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Alternative pathway of complement activation by stimulated T lymphocytes. II. Elevation of cytotoxic potential against complement receptor-carrying cell lines.

Exposure of lectin-stimulated (concanavalin A, phytohemagglutinin and pokeweed mitogen) blood lymphocytes to human serum or to purified C3 increased their cytotoxic capacity towards complement receptor positive targets such as Raji and Daudi cells. The lysis of complement receptor-negative lymphoblastoid cell lines was not influenced. The lytic capacity of lymphocytes exposed to 12-O-tetradecanoylphorbol 13-acetate was not elevated by human serum. Lectin-stimulated lymphocytes were previously shown to activate and bind C3. The results using lymphocytes activated in different ways and targets with or without complement receptor expression suggest that the C3b deposited on lymphocytes binds to the complement receptor on the targets. This contact elevates the avidity between the two cells as indicated also by the increased frequency of the lymphocyte-target conjugates. On the basis of immune adherence the C3 fragment bound on the lymphocytes was identified as C3b. The increase of the conjugate formation and cytotoxicity was abrogated when the target cells, Raji, were pre-exposed to purified C3d which occupy the CR2 receptor. The majority of lymphocytes responsible for the cytotoxicity were CD8+.

Antigens, Differentiation, T-Lymphocyte

Role of platelet factors and serum complement in growth of fibroblasts with high-affinity Clq complement receptors.

Cultures of human diploid fibroblasts are heterogeneous in that a subpopulation interacts via high-affinity receptors with the globular head regions of the Clq complement protein. Growth and synthetic properties of these cells are characteristic of cells residing in healing wounds and inflammatory lesions. At these sites, fibroblasts are exposed to regulatory molecules such as complement components and factors released from blood platelets. We assessed the effects of native complement proteins and platelet-derived factors on proportions and phenotypic stability of high-affinity and low-affinity receptor cells generated from explants of adult and embryonic connective tissue, using radioligand binding assays and immunofluorescence analysis by flow cytometry. Fibroblasts expressing high-affinity Clq receptors could be generated from explants only when factors from platelets were present in the medium; native complement proteins were not essential. High-affinity receptor cells could be generated only from tissue; they could not be generated by incubating cultures of the low-affinity receptor phenotype in medium containing platelet-derived factors. High-affinity receptor cells, once established from explants in the presence of platelet-derived factors, persisted through many replications in the absence of platelets. We obtained the same fibroblast phenotypes from embryonic skin as from adult gingiva, but the proportion of high-affinity receptor cells from skin was much greater. We conclude that factors derived from platelets are essential for generating cultures containing fibroblasts expressing high-affinity Clq receptors, but not for their maintenance. High-affinity receptor cells may comprise a rapidly dividing subpopulation giving rise only to like progeny or to other, more differentiated cells.

Adult

Studies on the mechanism of bacterial resistance to complement-mediated killing. I. Terminal complement components are deposited and released from Salmonella minnesota S218 without causing bacterial death.

The mechanism of resistance of gram-negative bacteria to killing by complement was investigated. Complement consumption and uptake of purified, radiolabeled complement components on bacteria was studied using a serum- sensitive and a serum-resistant strain of Salmonella minnesota. Twice as many molecules of (125)I C3 were bound per colony-forming unit (CFU) of the smooth, serum-resistant S. minnesota S218 as were bound per CFU of the rough, serum-sensitive S. minnesota Re595 in 10 percent pooled normal human serum (PNHS), although 75-80 percent of C3 was consumed by both organisms. Hemolytic titrations documented total consumption of C9 by 5 min and more than 95 percent consumption of C5 and C7 by 15 min in the reaction with S218 with 10 percent PNHS. In contrast, negligible C5 depletion, 10 percent C7 consumption, and only a 26 percent decrease in C9 titer occurred with the serum-sensitive Re595. Binding of (125)I C5, (125)I C7, and (125)I C9 to S218 and Re595 was measured in 10 percent PNHS. A total of 6,600 molecules C5/CFU, 5,200 molecules C7/CFU, and 3,100 molecules C9/CFU bound to S218 after 5-10 min of incubation at 37 degrees C, but 50-70 percent of the C5, C7, and C9 bound to S218 was released from the organism during incubation at 37 degrees C for 60 min. Binding of 2,000 molecules C5/CFU, 1,900 molecules C7/CFU, and 9,000 molecules C9/CFU to Re595 was achieved by 20 min and was stable. The ratio of bound C9 molecules to bound C7 molecules, measured using (131)I C9 and (125)I C7, was constant for both organisms after 15 min and was 4.3:1 on Re595 and 0.65:1 on S218 in 10 percent PNHS. With addition of increasing amounts of purified, unlabeled (29 to 10 percent PNHS, there was no change in the C9:C7 ratio on Re595. However, with S218 there was a linear increase of the C9:C7 ratio, which approached the ratio on Re595. There was no (14)C release from S218 incubated in PNHS, nor was there evidence by electron microscopy of outer membrane damage to S218. Therefore, S. minnesota S218 is resistant to killing by PNHS, despite the fact that the organism consumes terminal complement components efficiently and that terminal components are deposited on the surface in significant amounts. The C5b-9 complex is released from the surface of S218 without causing lethal outer membrane damage.

