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Effects of zinc chloride on guinea pig complement component activity in vitro: concentration-dependent inhibition and enhancement.

We have studied the in vitro effects of zinc chloride on the hemolytic activity of each component of the guinea pig classical complement pathway over a wide range (25 to 500 muM) of zinc concentrations. At high concentrations (>200 muM) the activity of all components was strongly inhibited by this metal. Concentrations of 500 muM inhibited C1 and C5 by 80 and 65%, respectively, whereas all other components were inhibited by more than 94%. Zinc chloride at 25 muM produced more varied effects, with C2, C3, and C6 inhibited by 36, 35, and 55%. C7 and C8 were inhibited by approximately 25%, whereas C1, C4, and C9 were not appreciably affected. The activity of the fifth component, on the other hand, was strongly enhanced by the presence of zinc. Concentrations of 25, 50, and 100 muM zinc chloride produced increases of 92, 44, and 18%, respectively, in C5 titers when present during the activation-binding step of this component. Further studies indicated that the activities of cell-bound complement components were unaffected by zinc treatment after activation and/or binding to the sheep erythrocyte surface had occurred. In addition, zinc did not appear to inhibit by causing irreversible denaturation of either total complement proteins or its various components. Rather, it appears that zinc must be present as a reactant during the activation and/or binding step of each component for inhibition or enhancement to occur.

Animals↗

Deficiency of the homologous restriction factor in paroxysmal nocturnal hemoglobinuria.

The affected E of two patients with paroxysmal nocturnal hemoglobinuria (PNH) were enriched by lysing the unaffected, normal E with anti-human decay-accelerating factor (DAF) and guinea pig serum. The membranes of the unlysed, DAF-deficient cells (PNH-E) were dissolved and examined by SDS-PAGE and immunoblotting using an antiserum to homologous restriction factor (HRF). Whereas the 65 kD complement regulatory protein was readily detectable in the normal controls, it was completely lacking in both samples of PNH-E membranes. Functional studies likewise indicated the absence of HRF activity from PNH-E. When radiolabeled, isolated HRF protein was offered to PNH-E, it became firmly attached to the cell. Approximately 1,000 molecules of HRF per cell reduced the characteristic susceptibility of these cells to reactive lysis by C5b-9 to nearly normal levels. The results suggest that HRF, which is known to control the action of C8 and C9 on normal human E membranes, is deficient in PNH, as well as acetylcholinesterase and DAF.

Blood Proteins↗

Studies on demyelination in vitro: the requirement of membrane attack components of the complement system.

Anti-spinal cord antibodies (anti-SC) cause demyelination of well myelinated mouse cerebellum cultures in the presence of fresh serum. Heating the serum for 30 min at 56 degrees C abolishes the demyelinating activity. We studied the role of complement (c) in demyelination initiated by anti-SC in well myelinated mouse cerebellum cultures. Demyelination was assessed morphologically. The extent of demyelination was correlated to the dose of whole serum C as well as the dose of antibody. To evaluate the requirement of membrane attack components of C, C5b-C9, sister cultures were treated with antibody + C8 deficient human serum (C8D-HS) with and without purified human C8. Extensive demyelination was observed in C8-reconstituted cultures whereas antibody + C8D-HS did not demyelinate, indicating the essential requirement of C5b-8, and/or C5b-9. Extensively demyelinated cultures remyelinated when fresh medium was supplied, suggesting that the process of antibody and C-mediated demyelination is selective for myelin membrane in this system.

Animals↗

Phospholipase A2 contamination of cobra venom factor preparations. Biologic role in complement-dependent in vivo reactions and inactivation with p-bromophenacyl bromide.

