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Mechanism of activation of the classical pathway of complement by monoclonal IgE (DES). Restricted regulation of C4b by C4b-binding protein.

A human monoclonal IgE from patient DES, IgE (DES), has been shown to activate the classical pathway of complement. The mechanism of this activation has been investigated and can be summarized as follows: (a) IgE (DES) is able to bind and activate C1 in a dose-dependent fashion. This activation increases with the size of the aggregates used, but the affinity of C1 for IgE (DES) is weaker than for IgG. (b) A classical pathway C3 convertase can be assembled on IgE (DES) using purified C1, C4 and C2. The formation decay of this convertase is similar to that formed on IgG with an half-life of 9 min at 37 degrees C. (c) The extrinsic regulation of the C3 convertase by C4bp is restricted on IgE (DES) as compared to IgG. This restriction is shown on both the formation and the decay of the convertase. The mechanism of activation of the classical pathway of complement by IgE (DES) thus present some similarities with the assembly of the C3 convertase by the alternative pathway.

Antibodies, Monoclonal↗

Effects of polysaccharides from Silene vulgaris on phagocytes.

The effects of the polysaccharides isolated from the intact plant (pectic polysaccharides P1, P2 and P3) and from the callus (acidic arabinogalactan C1 and pectin C2) of Silene vulgaris on phagocytic activity were studied in relation to an uptaking capacity and a myeloperoxidase activity of the peripheral human neutrophils and monocytes and rat peritoneal macrophages in vitro. Both intact plant and callus polysaccharides were shown to increase uptaking capacity of peripheral phagocytes. The callus acidic arabinogalactan C1 was only found to stimulate lysosomal activity of the peripheral phagocytes. Some polysaccharides studied were established to effect on peritoneal resident macrophages. Pectins P1, P3 and C2 failed to enhance myeloperoxidase activity of the macrophages in calcium-free solution, whereas the effect of callus arabinogalactan C1 was established to be independent of extracellular calcium. Polysaccharides studied failed to influence neither complement receptor CR3- nor scavenger receptor SR-mediated adhesion of the macrophages. The data obtained demonstrate that the intact S. vulgaris and its callus may be used as sources of immunoactive polysaccharides and that pectins and weakly acidic arabinogalactan seemed to stimulate macrophages through different mechanisms. Complement receptor type 3 and scavenger receptor failed to mediate the cell activation induced by plant polysaccharides.

Adjuvants, Immunologic↗

Evidence for an anticomplementary factor associated with human bone marrow cells.

Complement (C)-mediated lysis of antibody-sensitized sheep erythrocytes was inhibited by the addition of human bone marrow cells. The anticomplementary activity could be attributed to a soluble factor that was released from the bone marrow cells. This factor inhibited at an early stage in the C-cascade and showed the characteristics of a factor that accelerates decay of C2. The release of such a factor by bone marrow cells would present an obstacle to the use of antibody and C to purge tumor cells from bone marrow that is to be used for autologous transplantation.

Animals↗

Paramyosin inhibits complement C1.

We report here the results of studies showing that inhibition of C is a property of several invertebrate paramyosins. Paramyosins from Taenia solium, Schistosoma mansoni, and the mussel Mytilus edulis bind polymeric collagen and can be isolated from crude extracts of tissues by collagen affinity. These paramyosins inhibit C1 function whether the C1 is isolated or present in C2-deficient serum. Because T. solium paramyosin was the best inhibitor, we concentrated further studies on this molecule. T. solium paramyosin binds purified C1q in solution with a dose/response similar to C1r2S2. Further studies of the C1-paramyosin interaction indicate that: 1) C4 is not activated, 2) C4b2a decay is not affected, and 3) there is no effect on the efficiency of C3-9, as provided in EDTA-chelated guinea pig serum, in lysing SRBC. Thus, paramyosin inhibition is directed at the initiation of the classical pathway. The results suggest that paramyosins of helminthic parasites may have a role as modulators of the host immune response through C inhibition at C1.

Animals↗

BF types and the mode of inheritance of insulin-dependent diabetes mellitus (IDDM).

