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Early complement components in Alzheimer's disease brains.

Activation products of the early complement components C1, C4 and C3 can be found colocalized with diffuse and fibrillar beta-amyloid (beta/A4) deposits in Alzheimer's disease (AD) brains. Immunohistochemically, C1-esterase inhibitor (C1-Inh) and the C1 subcomponents C1s and C1r can not, or only occasionally, be detected in plaques or in astrocytes. The present finding that C1q, C1s and C1-Inh mRNA are present in both AD and control brains suggests that the variable immunohistochemical staining results for C1r, C1s and C1-Inh are due to a rapid consumption, and that the inability to detect C1s, C1r or C1-Inh is probably due to the dissociation of C1s-C1-Inh and C1r-C1-Inh complexes from the activator-bound C1q into the fluid phase. Employing monoclonal antibodies specific for different forms of C1-Inh, no complexed C1-Inh could be found, whereas inactivated C1-Inh seems to be present in astrocytes surrounding beta/A4 plaques in AD brains. These findings, together with our finding (using reverse transcriptase-polymerase chain reaction) that C1-Inh is locally produced in the brain, suggest that in the brain complement activation at the C1 level is regulated by C1-Inh. Immunohistochemically, no evidence for the presence of the late complement components C5, C7 and C9, or of the membrane attack complex (MAC), was found in beta/A4 plaques. In contrast to the mRNA encoding the early components, that of the late complement components appears to be hardly detectable (C7) or absent (C9). Thus, without blood-brain-barrier impairment, the late complement components are probably present at too low a concentration to allow the formation of the MAC, which is generally believed to be responsible for at least some of the neurodegenerative effects observed in AD. Therefore, the present findings support the idea that in AD, complement does not function as an inflammatory mediator through MAC formation, but through the action of early component activation products.

Aged↗

Depletion of complement by light and porphyrin does not depend on sequential activation.

The mechanism of complement depletion from human serum fortified with porphyrin and irradiated with light has been reinvestigated, with the conclusion that it did not depend on the normal sequence of complement activation. Thus, disappearance of the activities of C3, C4, and C5 was not dependent on divalent cations. Purified C3-C7 were labile to porphyrin/light treatment in the absence of other components. The depletion of C4 was not prevented by potent inhibitors of C1 and, unlike the depletion of C4 seen in response to aggregated gamma globulin, was insensitive to change in temperature. Electrophoresis showed an alteration of C3 unlike that caused by cobra venom factor and that light/porphyrin treatment nonspecifically altered many serum proteins.

Complement Activation↗

Acid protease activity of a major surface membrane glycoprotein (gp63) from Leishmania mexicana promastigotes.

A unique protease with activity optimal at pH 4.0 and trailing toward the alkaline pH spectrum was detected with intact glutaraldehyde-fixed promastigotes of Leishmania mexicana amazonensis, indicating surface localisation of the enzyme. That this surface protease may be a virulence factor is suggested by its apparent roles in multiple steps during leishmanial infections of macrophages. Indeed, its specific activity was 2-2.5 fold higher on virulent cells than on avirulent cells. Several lines of evidence indicate that this acid protease activity is expressed by the major surface glycoprotein (gp63) of L. m. amazonensis. Monoclonal antibody affinity purified gp63 degraded serum albumin, hemoglobin, complement C3, immunoglobulin G and purified rat liver lysosomal proteins in their native forms. The specific activity is about 20-fold higher at pH 4.0 than at pH 7.5 and is about four-fold higher at the body temperature of the mammalian host (37 degrees C) than at that of the insect host (27 degrees C). The protease activity is sodium dodecyl sulphate-sensitive. Among various protease inhibitors tested, only heavy metal ions (1 mM), 1,10-orthophenanthroline (1 mM) and bestatin (100 ng ml-1) significantly inhibited gp63 acid protease activity by up to 80%. N-linked oligosaccharides of gp63 appear to be important for the stability of this molecule, possibly by preventing its autodegradation. Purified gp63 effected limited proteolysis of human complement C3 molecules at the physiological serum pH of 7.5 in a manner, which supports the idea of its participation in complement-receptor mediated endocytosis of promastigotes by macrophages.

