.

A population of 98 healthy Black Americans was studied in order to determine normal ranges for total C4, C4A and C4B. Mean total C4 in Blacks measured by an enzymelinked immunoassay (EIA) was 44 +/- 12.8 mg/dl which was significantly different (p less than 0.001) from Caucasian levels of 31.7 +/- 11.5 mg/dl. The difference in total C4 was due to increased levels of C4B in Blacks (means = 24.4 mg/dl) as compared to Whites (means = 15.7 mg/dl; p less than 0.001). These results remained significantly different even when 8 samples having the C4A 91 phenotype were excluded. Since EIAs using monoclonal antibodies with Ch 1 specificity may yield false results, C4 allotyping is recommended when quantitating C4A and C4B levels in Blacks.

Alleles↗

Complement profiles in human skin lymph during the course of irritant contact dermatitis.

Using microsurgery a superficial peripheral lymph vessel draining the skin of the upper and medial part of the foot was cannulated on the lower leg of two healthy human volunteers. An irritant contact dermatitis was induced 2 days later by the application of 10% sodium lauryl sulphate to the drained skin area. After a further 3 days the spontaneously regressing skin reaction was treated with clobetasol propionate. Lymph was continuously collected in two aliquots per day for 7 days. The levels of total protein, of albumin and globulins, and of complement components of the classical, the alternative and the lytic pathway as well as the C4A and C4B gene products and the regulatory proteins FB, C1INH, C4BP, FH and FI were determined by ELISA and radial immunodiffusion techniques. Postoperatively, the levels of complement proteins and globulins in the lymph were 5-10 times lower than those in normal human serum, but increased during the course of the skin reaction, while the irritant contact dermatitis did not induce a change in their plasma concentration. In comparison to the baseline, the mean values for C1q, C1r, C2, C5, C6, C7, C8, C9, FB, C1INH, C4BP, FH and FI exhibited a 3-5-fold increase, C3, total C4, albumin and the alpha 1-globulin fraction a 6-9-fold increase, and C1s, C4A, C4B, FB and alpha 2-, beta- and gamma-globulins a 10-20-fold increase.(ABSTRACT TRUNCATED AT 250 WORDS)

Albumins↗

Bordetella pertussis binds the human complement regulator C4BP: role of filamentous hemagglutinin.

C4BP (C4b-binding protein) is a high-molecular-weight plasma protein that inhibits the classical pathway of complement activation. Recent experiments have demonstrated that C4BP binds to many strains of the gram-positive bacterium Streptococcus pyogenes, a major respiratory tract pathogen. Binding to S. pyogenes was shown to be due to members of the M protein family, a group of surface proteins important for virulence. Here we report that human C4BP also binds to all clinical isolates of the gram-negative bacterium Bordetella pertussis, the etiologic agent of whooping cough. In addition, binding of C4BP was demonstrated for other Bordetella species that can cause disease in humans. Characterization of different B. pertussis mutants showed that the binding of C4BP is strongly dependent on the expression of the cell surface protein filamentous hemagglutinin, a well-known virulence factor. Inhibition experiments suggested that B. pertussis and S. pyogenes bind to the same region in C4BP. The finding that B. pertussis and S. pyogenes both have the ability to bind human C4BP suggests that these two unrelated respiratory tract pathogens may use a common mechanism during the establishment of an infection.

Adhesins, Bacterial↗

The amino-terminal module of the C4b-binding protein alpha-chain is crucial for C4b binding and factor I-cofactor function.

