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Complement C4bC2 complex formation: an investigation by surface plasmon resonance.

Complex formation between the human complement proteins C4b and C2 was investigated by surface plasmon resonance. C4b was immobilised and C2 was used in the fluid phase to measure interaction at different ionic strengths (30-830 mM NaCl) and in the absence and presence of MgCl2. Maximum binding was observed at 30 mM NaCl, and was negligible above 300 mM NaCl. Binding was not greatly influenced by variation in Mg(2+) in the range of 2.5-15 mM. C4bC2 affinity (Kd) was determined by steady-state analysis to be 7.2x10(-8) M in physiological conditions (10 mM Hepes, 2.5 mM MgCl2, 0.75 mM CaCl2 and 140 mM NaCl, pH 7.4). For C4(H2O)C2 complex formation, a Kd of 4.0x10(-8) M was calculated. As far as detected by the applied method, complex formation does not involve conformational changes of one of the binding partners. Consistent with previous reports, C4bC2 binding takes place as a multiple-site binding event in the presence of Mg2+. C4bC2 complex formation in 10 mM Hepes, 2.5 mM EDTA and 140 mM NaCl (pH 7.4) was also observed and the interaction showed characteristics of a single-site binding event. Kd was 1.5x10(-8) M. Complement factor B (FB) was also tested for its binding to immobilised C4b. Weak interaction was observed at FB concentrations in the physiological range (500-1000 nM). Kd was 1.2x10(-6) M, indicating possible cross-reactivity between classical and alternative pathways of the activation of the complement system.

Complement C4↗

Modulation of C4b-binding protein isoforms during the acute phase response caused by orthopedic surgery.

Orthopedic surgery is described as an event with a high risk of thromboembolic diseases. This is probably a consequence of a synergistic combination of different risk factors in the patients subjected to this type of surgery, including age, immobilization, anesthesia and different hypercoagulable states. After surgery patients develop an acute-phase response that leads to changes in several plasma proteins. One of these proteins is the complement regulator C4b-binding protein (C4BP). We have recently shown that in some acute-phase patients C4BP is incorrectly controlled (with elevation of the C4BP beta-containing isoforms), leading to a potential hypercoagulable state by decreasing the plasma levels of free (active) protein S. Here we have studied whether patients subjected to orthopedic surgery have an appropriate modulation of the C4BP isoforms during their postoperative acute-phase responses. We have analyzed the evolution of the C4BP isoforms in serial samples from 11 patients who have undergone knee (or hip) prosthesis surgery (mean age 70 years), or scoliosis surgery (mean age 18 years). Our data suggest a similar evolution of C4BP isoforms in all these patients, with an almost exclusive increase of C4BP isoforms lacking C4BP beta polypeptides and steady levels of free protein S.

Acute-Phase Reaction↗

A novel immunoassay for the quantitation of human C4 gene products.

Utilizing mouse monoclonal antibodies which recognize Rodgers 1 and Chido 1 epitopes carried on the C4A and C4B molecules, and heat-aggregated IgG to activate C1, an immunoassay was developed for the quantitation of total C4 as well as C4A and C4B. Interassay variation was 12.4, 11.5 and 10.8%, respectively. The immunoassay was compared to the quantitation of total C4 by radial immunodiffusion by testing 103 random white controls and gave a Pearson's product-moment correlation coefficient of 0.81. Three genetic total-C4-deficient individuals were nonreactive in all three assays. This activated assay is specific, reproducible, and superior to existing methods for the quantitation of C4A and C4B and detection of the heterozygous C4 null state.

Complement C4↗

Characterization of functional properties of C4-binding protein by monoclonal antibodies.

