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The alternative pathway C3 convertase and glomerular deposits.

Five conditions in which the alternative pathway C3 convertase, C3b,Bb, circulates in excess as a result of factor H dysfunction are frequently accompanied by nephritis. These convertase-related nephritides are seen in association with heterozygous absence of a binding site for factor H on C3b (Marder disease), homozygous factor H deficiency, circulating factor H inhibitor, and with the nephritic factors, one of the amplification loop and the other of the terminal pathway, found in membranoproliferative glomerulonephritis (MPGN) types II and III, respectively. Observations which relate convertase to glomerular deposits are: (1) in MPGN type II, subepithelial deposits on the paramesangial segments of the glomerular basement membrane are with high frequency present in patients hypocomplementemic at biopsy, but not in those normocomplementemic; (2) in MPGN type III paramesangial deposits are similarly found with hypocomplementemia but are present for up to 1 year after normocomplementemia is achieved; (3) in MPGN type III, subendothelial deposits are present only with hypocomplementemia. The principal deposits found in factor H deficiency and in Marder disease are also paramesangial. Differences in the incidence, severity, and morphology of the nephritides accompanying convertase in excess may relate to the characteristics of the circulating convertase and/or to the C3 conversion products formed by it.

Complement C3 Nephritic Factor↗

A C3 convertase assay for nephritic factor functional activity.

C3 nephritic factor (C3NeF) is an autoantibody against the C3 convertase which stabilizes this otherwise inherently labile neoenzyme and induces a continuous activation of the alternative pathway with C3 depletion. NeF is found in patients with membranoproliferative glomerulonephritis and/or partial lipodystrpohy. NeF activity is usually detected in plasma by hemolytic tests. In order to obtain reproducible data for the functional activity of purified C3NeF IgG a solid phase assay was developed. C3 convertase was generated on immobilized C3b by incubation with factors B and D in the presence of Ni(2+). Convertase sites were left to decay in the presence of normal IgG or NeF IgG. Residual convertase activity was measured by adding 125I-C3 and capturing nascent 125I-C3b on the plate surface via covalently coupled NH2-Glu-Tyr dipeptide. In the presence of factor H during C3 convertase decay, a dose dependent stabilizing activity was shown for NeF IgG including NeF IgG purified from urine. A second format of the assay was developed in which C3 convertase was assembled on C3b(2)-IgG complexes in the presence of Mg(2+). Since these complexes are more efficient as convertase precursors the signal was five-fold higher than with C3b. Convertase decay, on the other hand, was not influenced by the nature of the precursor and in both systems the stabilizing activity of NeF IgG was similar.

Adult↗

Inhibition of the function of activated properdin by squid chondroitin sulfate E glycosaminoglycan and murine bone marrow-derived mast cell chondroitin sulfate E proteoglycan.

We compared the relative capacities of two over-sulfated glycosaminoglycans, heparin and chondroitin sulfate E, to alter the function of native properdin (nP) and activated properdin (aP) in the formation and stabilization of the amplification C3 convertase (C3b,Bb). Heparin was more active on a weight basis than chondroitin sulfate E in inhibiting the formation of C3b,Bb without or with nP, but had no influence on the decay of a pre-formed convertase, either unstabilized or stabilized with nP or aP. In contrast, chondroitin sulfate E was over 10-fold more active than heparin in preventing the formation of C3b,Bb in the presence of aP, and gave dose-related acceleration of decay of pre-formed C3b,Bb,aP but not of unstabilized or nP-stabilized pre-formed convertase. The inhibitory effect of both glycosaminoglycans on the formation of C3b,Bb in the presence of nP or aP was less when the number of C3b sites per target cell was increased. The preferential action of chondroitin sulfate E on the function of aP during the formation and decay of C3b,Bb,aP as compared to C3b,Bb,nP implies functional differences in the two forms of P even when they have been incorporated into C3b,Bb. The equal potency, when adjusted for uronic acid content, of chondroitin sulfate E proteoglycan isolated from the T cell-dependent, bone marrow-derived murine mast cell and of chondroitin sulfate E glycosaminoglycan from squid reveals that the linkage of the glycosaminoglycan to a peptide core does not diminish its regulatory action on the alternative complement pathway.

