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S-protein/vitronectin interaction with the C5b and the C8 of the complement membrane attack complex.

S-protein/vitronectin participates in the regulation of complement-mediated lysis by incorporating into the membrane attack complex C5b-9. Subsequently, soluble SC5b-7 and SC5b-9 macromolecules are not inserted into the membrane lipid bilayer nor induce lytic pore formation. Using a dot blot binding assay, it was determined that soluble S-protein/vitronectin interacted with immobilized C5b and C8 among the five separately immobilized components (C5b, C6, C7, C8, C9) of the membrane attack complex. Those interactions imply a new model of the formation of the complement membrane attack complex and its regulation by S-protein/vitronectin.

Animals↗

Human heart generates complement proteins that are upregulated and activated after myocardial infarction.

In human heart, we detected mRNAs and proteins for C1q, C1r, C1s, C2, C3, C4, C5, C6, C7, C8, and C9 with the use of reverse transcriptase-polymerase chain reaction, Western blotting, and immunohistochemical techniques. We found an upregulation of both mRNAs and proteins in areas of recent and old myocardial infarctions. In both situations, the classical complement pathway was activated, with C4d, C3d, and the membrane attack complex (C5b-9) being deposited on damaged cardiac myocytes. These activated complement components were also identified on Western blots of infarcted tissue. Complement mRNAs in infarcted heart tissue were higher than those in liver, and liver complement mRNAs were not upregulated in cases with infarcted hearts. Our results establish that (1) complement proteins are endogenously produced by human heart; (2) the classical complement pathway is fully activated after myocardial infarction; (3) complement activation is directly involved in myocardial damage after ischemic insults; and (4) damage from complement activation may be chronically sustained. These data suggest that inhibition of the complement system should be effective in treating myocardial infarction.

Adult↗

Hereditary partial deficiency of the third component of complement associated with minimal change nephrotic syndrome.

We describe a 10 year old patient admitted to the Children's Hospital of Buffalo with hypocomplementemia associated with steroid responsive minimal change nephrotic syndrome. The sibling also had a low serum C3 concentration and all family members studied had C3 slow phenotypes. Factor I levels were at the lower limit of normal in the patient and his brother. Functional assays for CH50, total hemolytic C3 and serum concentration of C2, C4-C9 and factors B and H were all within normal limits. This case confirms that a depressed serum complement level can occur in minimal change nephrotic syndrome and indicates that this depression could represent a preexisting inherited rather than an acquired deficiency. The findings are consistent with the presence of a null or hypomorphic C3 slow allele in hypocomplementemic family members. Additional studies are needed to resolve the association between the inherited partial C3 deficiency and minimal change nephrotic syndrome.

Child↗

Complement-mediated serum cytotoxicity for Leishmania major amastigotes: killing by serum deficient in early components of the membrane attack complex.

Leishmania major, the agent of Oriental sore, is an obligate intracellular parasite of macrophages in mammalian hosts. Man's immune defense against this organism requires participation of specifically sensitized lymphocytes and activated macrophages. Recent studies, however, have demonstrated that as little as 1/120 concentration of normal human serum is highly cytotoxic for the amastigote form of L. major. Initiation of the lethal process occurs rapidly, requiring only 30 sec of parasite exposure to serum, and is mediated by antibody-independent activation of the alternate complement pathway. The molecular mechanism of cytotoxicity is not known, but may require participation of the membrane attack complex, C5b-9. We investigated this possibility by treating amastigotes with human sera genetically deficient in complement components C5, 6, 7, 8, or 9. We then measured viability of treated parasites by amastigote-promastigote conversion. Our results were quite unexpected: not only did C9-deficient serum kill organisms, but sera singly deficient in each of the preceding components C6 to C8 were also cytotoxic. The degree of cytotoxicity was related both to serum concentration and to the point in the complement cascade at which deficiency occurred. Sera lacking C6 or C7 were less cytotoxic than those deficient in C8, which were less toxic than those deficient in C9. Cytoxicity of deficient sera was abolished by heating serum to 56 degrees C for 30 min. These findings indicate that an incomplete membrane attack complex may mediate cytotoxicity for L. major amastigotes. Moreover, our results raise important questions regarding the mechanism by which the complex is assembled on the surface of a living, unicellular eukaryotic organism.