Animals↗

Chronic angioedema. Three relevant cases.

Three cases of clinical angioedema are reported in which the etiopathogenetic involvement of qualitative and quantitative complement disorders was demonstrated. The first patient had a functional deficit in C1 inhibitor, the second had a decrease in CH50, and the third, a reduction in the C1q, C3, and C4 fractions. The cases are interesting because of occasional difficulties in the causal diagnosis, the severity of the symptoms, which can include laryngeal edema, and, finally, the favorable outcome achieved with correct medication, which did not include antihistamines or steroids. The clinical picture of hereditary angioedema is characterized by the familial occurrence of the process, although this apparently was absent in these cases. Two patients experienced laryngeal edema and none had abdominal manifestations. The treatment of choice for angioedema of these characteristics is antifibrinolytic agents, which achieve good results in 70% of the patients. Epsilon-aminocaproic acid and tranexamic acid inhibit the formation of plasmin and fragments of the Hageman factor, thus inhibiting kallikrein and bradykinin production. The androgens danazol and stanazolol have been used since the 1970s, and stanazolol proved to be very effective in two of our patients.

Adult↗

Binding of a model regulator of complement activation (RCA) to a biomaterial surface: surface-bound factor H inhibits complement activation.

The complement system is an important inflammatory mediator during procedures such as cardiopulmonary bypass and hemodialysis when blood is exposed to large areas of biomaterial surface. This contact between blood and the biomaterials of implants and extracorporeal circuits leads to an inflammatory response mediated by the complement system. The aim of this study was to assess the ability of a complement regulator (factor H) immobilised on a biomaterial surface to inhibit complement cascade mediated inflammatory responses. The cross-linker N-succinimidyl 3-(2-pyridyldithio) propionate was used to immobilise factor H on a model biomaterial surface without affecting the biological activity of the inhibitor. Binding of factor H was then characterised using quartz crystal microbalance-dissipation (QCM-D) and enzyme immunoassays for products of complement activation: bound C3 fragments and soluble C3a, sC5b-9, and C1s-C1INA. Immobilised factor H reduced the amount C3 fragments deposited on the biomaterial surface after incubation with serum, plasma. or whole blood. In addition, lower levels of soluble C3a and sC5b-9 were generated after incubation with whole blood. In summary, we have demonstrated that complement activation on a highly activating model surface can be inhibited by immobilised factor H and have defined prerequisites for the preparation of future biomaterial surfaces with immobilised regulators of complement activation.

Biocompatible Materials↗

Acquired C1-inhibitor deficiency in essential cryoglobulinemia and macrocryoglobulinemia.

In 5 patients with mixed cryoglobulinemia, 3 with Waldenström's disease and 2 with essential cryoglobulinemia, a C1-inhibitor (C1-INH) deficiency was discovered. The complement profile was characteristic of the acquired type: the total hemolytic activity and the early components were reduced, C3 was diminished in 1 patient only, C5 and C9 were normal or elevated. 1 atient with Waldenström's disease and 1 with essential cryoglobulinemia experienced episodes of angioedema. Circulating immune complexes were found in all patients' sera by the 125I-radiolabelled C1q binding activity (C1q BA) test. The values of the C1q binding activity were correlated with the depletion of the early complement components and that of C1-inh. 4 patients showed circulating 7S IgM. Our data support the hypothesis of a complement activation by the cryoprecipitating immune complexes; the C1-INH depletion is secondary to its consumption following C1 activation.

Complement C1 Inactivator Proteins↗

Complement activation during bypass in acquired C1 esterase inhibitor deficiency.

Serial complement estimations during cardiopulmonary bypass are reported in a patient with acquired C1 esterase inhibitor deficiency. Although the extent of classic and alternative pathway activation appeared appropriate, exaggerated common pathway activation with massive increase in the C3d:C3 ratio occurred. A fatal hemostatic disorder, pulmonary edema, and circulatory collapse ensued despite prophylaxis and therapy.