Cobra venom factor (CoF), the anticomplementary protein in Naja naja cobra venom, is usually purified by sequential ion exchange and gel filtration chromatography. CoF prepared in this manner contains small but significant quantities of phospholipase A2 activity. This acyl hydrolase activity can be simply and efficiently removed on a large scale by treatment of CoF with p-bromophenacyl bromide (BPB), an irreversible modifier of the histidine residue in the active site of phospholipase A2. BPB treatment does not alter the anticomplementary activity of CoF. In vivo experiments utilizing intratracheal injections of control and BPB-treated CoF, as well as pure phospholipase A2, revealed that contaminating phospholipase A2, and not the anticomplementary protein, was responsible for the observed acute neutrophil-associated lung injury. However, phospholipase A2 had no effect on the hypotensive and thrombocytopenic effects of CoF infected intravenously into rabbits. Depletion of circulating C3-C9 by intraperitoneal injections of CoF was not altered by removal of phospholipase A2 activity with BPB.

Acetophenones↗

Membrane attack complex of complement. Evidence for its dimeric structure based on hybrid formation.

Molecular hybridization experiments provided new evidence for the dimeric nature of the membrane attack complex (MAC) of complement. Monomeric C5b-6, which constitutes the first intermediate complex in MAC formation, was prepared in two differentially labeled forms: biotin-125I-C5b-6 and 131I-C5b-6. Using a mixture of the differentially labeled C5b-6, the MAC was assembled on phospholipid vesicles upon addition of C7, C8, and C9. The assembled MAC containing biotin-125I and 131I was extracted from the vesicles with deoxycholate, purified, and exposed to avidin-Sepharose. Biotin-mediated binding of the MAC to avidin-Sepharose not only effected binding of 125I, but also of 131I, indicating that both radiolabels resided in the same molecular entity. When equimolar amounts of differentially labeled C5b-6 were available for MAC formation, 50% of MAC formed contained one molecule of each form. Theoretical analysis of the experimental data clearly favored the dimer structure over the structure of a higher oligomer. In contrast, fluid phase SC5b-9 was clearly monomeric on the basis of the same analysis. The electron microscopic appearance of the biotinated MAC hybrid closely resembled that of the characteristic membrane lesions of complement lysed cells. An avidin-ferritin conjugate attached itself to the ring-shaped portion of the biotinated MAC and not to its perpendicular structures, suggesting that C5b-6 is an integral part of the ring structure of the MAC.

Biotin↗

Incorporation of SP-40,40 into the soluble membrane attack complex (SMAC, SC5b-9) of complement.

When SC5b-7 was prepared from the C8-depleted serum activated with inulin, it contained SP-40,40 as well as S-protein. From the densitometry of each component in SC5b-9 after SDS-PAGE, it was estimated that SC5b-9 was constituted of one molecule each of C5b, C6, C7, C8, S-protein, and SP-40,40 and two molecules of C9. SP-40,40 was depleted from normal serum with an affinity column using mouse monoclonal anti-SP-40,40 antibody. When the resulting SP-40,40-depleted serum was activated with inulin, SC5b-9 lacking SP-40,40 could be formed. S-Protein-depleted serum was also prepared with an affinity column using mouse monoclonal anti-S-protein antibody. Similarly, SC5b-9 lacking S-protein could be formed by the inulin activation of the S-protein-depleted serum. These results indicate that either SP-40,40 or S-protein should be able to form a soluble C5b-9 complex.

Blood Proteins↗

Molecular reorganization of lipid bilayers by complement: a possible mechanism for membranolysis.

The interaction between the membrane attack complex (MAC) of complement and flat lipid bilayers was investigated. Using spin-labeled derivatives of phospholipids and cholesterol and electron paramagnetic resonance spectroscopy, we measured the penetration of the MAC into bilayers and its influence on the order of bilayers. The MAC precursor components C5b--6, C7, C8, and C9 did not exert any measurable influence on lipid membranes. Functional C5b--7 was shown to interact strongly with the bilayer surface without deep penetration into the bilayer. Formation of C5b--8 and especially C5b--9 caused a marked change in the anisotropy of spectra from probes located within the hydrocarbon phase. The spectral changes are not caused by changes in probe rotation and, in the case of the cholesterol probes, are not due to direct probe--protein interactions. For these reasons we interpret the spectral changes to be the result of reorientation of ordered bilayer lipids effected by strong binding of phospholipids to MAC proteins.

