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Neuronal protection of oligodendrocytes from antibody-independent complement lysis.

Cultured rat oligodendrocytes are lysed by complement via antibody-independent activation of the classical pathway. This susceptibility to complement lysis has been demonstrated to be due to lack of CD59, a complement regulatory protein which inhibits assembly of the membrane attack complex. In this study the effects of homologous and heterologous complement were examined in a co-culture system of rat oligodendrocytes and peripheral neurones, where axonal ensheathment was observed as early as 4 days after the addition of glial progenitors to the neurones. Following exposure to complement, ensheathing oligodendrocytes were markedly less sensitive to antibody-independent but not antibody-dependent complement lysis than were cells grown without neurones. Immunocytochemical data revealed that co-cultured oligodendrocytes remained CD59 negative, but in contrast to oligodendrocytes cultured alone, were negative for C3b when incubated with C7-deficient serum. Taken together these data indicate that the decreased sensitivity of co-cultured oligodendrocytes to complement lysis is not attributed to the increased expression of CD59, but rather in a failure to activate complement. Incubation of oligodendrocytes with neurone-conditioned medium afforded significant protection (68%), against antibody-independent complement attack, suggesting that soluble neuronal factors can protect oligodendrocytes from complement-mediated lysis.

Animals↗

Complement system in healthy term newborns: reference values in umbilical cord blood.

Activation of the complement system occurs in several diseases. For reliable identification of complement activation in neonates, we establish reference ranges of several components in cord blood of healthy term newborns. For this study, cord blood samples were taken from 125 healthy term newborns. Concentrations of C1r, C2, C5, C7, Properdin, and factors D, H, and I were determined by single radial immunodiffusion. C3a and C5a were measured by specific EIA and complement function was measured by hemolytic assays. The results were expressed as 5th percentile, median, and 95th percentile. The following respective concentrations were found: C1r: 27, 47, 65 mg/l; C2: 12.0, 18.0, 24.0 mg/l; C5: 64, 92, 127 mg/l; C7: 32, 60, 89 mg/l; Properdin: 5.6, 9.7, 14.2 mg/l; factor D: 3.6, 5.2, 7.3 mg/l; factor H: 178, 234, 296 mg/l; and factor I: 15, 24, 32 mg/l. The functional activity of the whole complement system was 24%, 43%, 97% and for the alternative pathway 39%, 58%, 76%. The concentration of the activated split products C3a was 4, 65, 255 microg/l and of C5a, 0.11, 0.26, 1.19 microg/l. These reference values may be important for the detection of deficiencies of native complement proteins or perinatal processes leading to an activation of the complement system.

Adult↗

Induced expression of neuronal membrane attack complex and cell death by Alzheimer's beta-amyloid peptide.

beta-amyloid peptide (A beta) and complement-derived membrane attack complex (MAC) are co-localized in senile plaques of brains from Alzheimer's disease (AD) patients. But the relationship between A beta and complement activation is unclear. We have used human neurotypic cells, differentiated SH-SY5Y, as a model system to examine regulation of neuronal MAC expression and cell death by A beta. We demonstrated that mRNAs (C1q, C2, C3, C4, C5, C6, C7, C8 and C9) and proteins (C1q, C3 and C9) for the major components of the classical complement cascade are present in the SH-SY5Y neurotypic cells, indicating that neuronal cells can synthesize the necessary proteins required for MAC formation. Furthermore, immunocytochemical studies showed the A beta-induced neuronal MAC expression on the SH-SY5Y cells after CD59 was removed by PIPLC or blocked by anti-CD59 antibody. Meanwhile, increased A beta-induced neuronal cell death was observed following treatment with anti-CD59. Taken together, these results suggest that A beta activates neuronal complement cascade to induce MAC, and a deficiency of endogenous complement regulatory proteins, e.g., CD59, may increase the vulnerability of neurons to complement-mediated cytotoxicity.

Alzheimer Disease↗

Deposition of the membrane attack complex of complement in pemphigus vulgaris and pemphigus foliaceus skin.

The present study was performed to determine whether complement activation in pemphigus vulgaris (PV) and pemphigus foliaceus (PF) results in the assembly of the terminal complement sequence or membrane attack complex (MAC) in skin lesions. Biopsy specimens of skin lesions from five patients with PV and three patients with PF contained C5, C7, C9, and the MAC related neoantigen (C5b-9 neoantigen) in intercellular substance areas (ICS), as well as IgG and the early complement components Clq, C4, and C3. The presence of these late complement components and the C5b-9 neoantigens in ICS sites of the skin lesions is indicative of complement activation by the pemphigus antibody, with subsequent assembly of the MAC. The binding of IgG and early complement components to ICS was observed in both non-lesional (normal appearing) skin and in skin lesions. However, no MAC could be detected in the normal appearing skin of our pemphigus patients. It was also noted that the MAC could be generated in vitro on cryostat sectioned normal human skin by pemphigus antibody in the presence of complement. Results of these studies suggest that complement activation may be related to membrane damage of epidermal cells in both PV and PF.