We prepared mouse monoclonal antibodies to human C4-binding protein (C4-bp) by fusing spleen cells from mice immunized with purified C4-bp to the mouse myeloma line P3U1. Of four monoclonal antibodies that reacted with intact C4-bp, two were specific for a 48K fragment, one of the chymotryptic cleavage products of C4-bp, and one was specific for another fragment (160K). The fourth monoclonal antibody did not react with either fragment. One of the monoclonals that reacted with the 48K fragment blocked the binding of C4-bp to cell-bound C4b. This monoclonal antibody (TK3) also inhibited two other functions of C4-bp, serving as an essential cofactor for C3b/C4b inactivator (I) in the cleavage of fluid-phase C4b and accelerating the decay of C2a from the C4b,2a complex. The other monoclonals had little or no effect on these activities of C4-bp. In addition, we found that the 48K fragment lost the binding affinity for C4b. However, it can function as a cofactor for I and as a decay-accelerator, although its activities were about 200 times weaker than intact C4-bp on a molar basis. The monoclonal antibody TK3 completely inhibited these activities of the 48K fragment. On the basis of these findings, we conclude that the functionally active site of C4-bp is located on the 48K fragment. Probably, the cofactor and decay-accelerating activities of C4-bp result from the binding of C4-bp to C4b.

Animals↗

HLA and complement factors alleles sharing in Italian couples with recurrent spontaneous abortions.

Recurrent Spontaneous Abortion (RSA) is postulated to be due to several factors including immunogenetic mechanisms. Many studies have been conducted on the effect of the MHC region in the reproductive phenomena suggesting an immunological or genetic involvement in RSA. We studied couples with 3 or more abortions among a larger group of couples in which female partners were anti-cardiolipin antibodies negative, resulting in a population of 43 couples typed for HLA-A, B, C, DR, DQ. In 16 of these 43 couples, complement factors C4A, C4B, and Bf were typed. The data shows a statistically significant increase of C4B*Q0 in RSA patients (N = 32) compared with the control population (N = 44) (pc = .00147) and also a statistically significant increase of C4B*Q0 sharing in aborting couples (43.75%) against the expected sharing rate in the control population (1.86%) (p < .001). Frequency increase of C4B*Q0 allele in aborting population leads to the hypothesis that an imbalance of complement factors expression and activity can have detrimental effects on implantation and embryo survival. Additionally, the significant sharing rate of C4B*Q0 in couples with RSA could indicate the existence of a gene in linked to this allele predisposing to RSA and acting in a recessive manner if present in double copies in the fetus.

Abortion, Habitual↗

C4 polymorphism in multiplex families with insulin dependent diabetes in the Tunisian population: standard C4 typing methods and RFLP analysis.

The polymorphism of C4A and C4B genes was investigated in Tunisian patients with insulin dependent diabetes (IDDM) and compared to family members (sibs) and to healthy controls. Multiplex families were analysed. A significant increase in C4AQO (26.86% vs 6.90%) and C4BQO (40.29% vs 8.28%) phenotypes was noted in IDDM patients compared with controls. Using RFLP analysis, we confirmed the high frequency of C4 null alleles. We also observed that most of these alleles were genes deleted in IDDM patients (72.23% vs 20% for CA4QO and 74.07% vs 16.70% for C4BQO). A significant decrease in the C4B long (14.92% vs 67.12%) form of the gene was also demonstrated by RFLP analysis compared with controls. Two haplotypes were frequently associated with IDDM patients in whom the C4A and C4B were deleted genes.

Adolescent↗

Influence of C4B null genes on cytomegalovirus antibody titers in healthy blood donors.

C4B null genes (C4B*Q0) have been found with increased frequency in persons with viral diseases, including hepatitis and human immunodeficiency virus infection. Whether a relationship might exist between the presence of C4B*Q0 and antibodies to cytomegalovirus (CMV) was investigated. Fifty blood donors who were seropositive for CMV antibodies and 101 healthy nondonors were C4-allotyped with electrophoresis immunofixation. CMV-seropositive sera were titrated for CMV IgG-specific antibody by enzyme-linked immunosorbent assay, and serum IgG levels were assayed by rate nephelometry. C4B*Q0 was higher in the CMV antibody-positive group than in nondonors (p = 0.05), but the increase was most significant (p = 0.028) in donors with the highest titers of CMV antibodies. There was poor correlation (r = 0.015) between CMV titers and plasma IgG levels. Serum C4B levels were lower in CMV antibody-positive donors with one C4B null gene than in matched nondonors or nondonors not having any null genes.

