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Are major histocompatibility system class III products independent markers for susceptibility to rheumatoid arthritis?

Three components of the complement pathway C2, Factor B, and C4 are coded for by four genes C2, Bf, C4A, and C4B in the class III region of the major histocompatibility system in man. Studies of the polymorphism of these plasma proteins have shown associations of BfS, C2C, and C4B3 (2.9) with RA. Family studies have shown that these markers occur together, usually on DR4 positive haplotypes and in particular on the A2-Cw3-Bw62-C4B3-C4A3-BfS-C2C-DR4 haplotype. It is argued that Class III gene products are unlikely to be independent markers of susceptibility to RA.

Arthritis, Rheumatoid↗

Production of inflammatory mediators and cytokine responsiveness of an SV40-transformed human proximal tubular epithelial cell line.

Proximal tubular epithelial cells (PTEC) play a central role in the physiology of the renal tubulointerstitium. To be able to study the relationship between tubular cells and inflammatory renal diseases the availability of cultured cells is of importance. This study describes an immortalized proximal tubular epithelial cell line which was generated using SV40 DNA. To determine whether the transformation altered the cell line, the transformed cell line was characterized phenotypically using different monoclonal antibodies directed against peptidases, which are characteristic of PTEC, such as adenosine deaminase binding protein (CD26), leucine amino peptidase and carboxy peptidase M by immunofluorescent staining and FACS analysis. All peptidases were clearly present on the parental cell line and the transformed cell line. However, the level of expression of the peptidases was lower on the transformed cell line as compared to the parental nontransfected cells. The morphology of the transformed cell line, determined using a transwell culture system and electron microscopy, showed a polarized morphology of the tubular cells, tight junctions and microvilli. The transformed cell line was compared with the parental proximal tubular epithelial cells in its ability to respond to inflammatory cytokines such as IL- 1alpha TNF-alpha, IFN-gamma. Stimulation with these cytokines resulted in enhanced production of complement components C2, C3, C4 and factor H, IL-6 and the chemokines IL-8 and MCP-1. The transformed cell line responded in a similar fashion as the parental cell line, although the amount of the different proteins produced was significantly higher in the transformed cell line. Overall, the transformed tubular cell line seems to be a suitable model to study different effects on tubular cells in relation to inflammatory kidney diseases.

Blotting, Southern↗

Contribution of the complement control protein modules of C2 in C4b binding assessed by analysis of C2/factor B chimeras.

To identify the complement control protein (CCP) module(s) of C2 that are required for C4b recognition, we constructed a panel of C2/factor B chimeras by substituting intact or partial factor B CCP modules for the corresponding ones of C2. Epitope mapping indicated that the anti-C2b mAb 3A3.3, which inhibits binding of C2 to C4b, reacts with the second CCP of C2 and similarly the anti-Ba mAb HA4-1A, which inhibits binding of factor B to C3b, reacts with the second CCP of factor B. The hemolytic activity of the chimeras CP1, CP2, and CP3a containing CCP1, CCP2, and a fragment of CCP3 of factor B, respectively, was substantially decreased compared with that of wild-type C2. The CP3 and CP1-3 chimeras, in which CCP3 and all three CCP modules of factor B, respectively, were substituted, had no hemolytic activity. Loss of activity could be attributed to the resistance of these two chimeras to C1s cleavage, which was probably due to conformational changes of the cleavage site. The combined results indicate that all three CCP modules of C2 contribute structural elements to the C4b-binding site of C2b. This site has been shown previously to be necessary for the initial binding of C2 to C4b which leads to the formation of the classical pathway C3 convertase.

Antibodies, Monoclonal↗

Local extrahepatic expression of complement genes C3, factor B, C2, and C4 is increased in murine lupus nephritis.