Complement Membrane Attack Complex↗

Effect of complement proteins C5b-9 on blood platelets. Evidence for reversible depolarization of membrane potential.

The carbocyanine dye 3,3'-dipropylthiodicarbocyanine iodide has been used to investigate changes in membrane potential (Em) which occur upon binding of complement proteins C5b-9 to the plasma membrane of blood platelets. Gel-filtered platelets exposed to C5b6 and C7 in serum-free medium show no change in Em from that of controls, as indicated by either 3,3,'-dipropylthiodicarbocyanine iodide fluorescence or by the distribution of [14C]tetraphenylphosphonium bromide. Addition of complement proteins C8 and C9 to the C5b67 platelets results in partial depolarization of Em, which spontaneously repolarizes to basal levels within 15-20 min at 37 degrees C. Under these conditions, C5b-9-treated platelets show no increase in lysis over complement-free controls. Isotonic replacement of external sodium by either potassium or choline alters both the rate and extent of membrane depolarization and inhibits the platelets' capacity to repolarize after C5b-9 assembly. Repolarization of Em to basal levels is also completely blocked by addition of ouabain, confirming that this recovery is mediated by the plasma membrane Na+/K+ pump. These results demonstrate that membrane binding of the C5b-9 proteins can induce a transient change in Em when bound to the plasma membrane at a sublytic concentration, providing a mechanism for target cell activation by these potentially cytolytic proteins.

Adult↗

The influence of electrochemical gradients of Na+ and K+ upon the membrane binding and pore forming activity of the terminal complement proteins.

The hemolytic activity of the terminal complement proteins (C5b-9) towards erythrocytes containing high potassium concentration has been reported to be dramatically increased when extracellular Na+ is substituted isotonically by K+ (Dalmasso, A.P., et al., 1975, J. Immunol. 115:63-68). This phenomenon was now further investigated using resealed human erythrocyte ghosts (ghosts), which can be maintained at a nonlytic osmotic steady state subsequent to C5b-9 binding: (1) The functional state of C5b-9-treated ghosts was studied from their ability to retain trapped [14C]-sucrose or [3H]-inulin when suspended either in the presence of Na+ or K+. A dramatic increase in the permeability of the ghost membrane to both nonelectrolytes - in the absence of significant hemoglobin release - was observed for C5b-9 assembly in the presence of external K+. (2) The physical binding of the individual 125I-labeled terminal complement proteins to ghost membranes was directly measured as a function of intra- and extracellular K+ and Na+. The uptake of 125I-C7, 125I-C8, and 125I-C9 into membrane C5b-9 was unaltered by substitution of Na+ by K+. (3) The binding of the terminal complement proteins to ghosts subjected to a transient membrane potential generated by the K+-ionophore valinomycin (in the presence of K+ concentration gradients) was measured. No significant change in membrane binding of any of the C5b-9 proteins was detected under the influence of both depolarizing and hyperpolarizing membrane potentials.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Membrane Permeability↗

Interactions of purified Serratia marcescens metalloproteases with fresh human serum and with purified human serum proteins.

Exposure of fresh human serum to two purified metalloproteases of S. marcescens strains SF 178 and SH 186 (both of serotype O6/O14:H12) at 35 degrees C, 3 h, resulted in altered electrophoretic mobility of the protease inhibitors alpha 1-antitrypsin and alpha 2-macroglobulin, alpha 2-HS-glycoprotein, and complement (C) components C1q, C1s, C3a, C3c, C4, C5, and C9, but not C6, C7, C8, and properdin, as determined with electroimmunoassays (Laurell technique). Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) documented the partial degradation of the heavy (H) chain of purified human immunoglobulin IgG by the metalloproteases of S. marcescens strains SF 178 and SV O1 (serotype O13/O19:H1), but not by the metalloproteases of strains SH 186 and SE 182 (serotype O9B:H11) following extended incubation (35 degrees C, 22 h). Human IgA and IgM were refractory. Purified human C components, C3, C4, C5, C6, C7, C8, and C9, as well as purified human alpha 1-antitrypsin, alpha 2-macroglobulin, transferrin, and lactoferrin were attacked by the S. marcescens metalloproteases SF 178 and SH 186 at 35 degrees C for 5 h, as demonstrated with the SDS-PAGE procedure; haptoglobin and C-reactive protein were resistant.

Acute-Phase Proteins↗

The hereditary and acquired deficiencies of complement.