Animals↗

C3b inactivator in the rheumatic diseases. Measurement by radial immunodiffusion and by inhibition of formation of properdin pathway C3 convertase.

C3b inactivator (C3bINA) has been measured in biologic fluids by radial immunodiffusion using a monospecific antiserum prepared in rabbits, and by a hemolytic assay which measures the reduction in the capacity of EAC43 cells bearing limited C3b sites to form C3B, the alternative pathway C3 convertase. The radial immunodiffusion and hemolytic assays show a good correlation (r = 0.86 P less than 0.001). Measurement of C3bINA concentrations in the sera of patients with systemic lupus erythematosus showed that during exacerbations of disease activity C3bINA concentrations tended to be lower, usually in association with reductions in C4, C3, factor B, and properdin, and sometimes with reductions of the alternative pathway proteins, factor B, and properdin alone. Supranormal values for C3bINA were found in the sera of 14 of 20 patients with seropositive rheumatoid arthritis and 3 of 9 seronegative patients, but none of 7 patients with degenerative joint disease. Synovial fluid concentrations of C3bINA, after correction for total synovial fluid protein and serum concentration of the enzyme, were significantly reduced in patients with rheumatoid arthritis compared to patients with degenerative joint disease (P less than 0.05). In both serum and synovial fluid from patients with rheumatoid arthritis, there was a good correlation between the concentrations of C3bINA and those of C3, factor B, and properdin, but not that of C4, suggesting that levels of C3bINA may serve to modulate recruitment of the properdin amplification loop in this disease.

Animals↗

Significance of C3 nephritic factor (C3NeF) in non-hypocomplementaemic serum with membranoproliferative glomerulonephritis (MPGN).

C3NeF is an autoantibody of C3 convertase (C3bBb) and is often detected in the serum of hypocomplementaemic MPGN patients. Serum samples from 104 non-hypocomplementaemic MPGN patients (C3NeF) were studied. C3NeF, which cannot activate the alternative pathway, was found in the sera of 6 patients. We examined the C3NeF in purified IgG from five of the non-hypocomplementaemic serum samples (non-hypo C3NeF) and four hypocomplementaemic serum samples (hypocomplementaemic C3NeF) to determine why C3NeF does not induce C3 splitting and hypocomplementaemia. Purified IgG from non-hypo C3NeF stabilized EAC4b3bBb cells in a manner similar to IgG from hypocomplementaemic C3NeF in EDTA gelatin veronal buffer. However, the non-hypo C3NeF IgG did not stabilize C3 convertase (EAC4b3bBb cells) in the presence of control proteins (factors H and I), whereas the hypocomplementaemic C3NeF IgG did. The C3NeF in the hypocomplementaemic serum displayed two characteristics: (i) inhibition of intrinsic decay of Ce convertase (C3bBb); and (ii) inhibition of extrinsic decay by factors H and I. Although the C3NeF in the non-hypocomplementaemic sera did inhibit the intrinsic decay in a manner similar to the hypocomplementaemic C3NeF IgG, it did not inhibit the extrinsic decay. Due to the different characteristics of hypocomplementaemic C3NeF and non-hypo C3NeF in the serum samples, the non-hypo C3NeF did not activate C3. Therefore, we conclude that C3NeF exhibits a heterogeneity which is very important in relation to the pathogenesis of MPGN.

Complement C3 Nephritic Factor↗

A novel assay for serum complement activity: C42 generation assay.

