PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Complement C4a”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 721 records · Page 40Linked to original sources

Fourth component of human complement: description of a three polypeptide chain structure.

The fourth component of human complement (C4) was shown to be composed of three distinct polypeptide chains linked by disulfide bonds and noncovalent forces. The sum of the molecular weights of the chains equalled that of the intact molecule. The mol wt of the alpha-, beta-, and gamma-chains were respectively, 93,000, 78,000, and 33,000 daltons. Action of C1s on C4 affected only the alpha-chain, reducing its mol wt to 87,000 daltons. The size of the activation peptide. C4a, is therefore estimated to be 6,000 and that of the major fragment C4b, 198,000 daltons. Periodic acid-Schiff-stained SDS polyacrylamide gels of reduced C4 revealed carbohydrate to be associated with all three chains. A modification of the original method of isolation of C4 is presented.

Chemical Phenomena↗

[Complement markers Bf and C4 in multiple sclerosis].

Some immunogenetic HLA markers are significantly correlated with multiple sclerosis, e.g.: the antigens B7, DR2, and the associations B7-DR2, A3-B7-DR2. In addition, the polymorphism of the allotypes Bf and C4 is also controlled by chromosome 6; a study of these markers is therefore of interest. The study of Bf and C4 in multiple sclerosis included a population of genotyped unrelated patients: 50 patients for Bf markers and 41 for C4A and C4B markers. This study revealed an over-representation of allotype S and homozygous BfSS in multiple sclerosis. BfSS homozygote was significantly more frequent in the B7 negative and/or DR2 negative patients, i.e. when the risk markers per se were absent. No correlation could be evidenced with the remittent or progressive character of the disease. These data, obtained from the study of C4, are still preliminary ones. The results found with the Bf markers confirm the existence of a genetic factor in multiple sclerosis and suggest that the susceptibility gene of the disease could be closer to locus Bf than to locus DR.

Chromosomes, Human, 6-12 and X↗

A molecular and serologic analysis of the major histocompatibility complex and complement component C4 in systemic sclerosis.

OBJECTIVE: To investigate the contributions of the major histocompatibility complex (MHC) and C4 alleles to systemic sclerosis (SSc), and to pulmonary fibrosis and autoantibody expression in SSc, by analysis at the DNA level. METHODS: One hundred fifteen patients with SSc were tested serologically for alleles of the class I MHC loci, and were tested for class II alleles (DRB, DQA, and DPB) by a combination of restriction fragment length polymorphism (RFLP) analysis and oligonucleotide probes with polymerase chain reaction amplification. C4 was studied by protein phenotyping and RFLP analysis in 80 patients. Correlations were made between disease status, pulmonary fibrosis, and expression of anticentromere antibodies (ACA) and anti-Scl-70. RESULTS: The C4A-null phenotype was found to provide the strongest disease association factor of the MHC region (P = 0.000064, relative risk [RR] = 2.8, etiologic fraction [EF] = 32.1). The primary MHC susceptibility allele was found to be DQA2 (Pcorr = 0.0009, RR = 2.5, EF = 35.6), which is in linkage disequilibrium with both DR3 and DR11. DR2 was protective, but only for female patients (P = 0.0021, RR = 0.42, protective fraction = 19.4). DR52a was the primary MHC allele associated with pulmonary fibrosis in SSc patients. Expression of ACA was associated with the presence of either DR1 or DR4 (P = 0.0015, RR = 6.7, EF = 78.0). Anti-Scl-70 expression correlated with an acidic residue of DP beta (DPB1:69:E) (P = 0.0063, RR = 4.6, EF = 53.1). CONCLUSION: Of all the potential markers of disease susceptibility analyzed, the C4A locus was the strongest. C4AQ0 and DQA2 are independent susceptibility factors for SSc. The development of pulmonary fibrosis in SSc patients can be predicted using combined MHC and autoantibody analysis. The MHC alleles associated with the expression of disease-specific autoantibodies are not markers for disease susceptibility.

Alleles↗

Murine sex-limited protein (Slp) antigenic sites in human complement component C4.