Animals↗

Recombinant C345C and factor I modules of complement components C5 and C7 inhibit C7 incorporation into the complement membrane attack complex.

Complement component C5 binds to components C6 and C7 in reversible reactions that are distinct from the essentially nonreversible associations that form during assembly of the complement membrane attack complex (MAC). We previously reported that the approximately 150-aa residue C345C domain (also known as NTR) of C5 mediates these reversible reactions, and that the corresponding recombinant module (rC5-C345C) binds directly to the tandem pair of approximately 75-residue factor I modules from C7 (C7-FIMs). We suggested from these and other observations that binding of the C345C module of C5 to the FIMs of C7, but not C6, is also essential for MAC assembly itself. The present report describes a novel method for assembling a complex that appears to closely resemble the MAC on the sensor chip of a surface plasmon resonance instrument using the complement-reactive lysis mechanism. This method provides the ability to monitor individually the incorporation of C7, C8, and C9 into the complex. Using this method, we found that C7 binds to surface-bound C5b,6 with a K(d) of approximately 3 pM, and that micromolar concentrations of either rC5-C345C or rC7-FIMs inhibit this early step in MAC formation. We also found that similar concentrations of either module inhibited complement-mediated erythrocyte lysis by both the reactive lysis and classical pathway mechanisms. These results demonstrate that the interaction between the C345C domain of C5 and the FIMs of C7, which mediates reversible binding of C5 to C7 in solution, also plays an essential role in MAC formation and complement lytic activity.

Amino Acid Motifs↗

Membrane permeability to macromolecules mediated by the membrane attack complex.

A simple and well-defined system of purified phospholipids and human complement proteins was used to study membrane permeability to macromolecules mediated by the membrane attack complex (MAC) of complement. Large unilamellar vesicles (LUVs) of phosphatidylcholine (PC) or phosphatidylserine (PS) containing trapped macromolecules [bovine pancreatic trypsin inhibitor (BPTI), thrombin, glucose-6-phosphate dehydrogenase (G6PD), and larger molecules] were used to monitor permeability. Membrane permeability to macromolecules was measured by thrombin inhibition by an external inhibitor or by separation of released molecules by gel filtration. Membrane-bound intermediates (C5b-8 or C5b-93) were stable for hours, and macromolecular permeability occurred without fragmentation, fusion, or aggregation of the vesicles. Quantitative membrane binding by C5b-7 as well as essentially quantitative release of thrombin was obtained for PS vesicles. MAC binding to PS-LUVs approximated the theoretical Poisson distribution curve for full release of vesicle contents by one complex per vesicle. Reactions with PC-LUVs occurred with some fluid-phase MAC assembly. Therefore, results from experiments with these vesicles were interpreted in a relative manner. However, the values obtained closely corroborated those obtained with PS-LUVs. At low C9/C5b-8 ratios, the size of the lesion was proportional to the C9 content of the MAC. Half-maximum release of BPTI, thrombin, and G6PD, by a single MAC per vesicle, required approximately 3,5, and 7 C9/C5b-8 (mol/mol), respectively. Larger molecules (greater than or equal to 118-A diameter) were not released from the vesicles. Release of G6PD (95.4-A diameter) required 45% of saturating C9. Therefore, it appeared that the last half of the bound C9 molecules did not increase pore size and the pore which released G6PD approached the diameter of the closed circular lesion measured (by others) in electron micrographs (approximately 100 A). The results were consistent with the formation of a stable membrane pore by a single complex per vesicle in which C9 molecules line only one side of the pore at low C9/C5b-8 ratios and maximum pore size is attained by incomplete, noncircular polymers of C9.

Cell Membrane Permeability↗

On the identity of vitronectin and S-protein: immunological crossreactivity and functional studies.