Insulin-dependent diabetes mellitus (IDDM) has been found to be highly associated with a rare allele of the complement protein, properdin factor B (BF). Assuming that there is a susceptibility gene for IDDM tightly linked to the genetic locus for BF and the major histocompatibility complex (MHC), the distribution of BF types in more than 1100 North American IDDM patients strongly argues for the rejection of dominant, epistatic, and overdominant modes of inheritance. Other evidence suggesting complex modes of inheritance for IDDM is reviewed and it is concluded that our observations and published data are consistent with the idea of susceptibility to IDDM being inherited as a simple autosomal recessive trait. C4 and C2 types, also linked to BF and the MHC, were investigated too. C4 Fs0 was found to be increased in association with BF F1, while C4 f0S and C2 b were each found to occur twice as frequently as in a control population and will be of value in defining haplotypes associated with susceptibility to IDDM.

Alleles↗

The mannan-binding lectin-associated serine proteases (MASPs) and MAp19: four components of the lectin pathway activation complex encoded by two genes.

Mannan-binding lectin (MBL) and ficolins (L-ficolin and H-ficolin) initiate the lectin pathway of complement activation upon binding to microbial carbohydrates. The activation is mediated by associated serine proteases, termed MASPs, since they were discovered as MBL-associated serine proteases. The MASP family comprises three serine proteases, MASP-1, MASP-2 and MASP-3 and a non-enzymatic protein, MAp19. The MASPs show identical domain structure, shared also with C1r and C1s. MASP-1 and MASP-3 are alternative splice products of a single gene, MASP1/3, and have identical A chains, whereas they have individual B chains, encompassing the serine protease domain. MASP2 and MAp19 are alternative splice products of the MASP-2 gene, with MAp19 consisting of the first two domains of MASP-2 plus additional four amino acid residues. MASP-2 is the protease responsible for activating C4 and C2 to generate the C3 convertase, C4bC2b. The biological function of the remaining three proteins has not yet been resolved.

Animals↗

Influence of encapsulation on staphylococcal opsonization and phagocytosis by human polymorphonuclear leukocytes.

In previous studies, encapsulated Staphylococcus aureus strains have been shown to resist phagocytosis. In this investigation, the nature of the interference with phagocytosis by human polymorphonuclear leukocytes was examined by studying the opsonization of two pairs of unencapsulated (Smith compact and M variant) and encapsulated (Smith diffuse and M) S. aureus strains. The uptake of [3H]glycine-labeled bacteria by normal leukocytes was quantitatively measured after incubation of bacteria in pooled serum, C2-deficient serum, immunoglobulin-deficient serum, and serum from a rabbit immunized with S. aureus M. The presence of a capsule was found to interfere with opsonization by both the classical and alternative pathways of complement as well as by heat-stable opsonic factors in nonimmune human serum. This interference was significantly greater in the case of the S. aureus M strain than in the case of the Smith diffuse strain. The only effective opsonic source for S. aureus M was immune rabbit serum. It is proposed that encapsulation of S. aureus strains interferes with phagocytosis by preventing effective bacterial opsonization.

Antibodies, Bacterial↗

Complement: activation, consequences, and control.

The activation of complement provides the humoral (fluid-phase) effector mechanism most responsible for immune-mediated injury. The classical pathway is activated by an antigen-antibody reaction. The binding of C1q initiates the sequential activation of the eleven proteins. The classical pathway has a calcium-dependent step (C1q, C1r, C1s) and a magnesium-dependent reaction (the enzymatic action of C1s on C4 and C2). The alternative pathway appears to be spontaneously activated, but the perpetuation of that activation is dependent upon the availability of an activating (or protective) surface which interferes with the inactivation of C3b by control proteins. The alternative pathway has a magnesium-dependent step, the binding of B to C3b to form the C3 convertase. Once initiated, the alternative pathway activation results in the sequential activation of nine proteins, six of which are common to both pathways. The activation of complement results in a variety of biologic consequences which can result in injury to the host. The potential destructiveness of the effects of complement activation is modulated by a series of control proteins.