Human complement component C4 is encoded by two HLA-linked loci, A and B. In the mouse, the H-2 region contains structural genes for two serum proteins that react with antibodies to human C4, but one of these proteins (Slp) has no C4 hemolytic activity. Because the product of C4-A locus in man has low hemolytic activity, a previous report suggests it may be the homologue of murine Slp. We show here that Slp antigenic determinants are found in human C4. However, they are expressed in the products of both loci A and B, that is, C4A and C4B, since both proteins were specifically immunoprecipitated by the IgG fraction of alloantisera to mouse Slp. Therefore, Slp-associated structural features are preserved in evolution, although they do not seem to be relevant to the hemolytic properties of C4.

Alleles↗

[The significance of C4 locus II deletion in IgA nephropathy and Henoch-Schonlein nephritis and it's correlation with other HLA genes].

IgA nephropathy and HSP nephritis share some similar immunological abnormalities, for example, high IgA serum concentration, existence of IgA-IC, alternative pathway activation, monocyte and B-cell activation and the same histological findings of renal biopsy. The genetic factors may play an important role in both diseases. The increased frequency of homozygous null C4 phenotypes was reported in Caucasians. But the regional variation of C4 null alleles were recognized distinctly, and the significance of C4 isotype deficiency remained unclear. We studied the relationship between IgA nephropathy and Class II and Class III HLA antigens in Japanese by not only C4 protein phenotypes but also gene analysis (TaqI, Nla IV and EcoO 109). The frequency of C4 protein isotype deficiency was the same with control groups, but significantly increased C4 gene deletion was observed in both diseases. Neither DR4 nor DQB4/8/9 related to C4 gene deletion, but the total C4 serum concentration was lower in gene deletion groups. We could not detect any deviation between C4A and C4B locus deletion by Nla IV and EcoO 109 analysis. Considering the changing process of C4A to C4B, there is a possibility that the mechanism of deletion process itself causes the elevated sensitivity to the diseases.

Chromosome Deletion↗

Major histocompatibility complex genes and susceptibility to systemic lupus erythematosus in southern Chinese.

OBJECTIVE: To investigate the predisposing role of major histocompatibility complex (MHC) genes to systemic lupus erythematosus (SLE) in a Chinese population. METHODS: Polymorphism in the HLA-DRB, DQB, complement component C4, and 21-hydroxylase genes was analyzed by restriction fragment length polymorphism analysis and oligonucleotide probing of in vitro-amplified DNA from 88 Chinese patients with SLE and 69 matched control subjects. RESULTS: HLA-DRw15 and DQw1 were significantly more frequent in patients (corrected P less than 0.006, relative risk 5.2), but none of the 9 sequence variants of DQw1 were increased. The C4A gene deletion usually associated with SLE in Caucasoid and black patients was absent from all Chinese subjects, but possession of other C4 deletions and of DRw15 conferred the greatest risk (relative risk = 8.3). CONCLUSION: Different MHC haplotypes predispose to lupus in Chinese than in other ethnic groups. Our data suggest that the susceptibility lies at, or telomeric to, the DR locus, and that DRw15 and C4 deletions may act synergistically in conferring disease susceptibility.

China↗

A new duplication at the C4B locus associated with the HLA-Aw68, Cw8, Bw65 haplotype.

A family with a cross-over between HLA-B and HLA-DR was analysed for its complement alleles. This allowed location of the cross-over between HLA-B and C4. Furthermore, the same family showed a previously undescribed duplication at the C4B locus (C4B* 2,2) that was associated with the HLA-Aw68, Cw8, Bw65, C2*1, Bf*S, C4A*2, DR7, DQw2 haplotype.

Adult↗

Molecular heterogeneity of the fourth component of complement (C4) and its genes in vitiligo.

In view of evidence suggesting vitiligo is an autoimmune disease, we investigated whether vitiligo is associated with inherited deficiencies of the fourth (C4) and second (C2) component of complement and with certain human leukocyte antigens (HLA). Analysis of functional activities of C4 and C2 in sera of patients with vitiligo (n = 42) showed that 17% of them had a heterozygous C4 deficiency and 5% had a heterozygous C2 deficiency. In the normal control group (n = 30), 3% had a heterozygous C4 deficiency and none had a C2 deficiency. C4 typing by Western blot analysis showed the frequency of the C4A*Q0 allele in the vitiligo patient group to be close to normal. However, the frequency of one C4B*Q0 allele was three times higher, and that of two C4B*Q0 alleles five times higher in the vitiligo patient group than the reported frequencies in normal control groups. Southern blot analysis of Taq1 digests of DNA using C4 and 21-hydroxylase probes showed that two patients with two C4B*Q0 alleles had a deletion of a 21-OHA-C4B segment. In the other patients, having one or two C4B*Q0 alleles, these null alleles probably occurred due to a loss of C4 gene expression. HLA analysis did not show any allelic association of C4A*Q0 or C4B*Q0 with any HLA antigen in vitiligo, but confirmed the previous findings of a negative association with HLA-DR3 and a positive association with HLA-DR4. These results suggest that abnormalities of the C4B gene and the above-mentioned associations with HLA antigens may be some of the risk factors in vitiligo.