Antibodies, Viral↗

Reduced numbers of complement receptor type 1 on erythrocytes are associated with increased levels of anticardiolipin antibodies. Findings in patients with systemic lupus erythematosus and the antiphospholipid syndrome.

In several diseases, including systemic lupus erythematosus (SLE) and autoimmune hemolytic anemias, the numbers of complement receptor type 1 (CR1) expressed on erythrocytes of patients are reduced. In patients with SLE, anticardiolipin antibodies (aCL) have been associated with positive results on direct antiglobulin tests. Because of these findings, we investigated whether the reduced expression of erythrocyte CR1 in 61 patients (53 with SLE and 8 with the antiphospholipid syndrome) might be associated with the presence of aCL. A negative correlation was observed between aCL levels and mean numbers of CR1 (rs = -0.43, P = 0.001), and a positive correlation was observed between aCL levels and the levels of erythrocyte C4d and C3d (rs = 0.33 and 0.41, P = 0.01 and 0.001, respectively), but no correlation of aCL levels with serum C4 levels was found. When the results were further analyzed according to the IgG or IgM class of aCL, levels of antibodies of both classes were negatively correlated with CR1 numbers, but only IgM aCL levels were correlated with erythrocyte C4d and C3d numbers. The levels of anti-double-stranded DNA antibodies showed no correlation with erythrocyte CR1, C4d, or C3d numbers but were negatively correlated with serum C4 levels (rs = -0.43, P = 0.002). These data suggest that aCL, or a closely related antibody specificity, may bind to erythrocytes and may be directly involved in the mechanism for reduction of erythrocyte CR1 expression in SLE patients.

Antibodies, Antinuclear↗

Enzymic assay of C3b receptor on intact cells and solubilized cells.

The C3b receptor of human erythrocytes is known to act as a cofactor for the cleavage of the complement protein C3b by the serine proteinase C3b/C4b Ina. The same cofactor activity is shown to be present on human tonsil B-lymphocytes. The cofactor activity of the C3b receptor can be assayed, on intact cells or in solubilized extracts of cells, by determining the rate of C3b cleavage in the presence of fixed concentrations of C3b and of C3b/C4b Ina. This assay method was used to compare the characteristics and relative quantities of C3b receptors on erythrocytes and lymphocytes. The cofactor activities associated with these two cell types resemble each other, but are distinct from the serum cofactor proteins, C4bp and Factor H, in antigenicity and in pH- and ionic-strength-dependence, and are distinct from Factor H in substrate specificity. Assay of cofactor activity in intact cells indicates that there are about 80-fold more receptors per cell on the lymphocyte surface than on erythrocytes. Assays with cells made permeable by detergent show that, whereas essentially all of the receptors on erythrocytes are on the cell surface, B-lymphocytes contain a large internal receptor pool, which makes up more than 80% of the total cofactor activity of the cell.

B-Lymphocytes↗

A mechanism of activation of the alternative complement pathway by the classical pathway: protection of C3b from inactivation by covalent attachment to C4b.

In this work we studied the role of the classical pathway complement component C4b in the activation of the alternative pathway. It was found that nascent C3b attaches with high efficiency to C4b and that C3b in C4bC3b complexes is protected from inactivation by factors H and I. Activation of C3 by factors B and D in the presence of Mg2+ ions and excess C4b led to 35% incorporation of nascent C3b into C4bC3b complexes in the fluid phase. In comparison, when human IgG was tested as an acceptor under similar conditions, only 12% of generated C3b was incorporated into IgGC3b complexes. The half-life time of dissociation of C3b from purified C4bC3b complexes was approximately 2.3 h at 37 degrees C. C4b in these complexes protected C3b from inactivation as effectively as any known alternative pathway activator. Thus, C3b bound to C4b was tenfold more stable than free C3b or C3b bound to a nonactivating surface. In comparison, the protection provided by attachment to human IgG was only 67% of that of C4b. The results provide an explanation for observations of alternative pathway recruitment following classical pathway activation and for the stability of the classical pathway C5 convertase on surfaces which do not provide protection for C3b from factors H and I.

Complement C3-C5 Convertases↗

Three Chido determinants detected on the B5Rg+ allotype of human C4: their expression in Ch-typed donors and families.