BACKGROUND: In most clinics, laboratory tests for serum complement are limited to immunochemical determinations of C3 and C4 and are occasionally extended to the hemolytic titration of total complement functional activity (CH50). However, these tests are often not sufficient for the analysis of low CH50 serum. METHODS: A novel assay for serum complement activity, the C42 generation assay, has been developed. The principle of this assay is based on the hemolysis of sensitized sheep erythrocytes (EA) by complement components in two sera: C42 (the classical pathway C3 convertase) is generated on EA by C1, C4 and C2 in the first serum, followed by a second reaction leading to hemolysis by C3-C9 supplied by the addition of the second serum in the presence of EDTA. RESULTS: This methodology permits the evaluation of two distinct serum complement activities of a test serum. The combined activity of C1, C4 and C2, as well as the combined activity of C3-C9, can be estimated from the observed degrees of hemolysis. Information obtained from this assay is helpful for the analysis of test serum determined to have decreased CH50. Several clinical cases are presented in which this assay was utilized. CONCLUSIONS: The C42 generation assay is another functional assay of serum complement which can provide information beyond that obtained from the typical serum CH50 assay. Since intermediate cells or isolated complement components are not necessary, this assay can be employed rapidly and economically in a clinical setting.

Animals↗

Complement activity in normal rabbit bronchoalveolar fluid. Description of an inhibitor of C3 activation.

Hemolytically active C4, C3, C5, and C6, and trace amounts of C1, were present in bronchoalveolar lavage fluid from healthy adult rabbits. Both the alternative and classical pathways were functionally intact through C5. Complement depletion by intravascularly administered cobra venom factor caused a parallel decrease in lavageable C5 from the rabbit's lungs. Whereas BALF C5 had specific activity comparable to serum C5, that of BALF C3 was lower than predicted. This was found to be due to the action of a substance that selectively blocked C3 activation. The inhibitor did not cause irreversible inactivation of C3, and it had no effect on C5 activity. It blocked the formation of EAC423 from EAC42 + C3, but not the lysis of preformed EAC423 + C5-9 or EAC423 rosetting with rabbit neutrophils. Hydrophobic chromatography of BALF separated the activity of the inhibitor from that of C3. Further chromatography showed that it had a net negative charge at physiologic pH, and molecular weight between 14 and 30 kilodaltons. The presence of an inhibitor of C3 activation in the airways would provide control of complement activation in an environment that is constantly exposed to bacteria, dust, and other potential inflammatory stimuli.

Animals↗

Autoantibody to the alternative pathway C3/C5 convertase and its anti-idiotypic response. A study in affinity.

In an effort to understand the development and control of autoantibody production, we studied the affinity of autoantibody to the alternative pathway C3/C5 convertase (C3 nephritic factor (C3NeF)) and its autoanti-idiotypic antibodies, Ab2 alpha and Ab2 beta. These were isolated and purified from newborns, normal adults, and patients with membranoproliferative glomerulonephritis. In all cases, both IgG and IgM C3NeF were available for study. The affinity of IgG and IgM C3NeF for their natural Ag (10(8) liters/mol) as well as for the internal image of that Ag displayed on Ab2 beta was high (10(10) liters/mol). Furthermore, the affinity of IgG C3NeF was nearly 100-fold higher in patients than in newborns, whereas there were no significant changes with IgM C3NeF. By contrast, there were not differences in the affinity of IgG Ab2 alpha (which does not display any likeness to the native Ag) from normal adults and patients to any C3NeF isolate. There was, however, a progressive increase in affinity between both Ab2 alpha preparations and IgG C3NeF from newborns, adult normal subjects, and patients, implying an alteration in C3NeF to account for the changes in affinity. These data suggest that Ag-driven affinity maturation occurs with autoantibody but may not occur within the idiotypic network. These data also indicate that as autoantibody affinity matures, it appears to modify its idiotype, perhaps in an effort towards autoregulation.

Adult↗

Activation of the fifth and sixth component of the complement system: similarities between C5b6 and C(56)a with respect to lytic enhancement by cell-bound C3b or A2C, and species preferences of target cell.

