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Intraglomerular synthesis of complement C3 and its activation products in IgA nephropathy.

BACKGROUND: Complement activation is thought to be pathologically important in IgA nephropathy (IgAN). Although C3 deposition in the mesangium is found in IgAN, the origin of C3 is not clear. We recently demonstrated intraglomerular C3 synthesis in the human kidney; however, the activation and pathological role of locally synthesized C3 remains unclear. Here we performed nonradioactive in situ hybridization for C3 mRNA and immunohistochemistry for C3 and its activation products, such as C3d and membrane attack complex (MAC), to determine whether locally produced C3 in glomeruli was activated in IgA nephropathy. METHODS: Renal samples from 14 patients with IgAN and 5 with minimal change nephrotic syndrome (MCNS) were examined. Uninvolved portions of surgically removed kidneys with tumors served as normal controls. RESULTS: C3 mRNA was not detected in glomeruli in control tissue and MCNS, but was strongly expressed in resident glomerular cells of IgAN, including mesangial cells, glomerular epithelial cells and the cells of Bowman's capsule. Examination of serial sections disclosed that more than 70% of cells positive for C3 mRNA were also stained for C3 protein, C3d, and MAC. Double staining for in situ hybridization and immunohistochemistry also revealed that those C3 mRNA signals were present in intraglomerular cells positive for C3. The expression of C3 mRNA and MAC in glomeruli correlated significantly with the degree of mesangial matrix expansion. CONCLUSIONS: Our results demonstrated that locally synthesized C3 is activated in the glomeruli of IgAN and that its expression correlated with the severity of mesangial matrix expansion. These findings suggest that activation of C3 may be involved in tissue injury in IgAN through the formation of membrane attack complex.

Adolescent↗

[Levels of total hemolytic complement, C3, C4 and antibodies against the myocardium in rheumatic fever].

The levels of the hemolytic complement (UH 50%), C3, C4 and the antibodies against myocardium and against the antigenic fractions of myocardium precipitated with ammonium sulphate were studied in 8 patients with active rehumatic fever (ARF), 28 with inactive rheumatic fever (IRF) and 26 people without cardiopaties (NI). The UH 50% was low in 2 out of 36 patients with rheumatic fever (RF). C3 was normal and C4 low in 12.5% of the ARF patients. C3 had subnormal values in 25% and C4 in 33% of IRF patients, this last value had a stadistic significant decrease with respect to the values of C4 in normal people. The 36 patients with RF had antibodies against the myocardium and also against the heart antigenic fractions precipitated with 10% ammonium sulphate. 11.5% of the normal group had anti-myocardial antibodies and none had antibodies against the fractions. The levels of anti-streptolysin-O and C-reactive protein were higher in the ARF group than in the patients with IRF or the normal people. The participation of the hemolytic complement, the anti-myocardium antibodies, the anti-streptococcus antibodies and the cytophilic activity in the etiopathogeny of rheumatic fever is discussed.

Autoantibodies↗

Complement C3 activation is required for antiphospholipid antibody-induced fetal loss.

The antiphospholipid syndrome (APS) is characterized by recurrent fetal loss, vascular thrombosis, and thrombocytopenia occurring in the presence of antiphospholipid (aPL) antibodies. The pathogenesis of fetal loss and tissue injury in APS is incompletely understood, but is thought to involve platelet and endothelial cell activation as well as procoagulant effects of aPL antibodies acting directly on clotting pathway components. Recent studies have shown that uncontrolled complement activation in the placenta leads to fetal death in utero. We hypothesized that aPL antibodies activate complement in the placenta, generating split products that mediate placental injury and lead to fetal loss and growth retardation. To test this hypothesis, we used a murine model of APS in which pregnant mice are injected with human IgG containing aPL antibodies. We found that inhibition of the complement cascade in vivo, using the C3 convertase inhibitor complement receptor 1-related gene/protein y (Crry)-Ig, blocks fetal loss and growth retardation. Furthermore, mice deficient in complement C3 were resistant to fetal injury induced by aPL antibodies. While antigenic epitopes recognized by aPL antibodies are important in the pathogenesis of APS, our data show that in vivo complement activation is required for aPL antibody-induced fetal loss and growth retardation.