Vitronectin (serum spreading factor), a major serum cell adhesion molecule, was compared with S-protein, the inhibitor of the C5-9 membrane attack complex. Data from the literature indicate that S-protein and vitronectin are alpha globulins with the same aminoterminal residues, amino acid compositions, and concentrations in normal plasma (150 to 250 micrograms/mL). Both proteins have been reported to interact with the thrombin-antithrombin complex. The cDNA sequences of vitronectin and S-protein were recently determined and found to be almost identical. In the present studies, rabbit-anti-S-protein and a monoclonal antibody to vitronectin both recognized 65,000- and 75,000-molecular weight (mol wt) polypeptides when plasma or serum proteins were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and transferred to nitrocellulose paper. The 65,000 and 75,000-mol wt polypeptides bound more avidly from serum than plasma to monoclonal anti-vitronectin or heparin coupled to agarose. The presence or absence of the polypeptides constituted a major difference between the heparin-binding proteins of serum and plasma. When complement-activated serum and unactivated serum were separated by gel filtration, vitronectin coeluted with C9 in high-mol-wt fractions of activated serum but not unactivated serum. Purified S-protein was recognized by the monoclonal antibody to vitronectin and promoted spreading of human skin fibroblasts. Both vitronectin and S-protein were degraded by thrombin. On the basis of immunological and functional, as well as biochemical, properties, therefore, S-protein and vitronectin are the same.

Glycoproteins↗

Antibody and complement modulation of tumor cell growth in vitro and in vivo.

Low doses of highly purified anti-TNP (trinitrophenyl) antibody specifically stimulated nucleoside uptake in TNP-substituted L cells and low doses of heterospecific anti-L cell antibody stimulated nucleoside incorporation, DNA synthesis, and cell growth in L cells in vitro. High concentrations of antibody inhibited these processes. Complement activated through C3 augmented the cytostimulatory effects of low concentrations of antibody and activated through C9 augmented the cytoinhibitory effects of antibody. One very early effect of cytostimulatory concentrations of antibody is activation of membrane carrier transport systems as seen with 45Ca2+ uptake. Growth of L cells in tissue culture in the continuous presence of a cytostimulatory concentration of antibody selected for a variant cell line that was less responsive to antibody, thought to be due to a blocking effect of increased amounts of sialic acid. In vivo experiments documented that the same antibody could modulate L cell tumor growth in T cell-depleted mice, depending on whether a low or high concentration of antibody was given passively. In the experimental systems used, therefore, antitumor antibody and complement directly modulate the growth of tumor cells.

Animals↗

Terminal complement complex in plasma from patients with systemic lupus erythematosus and other glomerular diseases.

To evaluate terminal complement pathway activation in plasma from patients with systemic lupus erythematosus (SLE) and primary glomerular diseases, we developed an enzyme-linked immunosorbent assay (ELISA) for measuring the terminal complement complexes (TCC). The method is based on a sandwich technique using rabbit antibodies against native human C5, C7 and C9. To avoid interference by native components, we equilibrated plasma specimens with 5% polyethylene glycol buffer. The precipitates were measured by ELISA. TCC was detectable in all 14 normal controls (0.48 +/- 0.06 AU/ml; mean +/- s.e.m.). TCC levels were elevated in 18 of 54 patients with SLE (0.89 +/- 0.07 AU/ml; P less than 0.01) and in eight of 11 patients with membranoproliferative glomerulonephritis (MPGN) (3.15 +/- 0.62 AU/ml; P less than 0.01). However, only one of six patients with membranous nephropathy and none of 13 with mesangial proliferative glomerulonephritis showed high values. In SLE, TCC was correlated with circulating immune complexes and inversely with CH50, C3, C4, C5 and alternative complement pathway activity (AH50), and showed significantly high values even in normal CH50 cases (n = 34; P less than 0.01). In MPGN, TCC was inversely correlated with CH50, AH50, C3, C5 and C9. These results suggest that the classical pathway plays an important role for TCC generation in SLE and that the alternative pathway does in MPGN.

Adolescent↗

Collagenase of Clostridium perfringens type A: degradation of human complement component C1q.