C4b-binding protein (C4BP) regulates the classical pathway C3-convertase of the complement system. Human C4BP is composed of seven identical subunits (alpha-chains) and one unique one (beta-chain). Both types of chains contain homologous repeats called complement control proteins (CCPs); the alpha-chain contains eight CCPs and the beta-chain three. Each alpha-chain contains a binding site for C4b although the detailed localization of this binding site is not known. We have used three different chimeric proteins, originally designed to localize the protein S-binding site on C4BP, to demonstrate the importance of the amino-terminal part of the alpha-chain for the complement-regulatory functions of C4BP. These recombinant proteins were composed of C4BP alpha-chains with one, two or three of the amino-terminal CCPs replaced by corresponding CCPs from the C4BP beta-chain. Furthermore, seven different monoclonal antibodies were raised against C4BP and characterized using the recombinant chimeric proteins. Whereas all three recombinant chimeras bind protein S with the same affinity as plasma-purified C4BP, none of them bound to C4b. Three of the antibodies, which were found to bind to alpha-chain CCP 1 and CCP 2, completely inhibited the binding of plasma-purified C4BP to immobilized C4b. In addition, two of these antibodies totally blocked the factor I-cofactor activity of C4BP in a C4b-degradation assay. The binding site for one of the monoclonal antibodies was also studied using electron microscopy where it was confirmed that this antibody bound to the amino-terminal tip of the alpha-chain. These results show that the amino-terminal CCP of the C4BP alpha-chain (CCP 1) is crucial for the C4b binding and factor I-cofactor activity.

Animals↗

Immunoglobulins and complement factor C4 in adult rhinosinusitis.

We assessed whether complement and its factor C4 or abnormal immunoglobulin levels are associated with chronic or recurrent rhinosinusitis. We used multiple patient and control groups to obtain clinically meaningful data. Adult chronic or recurrent rhinosinusitis and acute purulent rhinosinusitis patients were compared with unselected adults and controls without previous rhinosinusitis. Associated clinical factors were reviewed. Levels of immunoglobulins, plasma C3, C4 and classical pathway haemolytic activity were analysed. C4 immunophenotyping was used to detect C4A and C4B deficiencies as null alleles. Complement was up-regulated in rhinosinusitis. C4A nulls and low IgA, IgG, IgG1, IgG2, IgG3 and IgG4 levels were all more common in chronic or recurrent rhinosinusitis patients than in unselected and healthy controls. We searched for relevant differences between the patient groups. According to stepwise logistic regression analysis, nasal polyposis [odds ratio (OR) 10.64, 95% confidence interval (CI) 2.5-45.7, P = 0.001], bronchial asthma (OR 8.87, 95% CI 2.3-34.9, P = 0.002), C4A null alleles (OR 5.84, 95% CI 1.4-24.9, P = 0.017) and low levels of IgG4 together with either IgG1 or IgG2 (OR 15.25, 95% CI 1.4-166.8, P = 0.026) were more common in chronic or recurrent rhinosinusitis than in acute rhinosinusitis patients. Isolated low IgG subclasses had limited value in patient assessment. C4A null alleles are associated with chronic or recurrent rhinosinusitis, potentially through their effect on immune defence and inflammation control. Multiple clinical and immunological parameters may need to be evaluated when searching for prognostic variables.

Adult↗

Contribution of the repeating domains of membrane cofactor protein (CD46) of the complement system to ligand binding and cofactor activity.

Membrane cofactor protein (MCP) (CD46) of the C system binds to C3b and C4b, functions as a cofactor for their cleavage, and protects autologous cells from C-mediated injury. The predominant structural motif of MCP is the short consensus repeat (SCR), a repeating domain involved in ligand binding of other related C regulatory proteins. SCR deletion mutants were constructed to determine which of the four SCR of MCP contribute to ligand binding and cofactor activity. ELISA were developed to evaluate binding efficiency of mutants to ligand. Analysis of the deletion mutants indicated that the third and fourth SCR were important for both ligand binding and cofactor activity of C3b (iC3) and C4b. In addition, the same SCR were required for efficient binding of an mAb known to inhibit MCP function. The mutant deleted of SCR-2 bound but lacked cofactor activity for iC3. It did not bind or possess cofactor activity for C4b. Deletion of the first (amino-terminal) SCR had a minimal effect on iC3 binding and cofactor activity but reduced the efficiency of C4b binding. The results identify the SCR of MCP that contribute to ligand binding and cofactor activity. The data also suggest the presence of distinguishable iC3 and C4b binding sites and provide evidence that iC3 binding is not always sufficient for cofactor activity.

Antibodies, Monoclonal↗

Increased frequency of C4B*Q0 alleles in patients with Henoch-Schönlein purpura.