Animals↗

Molecular analysis of hereditary deficiency of the third component of complement (C3) in two sisters.

We report two sisters with hereditary deficiency of the third complement component (C3) and a homozygous mutation at C3303G (Tyr1081Stop) of the gene. They developed systemic lupus erythematosus-like symptoms during adolescence. Their C3 were not detected in serum immunochemically. Their mother and a brother had half of the normal C3 levels and a heterozygous mutation in the same position. Western blot analysis of murine L-cells transfected with the mutant C3 cDNA showed no C3 protein, however mRNA was detectable using reverse-transcriptase polymerase chain reaction. To the best of our knowledge, this is the first report of C3 deficiency due to a stop codon in the gene.

Adolescent↗

Association of serum complement (C3, C4) and immunoglobulin (IgG, IgM) levels with hormone replacement therapy in healthy post-menopausal women.

BACKGROUND: Recently published data suggest that hormone replacement therapy (HRT) may increase cardiovascular risk during the early months of therapy. Activation of the immune system is known to be involved in several types of cardiovascular disease. In this cross-sectional study, serum C3, C4, IgG and IgM levels were evaluated in healthy post-menopausal women receiving two different short-term HRT regimens, and in untreated women. METHODS: Serum C3, C4, IgM and IgG levels were assessed in 18 women receiving transdermal 17beta-estradiol (50 micro g/day) + continuous oral medroxyprogesterone acetate (MPA; 2.5 mg/day), in 56 women taking oral conjugated equine estrogen (CEE; 0.625 mg/day) + continuous MPA, and in 80 control women not receiving HRT. RESULTS: The mean serum C3 level was significantly higher in women using oral CEE + MPA than in women receiving transdermal 17beta-estradiol + MPA, and those not on HRT (P = 0.02 and P < 0.001 respectively). Furthermore, women taking oral CEE + MPA had significantly higher mean levels of C4 compared with untreated women (P < 0.01). IgG and IgM levels were similar among women either of the two HRT regimens and between women not on HRT. CONCLUSIONS: Oral HRT may be involved in the development of cardiovascular disease through inflammatory mechanisms, as suggested by increased serum levels of C3 and C4.

Adult↗

Complement C3 cleavage product in synovial fluids detected by immunofixation.

54 synovial fluids (SFs), 46 of them derived from various inflammatory diseases (30 rheumatoid arthritis (RA) SFs, 8 undefined arthritis (UA) SFs, 8 psoriatic arthritis (PSA) SFs) and 8 SFs from degenerative joint diseases (OA) were tested for C3c split product, using the immunofixation method. There were significant differences in the C3c product between the four groups investigated. In the OA group in the mean the percentage of C3c was low in comparison to the native C3 (C3c = 2.95%). RA SFs and UA SFs showed considerably higher values (20.1% for RA and 23.2% for UA) which were statistically significant in comparison to the OA SFs. With the exception of one SF the PSA SFs exhibited a relatively low percentage of the cleavage product. Despite the one high value the average C3c content of the PSA SFs was not statistically different from the OA SFs. In contrast to this low percentage of the C3c split product the PSA SFs showed the highest C3 concentration of all groups (87.0 +/- 36.5 mg/100 ml). Immunofixation is a simple and effective tool to determine the C3c split product in SFs. It might also be helpful for establishing the differential diagnosis of PSA vs RA on the basis of the C3 level of the SF in those patients where an elevated level of C3 is present.

Arthritis, Psoriatic↗

Reciprocal changes in serum levels of immunoglobulins (IgG, IgA, IgM) and complements (C3, C4) in normal pregnancy and after delivery.

Sequential changes in serum levels of IgG, IgA, and IgM, and C3 and C4 during and after pregnancy were studied in 8 healthy women. Serum IgG decreased gradually during pregnancy, but increased markedly during the six months following delivery. Serum IgA and IgM levels also showed patterns similar to IgG. In contrast, C3 and C4 levels increased significantly and reached maximum levels in the last trimester during pregnancy, but decreased gradually for six months after delivery. Reciprocal changes between immunoglobulins and complements were clarified for the first time, and were suggestive of a compensatory autoregulatory mechanism in the suppression of the humoral immune system during pregnancy.