Adsorption

Antibody-independent complement activation by myelin via the classical complement pathway.

Murine or rabbit whole brain homogenates were shown to activate human complement via the classical pathway by an antibody-independent reaction. This activity required Ca++ ions. Anticomplementary activity in fractionated murine brain was found to reside in the myelin fraction and in purified myelin. It was absent, however, both from highly purified myelin basic protein (MBP) and from the MBP-free residue. Because purified MBP is a monomer and this protein exists in brain tissue largely as a dimer, the ability of the cross-linked form of MBP to activate complement was investigated. MBP, dimerized with difluorodinitrobenzene, was highly anticomplementary. The murine brain, inactive when taken from the newborn mouse, was shown to first acquire the capacity to activate complement at 7 d after birth. This finding is consistent with the report that the synthesis of myelin protein has been shown to be initiated in murine brain 8 d after birth. Complement activation by MBP could play an important role in the pathological changes observed in neurological disorders.

Animals

A newly described control mechanism of complement activation in patients with mixed cryoglobulinemia (cryoglobulins and complement).

Levels in serum of components of complement were studied in a group of 10 patients with mixed cryoglobulinemia. The profiles found in most patients showed decreased levels of the early complement components C1, C4, and C2, with normal levels of C3. Experiments performed to define the mechanism(s) responsible for this unusual complement profile showed that activation of the early complement components in serum was due to the activation of the classical pathway by mixed cryoglobulins. They also showed that the characteristic lack of effect on C3 was due to the action of a previously unrecognized regulatory mechanism upon C3 convertase of the classical pathway mediated by 2 normal serum proteins, namely, the C4 binding protein (C4-bp) and the C3b inactivator (C3bINA).

Complement Activating Enzymes

Suppression of complement-mediated vascular injury at Arthus reaction sites by complement inhibitors.

Certain complement inhibitors, namely chlorpromazine, suramin, 2-hydroxystilbamidine and chlorophenothiazine sulphonate were tested for their ability to suppress complement deposition and vascular injury at the site of an Arthus reaction. Deposition of complement was suppressed in the order 2-hydroxystilbamidine greater than suramin greater than chlorpromazine. All the above mentioned four compounds strongly protected vascular injury as observed by electron microscopic studies. At Arthus reaction sites prepared without drug treatment venules ranged from normal to severely altered and damaged. Discontinuities in endothelial linings varied from small to longer stretches. In the latter situation remaining endothelial cells were degenerated and endothelial remnants did not have an intact basal lamina. After treatment with the above complement inhibitors, at arthus reaction sites some venules appeared normal, whereas others were altered but in all cases the endothelium and its basal lamina remained intact.

Animals

Effect of time, temperature and anticoagulants on in vitro complement activation: consequences for collection and preservation of samples to be examined for complement activation.

The effects of time, temperature, ethylene-diamine-tetra-acetic acid (EDTA), citrate and heparin on in vitro complement activation were examined in enzyme immuno assays (EIA) for detection of C3 activation products and the terminal complement complex (TCC). In vitro complement activation occurred during coagulation since baseline concentrations of activation products were considerably higher in serum than in plasma. EDTA was more efficient than citrate and heparin in inhibiting in vitro activation. Minimal activation was observed in all preparations when samples were kept at 4 degrees C for up to ten days, whereas a very rapid increase in activation products occurred even in EDTA plasma when the temperature was elevated. Based on the data obtained, guidelines for the collection and preservation of samples to be examined for complement activation are given.

Blood Preservation

Pleural fluid complement, complement conversion, and immune complexes in immunologic and nonimmunologic diseases.