Systemic lupus erythematosus (SLE) is associated with the presence of complement proteins and immune complexes in affected organs. Since complement proteins are synthesized in hepatic and extrahepatic sites, we studied a murine model of SLE to ascertain the relative importance of local and humoral (liver) synthesis of complement. C3, C4, and C2 mRNA increase in kidney coincident with the development of nephritis in the MRL lpr/lpr mouse, a strain that spontaneously develops SLE. Two factor B messenger RNA transcripts are expressed in kidney and intestine; SLE nephritis is associated with decrease in the long factor B mRNA and increase in the short form. Increased local synthesis of C3 and B protein and a concomitant glomerular and renal interstitial macrophage infiltrate paralleled the increase in mRNA content in the (lpr/lpr) mice. In addition to kidney, an increase in C3, C4, C2 and factor B mRNA was noted in the lung, heart and intestine and to a lesser extent in liver of (lpr/lpr) in comparison to the MRL (+/+) animals. These results suggest that in SLE local expression of complement genes plays a role in the pathogenesis of chronic glomerulonephritis and in the autoimmune arteritis of other organs.

Animals↗

Constitutive and IL 1-regulated murine complement gene expression is strain and tissue specific.

To study the molecular mechanisms accounting for strain- and tissue-specific variations in the production of complement proteins, complementary DNA probes were used to assess qualitative and quantitative differences in specific mRNA content of complement proteins C2, factor B, and C3 in extracts of tissues (liver, lung, spleen, kidney, and peritoneal macrophages) isolated from various mouse strains. Northern blot analysis of total hepatic RNA revealed differences in C2, factor B, and C3 mRNA levels in strains that share B10 background but differ in the H-2 region (e.g., H-2k, H-2u, H-2d, H-2f). In each instance, hepatic mRNA specific for the individual gene product corresponded in amount to the serum levels. By contrast, specific mRNA content of C2 and factor B in macrophages differed significantly from those observed in liver for each strain. Modulation of C2, factor B, and C3 expression was studied after in vivo administration of recombinant IL 1 or endotoxin to H-2k (B10.AKM) or H-2u (B10.PL) strain mice. As assessed by Northern blot analysis, neither endotoxin nor IL 1 affected liver C2-specific mRNA but increased specific C2 mRNA levels in kidney and lung. For both strains, IL 1 increased specific factor B mRNA in all tissues examined except for the H-2u strain liver factor B mRNA content, which was not affected by IL 1, whereas that of H-2k mice was increased. The lack of factor B modulation by IL 1 in the H-2u lines was specific to that gene and not a reflection of a generalized IL 1 unresponsiveness. Differences in tissue and strain specific constitutive and IL 1-regulated expression of the C3 gene were also observed in the H-2u and H-2k strains.

Animals↗

Serum complement 'supergenes' of the major histocompatibility complex in man (complotypes).

The loci for the complement proteins C2 and BF, and the two loci for C4 are closely linked to one another. In many hundreds of meioses no crossing over has been detected between these loci. In addition, the alleles of these four loci occur in specific combinations not predicted by their gene frequencies in much the same way as alleles of the Rh and MNS systems. These units are termed complotypes. There are 14 complotypes with frequencies in excess of 1% in our study population of normal sixth chromosomes from Caucasians. Since they are also intimately associated with HLA-DR, comploytypes may also be of importance in screening programs for transplantation.

Chromosome Mapping↗

Adrenergic receptors on monocytes modulate complement component synthesis.

The addition of adrenaline, noradrenaline or phenylephrine, but not isoprenaline to monocyte cultures enhanced synthesis of the second complement component (C2). This effect was abrogated by the concomitant addition of the receptor antagonist, phentolamine, but not the beta receptor antagonist propranolol. Thus the receptor involved is an alpha adrenergic receptor. Further studies showed that the receptor was of the alpha 1 subclass as prazosin inhibited the action of adrenergic agonists. Pulse label studies using 3H-amino acids showed that the enhancement of synthesis of eight complement components (C2, C3, C4, C5, factor B, properdin, beta 1H and C3b inactivator) and total protein synthesis were also increased. The possible mechanisms underlying these changes are discussed.

Adrenergic alpha-Agonists↗

Association of complement alleles C4AQ0 and C4B5 with rheumatoid arthritis in Japanese patients.