Adrenal Hyperplasia, Congenital↗

An estimate on the frequency of duplicated haplotypes and silent alleles of human C4 protein polymorphism. II. Investigations in healthy Negro families.

The first investigation of complete MHC marker data in South African Negroes by segregation analysis in 11 families with up to three generations is presented, including quantitative evaluation of C4 allotype patterns and C4 beta chain determinations according to Steuer et al. (1). The frequency of homo- and heteroduplicated, hybrid, and non-expressed C4 alleles was determined from C4 protein phenotyping, including C4 alpha and beta chains, quantitative estimates of the relative electrophoretic C4 banding patterns by scanning densitometry, and from the other classical MHC markers by submitting all results to the family analysis program (FAP). From unrelated non-diseased individuals (n = 105) in these families with 62 haplotypes, the following frequencies were observed for non-expressed alleles: C4A*Q0 0.1189, C4B*Q0 0.2552, and for the total of heteroduplicated alleles: C4A 0.0645, C4B 0.0608. Applying additionally quantitative determinations of C4 banding patterns, homoduplications such as C4A*3 A*3, C4B*1 B*1, C4B*3 B*3, and the heteroduplication C4A*3 A*2 were assumed. In the investigated individuals the heteroduplications of C4A*12 and C4A*3 with the A*91 allele and of C4B*2 with C4B*92 were observed. It was concluded that not only allele frequencies but also the frequency of heteroduplications seems to be of specific ethnic character. Furthermore, the prior hypothesis that deletion or non-expression at one C4 locus is accompanied by duplication at the other was only confirmed for non-expressed B-alleles with C4A*3 A*91 or C4A*12 A*91.(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles↗

Complement deficiency: predisposing factor to autoimmune syndromes.

The recognition of the association between complete and partial complement (C) deficiencies and immune complex (IC) mediated diseases, especially SLE, is of clinical and etiopathologic interest. From studies of sera deficient in C1, C4, C2 or C3, the crucial role of these components of the classical pathway in promoting the solubility and clearance of IC has been elucidated. Although complete deficiency of C1, C4 C2 or C3 is rare, partial C4 deficiency also appears to be a common predisposing factor for the development of SLE, with complete C4A deficiency (C4A null) being present in 10 to 15% and heterozygous C4A deficiency present in 50 to 80% of caucasian SLE patients. Most importantly, there is an obvious pathophysiologic relationship between the function of C relative to IC processing and the syndromes which result from C deficiency. Thus, SLE is a prototype for disease characterized by excessive quantities of inappropriately deposited IC. More subtle C component and receptor deficiencies are likely to be predisposing factors for SLE and related autoimmune diseases.

Antigen-Antibody Complex↗

Polymorphism of complement C4 and susceptibility to IDDM and microvascular complications.

OBJECTIVE: The aim of this study was to investigate whether or not the inherited polymorphism of complement C4 is associated with genetic susceptibility to microvascular complications in IDDM as previously reported. RESEARCH DESIGN AND METHODS: We determined C4 phenotypes in 241 patients with IDDM and 140 healthy control subjects by agarose gel electrophoresis and immunoprecipitation. C4 allotype frequencies were compared between patients and healthy control subjects. In addition, we compared allotype frequencies of 83 patients with nephropathy with those of 80 patients without nephropathy and compared those of 50 patients with proliferative retinopathy with those of 68 patients without retinopathy or background retinopathy. Duration of IDDM in control patients was at least 21 years. RESULTS: Patients and healthy control subjects differed at both the C4A (P < 0.00001) and C4B (P < 0.0005) loci. The C4 null allele C4AQ0 was significantly increased in IDDM patients (26.8 vs. 11.8%, P < 0.005). C4B2 was more frequently observed in patients (14.5 vs. 6.8%, P < 0.05) compared with healthy control subjects. No differences were observed in C4 allotype distribution between patients with and without nephropathy or retinopathy. CONCLUSIONS: These data confirm previous reports of an association between the C4 null allele C4AQ0 and IDDM. Our results do not support an association of the inherited polymorphism of complement C4 with genetic susceptibility to microvascular complications in patients with IDDM.