Cholesterol↗

The pathobiology of the terminal complement complexes.

C5b and the other late-acting complement components can assemble the two terminal complexes (TCC) C5b-9 and SC5b-9. In addition to the lytic effects of C5b-9 it has been demonstrated that sublytic amounts of C5b-8 or C5b-9 can stimulate several important cellular activities. These effects may be important to explain the role of C5b-9 in the production and progression of several pathological conditions that has been demonstrated in experimental models of disease. With the help of antibodies that specifically recognize C9 neoantigens, deposits of TCC have been identified in human tissues, not only in immunological diseases but also in certain nonimmunological diseases. In the latter it has been shown that often there is no concordance between deposits of TCC and those of immunoglobulins and C3. Methods for measuring SC5b-9 in biological fluids have also been developed. Normal plasma was found to have low levels of SC5b-9. Increased plasma levels of SC5b-9 have been observed during the active phase of SLE nephritis, in certain infections and during cardiopulmonary bypass. Increased levels were also found in the cerebrospinal fluid of patients with inflammatory diseases of the central nervous system and in the synovial fluid of patients with rheumatoid arthritis. Autoantibodies to C9 neoantigens in plasma of certain patients with autoimmune, infectious or neoplastic diseases have recently been recognized. Additional work is needed to better delineate the potential usefulness of these findings for diagnosis and evaluation of disease activity.

Adult↗

A new screening test for C3 nephritis factor based on a stable cell bound convertase on sheep erythrocytes.

C3 nephritis factor (C3nef) activity was measured by the incubation of sheep erythrocytes with a mixture of normal human serum and patient's serum in EGTA followed by lysis of the washed cells with rat C in EDTA. The C convertase activity on the cells was dependent on the dose of patient's serum. Activation of human C3-C9 by the washed cells was shown by lysis of susceptible target cells (chicken erythrocytes). The test is specific for C3nef.

Animals↗

Biochemical characterization of the human complement protein C6. Association with alpha-thrombin-like enzyme and absence of serine protease activity in cytolytically active C6.

Complement protein C6 has been proposed by others to be a serine protease whose activity is obligatory for complement-directed cell lysis. We separated the serine protease (Mr approximately 30,000) activity found associated with apparently homogeneous preparations of C6 from the hemolytically active C6 protein. The protease was characterized as thrombin-like based on substrate specificity, inhibitor profile, and kinetic studies. Although the proteolytic activity of C6 preparations was inhibitable by several inhibitors of serine proteases, the C6 hemolytic activity remained unaffected. Acid-induced (C(5,6)a complex formation between C5 and C6 (protease-free) was demonstrated by ion-exchange fast protein liquid chromatography, reversed-phase high performance liquid chromatography, and reactive cytolytic activity in the presence of C7, C8, and C9; but no cleavage of the alpha-chain of C5 was observed. Diisopropylphosphorofluoridate pretreatment of the components did not affect their ability to generate functionally active (C(5,6)a. Evidently, C6-associated thrombin is not required for formation of functional C(5,6)a. Thus, C6 does not function in the membrane attack pathway of complement as a serine protease. A method for the isolation of homogeneous C6 in the hemolytically fully active form is described. No free sulfhydryl group was detected in C6. The amino acid sequence of 20 amino-terminal residues was determined.

Amino Acid Sequence↗

A serum protein SP40,40 modulates the formation of membrane attack complex of complement on erythrocytes.