Forty-four pleural fluids and 41 blood specimens from patients with various diseases were examined for concentration of whole complement, C4, C3, conversion products of C3 and C3PA, and immune complexes. C3 conversion was found in all eight pleural fluids from patients with rheumatoid arthritis, five of seven with lupus erythematosus, two of six with congestive heart failure, and nine of 23 with malignant diseases. Conversion of C3PA correlated closely with C3 conversion and both were significantly inversely related to whole complement, C4, and C3. Concentration of immune complexes was highest in patients with rheumatoid arthritis. Pleural fluid immune complex concentrations correlated positively with conversion of C3 and C3PA. These findings suggest that the reduced levels of pleural fluid complement in rheumatoid arthritis and lupus erythematosus may be secondary to complement conversion by immune complexes.

Antigen-Antibody Complex

The presence of complement in human cervical mucus and its possible relevance to infertility in women with complement-dependent sperm-immobilizing antibodies.

Full-complement component lytic activity was measured in human midcycle cervical mucus, using a sensitive 51Cr release hemolytic assay. The level measured was 11.5% of the activity of complement in an equal volume of undiluted human serum. The relevance of this level of complement to complement-dependent sperm-immobilizing antibody activity was studied. After 1 hour's incubation with mucus levels of complement, immobilization of about 50% of spermatozoa occurred and after 3 hours' incubation, immobilization of about 70% of spermatozoa occurred.

Antibodies

The role of complement in viral infections. II. the clearance of Sindbis virus from the bloodstream and central nervous system of mice depleted of complement.

The following studies were performed to investigate the mechanism(s) by which the complement system limits Sindbis virus infection in the central nervous system of mice. After the intracerebral inoculation of Sindbis virus, no differences in mortality or viral growth in the central nervous system were observed between normal mice and mice depleted of complement by treatment with cobra venom factor. In addition, animals that had been inoculated subcutaneously with Sindbis virus and depleted of complement after the viremic phase had ended did not show any differences in mortality or viral growth in the central nervous system. In contrast, it was found that after the intracardiac inoculation of virus, complement-depleted mice demonstrated a defect in the clearance of infectious virus from the blood. These studies suggest that the increased growth of virus in the brains of complement-depleted mice after the subcutaneous inoculation of Sindbis virus is due to a defect in clearance of infectious virus from the bloodstream rather than to a primary defect within the central nervous system.

Animals

Complementation of Xanthobacter Py2 mutants defective in epoxyalkane degradation, and expression and nucleotide sequence of the complementing DNA fragment.

Three Xanthobacter Py2 mutants (M3, M8 and M10) lacking epoxyalkane-degrading activity were isolated and characterized. All mutants were able to grow on acetone, the degradation product of 1,2-epoxypropane conversions. Furthermore, they contained the unidentified 'low molecular mass fraction' (LMF) necessary for epoxyalkane-degrading activity. Three cosmids from a gene bank complemented the mutation in M10 and M8 but not in mutant M3. Epoxyalkane-degrading activity in crude extracts of 1,2-epoxypropane-grown complemented mutants was similar to the wild-type activity. Surprisingly, M10 transformed with complementing cosmid pEP9 showed a constitutively expressed epoxyalkane-degrading activity, which was not observed in the wild-type strain. The cosmid pEP9 was conjugated into Xanthobacter autotrophicus GJ10, which is not able to degrade 1,2-epoxypropane. In crude extracts of X. autotrophicus GJ10(pEP9), epoxyalkane-degrading activity was demonstrated, but only after the addition of the LMF from Xanthobacter Py2. Hybridization experiments demonstrated an overlap on complementing cosmids pEP1, pEP3 and pEP9. Subcloning revealed a 4.8 kb EcoRI-HindIII fragment to be necessary for complementing the mutant M10. In the sequence of this fragment four different ORFs were found.

Alkanes

A complement-fixation test for enzootic pneumonia of pigs using a complement dilution method.

Complement-fixing antibody to Mycoplasma hyopneumoniae in the serums of pigs experimentally infected with enzootic pneumonia was demonstrated by comparing the haemolytic titre of guinea-pig complement titrated in the presence of heated test serum, M. hyopneumoniae antigen and unheated normal pig serum with the titre obtained when the antigen was omitted. The haemolytic titres against sensitised sheep erythrocytes were determined after a fixation period of 16 to 18 hours at 5 degrees C. When serums, collected at intervals of 3 to 7 days, from 43 pigs exposed to pigs experimentally infected with enzootic pneumonia were tested, 4.6 or more complement units were first fixed 14 to 44 (mean 23.4) days after contact began. Serums collected subsequently fixed from 4.6 to more than 31 complement units. This positive reaction usually persisted until the pigs were killed 4 to 35 weeks after contact began. Thirty-three had gross enzootic pneumonia lesions and 9 had lung lesions detected microscopically. Serum antibody was not detected in 73 weaned pigs aged 7 weeks in a pneumonia-free herd but serums from 9 of 15 unweaned piglets aged 9 to 14 days in the same herd, fixed between 3 and 7 complement units.