We investigated polymorphisms of complement components C2, C4, and factor B (BF) in Japanese patients with rheumatoid arthritis (RA). The frequencies of C4AQ0 (32.1%) and C4B5 (35.9%) among RA patients were significantly higher than among healthy control subjects. C4B5 was strongly associated with HLA-Bw54, Bw59, DR4.1, and DQw4. C4AQ0 showed no association with HLA-Bw54 or Bw59, but there was weak association with HLA-DR4.1 and DQw4. The number of persons with both C4AQ0 and C4B5 was significantly higher in the RA patient group (relative risk 13.5). C2C and BFS were the most common alleles in RA patients, as well as in healthy control subjects. These data support the existence of 2 different putative susceptibility haplotypes (HLA-Bw54 or Bw59;C2C; BFS;C4A3;C4B5;DR4.1;DQw4 and C2C;BFS; C4AQ0;C4B1 or C4B2) in Japanese patients with RA.

Alleles↗

Low incidence of null alleles of the fourth component of complement (C4) in elderly people.

Allotype frequencies of three complement proteins (C2, factor B, and C4) encoded on the sixth chromosome were tested in 150 "young" (under 53 yrs) and 131 "old" (over 62 yrs) healthy Hungarian individuals. In women, we found significant differences in BF*F allotype frequencies between the two age groups. A marked decrease of null alleles for C4 was observed especially in men. In the "old" age group, the total frequency of the non-expressed, "null" (Q0) alleles of the C4 protein dropped to almost one third of the "young" ones. The decrease was even larger (a 5.5-fold decrease in the incidence) among men. The relative risk of those having C4B*Q0 allele not to survive a "critical age period" of 53-62 yrs for males and 58-62 yrs for females was calculated to be 12.4 and 2.85, respectively. Our data substantiate the view that the expected life time is genetically determined and it can be forecast partly by the analysis of the antigens encoded on the sixth chromosome.

Adult↗

Molecular heterogeneity of second and fourth components of complement and their genes in systemic sclerosis and association of HLA alleles A1, B8 and DR3 with limited and DR5 with diffuse systemic sclerosis.

Deficiency of the complement component C4 at the functional, protein and gene level and deficiency of complement component C2 at the functional level were investigated and HLA analysis was performed on patients with limited and diffuse systemic sclerosis (SSc). One of the patients with limited SSc (n = 15) had subnormal C4, 1 subnormal C2 and 1 subnormal C4 and C2 activities; the latter patient had HLA alleles A11;B35;Dw1 associated with type II C2 deficiency and therefore most likely had a defect at the C2 locus. One of the patients with diffuse SSC (n = 12) had subnormal C4 and 1 subnormal C4 and C2 activities. C2 deficiencies in patients other than the one with the haplotype associated with C2 deficiency appeared not to be determined by the gene at the C2 locus. The incidence of partial C2 deficiency in a normal Caucasian population is reported to be 16 in 10,000, and that of partial C4 deficiency also appears to be very low. The percentages of C4A*Q0 and C4B*Q0 alleles in normal controls (n = 45) were within the reported range. Seven patients with limited SSc (n = 14) had one or two C4A*Q0 alleles and 2 with diffuse SSc (n = 13) had one C4A*Q0 allele. Thus, the incidence of C4A*Q0 was higher than normal in limited SSc and within the normal range in diffuse SSc. The two-sided Fisher's exact test applied on these data revealed that the association of C4A*Q0 with limited SSc did not reach a significant level (p = 0.10). Two of the 3 patients with limited SSc, who had two C4A*Q0 alleles, carried a heterozygous C4A-21-hydroxylase A (OHA) gene segment deletion as detected by Southern blotting. There was no correlation between the subnormal activity of C4 and the occurrence of one or two C4A*Q0 (and C4A-21-OHA segment deletion). HLA alleles A1, B8 and DR3 (p = 0.002) were associated with limited SSc (n = 23) and DR5(w11) (p = 0.018) with diffuse SSc (n = 17).

Alleles↗

Effects of histamine on monocyte complement production. I. Inhibition of C2 production mediated by its action on H2 receptors.