SP40,40 was isolated from the soluble membrane attack complex (SC5b-9) by HPLC using a reverse-phase column. Amino acid compositions of its alpha- and beta-subunits were similar to each other with the exception of glycine content. Amino-terminal sequences of its alpha- and beta-subunits were identical to those of the subunits prepared from human serum, respectively, indicating that there was no degradation of SP40,40 during incorporation into SC5b-9. When guinea pig erythrocytes were incubated with C56f, C7, C8 and C9 in the presence of SP40,40, SP40,40 enhanced the hemolysis. The protein, however, inhibited the hemolysis when erythrocytes were pre-incubated with C56f and SP40,40 prior to the addition of C7, C8 and C9. These findings indicate that SP40,40 modulates the formation of membrane attack complex by interacting with C56f at the first step, and that the co-existence of other factors, besides C56f, is required for the enhancing activity of SP40,40.

Amino Acids↗

Activation of the fifth and sixth components of the human complement system: C6-dependent cleavage of C5 in acid and the formation of a bimolecular lytic complex, C5b,6a.

Acidification of C5 and C6 or serum to pH 6.4 at 0 degrees C, followed by neutralization, generates a factor-designated C(56)a that causes lysis of nonsensitized erythrocytes in the presence of C7, C8, and C9. C(56)a is functionally similar to alternative pathway-generated C5b,6 in respect to the formation of C5b,6,7 sites on cells, the potentiation of lytic activity by membrane-bound C3b or the membrane-active agent A2C, and the required species compatibilities between target membranes and terminal components for optimal activity. The formation of C(56)a complex from purified components C5 and C6 proceeds independently of the classical or alternative pathway C5 convertases and requires the simultaneous H+ ion treatment of the components. The generation of C(56)a from C5 and C6 and the physicochemical properties of the complex were studied in detail and compared with those of C5b,6. Acid generation of C(56)a is dose-dependent on C5 and C6 and its efficiency is similar to that of the conventional convertase in the production of lytic activity. Sucrose gradient ultracentrifugation of C(56)a containing activated 125I-C5 demonstrated a shift in sedimentation from that of native C5 to 11S, which is consistent with C5,6 complex formation. C(56)a sedimentation was identical to C5b,6, and both migrated coincident with lytic complex activity. These complexes, however, are not identical because unlike C5b,6, C(56)a is unstable at 37 degrees C, demonstrating a nonlinear decay curve. In the presence of C7, both complexes exhibit similar first order decay with a T1/2 of 3 min at 37 degrees C. SDS-PAGE autoradiographic analysis of the C5-subunit structure of 125I-C5 in C(56)a and the Zx-activated C5b,6 complex prepared from purified components showed similar alpha-chain cleavage to several fragments of 109,000, 100,000, and 58,000 daltons. Conversion to lower m.w. peptides by acid treatment was more extensive. Comparison of the 125I-C5 polypeptide chains in the membrane attack complex extracted from guinea pig erythrocyte membranes, prepared by acid activation or classical pathway lysis with whole serum, demonstrated similar C5 alpha-chain cleavage to a predominant subunit of 102,000 daltons. Acid activation also produced a 109,000 dalton C5 alpha'-fragment barely detectable with classical pathway activation. Low pH treatment of C5 alone did not inactivate C5 function, form a lytic complex on the subsequent addition of C6, or cleave the C5 alpha-chain. Thus, it is postulated that local high H+ ion concentration during simultaneous acidification of C5 and C6 allows complex formation with the concomitant C6-dependent cleavage of the C5 alpha-chain and the generation of lytic capacity.

Centrifugation, Density Gradient↗

Chimeric and truncated forms of human complement protein C8 alpha reveal binding sites for C8 beta and C8 gamma within the membrane attack complex/perforin region.