Carrier Proteins↗

Relationship of serum complement levels to events of the malarial paroxysm.

Malarial paroxysms due to Plasmodium vivax were studied for alterations in whole serum complement (C') and certain C' components. The objective was to relate C' values with events of the parasite cycle during schizogony and with the febrile pattern. Substantial decreases in C' were found in 9 of 18 paroxysms studied during relapse. In contrast, only one of 22 paroxysms occuring during the primary attack was associated with a striking depression in C', and this case exhibited certain characteristics of a relapse paroxysm. The mean change in C' levels during paroxysms in relapse (-23%) was significantly different from paroxysms of the primary attack (-2%). Depletion of C' was associated directly with degree of parasitemia and presence of complement-fixing (CF) antibody. Lowest levels of C' were found within a few hours after completion of schizont repture and peak fever. C4 levels reflected changes in whole serum C' and appeared to be a more sensitive indicator of C' alterations during malaria. While the alterations in C4 as well as C1 and C2 indicated that the classical C' pathway was involved, some preliminary results showed little or no depletion of late components, C3 and C6. Overall results are compatible with C' activation and depletion during or soon after schizont repture if parasite density is sufficiently high and if CF antibody is present.

Adult↗

Deviated lysis: lysis of unsensitized cells by complement. V. Generation of the activity of low pH or low ionic strength.

In serum exposed to acid pH (6.4), a serum activity was generated which lyzed unsensitized erythrocytes in the presence of EDTA. It was similar to the d.l. activity found following serum activation by inulin (2). In contrast to the d.l. generation by the classical or by the alternative pathway of C activation, the generation of d.l. by acid pH did not require C4 plus C2 or C3 plus factor B resp. It was, thus, not dependent on any hitherto known pathway of C activation. A similar activity appeared when NHS was centrifuged in a sucrose gradient at low ionic strength. Physicochemical alterations of the component proteins which influence their affinity for each other are seen as the basis for the activation of the attack phase of C.

Animals↗

Systemic lupus erythematosus in dogs: association to the major histocompatibility complex class I antigen DLA-A7.

The DLA-A,B antigens and the allotypes of the fourth complement component have been determined in German shepherd dogs suffering from systemic lupus erythematosus. We have typed 26 unrelated affected dogs, 11 animals of a three generation family, and 16 dogs of a colony with a high frequency of the disease. The results obtained from the 26 unrelated diseased dogs were compared to those determined in the 23 unaffected German shepherds. The antigen DLA-A7 was found to be predominant in the diseased group with a c2 = 11.02, Pc = 0.02, and a relative risk for the carriers of 11.93. The antigens DLA-A1 and DLA-B5 were negatively associated to the disease (c2 = 14.95, Pc = 0.001, and c2 = 17.16, P = 0.0008 respectively) and thus may be of protective nature. These data were further substantiated by the typing of the three generation family and the colony.

Animals↗

A model system for the study of the assembly and regulation of human complement C3 convertase (classical pathway).

The formation of classical C3 convertase of complement and its regulation by C4b-binding protein (C4bp) were studied using two different approaches: (a) the analysis was first carried out in fluid phase; a soluble stabilized C3 proconvertase could be assembled from C4b (or C4b-like C4) and iodine-treated C2 in the presence of Ni2+ ions. Upon activation of this complex by C1s, a C3 convertase C4b(C4b-like C4)-C2a was generated which was able to cleave purified C3. C4bp dissociated both C3 proconvertase and C3 convertase, but its effect was more important on C3 convertase. (b) A model system of phospholipid vesicles has been developed to study the assembly of the C3 convertase on a membrane. Among different phospholipid mixtures tested, P-glycerol/P-choline vesicles were found most effective for C4b binding. Optimal conditions were determined for C4b fixation on these vesicles; bound C4b participated in the formation of a functional membrane-associated C3 convertase. C4bp was found to bind to phospholipid vesicles with a higher affinity than C4b; it was able to dissociate the vesicle-associated C3 convertase.