The identification of hereditary and acquired complement deficiencies in humans has led to a better understanding of the biologic importance of the complement system in immunity and autoimmune disease. Although the understanding of the relevance of complement in the pathogenesis of disease is incomplete, several characteristic clinical syndromes associated with complement deficiencies have been recognized and should be known to the practicing clinician. In allergic diseases, one need recognize the C1 inhibitor deficiency syndromes which can present as severe, recurrent angioedema in childhood or in the adult as recurrent angioedema in association with a lymphoid malignancy or autoimmune disease. Complement analyses allow one to readily diagnose C1 inhibitor deficiency in angioedema. Correct diagnosis is critical because safe effective therapy is available. Chronic urticaria is also uncommonly associated with complement deficiencies, particularly acquired C1q deficiency. Again, effective therapy for hypocomplementemic urticarial vasculitis and C1q deficiency is available and differs significantly from the usual management of chronic urticaria. Homozygous and acquired deficiencies of C3 are associated with severe immune deficiency and recurrent infections with gram-positive and gram-negative bacteria. Recurrent meningococcemia and gonococcemia are being identified frequently in patients with a deficient membrane attack mechanism relating to deficiency of C5, C6, C7, or C8. Nearly one third of the patients developing meningococcemia may have an associated complement deficiency indicating the importance of complement determinations in understanding the treatment and prognosis for these patients. Deficiency of almost every complement component has been reported in association with one or more rheumatic diseases, particularly systemic lupus erythematosus. Extensive studies of C2 deficiency and limited studies of C4 deficiency indicate that these components of the classical pathway of complement are important in preventing the development of SLE or are linked to other genes predisposing to SLE. The clinical presentations of SLE in association with C2 or C4 deficiency are relatively uniform. The patients exhibit typical skin manifestations suggestive of SLE and DLE and often exhibit antibodies to SSA (Ro). The association of complement deficiencies with clinical syndromes is important for today's physician. The syndromes and deficiencies described here are the beginning of an expanding knowledge relating to the pathobiology of complement in human disorders.

Angioedema↗

Studies of the action of some anti-inflammatory drugs on complement mediated immune haemolysis.

1 The effects of various anti-inflammatory and non-anti-inflammatory drugs on complement mediated haemolysis have been studied. Drugs which were significantly protein bound were found to inhibit this form of immune lysis, but only at greater concentrations than achieved therapeutically. 2 Removal of the drugs by prolonged dialysis resulted in restoration of complement activity with the exceptions of phenylbutazone and warfarin sodium. 3 Reconstitution experiments indicated that C2 and some of the later components especially C7 were affected by the drugs. 4 Intra-articular injections of prednisolone (100 mg) in patients with rheumatoid arthritis, failed to produce significant changes in the synovial fluid complement system. 5 None of the drugs affected the binding of antibody to antigen, or the ability of sensitized sheep cells to fix complement.

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↗

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↗

Detection of refolding conformers of complement protein C9 during insertion into membranes.

Human complement protein C9 is a hydrophilic serum glycoprotein responsible for efficient expression of the cytotoxic and cytolytic functions of complement. It assembles on the surface of a target cell together with C5, C6, C7 and C8 to form the membrane attack complex (MAC) and therefore has to change structure to become an integral membrane protein. As the protein assumes a stable structure in an aqueous environment, the question arises as to how it can enter the hydrophobic interior of a membrane. During MAC assembly C9 polymerizes into a circular structure, termed poly(C9) (ref. 8), which is responsible for the cylindrical electron microscopic appearance of the MAC. The suggestion has been made that C9 must at least partly unfold in order to enter a membrane and also that polymerization of the molecule is intimately linked to insertion and cytotoxicity. The extent of unfolding and the mechanism of polymerization are not understood, nor is it known precisely which parts of the molecule participate in the proposed structural changes. We have been able to capture refolding C9 conformers during membrane insertion with the help of sequence-specific anti-peptide antibodies. Some of these antibodies inhibit C9-mediated haemolysis but not C9 polymerization, while others have the opposite effect. This suggests that the two processes are independent.

Complement C9↗

Hydrophilic-amphiphilic transition of the terminal SC5b-8 complement complex through tryptic modification: biochemical and ultrastructural studies.

the SC5b-8 complex of human complement is a hydrophilic molecule of mol. wt 800,000-850,000 that is seen in the electron microscope as an elongated, straight or curved structure of 50-55 nm total length and 8-9 nm width. Tryptic attack on the fluid-phase complex exposes lipid-binding surfaces on the molecule. The trypsinized complex can be incorporated into liposomal lipid bilayers, and the majority of protein is then viewed as ill-defined, larger tufts projecting exterior to the liposomal membrane. These tufts possibly represent clusters of a unit lesion, which consists of two diverging projections, each approximately 25 nm in length. The two projections are possibly joined to each other to give the membrane-bound complex a shape akin to that of an incomplete funnel. Analyses by SDS-polyacrylamide gel electrophoresis show that the polypeptide subunits C5b, C7 and C8 beta entirely resist tryptic degradation in both SC5b-8 and SC5b-9 complement complexes. Limited proteolysis of C6, C8 alpha gamma and C9, and extensive degradation of the S-protein are effected by trypsin. The results are compatible with the concept that proteolytic cleavage of the S-protein in SC5b-8 and SC5b-9 is the cause of the trypsin-dependent, hydrophilic-amphiphilic transition of the terminal, fluid-phase complement complexes.