Adolescent↗

The study of a French family with two duplicated C4A haplotypes.

The finding of two duplicated C4A haplotypes in a normal French family led to a detailed study of their C4 polymorphism. The father had an extremely rare A*6A*11, B*QO haplotype inherited by all of his children and the mother had the more common A*3A*2, B*QO haplotype. Two HLA identical daughters only have four C4A alleles. The father's A11 allotype expresses Ch:1 (Chido) rather than Rg:1 (Rodgers) and represents a new Ch phenotype Ch:1,-2,-3,-4,-5,-6. In order to clarify the genetic background in this unusual family, DNA studies of restriction fragment length polymorphisms (RFLPs) were undertaken. The father's rare haplotype, which expresses two C4A allotypes, results from a long and a short C4 gene normally associated with the A*6, B*1 that also exhibits the Bg/II RFLP. As it travels in an extended MHC haplotype HLA A2, B57(17), C2*C, BF*S, DR7 that is most frequently associated with A*6, B*1, we postulate that the short C4B has been converted in the alpha chain region to a C4A gene which produces a C4A protein. This report of a short C4A gene is the first example in the complex polymorphism of C4.

Alleles↗

Common evolutionary origin of alpha 2-macroglobulin and complement components C3 and C4.

A comparison of the sequence of the subunit of human alpha 2-macroglobulin (alpha 2M; 1451 amino acid residues) with that of murine complement component pro-C3 (1639 amino acid residues) reveals eight extended regions of sequence similarity. These regions contain between 19% and 31% identically placed residues and account for 75% and 67%, respectively, of the polypeptide chains of alpha 2M and pro-C3. Published sequence data for complement component C4 show that segments of this protein match well with corresponding stretches in alpha 2M and pro-C3. It is proposed that alpha 2M, C3 and C4, which all contain a unique activatable beta-cysteinyl-gamma-glutamyl thiol ester, have a common evolutionary origin and are homologous proteins. Several larger regions of low sequence similarity indicate the presence of structural domains in each of these proteins that specifically modify an underlying common gross structure. The quartets of basic residues in pro-C3 and pro-C4, at which cleavage takes place to produce the mature subunits of these proteins, and most of the residues forming the anaphylatoxin peptides of C3 and C4 (C3a and C4a) are absent in alpha 2M. In addition, C3 and C4 contain large portions, which extend beyond the COOH terminus of alpha 2M.

Amino Acid Sequence↗

Comparative analysis of the disease-associated complement C4 gene from the HLA-A1, B8, DR3 haplotype.

Complement component C4 is an important protein of the classical, or antibody-mediated pathway of complement activation. Human C4 is located within the central region of the major histocompatibility complex on chromosome 6. Partial C4 deficiency has been associated with an increased susceptibility to immune complex disease. The strongest association with partial C4 deficiency is with systemic lupus erythematosus (SLE) and has been shown in most racial groups studied. Interestingly, Caucasian population studies have demonstrated an increased prevalence of C4A null alleles in SLE patients, in particular in association with the haplotype HLA-A1, B8, BfS, C4AQ0, C4B1, DR3. To investigate whether the C4 gene on this haplotype had any structural irregularities which may explain disease association, we sequenced the entire C4B gene from this haplotype. The results revealed that the gene encoded on the disease-associated haplotype carried major structural differences (when compared to C4A3) at the exonic level only in the C4d region. A high degree of conservation in both the 5' and 3' untranslated regions imply that disease associations will not be due to differential C4 expression as a result of regulatory differences between C4 genes. It appears likely that protein clearance mechanisms may account for the altered levels of C4 seen between different isotypes.

Amino Acid Sequence↗

The major histocompatibility complex and autoimmunity.

Study of two diseases with autoimmune characteristics (IDDM and SLE) has demonstrated that alleles carried in the MHC can confer disease susceptibility. The MHC alleles most strongly associated with the development of IDDM are encoded within the class II region (HLA-DR or -DQ). Recent studies indicating that the class III gene products TNF alpha and beta may play a critical role in the initiation of the autoimmune attack on the pancreatic beta-cells have suggested the possibility that the class III region may also contribute to genetic susceptibility in IDDM. In SLE, although there is some evidence suggesting that certain alleles of class II genes may confer disease risk, a more striking association has been detected in the class III region. Deficiency of the class III encoded C4A molecule (either homozygously or heterozygously) shows a high correlation with disease risk. This finding is attractive because C4A plays a central role in the metabolism of immune complexes, the aberrant deposition of which leads to the most prominent alterations in SLE.