A study was made of polyspecific human allo-anti-C4, anti-Chido (Ch), which reacts with determinants usually located on C4B protein. Some anti-Ch reagents are capable of reacting with Ch- red cells coated with C4 from Ch:-1,-2,-3 donors. A complex serologic pattern demonstrated three more Ch determinants, Ch4, Ch5, and Ch6, which were detected by haemagglutination-inhibition tests. All Ch:1,2,3 samples were Ch:4,5,6 but samples lacking one or more of the Ch1,Ch2,Ch3 series of determinants also lacked some of the new determinants. MHC typed families demonstrated the inheritance of the new determinants as part of the Ch haplotype, and associations with C4 allotypes and haplotypes have been established. Ch4 always associates with C4B protein. Ch5 and Ch6, normally detected on C4B protein, were detected in several individuals who lacked C4B (BQO allotypes) and were therefore presumed in these instances to be located on the accompanying C4A protein.

Antigens, Surface↗

Increased frequency of complement C4 'null' alleles in recurrent spontaneous abortions.

Typings for major histocompatibility antigens HLA A, B, C and DR and for complement C4A, C4B and factor B were performed for 59 Finnish couples experiencing at least three consecutive recurrent spontaneous abortions (RSA). Forty-one of them were primary abortion (PA) couples with no children and 18 were secondary abortion (SA) couples who had one or two children before abortions. HLA sharing in A and B loci was slightly but significantly increased (15%, P less than 0.05) among RSA couples compared to the controls, as was DR sharing among SA couples compared to PA couples (50% versus 22%, P less than or equal to 0.05). The most interesting new finding, however, was the statistically significant increase of complement C4 functionally silent, i.e. C4 'null', alleles in RSA couples. C4 is a duplicated gene and its products differ in their functions in the complement cascade. C4A null alleles were equally increased in PA wives and in PA husbands (32%, P less than or equal to 0.05) compared to the controls (18%) and C4B null alleles in SA wives (56%, P less than or equal to 0.05) and in SA husbands (50%) compared to the controls (29%). Therefore, the offspring of RSA couples have a significantly increased risk of inheriting several null alleles. The majority, 95% (P less than 0.001) of PA couples and 83% of SA couples, had at least one C4A or C4B null in their phenotypes compared to 66% among Finnish controls.

Abortion, Habitual↗

C4A and C4B null alleles are genetic markers of different types of systemic sclerosis in Japanese patients.

OBJECTIVE: The contribution of the polymorphism of complement C4A and C4B alleles to the pathogenesis of systemic sclerosis (SSc) was studied in Japanese patients. METHODS: C4A and C4B typing was carried out in 44 SSc patients and in 83 normal subjects using electrophoresis followed by immunofixation and immunoblotting. HLA-DR typing and HLA DRB1*15 and *08 genotyping were carried out by the PCR method and the PCR-SSCP method, respectively. RESULTS: In SSc with diffuse scleroderma, the frequency of C4BQ0 was significantly increased (44.4%, p < 0.001, pc < 0.01). In SSc with antitopoisomerase I antibody (a-Scl-70) C4BQ0 was also increased (50.0%, p < 0.001, pc < 0.01). Association analysis indicated that the increase in C4BQ0 was not primary but reflected an increase in HLA-DRB1*1502. In contrast, C4A/Q0 was significantly increased in limited scleroderma (53.8%, p < 0.005, pc < 0.05) and SSc without a-SCL-70 (53.8%, p < 0.005, pc < 0.05). CONCLUSION: Diffuse scleroderma with SSC with a-Scl-70 have different genetical backgrounds from limited scleroderma and SSc without a-Scl-70, respectively, in Japanese patients. C4AQ0 were independent genetic markers for each clinical subgroup and for a a-Scl-70 positivity.

Adult↗

Duplication of 111 bases in exon 1 of the CYP21 gene is combined with deletion of CYP21P-C4B genes in steroid 21-hydroxylase deficiency.