Alpha-Globulins↗

Complement membrane attack complex and protectin (CD59) in liver allografts during acute rejection.

BACKGROUND/AIMS: The complement system is important in the rejection of xenografts, but very little is known about its activation in the rejection of allografts. Complement lysis is induced by the membrane attack complex (MAC), an aggregate of C5b, C6, C7, C8 and C9 molecules. The main defender against MAC is the CD59 molecule, also called protectin. In this study, the aim was to analyze the possible deposition of MAC and the fate of CD59 on distinct cell populations during liver allograft rejection. METHODS: Liver allografts were monitored by frequent fine-needle aspiration biopsies (FNAB) to demonstrate the immunoactivation of rejection. To examine MAC and CD59 in the FNAB, in relation to the activation markers of rejection, IL2-receptor, MHC class II and ICAM-1 expression, specific monoclonal antibodies and immunoperoxidase staining were used. RESULTS: Ten out of 21 consecutive liver transplants underwent a histologically confirmed episode of reversible acute rejection. In the FNAB, a significant increase of the activation markers IL2-receptor, class II and ICAM-1 correlated with the peak of inflammation during the episode. In association with inflammation, a significant deposition of MAC was recorded in neutrophils and lymphocytes infiltrating the graft and in the parenchymal cells. MAC deposition subsided together with the inflammation. A significant decrease in CD59 expression was seen in neutrophils during rejection, but CD59 expression on other inflammatory cells and hepatic tissue cells varied greatly. CONCLUSIONS: Complement activation was seen in association with acute rejection of liver allografts and it led to MAC assembly on leukocytes and tissue cells. A decrease in CD59 expression was less clear-cut, but it may predispose the cells to complement-mediated elimination.

Acute Disease↗

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↗

Glutathione-catalyzed disulfide-linking of C9 in the membrane attack complex of complement.

The membrane attack complex of complement (the dimeric C5b-9 complex) is a multimolecular assemblage of five proteins (C5b, C6, C7, C8, and C9) which are held together by noncovalent forces. We found that C9 molecules in the complex can be covalently crosslinked (disulfide-linked) by glutathione. In this experiment, the tetramolecular C5b-8 complex bound to phospholipid vesicles was first prepared from purified C5b-6, incubated (37 degrees C, 20 min) with an excess of 131I-C9 in the presence of 1 mM glutathione; an average of 5.3 molecules of C9 per C5b-8 were bound and the C5b-9 complex formed was predominantly a dimeric C5b-9 complex. About one-third of C9 in this C5b-9 complex was found to be in a disulfide-linked dimeric form. The C5b-9 complex, having only an average of 0.9 molecules of C9 per C5b-8, was also prepared in the presence of glutathione; this C5b-9 preparation contained both monomeric and dimeric C5b-9 complexes, and about one-fifth of the C9 subunits was in a cross-linked dimeric form. By contrast, C9 in the absence of the C5b-8 complex was not significantly cross-linked by glutathione. These results indicate that C9 has a unique property to associate with itself upon reaction with the C5b-8 complex.

Centrifugation, Density Gradient↗

C7 radiculopathy: importance of scapular winging in clinical diagnosis.

Lesions of the seventh cervical (C7) root are common and cause a readily recognised neurological syndrome. Recognition of this pattern is essential in differentiating C7 root lesions from lesions of the brachial plexus or peripheral nerves. Serratus anterior weakness is not generally included in this syndrome. We report six verified cases of C7 radiculopathy in which weakness of the serratus anterior was present in addition to the usual findings. This was manifest as winging of the scapula, when pushing forward against a wall, either with the hands at shoulder level or, in some cases, only when the hands were lowered to waist level. This latter method of testing places the muscle at a mechanical disadvantage and reveals partial paralysis. Analysis of this clinical finding complements anatomical evidence suggesting that the powerful lower digitations of the muscle may be primarily supplied by the C7 root in some cases. Scapular winging, apparent either in the usual position or the modified position described here, should be recognised as consistent with a diagnosis of C7 radiculopathy. When present, this sign serves to differentiate C7 radiculopathy from lesions of the brachial plexus or radial nerve.

Adult↗

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↗