Histamine produced dose-dependent inhibition of the production of the second complement component (C2) by monocytes in tissue culture. The effect was not associated with either cell death, as ascertained by trypan blue exclusion, or loss of cells from the monolayer, as determined by measuring their DNA content. The specificity of the response was shown by the failure of histidine or histamine metabolites to inhibit C2 production. Preincubation of histamine with histaminase also abrogated the histamine effect. The kinetics of the effect were extremely rapid and irreversible, most of the reduction being achieved during a 5-min exposure to histamine. The H2 receptor antagonist cimetidine was able to prevent the histamine response, whereas chlorpheniramine, the H1 receptor antagonist, had no effect. Dimaprit and 4-methyl histamine, H2 receptor agonists, simulated the effect of histamine whereas the H1 receptor agonist 2-(2-aminoethylthiazole) was ineffective, confirming that the effect of histamine on C2 production by monocytes is mediated by the H2 receptors. Thus histamine, released from basophils or mast cells by the C3 and C5 cleavage products C3a and C5a respectively, may exert a negative feedback on further C3 and C5 cleavage by limiting the formation of the C3 (C42) and C5 (C423b) convertases.

Cells, Cultured↗

The structure and genetics of the C2 and factor B genes.

This review summarises our current knowledge of the genetic organisation, structure and polymorphism of the loci for the complement proteins, C2 and Factor B--class III gene products of the major histocompatibility complex. cDNA probes specific for C2 and Factor B have been used to screen cosmid libraries of human genomic DNA, and this has allowed isolation and characterisation of the corresponding genes. Southern blot analysis of the cosmid clones and of uncloned genomic DNA has shown that there are single C2 and Factor B loci that are less than 500 bp apart. Molecular mapping has revealed that the C2 gene spans approximately 18 kb of DNA. This is in marked contrast to the Factor B gene which is 6 kb in length. The entire gene structure of the Factor B gene has been determined and the interesting features of this gene which have emerged from an examination of the intron-exon boundaries are discussed. C2 and Factor B are polymorphic and structural variants have been detected by differences in charge. The degree of polymorphism at the C2 and Factor B loci has been examined by Southern blot analysis of restriction digests of genomic DNA. Three DNA polymorphisms have been identified in the C2 gene. These polymorphisms subdivide the common allelic variant of C2 (C2C) and reveal that there is much greater variability at the C2 locus than that detected by protein typing. It is suggested that these DNA polymorphisms may serve as useful markers in the genetic analysis of diseases that are related to the major histocompatibility complex.

Amino Acid Sequence↗

Role of C3 in the control of monocyte C2 production.

Serum-treated antigen-antibody complexes (IC) and DTSP-polymerized C3b and C3c inhibited the production of the second complement component (C2) by monocytes in culture, whereas monomeric C3, C3b, C3bi, C3c or C3d had no effect. The degree of inhibition of dithiobissuccinimidyl propionate (DTSP)-polymerized C3 was proportional to the degree of polymerization, dimer exhibiting less inhibitory activity than larger molecular weight polymers. The inhibitory effect of serum-treated IC and DTSP-polymerized C3b was abrogated by their pretreatment with Fab fragments of anti-C3, or pretreatment of monocytes with Fab fragments of antiserum to the C3b receptor (CR1). We have concluded that the inhibition of C2 production produced by serum-treated IC is due to bound C3b or C3bi, and is mediated by CR1. Furthermore cross linking of receptors is required for this effect; two or more than two receptors must be cross-linked for a significant effect to be observed.

Antigen-Antibody Complex↗

Tissue-specific pretranslational regulation of complement production in human mononuclear phagocytes.

The net production of the complement protein C2, C4, and factor B differ among mononuclear phagocytes from peripheral blood and different tissues in experimental animals and in humans. To examine the mechanisms that regulate these differences in humans, the proportions of C2-producing cells, the average single-cell production rate of C2, the posttranslational glycosylation and kinetics of secretion of C2 and factor B, and the amounts of C2 and factor B mRNA were examined in freshly isolated peripheral blood monocytes, monocytes maintained up to 2 wk in culture, and freshly isolated tissue macrophages from breast milk and bronchoalveolar lavage. In addition, the biosynthesis of two other proteins synthesized and secreted by mononuclear phagocytes, C3 and lysozyme, were examined. We report that despite comparable rates of C3 and lysozyme synthesis and similar processing and kinetics of secretion of C2 and factor B, the freshly isolated tissue macrophage differs from the monocyte-derived macrophage in the proportion of C2-producing cells, in the average single-cell production rate of complement, and in the amounts of specific C2 and factor B mRNA. These differences are tissue specific, because C2-specific mRNA content in bronchoalveolar macrophages is considerably greater than in breast milk macrophages, although the amounts of factor B mRNA are comparable. These data suggest that tissue-specific regulation of complement production in human mononuclear phagocytes occurs at a pretranslational level. These studies now provide a basis for investigation of the molecular effects of agents that modulate the biologic functions of monocytes and macrophages.