Aged↗

The role of complement in cryoglobulin-induced immune complex glomerulonephritis.

Many forms of glomerulonephritis are triggered by Ab localization in the glomerulus, but the mechanisms by which this induces glomerular inflammation are not fully understood. In this study we investigated the role of complement in a mouse model of cryoglobulin-induced immune complex glomerulonephritis. Several complement-deficient mice on a C57BL/6 and BALB/c genetic background were used and compared with strain-matched, wild-type controls. Cryoglobulinemia was induced by i.p. injection of 6-19 hybridoma cells producing an IgG3 cryoglobulin with rheumatoid factor activity against IgG2a of allotype a present in BALB/c, but not C57BL/6, mice. Thus, the cryoprecipitate in C57BL/6 mice consisted of the IgG3 cryoglobulin only (type I cryoglobulinemia) compared with IgG3-IgG2a complexes in BALB/c (type II cryoglobulinemia). The survival of mice was not affected by complement deficiency. Glomerular influx of neutrophils was significantly less in C3-, factor B-, and C5-deficient mice compared with wild-type and C1q-deficient mice. It did not correlate with C3 deposition, but did correlate with the amount of C6 deposited. Deficiency of CD59a, the membrane inhibitor of the membrane attack complex, did not induce an increase in neutrophil infiltration, suggesting that the generation of C5a accounts for the effects observed. There was no apparent difference between cryoglobulinemia types I and II regarding the role of complement. Our results suggest that in this model of cryoglobulin-induced glomerulonephritis the neutrophil influx was mediated by C5 activation with the alternative pathway playing a prominent role in its cleavage. Thus, blocking C5 is a potential therapeutic strategy for preventing renal injury in cryoglobulinemia.

Animals↗

Protease-inhibitor deficiencies in a patient with Weber-Christian panniculitis.

The diagnosis of Weber-Christian disease was made by clinical and histopathologic findings in a 25-year-old woman who had recurrent nodules on the legs and arms. The patient's history also disclosed multiple episodes of swelling trauma. Histopathologic examination of the lesions showed a prominent vasculitis. Studies of serum complement and kallikrein levels and of the fibrinolysis-clotting system showed a decrease in the levels of C3, C4, and total hemolytic complement activity and deficiencies (less than 20% of the normal values) of alpha 1-antitrypsin (alpha 1-AT) and antichymotrypsin activity. Chemical analyses of the patient's alpha 1-AT indicated a PiZZ genotype. Intermediate values of both inhibitor levels were detected in six family members. It is assumed that protease-inhibitor deficiencies predispose the development of panniculitis and vasculitis on trauma.

Adult↗

[Study of the complement system and the inhibitors of plasma proteolytic enzymes in the erythrocytes during blood preservation].

Changes in the activity of the complement system components C1--C5, and proteinase inhibitors: alpha 1-inhibitor, alpha 2-macroglobulin and antithrombin III were studied in red blood cell pack during storage at 4 degrees C, in comparison with erythroconcentrate. A decrease, detected in the level of C1, C3 and alpha 2-macroglobulin, was more pronounced in the erythroconcentrate than in the red blood cell pack. The data obtained have evidenced that the adequate amount of plasma plays an important role in the red blood cell preservation and prevention of accumulation of undesirable physiologically active substances in the transfusion solutions.

Antithrombin III↗

Exoenzyme Tat-C3 inhibits association of zymosan particles, phagocytosis, adhesion, and complement binding in macrophage cells.