Henoch-Schonlein purpura (HSP) is a vasculitis of unknown aetiology, possibly involving immune complexes. The complement system is essential for the clearance of immune complexes. Our aim was to explore the hypothesis that patients with HSP have abnormal complements, contributing to the development of the disease. The study included 56 patients diagnosed with HSP at the Children's Hospital, Iceland between 1984 and 2000, and 98 blood donors as controls. Serum levels of immunoglobulin A, C4A, C4B and mannan-binding lectin were measured and compared between the two groups. C4 null alleles were significantly more common in HSP patients than in controls (P = 0.018) and were carried by 66.1% of the patients compared with 41.2% of the controls. This difference was due to an increased frequency of C4B*Q0 allele in the HSP group (0.25 versus 0.11 in the control group; P = 0.002). The fact that the majority of our patients carried a C4 null allele indicates that children with C4 deficiencies may have an increased risk of developing HSP. This may reflect inadequate complement activity and possibly present an opportunity to identify patients at risk of developing serious morbidity associated with HSP.

Alleles↗

Evidence showing that the 1105 and 1106 isotypic residues of the fourth component of human complement, C4A, are not involved in amide bond formation.

Human C4A and C4B have different functions that may stem from their ability to bind hydroxyl or free amino groups on complement activating surfaces. Previous studies suggest that C4B binds to hydroxyl or amino groups whereas C4A binds to free amino groups on acceptor molecules. Comparison of the derived amino acid sequences of C4A and C4B has shown that differences exist between them at positions 1101, 1102, 1105 and 1106. These residues appear to be involved in the binding specificity of C4B. Less is known about the corresponding residues of C4A. It has been suggested that the aspartic acid of C4A at position 1106 is involved in amide bond formation by serving as a catalytic residue for the reaction or by promoting an increased interaction with amino nucleophilic groups. To examine the functional role of residues 1101-1106, we studied the effects of the C4A site-specific antipeptide mAb, AII-1 in assays dependent on the covalent binding properties of C4A; the C4 mediated inhibition of hemolysis and the C4 mediated inhibition of immune precipitation. This study shows that mAb AII-1 has no effect on C4-mediated hemolysis or its ability to inhibit the rate of immune precipitate formation. The lack of interference by AII-1 in these assays could not be explained by low affinity interaction between antibody and C4A showing that mAb AII-1 does not affect the covalent binding activity of C4A. Furthermore, results from epitope mapping studies show that AII-1 binds to Leu1105 and Asp1106 suggesting that these residues are not critical for amide bond formation by C4A.

Amino Acid Sequence↗

Activation and fragmentation of the third (C3) and the fourth (C4) components of complement: generation and isolation of physiologically relevant fragments C3c and C4c.

The degree of the activation and fragmentation of C4 and C3, including chain structure of the activation products, was evaluated by SDS-PAGE analysis of the C4 or C3 antigens that were withdrawn from the reaction media with appropriate immunoadsorbent beads. Full activation of C4 and C3, and subsequent quantitative conversion of C4b into C4c, and C3b into iC3b took place in fresh NHS after the activation of complement with both aggIgG and CVF. For complete conversion of iC3b to C3c erythrocytes carrying the C3b receptor were added to the already activated serum. Both C4c and C3c were isolated by a 2-step procedure involving (i) an adsorption to and (ii) electrophoretic desorption from the respective immunoadsorbent beads.

Complement Activation↗

Comparative study of the fluid-phase proteolytic cleavage of human complement subcomponents C4 and C2 by C1s and C1r2-C1s2.

The C3 convertase of the classical pathway of complement is composed of fragments C4b and C2a resulting from cleavage of C4 and C2 by activated C1. The limited proteolysis of these two different substrates by the same protease, C1s, has been studied in the fluid phase using purified proteins. The turnover numbers of C2 and C4 cleavage by C1s were affected to different extents, depending on whether C1s was alone or associated with C1r or with monoclonal antibodies to C1s. The binding of C2 to C4 favours the proteolysis of C2 by C1s, as revealed by the use of I2-treated C2.

Antibodies, Monoclonal↗