Human C8 is one of five components of the membrane attack complex of complement. It is an oligomeric protein composed of three subunits (C8 alpha, C8 beta, and C8 gamma) that are derived from different genes. C8 alpha and C8 beta are homologous and both contain a pair of tandemly arranged N-terminal modules [thrombospondin type 1 (TSP1) + low-density lipoprotein receptor class A (LDLRA)], an extended middle segment referred to as the membrane attack complex/perforin region (MACPF), and a pair of C-terminal modules [epidermal growth factor (EGF) + TSP1]. During biosynthetic processing, C8 alpha and C8 gamma associate to form a disulfide-linked dimer (C8 alpha-gamma) that binds to C8 beta through a site located on C8 alpha. In this study, the location of binding sites for C8 beta and C8 gamma and the importance of the modules in these interactions were investigated by use of chimeric and truncated forms of C8 alpha in which module pairs were either exchanged for those in C8 beta or deleted. Results show that exchange or deletion of one or both pairs of modules does not abrogate the ability of C8 alpha to form a disulfide-linked dimer when coexpressed with C8 gamma in COS cells. Furthermore, each chimeric and truncated form of C8 alpha-gamma retains the ability to bind C8 beta; however, only those containing the TSP1 + LDLRA modules from C8 alpha are hemolytically active. These results indicate that binding sites for C8 beta and C8 gamma reside within the MACPF region of C8 alpha and that interaction with either subunit is not dependent on the modules. They also suggest that the N-terminal modules in C8 alpha are important for C9 binding and/or expression of C8 activity.

Animals↗

Selective IgM depletion prolongs organ survival in an ex vivo model of pig-to-human xenotransplantation.

In the pig-to-primate model, xenograft hyperacute rejection (HAR) is mediated by antibody and complement. Previous studies have implicated xenoreactive IgM natural antibody (nAb) as the predominant immunoglobulin involved in HAR. To further evaluate the role of IgM, we selectively reduced IgM levels in human blood, without changing IgG and IgA levels, and then used this blood to perfuse porcine hearts ex vivo. Specific IgM depletion was accomplished with an immunoabsorption column containing sheep anti-human IgM (mu-chain specific) conjugated to Sepharose beads. Human blood was separated into plasma and cellular components. For control experiments, those components were unmodified and recombined in the perfusion system. For experiments with IgM reduced blood, the plasma was passed through the IgM column. Immunoabsorption resulted in approximately 90% reduction in xenoreactive IgM levels, as measured by ELISA. Porcine hearts perfused with unmodified human blood survived 25 +/- 5.6 min (n=5). Porcine hearts perfused with human blood containing reduced levels of IgM survived 229 +/- 45.2 min (n=4; P<0.01). Organ survival was negatively associated with xenoreactive IgM nAb levels measured immediately before perfusion (r=-0.83; P=0.01), and not with IgG nAb levels (r=-0.21; P=0.62). The ability of plasma from IgM-depleted blood to elicit complement activation, measured by iC3b binding to porcine aortic endothelial cells in vitro, was also strongly associated with IgM xenoreactive nAb levels (r=0.92; P<0.0001). Control hearts perfused with unmodified human blood showed typical widespread histologic features of HAR, while porcine hearts perfused with IgM-reduced blood demonstrated milder and less uniform changes. Immunopathological analysis of heart tissues obtained at the completion of each study showed similar deposition of IgG between groups but markedly less IgM, C3, C4, and C9 in the IgM reduction group. These results suggest that selective IgM reduction delays HAR with prolongation of survival and that xenoreactive IgM may be the predominant immunoglobulin involved in HAR in the pig-to-human combination.

Acute Disease↗

Serum-induced inhibition of isotonic fluid absorption by the kidney proximal tubule. III. Further evidence that complement-mediated cell lysis is involved.