Animals

Markers of complement-dependent and complement-independent glomerular visceral epithelial cell injury in vivo. Expression of antiadhesive proteins and cytoskeletal changes.

BACKGROUND: Visceral glomerular epithelial cells (GEC) are an important component of the glomerular filtration barrier to proteins. While ultrastructural GEC changes have frequently been observed in proteinuric states, no suitable light microscopic markers of GEC injury have yet been identified. EXPERIMENTAL DESIGN: We have analyzed in vivo the GEC expression of proteins known to be involved in cell shape changes. SPARC (osteonectin, BM-40) and tenascin (cytotactin, J1, hexabrachion) belong to a group of anti-adhesive glycoproteins, that modulate cell-matrix interactions. We also studied cytoskeletal intermediate filament proteins, including desmin and vimentin. The GEC expression of SPARC, tenascin, desmin, and vimentin was analyzed in various types of GEC injury in the rat, including complement-mediated injury (passive Heymann nephritis, autologous immune complex nephritis, conA anti-conA nephritis), complement-independent injury (nephrotoxic nephritis), toxic injury (aminonucleoside nephrosis) and hypertensive injury (5/6 nephrectomy, angiotensin-II infusion). A complement-mediated model of mesangial cell injury (anti-Thy 1.1 mesangial proliferative nephritis) served as a control. RESULTS: SPARC mRNA and protein were constitutively expressed in normal rat glomeruli. Immunostaining and immunoelectron microscopy primarily localized SPARC to the cytoplasm of GEC. Markedly increased glomerular SPARC synthesis and GEC immunostaining was observed in all instances of complement-mediated GEC injury but in none of the other conditions. In contrast, glomerular immunostaining for tenascin, that also stained in a GEC pattern, either remained unchanged or increased to a minor degree (complement-mediated models). GEC immunostaining for desmin in normal rats was low and variable, and increased significantly in any form of GEC injury but not in anti-Thy 1.1 nephritis. No concomitant increase of GEC immunostaining for vimentin was detectable, which could have been due to the constitutively high expression of vimentin in GEC. CONCLUSIONS: SPARC and desmin, but not tenascin or vimentin, are suitable light microscopic markers of GEC injury. The combined staining for these proteins may be useful in differentiating the mechanisms of GEC injury.

Animals

Interactions of the platelets in paroxysmal nocturnal hemoglobinuria with complement. Relationship to defects in the regulation of complement and to platelet survival in vivo.

The blood cells of patients with paroxysmal nocturnal hemoglobinuria (PNH) have abnormal interactions with complement. The activity of the alternative pathway C3 convertase on the platelets of 9 out of 19 patients with PNH was elevated. 10 patients had C3 convertase activity within the normal range even though 80-95% of their platelets lacked the complement regulatory protein decay accelerating factor (DAF) that is absent from the affected blood cells in PNH. PNH and normal platelets released factor H when C3 was bound to their surfaces. This may account for the apparent regulation of C3 convertase activity on platelets that lack DAF. The abnormal uptake of the membrane attack complex of complement by PNH III erythrocytes was not seen in PNH platelets. 111Indium-labeled platelet survival times were normal in five of eight patients, which suggests that the lack of the membrane attack complex defect results in normal platelet survival in PNH.

Blood Coagulation Factors

Anaphylatoxins and terminal complement complexes in pancreatitis. Evidence of complement activation in plasma and ascites fluid of patients with acute pancreatitis.

Complement activation has been proposed as a mediator of remote complications of acute pancreatitis. Thirty-seven patients with acute pancreatitis were studied with respect to the formation of anaphylatoxins (C3a/C3adesArg, C5a/C5adesArg) and terminal complement complexes (TCC) in plasma and ascites fluid. The patients were classified according to Ranson's criteria. Eighteen patients with moderate or severe pancreatitis had higher maximum plasma C3a/C3adesArg and TCC concentrations than 19 patients with mild pancreatitis. During convalescence, the concentrations had returned to normal. High concentrations of C5a/C5adesArg and TCC were also found in ascites and pancreatic cyst fluid, drawn from patients with moderate or severe pancreatitis. As the terminal complement pathway activation is involved in reactive lysis and anaphylatoxins increase vascular permeability, anemia and impaired respiration in these patients may be influenced by complement activation.