Brief shift of purified C5 and C6 at 0 degrees C to pH 6.4, followed by immediate neutralization, results in the generation of a factor, designated C(56)a, that lyses erythrocytes together with C7, C8, and C9. We compared C(56)a and C5b6 generated by an alternative-pathway convertase, with regard to their action on different target cells. We found tht C(56)a is similar to C5b6 in the following properties: 1) Together with C7, C(56)a forms a stable intermediate on either sheep or guinea pig erythrocytes. 2) Membrane-bound C3b, or A2C incorporated in the membrane, enhances lysis by C(56)a-9, as well as lysis by C5b6-9. We also found that the lysis of EC(56)a7 or EC5b67 intermediates by C8 and C9 depends on the species of the erythrocytes and the species of C8 and C9. Thus, lysis of sheep erythrocytes is more efficient with guinea pig C8 and C9 than with human C8 and C9. In the case of guinea pig erythrocytes, this relationship is reversed, i.e., these cells lyse more efficiently when human C8 and C9 are used. Enhancement of lysis by membrane-bound C3b or A2C does not abrogate this species incompatibility pattern.

Animals↗

Study of the idiotypic response to autoantibody to the alternative pathway C3/C5 convertase in normal individuals, patients with membranoproliferative glomerulonephritis, and experimental animals.

We studied the fluctuation of autoantibody to the alternative pathway C3/C5 convertase (C3NeF) and its autoantidiotypic antibodies, Ab2 alpha and Ab2 beta, in normal individuals, patients with membranoproliferative glomerulonephritis (MPGN), and New Zealand white rabbits. In normal individuals, serum levels of Ab2 alpha (anti-id Ab without internal imagery to the native antigen) are several times higher than those for Ab2 beta (anti-id Ab bearing the internal image of the native antigen). When normal rabbits are immunized with Ab2 beta, Ab3 is produced which has strong C3NeF activity. Ab3 acts to stimulate the prompt production of Ab4 alpha. Ab3 (C3NeF) titers then fall, followed by the appearance of Ab4 beta. Patients with MPGN and C3NeF activity were also studied. Untreated patients at the time of diagnosis have a two- to fourfold predominance of Ab2 beta which is a direct reversal of the normal situation. When the patients were treated with prednisone, C3NeF levels fell and Ab2 alpha again predominated. These data suggest that the idiotypic network acts to control the production of autoantibody in a balanced fashion. Moreover, these data suggest that the patients' response to Ab1 is quite different than that found in normal individuals.

Antibodies, Anti-Idiotypic↗

Enhancement of lectin pathway haemolysis by immunoglobulins.

We recently reported that indicator sheep erythrocytes (E) coated with mannan and sensitized with mannan-binding lectin (MBL) (E-M-MBL) are lysed by human serum in the absence of calcium via the lectin pathway of complement activation by a process which requires alternative pathway amplification and is associated with increased binding of and control by complement regulatory proteins C4 bp and factor H. In the present study, we investigated the effect of immunoglobulin (Ig) on this haemolysis. Co-sensitization of indicator E with anti-E haemolysin led to threefold enhancement of lectin pathway haemolysis in the absence of calcium, associated with increased binding of C3 and C5. Lysis was enhanced approximately twofold when E-M-MBL were chemically or immunologically coated with IgM or IgA, and fourfold when coated with IgG, prior to lysis in human serum-Mg-ethyleneglycol tetraacetic acid. The presence of haemolysin did not reduce the binding or inhibitory activity of C4 bp, and the enhancing activity of haemolysin was retained in serum depleted of C4 bp. By contrast, binding of factor H was greatly reduced in the presence of haemolysin, which had no enhancing effect in serum depleted of factor H. These experiments demonstrate the ability of IgG, IgM and IgA to enhance lectin pathway cytolysis, and that this enhancement occurs by neutralization of the inhibitory activity of factor H. Immunoglobulin enhancement of lectin pathway cytolysis represents another interaction between the innate and adaptive systems of immunity.

Animals↗