The results of our previous studies have suggested that serum-induced inhibition of proximal tubular fluid absorption is due to complement-induced lysis of the tubular cells. The present study provides further evidence in support of this idea as well as other information pertinent to the mechanism of complement activation in vivo. 1. The electrical resistance of the luminal brush border membrane is reduced drastically concomitantly with a drop in cell potential difference when serum is perfused intraluminally. 2. Human C1 inhibitor (30-50 units/ml) does not significantly affect the inhibitory activity of human serum on fluid absorption, suggesting the non-involvement of the classical pathway. 3. Reactive lysis reagents (C56, C7, C8 + C9) partially inhibit fluid absorption when infused into the lumen. 4. In contrast to our previous report (Sato, K. and Ullrich, K.J. (1974) Biochim. Biophys. Acta 354, 182-187), very fresh serum, 10-times diluted can inhibit fluid absorption if perfused for 10 min. 5. Both mouse and guinea pig serum, which are normally inactive, are activated to attack the tubular cells if 1/100 volume rat or rabbit serum is added to them No such activation occurs by mixing guinea pig serum and mouse serum. The available data suggest that the presence of the later complement components but not the heat-labile factor (Factor B) or C3PA or C1 in the added serum is a prerequisite for mouse and guinea pig sera to be activated to inhibit fluid absorption.

Animals↗

Immunofluorescent studies on S-protein in glomeruli from patients with IgA nephropathy.

Detection of S-protein, which is a regulatory component of the membrane attack complex (MAC), and of C9 in glomeruli by immunofluorescence in 11 of 15 patients with IgA nephropathy is described. The study showed that glomerular injuries such as glomerular adhesion to Bowman's capsule and crescent formation were more marked in glomeruli with S-protein and/or C9 in patients with IgA nephropathy. S-protein co-existed with C9 in glomeruli from such patients. It is suggested that the deposition of S-protein might reflect certain types of histopathologic injuries in glomeruli from patients with IgA nephropathy. It is concluded that activation of terminal components of complement may be one of the exacerbating factors in patients with IgA nephropathy.

Biopsy↗

Isolation from human erythrocytes of a new membrane protein which inhibits the formation of complement transmembrane channels.

A protein which inhibited complement channel formation was isolated from extracts of papain-digested human erythrocyte membranes using DEAE-Sephacel, Bio-Gel A0.5m column chromatographies, and preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis followed by transfer to nitrocellulose paper and elution with 2% NP-40 solution. The purified protein showed a molecular weight of 18 kDa, and efficiently inhibited hemolysis of EC5-7 cells with C8 and C9, but did not show any decay-accelerating activity to C5 convertase. Immunochemical analysis of native membranes after sodium dodecyl sulfate-polyacrylamide gel electrophoresis using the antibody against this protein gave a single band having the same mobility as this protein; papain did not eliminate a significant portion of this protein.

Chromatography, DEAE-Cellulose↗

Recurrence of membranoproliferative glomerulonephritis following kidney transplantation. Serum complement component studies.

Sixteen patients with membranoproliferative glomerulonephritis who required kidney transplantation because of renal failure were evaluated for evidence of recurrence of the original disease by serologic and morphologic studies. Of the 12 patients with transplant tissue available for study, seven showed membranoproliferative glomerulonephritis by light morphology. Four of these seven also had hypocomplementemia, and this hypocomplementemia was characterized by decreased serum CH50, C3 beta1A or C3-C9 but norma serum C1, C4 and C2 by hemolytic assay. Immunofluorescent microscopy demonstrated more intense glomerular deposition of C3 and properdin in the hypocomplementemic patients. Ultrastructural studies demonstrated intramembranous deposits typical of dense deposit disease in one patient who also had marked hypocomplementemia. One patient who had two transplant biopsies and persistent hypocomplementemia showed progression from predominantly mesangial glomerular changes to both capillary wall and mesangial abnormalities. This study has shown a high rate of recurrence of membranoproliferative glomerulonephritis in the transplanted kidneys. A high death rate was noted in persistently hypocomplementemic patients. The serum C profile in hypcomplementemic patients who received translants was similar to that seen before transplantation, but the signficance of this finding remains unknown.

Adolescent↗