The semipurified collagenases from Clostridium perfringens type A strains 2-Cli and ATCC 13124, both characterized by molecular weights of 79.4 kilodaltons, partially degraded purified human complement (C) component C1q. The following purified human serum proteins were refractory: C components C3, C4, C5, C6, C7, C8, and C9; immunoglobulin (Ig)A (from colostrum), IgG, and IgM; alpha 2-macroglobulin, haptoglobin, and C-reactive protein.

Blotting, Western↗

Activation of the alternative pathway of complement in childhood acute lymphoblastic leukemia.

Sequential studies in children with acute lymphoblastic leukemia have demonstrated that at diagnosis or relapse there is defective utilization of complement by the alternative pathway. Thus, the sera of 17/18 patients fail to completely consume C3 to C9 when incubated with zymosan or cobra venom factor (CoF). This underutilization is due to a specific inhibitor of C3 activation which has been partially isolated. By remission, the inhibotor disappears and the CoF and zymosan assays return to normal. In addition, serum levels of C3 and factor B are elevated at the time of diagnosis or relapse but fall to below 3 S.D. from the mean in nearly 60 per cent of the cases during induction therapy. Similarly, serum C4 levels which are normal at diagnosis fall to less that 3 S.D. from the mean in 7/12 cases during treatment. Low C3 levels correlate well with factor B values, suggesting that if C3 to C9 are utilized after the inhibitor has been eliminated, such utilization occurs primarily through the alternative pathway. Presumably, as illustrated by the low C4 levels, this activity is mediated by the ampliciation loop of the alternative pathway involving classical pathway generation of C3b.

Child↗

Interactions between earthworm hemolysins and sheep red blood cell membranes.

The hemolytic activity exhibited by the coelomic fluid of the Annelid Eisenia fetida andrei is mediated by two lipoproteins of mass 40 and 45 kDa, each of them capable of hemolysis. Such an activity is not inhibited by zymosan, inulin or lipopolysaccharide (LPS), nor by hydrazine or methylamine, suggesting that earthworm hemolysins are not related to C3 or C3b complement components. Among the membrane lipids tested (phosphatidylcholine, phosphatidylethanolamine, phosphatidylglycerol, sphingomyelin and cholesterol) only sphingomyelin inhibited hemolysis. The analysis of E.f. andrei proteins bound to sphingomyelin microvesicles, as well as to sheep red blood cell (SRBC) membranes, revealed a polymerization of E.f. andrei 40 kDa and/or 45 kDa hemolysins. Consequently, sphingomyelin appears a likely candidate for hemolytic complex receptor. Electron microscopy observations suggested that the polymerization causes an open channel through the lipid bilayer. As demonstrated using metal ions, heparin, chondroitin sulfate, poly(L-lysine) and protamine chloride, the mode of action of earthworm hemolytic complex is not analogous to that of C9 or perforine.

Animals↗

2-Chloroadenosine inhibits complement-induced reactive oxygen metabolite production and recovery of human polymorphonuclear leucocytes attacked by complement.

Luminol-enhanced chemiluminescence demonstrated that 2-chloroadenosine inhibited complement-induced reactive oxygen metabolite production in human polymorphonuclear leucocytes. This inhibition was reversed by 8-phenyltheophylline. Binding of a [125I]-labelled monoclonal antibody against C9 to human PMN demonstrated removal of membrane attack complexes from the cell membranes, and in addition indicated inhibition of this process by 2-chloroadenosine. This compound also increased the percentage of complement-induced cell lysis of polymorphonuclear leucocytes.

2-Chloroadenosine↗

Complement component C3b binds directly to purified glycoprotein C of herpes simplex virus types 1 and 2.