Cell Differentiation↗

[Systemic lupus erythematosus associated with homozygous C2 deficiency. Apropos of a case report and literature review].

Inherited deficiencies of classical pathway complement components are rare and associated with autoimmune diseases and with increased susceptibility to bacterial infections. We report the clinical evolution and studies of the complement system in a 17-year-old female patient of Swiss origin presenting with systemic lupus erythematosus (malar rash, photosensitivity, leukopenia and antinuclear antibodies), in whom the hemolytically active second complement component (C2) was less than 10% of the normal value and antigenic C2 was not detectable. Linkage studies showed that the patient is HLA-A25, B18 positive and has the slow factor B allotype BfS. Further immunological assessment revealed low IgG4 concentrations in the patient, who had the G2M(23) allotype. The asymptomatic first degree family members had half-normal C2 levels compatible with a heterozygous state of C2 deficiency. Therapy with hydroxychloroquine for 17 months and topical sunscreen preparations produced marked clinical improvement. During the 4 years of follow-up, the patient has been well and shown only an abnormal titer of antinuclear antibodies. No infections were observed. To the best of our knowledge, 99 cases of homozygous C2 deficiency have been described so far and are discussed here.

Adolescent↗

Synthesis and regulation of complement components by human monocytes/macrophages and by acute monocytic leukemia.

Proteins of the complement system (C2, C3) are synthesized by human monocytes and macrophages, thus providing an important local source of these proteins in vivo which serve as a first-line host defense mechanism. In this study, we investigated the production of complement components C2, C4, and C9 by human monocytes/macrophages and by the pathologic cells of acute monocytic leukemia which represent a source of immature monocytic precursors. Human blood monocytes were collected and purified by cytapheresis and elutriation and leukemic cells by Ficoll gradient. Secretion of complement components was measured by a hemolytic assay. The evaluation of the mRNAs of the various complement components in the cells was performed by polymerase chain reaction (PCR) by adding 32P labeled deoxycytidinetriphosphate (dCTP) to the amplification step. Functional C2 was found to increase during in vitro maturation of macrophages up to the fourth week of culture. C2 mRNA was detected after amplification and increased during the maturation. Interferon-gamma (IFN-gamma) mediated a marked increase of the C2 mRNA. We found a decrease in synthesis of C4 mRNA during in vitro differentiation of human monocytes. The effect of IFN-gamma resulted in an increase in C4 mRNA. C9 mRNA was not detected although it was detected in the HepG2 hepatoma-derived cell line. Functional C2 was not detected by leukemic cells after 24 h of culture but little functional C4 was present in the cell supernatants. As they were by human monocytes and macrophages, C2 and C4 mRNAs were detected after amplification but C9 mRNAs were not detected.(ABSTRACT TRUNCATED AT 250 WORDS)

Actins↗

The location of C2, C4, and BF relative to HLA-B and HLA-D.

The loci for HLA-A,B,C,D, and DR are known to be closely linked to the structural loci for the complement components C2, BF, and the duplicated loci for C4, C4A and C4B. Conflicting evidence has been presented for the order of these genes. However, new techniques have made possible identification of markers in the HLA-D and C4 region for nearly all identified haplotypes. In our population we have confirmed five HLA-B-D crossovers and in each case informative allotypes of C2, BF, or C4A and C4B segregated with HLA-D or DR suggesting that the loci for these proteins lie close to HLA-D and DR. These findings may be of importance for resolving problems encountered in the assignment of HLA-D alleles.

Complement C2↗