Animals↗

Patients with rheumatoid arthritis and gold-induced pneumonitis express two high-risk major histocompatibility complex patterns.

Gold salt therapy-induced pneumonitis is a rare complication in patients with rheumatoid arthritis (RA). We studied HLA-A, B, C, D/DR, and complement factor B (Bf) and C4 alleles in 17 patients with RA and gold-induced pneumonitis and found that these patients had strikingly homogeneous major histocompatibility complex (MHC) markers. Eight of them (47 percent) had the alleles HLA-A3 B35 Dwl BfF C4A3,2 (BO), which were shown by family studies of some patients to be inherited as an extended MHC-haplotype with an apparent gene duplication in the C4A locus. The other high-risk phenotype, HLA-B40 with a C4 null allele, was found in eight patients (47 percent). All but three of the 17 patients had at least one of the two high-risk markers, the frequency of these combinations being clearly higher than in the two control groups: patients with RA but with no gold-induced side effects and healthy individuals. Our study shows that use of several MHC markers together results in a strong association between the markers and the disease.

Adult↗

Thyrogastric autoimmunity and MHC associated alleles at the C4 locus in patients with type 1 (insulin-dependent) diabetes.

HLA antigens, complement allotypes, insulin antibodies and thyrogastric autoantibodies were determined in 69 patients with Type 1 (insulin-dependent) diabetes defined by a tendency to ketosis, non-obesity and insulin requirement within 2 years of diagnosis. Analysis of HLA and C4 allotypes suggested that Type 1 diabetes was associated with only certain DR3- and DR4-containing supratypes. Low antibody response to insulin was associated with all HLA-DR3, being present in 89% of those with DR3 compared with 48% of those without. Thyrogastric autoantibodies were associated with a null allele at the C4A locus, usually with HLA-B8-C4AQO-C4B1-BfS-DR3. These results indicate that, unlike Type 1 diabetes, low insulin antibody response was associated with all HLA-DR3. Thyrogastric autoantibodies, on the other hand, were associated with a null allele at the C4A locus. It is probable that while interaction between certain HLA-DR3 and DR4-containing supratypes is important in conferring susceptibility to Type 1 diabetes, other manifestations of autoimmunity are associated with supratypes containing C4AQ0, and in particular the diabetogenic supratype HLA-B8-C4AQ0-C4B1-BfS-DR3.

Alleles↗

Consumption of C4b-binding protein (C4BP) during in vivo activation of the classical complement pathway.

C4BP has a central role in regulating the classical complement (C') pathway, but it is still uncertain whether or not it is consumed during in vivo complement activation. Attempts to demonstrate changes in C4BP plasma levels in systemic lupus erythematosus and essential mixed cryoglobulinaemia have failed, probably due to up-regulation of this protein during the inflammatory reaction. We have studied one patient with severe post-transfusion complement-mediated anaphylaxis (CMA), and 67 patients with hereditary C1 inhibitor deficiency (hereditary angioedema (HAE)). The first of these two conditions is characterized by the absence of systemic inflammatory reaction and the second by acute and chronic activation of the C' classical pathway. C4BP, C4BP-C4b complex, and soluble terminal C' complex (sC5b-9) were measured in the patients' plasmas by ELISA techniques and C3a and C4a by radioimmunoassays. In CMA, 15 min after the transfusion, there was a massive C' activation, with increases in C4a, C3a, sC5b-9, C4BP-C4b complexes and decreases in C4, C3 and C4BP. All parameters reverted to preinfusion values within 24 h. Depletion of C4 was correlated with that of C4BP. In patients with HAE, the median value of C4BP (83% range 54-165) was significantly lower (P < 0.0001) than in normal controls (99% range 70-159), with no difference between patients in remission or during acute attacks. C4BP-C4b complexes could not be detected in HAE patients. The results of this study indicate that C4BP is consumed in vivo during acute, and possibly during chronic activation of the C' classical pathway, and that this protein, after interaction with C4b, not longer circulates in plasma.

Adult↗