Cells infected with herpes simplex virus type 1 (HSV-1), but not HSV-2, express on their surfaces a receptor for the complement component C3b. Receptor activity is markedly enhanced by treatment of the infected cells with neuraminidase. Employing a direct binding assay, consisting of purified HSV glycoproteins immobilized on nitrocellulose and iodinated C3b as a probe, we found that C3b binds directly to gC-1, as well as to gC-2, but not to gB or gD from either serotype. C3b binding was enhanced by treatment of gC-1 or gC-2 with neuraminidase. Endo F or endo H treatment of gC-1 had no effect on C3b binding. However, treatment of gC-2 with these endoglycosidases had a marked negative effect on C3b binding. These results suggest that N-linked oligosaccharides are involved in binding of C3b to gC-2, but not gC-1. Alternatively, removal of N-linked oligosaccharides from gC-2 might adversely affect polypeptide conformation. Glycoprotein C-2 also differs from gC-1 in its effects on the complement cascade. Whereas gC-1 accelerated the decay of the alternative pathway C3 convertase and impaired the efficiency of lysis by the components C5 through C9, gC-2 stabilized the active C3 convertase and had little effect on the late-acting components. The dissimilarity of gC-1 and gC-2 with regard to their effects on the complement cascade may have implications regarding the role of these glycoproteins in confronting the host immune response.

Animals↗

Lewy bodies in Parkinson's disease are recognized by antibodies to complement proteins.

The substantia nigra (SN) in 11 Parkinson's disease (PD) patients and 5 neurologically normal controls was examined immunohistochemically using antibodies to various proteins of the complement system. In PD, but not in control SN, intra- and extraneuronal Lewy bodies and dendritic spheroid bodies were stained with anti-human C3d, C4d, C7 and C9 antibodies, but not with antibodies to C1q, fraction Bb of factor B or properdin. Axonal spheroid bodies in the nigrostriatal tract were not stained by any of the complement antibodies. However, complement-activated oligodendroglia were revealed by anti-C3d and anti-C4d antibodies in the PD substantia nigral area. These data indicate that some pathological structures in PD activate the classical complement pathway.

Aged↗

Size of the transmembrane channels produced by complement proteins C5b-8.

It has been shown previously that erythrocytes can be lysed by complement proteins C5b-8, albeit at a much lower rate than C5b-9. We have now performed kinetic sieving experiments with resealed erythrocyte ghosts using sucrose (0.9 nm molecular diameter) and inulin (3.0 nm molecular diameter) as markers. We found that treatment of the ghosts with C5b-8 released sucrose, but not inulin. Addition of C9 to ghosts carrying C5b-8 dramatically increased the rate of sucrose flux and, in addition, caused release of inulin. Hence, unlike C5b-9 channels, those formed by C5b-8 measure less than 3 nm in diameter. Formation of C5b-8 channels was very slow compared with that of C5b-9 channels. Also, we found that about two-thirds of the C5b-8 ghosts did not have sucrose-releasing channels, but such channels were formed on reaction with C9.

Cell Membrane Permeability↗

Effect of cytokines on the secretion of the fifth and eighth complement components by HepG2 cells.

Liver cells can be induced by interleukin-1, tumor necrosis factor and interleukin-6 to secrete higher amounts of complement components. Information, so far available only for the early components, indicates that these cytokines exhibit different effects on various complement proteins. For instance, they promote the biosynthesis of C3 and B but have no effect on that of C4 and C2. These observations led us to evaluate the ability of interleukin-1, tumor necrosis factor and interleukin-6 to modulate the secretion of the late complement components by HepG2 cells, a human hepatoma-derived cell line known to produce several complement proteins. The amount of complement components in the culture supernatant was evaluated by a sensitive enzyme-linked immunosorbent assay revealing picogram levels of these proteins. The HepG2 cells were found to secrete a substantial amount of C3 (approximately 1 microgram/10(6) cells), easily detectable C5 (approximately 150 ng/10(6) cells) and C8 (approximately 10 ng/10(6) cells) and a low amount of C6 (approximately 0.5 ng/10(6) cells), whereas the levels of both C7 and C9 could not be measured. The addition of interleukin-1, tumor necrosis factor and interleukin-6 to the cell culture resulted in an enhanced secretion of C8, whereas that of C5 was only marginally increased. None of these cytokines had a clear effect on the secretion of C6 nor induced the production of C7 and C9.(ABSTRACT TRUNCATED AT 250 WORDS)

Carcinoma, Hepatocellular↗