Adult↗

Characterization of the third component of complement (C3) after activation by cigarette smoke.

Activation of lung complement by tobacco smoke may be an important pathogenetic factor in the development of pulmonary emphysema in smokers. We previously showed that cigarette smoke can modify C3 and activate the alternative pathway of complement in vitro. However, the mechanism of C3 activation was not fully delineated in these earlier studies. In the present report, we show that smoke-treated C3 induces cleavage of the alternative pathway protein, Factor B, when added to serum containing Mg-EGTA. This effect of cigarette smoke is specific for C3 since smoke-treated C4, when added to Mg-EGTA-treated serum, fails to activate the alternative pathway and fails to induce Factor B cleavage. Smoke-modified C3 no longer binds significant amounts of [14C]methylamine (as does native C3), and relatively little [14C]methylamine is incorporated into its alpha-chain. Thus, prior internal thiolester bond cleavage appears to have occurred in C3 activated by cigarette smoke. Cigarette smoke components also induce formation of noncovalently associated, soluble C3 multimers, with a Mr ranging from 1 to 10 million. However, prior cleavage of the thiolester bond in C3 with methylamine prevents the subsequent formation of these smoke-induced aggregates. These data indicate that cigarette smoke activates the alternative pathway of complement by specifically modifying C3 and that these modifications include cleavage of the thiolester bond in C3 and formation of noncovalently linked C3 multimers.

Chemical Phenomena↗

Increased susceptibility to endotoxin shock in complement C3- and C4-deficient mice is corrected by C1 inhibitor replacement.

Endotoxin shock is a life-threatening syndrome associated with a Gram-negative infection and mediated by a systemic inflammatory response. As a major effector of inflammation, the complement system has been implicated in both the pathogenesis and the protection from endotoxin shock. To clarify the role of complement in endotoxin shock, we have used mice totally deficient in either complement component C3 or C4. We found that both the C3- and C4-deficient mice were significantly more sensitive to endotoxin than wild-type controls. The endotoxin-challenged complement-deficient mice failed to clear endotoxin efficiently from the circulation and this led to excess consumption of C1 inhibitor protein (C1 INH), a major regulator of both complement and the contact system of blood coagulation. Replacement of C1 INH rescued the endotoxin-challenged complement-deficient mice from shock and death. These findings suggest a novel therapy for treatment of endotoxemia with C1 INH protein.

Animals↗

The opsonic fragment of the third component of human complement (C3).

Human peripheral blood phagocytes ingest Escherichia coli 026:B6 lipopolysaccharide (LPS)-coated paraffin oil droplets containing Oil red O only if fresh serum deposits C3 on the surfaces of the particles (opsonizes them), by reactions involving the properdin system. The rate of binding of purified [125-I]C3 in serum to LPS-coated particles correlated precisely with the rate of acquisition of ingestibility assayed spectrophotometrically. Once opsonized, LPS-coated particles remained fully ingestible and retained fixed [125-I]C3 radioactivity even after exposure to extremes of temperature, pH, ionic strength, phospholipases, urea or guanidine, some nonionic and ionic detergents, and organic solvents. Trypsin, human conglutinogen-activating factor, another heat-stable activity found in human serum, and sodium dodecyl sulfate removed radioactivity and diminished ingestibility of the opsonized particles. Alkylation, reduction plus alkylation and F(ab')2 from anti-C3 blocked ingestibility but did not alter particle-bound radioactivitymelectrophoretic and tryptic peptide autoradiographic analysis of dodecyl sulfate eluates of opsonized particles, cleansed of many contaminating proteins by boiling with 2 M NaCl (yet still opsonized), revealed that the polypeptide with C3-derived radioactivity had a mol wt of approximately 140,000 and was composed of 70,000 mol wt subunits linked by disulfide bonds. Immunochemical analysis and comparison of the peptide structure of the eluate with that of C3 indicated that the opsonic fragment is not the fragment defined as C3b but a smaller derivative of C3.