Buffers↗

MICA is a target for complement-dependent cytotoxicity with mouse monoclonal antibodies and human alloantibodies.

The highly polymorphic major histocompatibility class I related chain A (MICA) gene encodes glycoproteins that have been shown to be expressed in epithelial cells, endothelial cells, keratinocytes, monocytes, and tumor cells. In previous experiments, we have studied MICA antigens using rabbit sera obtained by immunization with MICA peptides. We also found that several transplant recipients had specific antibodies against MICA in an ELISA assay with recombinant of MICA (r-MICA). In the present work we produced monoclonal antibodies by immunization of mice with recombinant MICA*008. Based on the different patterns of reactivity observed in ELISA, Western blot, and flow cytometry, mAbs 1.9C2, 2.4F5, 1.7AD, and 2.3D4 only reacted with denatured MICA and mAb 1.7A8 and 3.2H3 reacted also with native MICA as illustrated by flow cytometry with live cells. These monoclonal antibodies were postulated to bind to different sites of the MICA molecule. In order to investigate whether MICA expressed on the cell surface is able to mediate cell killing, antibody absorption, flow cytometry and complement-dependent cytotoxicity (CDC) were performed. We found that mouse monoclonal antibody 3.2H3 was able to kill 70% of HeLa cells. Absorption of a patient serum with pooled human platelets to remove antibodies against class I HLA resulted in a small shift of fluorescence and reduced killing from 100% to 70-75%. Absorption with the platelets and r-MICA produced a remarkable reduction in fluorescence staining and virtually reduced complement-dependent killing to the level of the negative controls. The results suggested that MICA alloantigens may be more immunogenic than could have been previously suspected.

Animals↗

Evidence for immune complexes involving anti-lymphocyte antibodies associated with hypocomplementaemia in chronic lymphocytic leukaemia (CLL).

Unmeasurable total haemolytic complement (C) was observed in serum of a patient with untreated chronic lymphocytic leukaemia and recurrent non-hereditary angioedema. Analysis of C components immunochemically demonstrated a marked reduction of C1q and C1s inhibitor, undetectable C1r, C1s and an elevated B. Haemolytic C1, C4 and C2 were less than 5 percent of normal, functional C1s inhibitor was absent. Cryoglobulin and C1q precipitins were present in the serum. Of special interest was the presence of high levels of cold-reactive antilymphocyte antibody, determined by both C-dependent cytotoxicity and indirect immunofluorescence. The antibody exhibited specificities for both autologous lymphocytes and lymphocytes from normal donors; cytotoxic activity for autologous leukaemia cells was removed by absorption with normal isologous tonsil lymphocytes. Specific enrichment of this antibody relative to the serum level was demonstrated in the cryoglobulin and its isolated 19S fractions. Free lymphocyte surface antigen was also demonstrated by gel diffusion using specific rabbit antilymphocyte antiserum. These data strongly suggest the presence of pathogenetically significant circulating complexes of lymphocyte surface antigen and specific antibody in certain patients with CLL.

Angioedema↗

Evaluation of a hemolytic assay of the alternative complement pathway in human serum.

Alternative pathway activity of human serum was titrated by use of unsensitized rabbit erythrocytes (RE). Under the conditions of the assay, the von Krogh equation could be used to relate the proportion of RE lysed to the level of alternative pathway activity. The use of a 50% hemolytic endpoint provided maximum sensitivity in the assay. The 50% hemolytic endpoint could be calculated from a single measurement in the region of 20% to 80% lysis or RE. Factor B was required for lysis of RE in the test, but neither C2 nor C8 was limiting under the conditions of the assay. Alternative pathway activities of three sera with abnormal IgG levels were in the normal range, but normal serum absorbed with RE at 0 C before testing had diminished lytic activity with the test. Lysis of RE in acute-phase sera of 16 patients who had bacteremic pneumococcal pneumonia was significantly below normal (P < 0.01). Results with Re lysis in these patients correlated well with levels of Factor B that were measured immunochemically and with consumption of whole complement by zymosan.