Congenital adrenal hyperplasia (CAH) is a common autosomal recessive disorder mainly caused by defects in the steroid 21-hydroxylase (CYP21) gene. A 9.3-kb fragment generated by NdeI and AseI digestion by Southern blot analysis indicated that a consequence of deletion of the C4-CYP21 repeat module was the production of a distinct chimeric CYP21P/CYP21 molecule. In the present study, we report a novel CYP21 genotype in two CAH families in which the gene appeared as 9.4- and 3.3-kb fragments by TaqI digestion, rather than as a chimeric gene. From the analysis of PCR amplification patterns and DNA sequencing, we found that there was a duplication of 111 bases from codons 21 to 57 inserted at codon 58 in exon 1 of the CYP21 gene. In addition, codon 21 in the repeated sequence changed from TGG to AGG. Furthermore, this novel CYP21 gene present in both CAH families showed no mutations at IVS2-12A/C>G, 707-714delGAGACTAC, and P30L. Interestingly, the 5' end region of these two CYP21 genes showed the sequence of the CYP21P gene at nucleotides (nt) -103, -110, -123, and thereafter. Our data suggest that these two CYP21 genes are caused by deletion of the CYP21P, XA, RP2, and C4B genes. Possibly, the additional 111-base duplicated coding sequence may be generated by multiple intergenic recombinations, while there seems to be no relationship with deletion of the CYP21P-C4B regions.

Adrenal Hyperplasia, Congenital↗

Gene organization of haplotypes expressing two different C4A allotypes.

The gene organization of C4 haplotypes expressing two different C4A allotypes with a C4B null allele (C4A3A2BQ0 and C4A3A6BQO) was studied using Southern blot analysis with cDNA probes and restriction enzymes which give C4A and C4B locus-specific restriction fragments. These haplotypes were shown to have both a C4A and a C4B locus present, suggesting that the C4B locus expresses a C4A protein. The finding of a 21-OH A and a 21-OH B gene on the C4A3A6BQO haplotype further suggests that this haplotype has the common gene organization C4A, 21-OH A, C4B, 21-OH B. A model explaining C4 null alleles on haplotypes found to have two C4 loci is presented.

Alleles↗

Monoclonal antipeptide antibodies against amino acid residues 1101-1106 of human C4 distinguish C4A from C4B.

Comparison of amino acid sequences of the alpha-chain fragment of human C4, C4d, has shown C4A- and C4B-specific sequences at residues 1101-1106 in which the aspartic acid-histidine substitution at position 1106 may be related to the amide and ester bond forming properties of these molecules. Peptides containing twelve amino acid residues of the C4A- or C4B-specific sequences were synthesized and injected into female Balb/c mice. Serum from 2 mice, one immunized with the C4A-specific peptide and the other with the C4B-specific peptide, gave strong isotype-specific responses in an enzyme-linked immunosorbent assay against affinity-purified C4A3 and C4B2B1. Spleen cells from these mice were fused with the mouse myeloma SP2/0-Ag 14, and two cloned cell lines, AII-1 and BII-1, were established from hybrids. Enzyme-linked immunosorbent assay and western blotting of monoclonal antibodies AII-1 and BII-1 show that the former reacts with the C4A but not with the C4B alpha-chain and the latter with C4B but not with the C4A alpha-chain. Furthermore, immunoblotting of C4 allelic variants showed that AII-1 reacted with all C4A allotypes tested, including A6, A4, A3 and A2, whereas BII-1 reacted with all C4B allotypes tested, including B5, B3, B2, and B1.

Amino Acid Sequence↗

C4 isotype deficiency in IgA nephropathy.

C4 and factor B typing were performed in 37 pediatric patients with primary IgA nephropathy. Null alleles for C4B occurred with a frequency of 26% in patients, as compared to 15% in healthy controls (NS). The phenotype of C4B deficiency (homozygous C4B null), however, was found in 16% of patients and 4% of controls (P less than 0.05). Comparison of observed C4B phenotypes with those predicted from the Hardy-Weinberg equilibrium also confirmed an excess of C4B deficiency (P less than 0.0005). In contrast, there was no evidence of distortion in the frequencies of the C4A null allele or phenotype, or of the factor B alleles. The data suggest that C4B deficiency may be one of multiple interacting factors contributing to the development of this glomerulopathy.

Adolescent↗