Chemical Phenomena↗

[Complement (C3)-activating material in synovial fluid from patients with rheumatoid arthritis].

Synovial fluid from patients with the following diagnoses was investigated: - rheumatoid arthritis (RA) - rheumatoid arthritis with benign development (BRA) - osteoarthrosis (A) The sediment was isolated by ultracentrifugation, its C3 cleaving activity measured by 2-dimensional electrophoresis and its concentration if IgG, IgM, IgA, C3, C4 and C3-proactivator by immunoprecipitation. There is evidence that there is more C3 cleaving activity in RA than in osteoarthrosis. Activity levels of BRA were between those of osteoarthrosis and RA. Although there was no significant difference in the IgG-, IgM- or IgA-level of the 3 mentioned diagnoses after 21 minutes of centrifugation (133 000 g), it was possible to demonstrate more C3 breakdown products in RA than in osteoarthrosis and BRA. Very big molecules seem to be responsible for the generation of C3 cleaving products. These observations are not only of theoretical interest but seem also to be useful diagnostically.

Arthritis, Rheumatoid↗

Interactions of the third component of complement (C3) with cross-linked dextran. III. Isolation and characterization of interacting components after enzymatic digestion of complement coated cross-linked dextran.

In previous investigations we could show that incubation of cross-linked dextran (Sephadex) with normal human and normal guinea pig serum results in the binding of C3 to Sephadex. This binding was found to be due to activation of C3 via an alternate pathway. In this paper data are presented which show that components bound to Sephadex can be recovered after enzymatic digestion of serum-reacted Sephadex beads. The digests were characterized with immuno-electrophoresis and double immunodiffusion techniques. It could be shown that the main component present in the digest was converted C3. Apart from C3 under our test conditions only minute amounts of C3A but no other serum proteins were detectable. The observation that almost exclusively C3 is bound to Sephadex is further supported by the finding that immunization of rabbits with serum-reacted Sephadex beads results in the exclusive formation of anti C3 antibodies. Implications from these findings and possible applications are discussed.

Antibody Formation↗

Expression of the third component of complement, C3, in regenerating limb blastema cells of urodeles.

In this study we have shown that complement component C3 is expressed in the regenerating tissue during urodele limb regeneration. C3 was expressed in the dedifferentiated regeneration blastema and in the redifferentiated limb tissues in the axolotl, Amblystoma mexicanum, and in Notophthalmus viridescens. This expression was verified by immunofluorescent staining using an Ab against axolotl C3 and by in situ hybridization with an axolotl C3 cDNA probe. In the early stages of regeneration C3 appeared to be equally present in all mesenchymal cells and in the wound epithelium, whereas in the later stages it was mainly expressed in the differentiating muscle cells. Since no expression was seen in the developing limb, it appears that the C3 expression was specific to the regeneration process. We then demonstrated by hybridization experiments that a blastema cell line of myogenic origin expresses C3. All these findings implicate C3 in the dedifferentiation process and may indicate a new role for this molecule in muscle differentiation.

Ambystoma↗

Complement (C3) receptor-mediated attachment of agarose beads to mouse peritoneal macrophages and human monocytes.

We have determined the receptors on human monocytes and mouse peritoneal macrophages producing agarose binding. By using isolated human complement factors C3, B and D, agarose beads were coated with C3b. In some experiments C3b was converted to C3bi by using human serum diluted 1:20. Agarose beads coated with C3b or C3bi bound strongly to monocytes. Only agarose beads coated with C3bi were attached to mouse macrophages. Trypsinization of agarose beads coated with C3bi abolished the attachment of the beads to macrophages and monocytes, probably because of conversion of C3bi to C3d. Endocytosis by macrophages of agarose preincubated in human serum or in C5-deficient AKR mouse serum reached the same levels, indicating that the amount of C5 present in serum during preincubation is not important for the degree of endocytosis. It is concluded that internalization of agarose by macrophages is mediated via the C3bi receptor.

Animals↗