Acute Disease

C5b-9 dimer: isolation from complement lysed cells and ultrastructural identification with complement-dependent membrane lesions.

The membrane attack complex (MAC) of complement was extracted from the membranes of cells lysed by human complement and its properties were compared with those of the fluid phase complex SC5b-9. Upon sodium dodecyl sulfate polyacrylamide gel electrophoresis and immunochemical analysis, the two isolated complexes had identical subunit compositions, except that the MAC lacked the S-protein. The sedimentation coefficient and molecular weight of the extracted and isolated MAC were, respectively, 33.5 S and 1.7 x 10(6) daltons, compared to 23 S and 1.0 x 10(6) dalton for SC5b-9. Because the molecular weight of the MAC is approximately two times greater than that of C5b-0 (800,000 daltons), the MAC is considered the dimer of C5b-9. Under specified conditions, the 33.5 S dimer could be converted to the 23 S monomer without dissociation of subunits. The MAC had the electron microscopic appearance and dimensions that are characteristic for the complement produced ultrastructural membrane lesions. SC5b-9 had a different ultrastructure that is dissimilar to the morphology of the lesions. The isolated MAC could be reincorporated into phospholipid bilayers and assumed on the surface of the resultant lipid vesicles the orientation and appearance of typical complement lesions.

Animals

Formation of the terminal complement complex on agarose beads: further evidence that vitronectin (complement S-protein) inhibits C9 polymerization.

Vitronectin occupies the metastable binding site of C5b-7, which is unable to insert membranes as part of the complement lytic attack. Some evidence has been presented that vitronectin inhibits also membrane-associated pore formation by inhibiting C9 polymerization in the terminal complement complex (TCC). The authors wished to add to this background by studying the effect of vitronectin on formation of TCC on a carbohydrate surface like agarose beads, an alternative complement pathway activator. Bound TCC was detected by monoclonal and polyclonal antibodies to C9-neoepitopes. Soluble SC5b-7 and TCC (SC5b-9) did not bind to the agarose beads. Using serum or isolated complement factors for the alternative and terminal pathways, the authors found that vitronectin reduced the density of C9-neoepitopes on the beads. As there was no convincing evidence for association of vitronectin with the factors C5b-8 of the agarose-bound TCC, it was concluded that vitronectin bound directly to C9 in TCC and inhibited C9 polymerization within the complex. The authors have shown that TCC can bind to a carbohydrate surface like agarose (an alternating polymer of galactose moieties) in the absence of lipid. These results suggest that vitronectin can limit the lytic effect of membrane-bound TCC by inhibiting C9 polymerization.

Animals

Metabolism of the fifth component of complement, and its relation to metabolism of the third component, in patients with complement activation.

The metabolism of the fifth component of complement (C5), and its relatonship to metabolism of the third component of complement (C3), has been studied in normal subjects and patients by simultaneous administration of radioiodine labeled C5 and C3. In seven normal subjects the fractional catabolic rate of C5 ranged from 1.5 to 2.1% of the plasma pool/h and extravascular/intravascular distribution ratio from 0.22 to 0.78, these values being similar to those obtained for C3, and synthesis rate from 71 to 134 mug/kg per h, In patients with complement activation the increase in fractional catabolic rate of C5 was nearly always less than that of C3. The data also showed that there was increased extravascular distribution of C3 and C5 in most patients and considerable extravascular catabolism of both proteins in some. However, there were differences in metabolic parameters between patients with different types of complement activation. In patients with systemic lupus erythematosus, fractional catabolism and extravascular distribution of C3 and C5 were both increased, and there was marked extravascular catabolism of both proteins. There was increased fractional catabolism and extravascular distribution of C3 in patients with mesangiocapillary nephritis and (or) partial lipodystrophy, and fractional catabolism of C5 was also increased in three of six studies although distribution of C5 was always within the normal range; however, in two patients with nephritic factor in their serum fractional catabolism of C5 was normal despite markedly increased C3 turnover, suggesting that in patients with alternative pathway activation by nephritic factor little or no C5 convertase is generated.

Adolescent