Phagocytosis by macrophages is most important in the initial stages of an immune response. Although RhoA regulates cell adhesion, its roles in the integrin-related association of particles with macrophages and in phagocytosis are not clearly understood. We introduced C3 exoenzyme, a specific inhibitor of Rho, into J774A.1 macrophage cells fused with the 9 amino acid (49-57) transduction domain (RKKRRQRRR) of HIV-1 Tat. The presence of this Tat-C3 vector altered RhoA mobility on non-denaturing gels, indicating that Tat-C3 modified RhoA by ADP-ribosylation. Uptake of (FITC)-conjugated serum-opsonized zymosan particles and adhesion to fibrinogen-coated plates were reduced as was the association of serum-opsonized zymosan particles, and complement C3 and C3bi with the transfected cells. These results suggest that Rho regulates the activity of integrins that are involved in the association of particles with macrophages, phagocytosis, adhesion, and binding of complement C3 and C3bi.

ADP Ribose Transferases↗

Expression and characterization of the C345C/NTR domains of complement components C3 and C5.

Complement components C3, C4, and C5 are members of the thioester-containing alpha-macroglobulin protein superfamily. Within this superfamily, a unique feature of the complement proteins is a 150-residue-long C-terminal extension of their alpha-subunits that harbors three internal disulfide bonds. Previous reports have suggested that this is an independent structural module, homologous to modules found in other proteins, including netrins and tissue inhibitors of metalloproteinases. Because of its distribution, this putative module has been named both C345C and NTR. To assess the structures of these segments of the complement proteins, their relationships with other domains, and activities as independent structures, we expressed C345C from C3 and C5 in a bacterial strain that permits cytoplasmic disulfide bond formation. Affinity purification directly from cell lysates yielded recombinant C3- and C5-C345C with properties consistent with multiple intramolecular disulfide bonds and high beta-sheet contents. rC5-, but not rC3-C345C inhibited complement hemolytic activity, and surface plasmon resonance studies revealed that rC5-C345C binds to complement components C6 and C7 with dissociation constants of 10 and 3 nM, respectively. Our results provide strong evidence that this binding corresponds to the previously described reversible binding of C5 to C6 and C7, and taken together with earlier work, indicate that the C5-C345C module interacts directly with the factor I modules in C6 and C7. The high binding affinities suggest that complexes composed of C5 bound to C6 or C7 exist in plasma before activation and may facilitate assembly of the complement membrane attack complex.

Amino Acid Motifs↗

Macrophage complement and lectin-like receptors bind Leishmania in the absence of serum.

We have examined the relative roles of the macrophage (M phi) plasma membrane receptor for the cleaved third complement component (iC3b, CR3) and of the mannosyl/fucosyl receptor (MFR) in binding and ingestion of Leishmania donovani. In the absence of exogenous complement, the binding and ingestion of promastigotes, which are good activators of the alternative complement pathway, were inhibited by the anti-CR3 monoclonal antibody M1/70, by the Fab portion of an anti-C3 antibody, or by the nucleophile, sodium salicyl hydroxamate, an inhibitor of C3 fixation. This provides strong evidence that M phi-derived, cleaved C3 (iC3b) present on the promastigote surface mediates binding to CR3. Equivalent inhibition of promastigote binding and ingestion was also observed using the soluble inhibitors of MFR activity, mannan or ribonuclease B. No additive effect for blocking the two M phi receptors simultaneously was observed. For amastigotes, which are poor activators of the alternative pathway, a lesser but nevertheless equivalent effect was observed for the three soluble inhibitors of CR3-mediated binding vs. the two soluble inhibitors of MFR-mediated binding. Modulation experiments in which either CR3 or MFR had been rendered inaccessible demonstrated that both receptors must be present on the segment of M phi membrane to which the parasite binds. The combined function of these two distinct M phi receptors may provide a general mechanism for recognition and ingestion of other pathogenic protozoa known to activate the alternative pathway.

Animals↗

The role in vivo of C3 and the C3b receptor in babesial infection in the rat.