Animals↗

Biosynthesis of the third component of complement (C3) in vitro by monocytes from both normal and homozygous C3-deficient humans.

Human monocytes synthesized the third component of complement (C3) up to 5 wk in vitro. Evidence for net C3 synthesis was based on (a) incorporation of 14C-labeled amino acids into C3 protein, (b) indentity of the allotype of C3 produced in vitro with that of the doner's serum C3, even in the presence of carrier C3 protein of a different allotype; (c) correspondence of electrophoretic mobility, size, and subunit structure of C3 protein produced in vitro with serum C3; (d) inhibition of C3 production with cycloheximide. Monocytes from two unrelated C3-deficient patients were studied under conditions that supported C3 synthesis by normal monocytes. Serum from each of the patients contained less than 1% of the normal C3 concentration, buth their monocytes produced C3 at approximately equal to 25% of the normal rate when studied after 2 wk in vitro. The C3 produced in vitro by monocytes from one of the patients had the molecular weight of normal serum C3 and dissociated appropriately under reducing conditions. Monocytes from C3-deficient patients could not be distinguished from normals on the basis of morphology, rosetting with C3-coated erythrocytes, or rates of C2, and total protein synthesis.

Blood Proteins↗

Variations in the enzymatic properties of human complement subcomponent C1s by treatment with human plasma kallikrein.

We have investigated the effect of plasma kallikrein digestion upon hydrolytic activities of human C1s. Incubation of C1s (85 kDa) with plasma kallikrein led to progressive cleavages on the heavy chain to yield C1s-K1 (70 kDa) then C1s-K2 (53 kDa). Although these cleavages caused little change in the C2 hydrolytic and esterase activities of C1s, a marked loss in the C4 hydrolytic activity was observed. C1s-K1 and C1s-K2 were purified by DE-52 chromatography and it was found that the proteolysis of C1s into C1s-K1 was accompanied with a decrease in the C4 hydrolytic activity. Although the turnover numbers for the hydrolysis of C4 by C1s-K1 and C1s-K2 were almost the same as that of intact C1s, the Kms for C4 of C1s-K1 and C1s-K2 were found to be increased to 10 times that of intact C1s. This result suggests that the apparent decrease in the C4 hydrolytic activity upon plasma kallikrein digestion of C1s is not due to disruption in the active site but is due to decrease in the affinity between C4 and the C1s derivatives. In support of this assumption, C1s-K1 was found to be devoid of the ability to bind C4b-Sepharose. C1s is capable of forming a dimer through the C1s-binding domain in the N-terminal side of the heavy chain. Although C1s-K1 is still capable of forming a dimer, C1s-K2 fails to form a dimer, suggesting that the N-terminal C1s-binding site is released during cleavage of C1s-K1 into C1s-K2.(ABSTRACT TRUNCATED AT 250 WORDS)

Chromatography, Affinity↗

Activation of C1.

The first component of complement, C1, is a calcium-dependent complex of two loosely interacting subunits: C1q, responsible for the binding of activators to C1; C1r2-C1s2, which supports the autoactivation potential of C1, together with the proteolytic activity of activated C1- on its two substrates, C4 and C2. Isolated dimeric C1r2 is able to autoactivate through an intradimer cross-proteolysis; this capacity is lost when C1r2 is associated with two molecules of C1s inside the calcium-dependent C1r2-C1s2 subunit; this capacity is again observed in reconstituted C1. A model for reconstituted soluble C1 is proposed, based on electron microscopy, neutron diffraction, ultra-centrifugation, various biochemical findings, as well as functional properties of C1 or of its subcomponents. The flexible rod-like structure of C1r2-C1s2 is folded around two arms of C1q, with the catalytic domains of C1r and C1s inserted inside the cone defined by the C1q stalks. Activation of C1 which, in vivo, is controlled by C1 inhibitor, can be achieved by various activators, such as immune complexes; it appears to result from the suppression of a negative control and resides in a positive modulation of the intrinsic autocatalytic potential of C1r inside C1.

Amino Acid Sequence↗