The critical role of complement (C3) and the C3b receptor in facilitating the in vivo development of parasitemia with Babesia rodhaini in rats is documented. Depletion of serum C3 to less than 5% of normal levels by treatment of rats with the C3 inactivator isolated from cobra venom markedly delays the onset of parasitemia. Treatment of rats with trypan blue, an inhibitor of the C3b receptor, delays the development of parasitemia. Conversely, treatment of rats with suramin, a drug that blocks the C3b inactivator, markedly accelerates the progression of parasitemia and, correspondingly, the mortality rate. These observations suggest that the in vivo production of C3b and its interaction with C3b receptors on red cells and/or on parasites is a critical feature in babesial injection of rats. In support of the concept that B. rodhaini organisms contain C3b receptors, we have shown in vitro that parasites will activate the alternate complement pathway, resulting in uptake of radiolabeled C3, and that this uptake is blocked in the presence of trypan blue. Before and during the development of parasitemia, red cells become Coombs-positive for C3, but not for IgG. Taken together, the data support the vital role of C3 activation products (presumably C3b) and the C3b receptor in the facilitation of babesial infection in the rat.

Animals↗

The immunosuppressive effects of the in vivo administration of endotoxin as influenced by macrophages.

It is well documented that endotoxin can have immunosuppressive effects on lymphocytes and induce the production and secretion of monokines which act on the lymphocytes. To delineate the interaction between macrophages and lymphocytes more clearly, 0.15 mg of lipopolysaccharide (LPS) (E. coli 0111:B4) was injected into Hartley guinea pigs intraperitoneally twice a day for 7 days (saline for control group). Seven days after the last injection, spleens were taken and lymphocyte proliferation was determined in the presence and absence of macrophages. When macrophages were present, there was a significant suppression of lymphocyte proliferation when PHA and PWM were used as mitogens. There was no suppression of proliferation when the macrophages were removed. Splenic macrophages were also cultured in the presence and absence of LPS and their supernatants analyzed for PGE2 and TXB2. There was no significant difference between the endotoxin and control groups for PGE2 or TXB2 production in the presence and absence of LPS. However, the endotoxin group had significant decreases in serum levels of C3 postinjection of endotoxin which could indicate C3 degradation by LPS. Taken together these results give further evidence that macrophage products in addition to PGE2 can inhibit lymphocyte proliferation. C3 degradation products could possibly stimulate macrophages to produce inhibitors of lymphocyte proliferation or induce suppressor cells.

Animals↗

Structure and biology of complement protein C3, a connecting link between innate and acquired immunity.

Complement protein C3 is a central molecule in the complement system whose activation is essential for all the important functions performed by this system. After four decades of research it is now well established that C3 functions like a double-edged sword: on the one hand it promotes phagocytosis, supports local inflammatory responses against pathogens, and instructs the adaptive immune response to select the appropriate antigens for a humoral response; on the other hand its unregulated activation leads to host cell damage. In addition, its interactions with the proteins of foreign pathogens may provide a mechanism by which these microorganisms evade complement attack. Therefore, a clear knowledge of the molecule and its interactions at the molecular level not only may allow the rational design of molecular adjuvants but may also lead to the development of complement inhibitors and new therapeutic agents against infectious diseases.

Amides↗

Phagocytosis by human monocytes of particles activating the alternative pathway of complement.

The phagocytosis of particles activating the alternative pathway of complement by human monocytes cultured under serum-free conditions was studied. In contrast to native zymosan particles, which were easily ingested, rabbit erythrocytes and agarose beads had to be coated with C3b or C3bi to be engulfed by the monocytes. The binding and ingestion by monocytes of particles coated with C3bi were greater than for the same particles coated with the equivalent amount of C3b. The binding and uptake of rabbit erythrocytes and agarose beads were proportional to the amount of C3b or C3bi on the particles. In contrast to the complement activator particles, C3b- and C3bi-coated sheep erythrocytes, which are non-activators, were not ingested by the monocytes, although attachment to the monocytes took place. The presence of methylamine or cobra venom factor, which are complement inhibitors, strongly reduced the ingestion of native zymosan by the monocytes, whereas the uptake of C3b- or C3bi-coated zymosan particles were only weakly affected. This suggests that the binding of native zymosan to monocytes is sensitive to interference from a cell-derived alternative pathway C3 convertase (C3bBb). Binding and uptake of activators by human monocytes via complement receptor(s) are discussed.

Animals↗