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Receptors for IgG and complement in human spleen lymphoid cells. Preferential binding of particulate immune complexes through complement receptors.

Human lymphoid spleen cells attached to Petri dishes by poly-L-lysine bind 51Cr-labeled erythrocytes coated with IgG antibodies or complement but not uncoated erythrocytes or those coated with IgM antibodies. The number of erythrocytes bound through complement receptors is several times larger than that bound through IgG receptors. Increasing up to five times the number of IgG molecules on the red blood cells only leads to a slight increase of binding. However, the addition of complement to the IgG-coated erthrocytes increases 10 times the binding to spleen cells, even in the presence of an excess of normal IgG. These results can be explained by postulating that there is a larger number (or greater affinity) of spleen cell receptors for complement than that of spleen cell receptors for IgG.

Antigen-Antibody Complex

Antigenic modulation of lymphocytic surface immunoglobulin yielding resistance to complement-mediated lysis. I. Characterization with syngeneic and xenogeneic complements.

Following previous authors, the term antigenic modulation is used to describe the induction, by antibody, of resistance to lysis by antibody plus complement. A report is given of the rapid antigenic modulation in vitro of surface immunoglobulin (Ig) on guinea-pig L2C leukaemic lymphocytes: incubation of the cells for 2 min or longer at 37 degrees with anti-Ig diminished or removed completely the lysis occurring during subsequent incubation with anti-Ig plus complement. The modulation was effective for both xenogeneic (rabbit) and syngeneic (guinea-pig strain 2) complements, but more rapid for the latter. It appeared simply to require the action of antibody on a metabolically active cell: no requirement could be demonstrated for any serum component other than antibody, and there was a need to raise the temperature to 37 degrees after attachment of the antibody. There was molecular specificity inasmuch as modulation with anti-Ig failed to confer any resistance to lysis by another antibody (anti-Ia) plus complement.

Animals

Biosynthesis of the complement components and the regulatory proteins of the alternative complement pathway by human peripheral blood monocytes.

Short-term cultures of human peripheral blood monocytes were shown to synthesize the alternative pathway complement components C3, factors B (B) and D (D), and properdin, the regulatory proteins C3b inactivator (C3bINA) and beta 1H, in addition to C2, C4, and C5. B, D, properdin, C3bINA, and C2 were detected by functional assays, whereas beta 1H, C4, C3, and C5 could only be detected using immunochemical procedures. Immunoperoxidase localization studies showed that all the cells in each culture contained each component, so it is possible that all monocytes synthesize each component. It is concluded that cells of the monocyte-macrophage series form a mobile source of complement components and regulatory proteins which can be concentrated at sites of inflammation.

Cells, Cultured

Identification of the beta-endorphin-binding subunit of the SC5b-9 complement complex: S protein exhibits specific beta-endorphin-binding sites upon complex formation with complement proteins.

Beta-Endorphin has been reported to specifically interact with SC5b-9 complement complexes via non-opioid binding sites. Covalent cross-linking of [125I]beta H-endorphin to SC5b-9 and analysis of the cross-linking products by gel electrophoresis and subsequent autoradiography revealed a single specifically labelled species which was identical with the S protein subunit of the complement complex. In contrast to SC5b-9, no cross-linking of labelled beta-endorphin to subunits of C5b-9(m) could be observed, indicating that beta-endorphin binding to SC5b-9 was mediated exclusively via S protein. Beta-Endorphin binding to SC5b-9 was compared with binding to purified S protein. Whereas beta-endorphin binding to purified S protein was only modest, complex formation of S protein with complement proteins led to a strong increase in beta-endorphin-binding site concentration, compatible with the exposure of primarily cryptic beta-endorphin-binding sites on S protein.

Binding, Competitive

Complement-activated oligodendroglia: a new pathogenic entity identified by immunostaining with antibodies to human complement proteins C3d and C4d.

Clusters of oligodendroglial fibers were identified immunohistochemically in human brain tissue with antibodies to the complement proteins C3d and C4d in several neurological disorders. These included Pick's, Huntington's, Parkinson's and Alzheimer's disease, amyotrophic lateral sclerosis, progressive supranuclear palsy and Shy-Drager syndrome. These complement-activated oligodendroglia occurred in selected areas of gray and white matter. They were rarely observed in control tissue. Immunogold electron microscopy established that the C4d antibody was attached to degenerating myelin sheaths. These data indicate attachment of classical complement pathway proteins to selective oligodendroglia in several neurological disorders.

Brain Diseases

Complements in diabetes mellitus: activation of complement system evidenced by C3d elevation in IDDM.

To characterize insulin-dependent diabetes mellitus (IDDM) and non-insulin-dependent diabetes mellitus (NIDDM) in terms of the complement system, some components of the system as well as the related substances and indices were studied. CH50, C3, C4 and C3bINA significantly increased in both IDDM and NIDDM compared with non-diabetic healthy controls. ACH50 was also elevated in NIDDM, whereas it was similar in IDDM and controls. Besides, the serum concentration of C3d, a breakdown product of C3, was higher in IDDM than in NIDDM and healthy controls, but that in NIDDM did not differ significantly from the control. B1Hg1 was not different among IDDM, NIDDM and non-diabetic controls. These observations suggested that there is a high level of complements in both types of diabetes mellitus, but the complement activation seems to be much enhanced in IDDM compared with NIDDM.

Complement Activation

Formation of the membrane attack complex of complement (MAC) on erythrocytes from monocyte-produced terminal complement components.

By using antibodies against C5, C6, C7, C8, and C9, we found that terminal complement components were deposited on IgM-coated sheep erythrocytes (EIgM) kept in serum-free endotoxin-stimulated monocyte cultures for 24 or 48 h. Monoclonal antibodies revealed C9 neoantigens on the EIgM. There was no specific binding of an anti-S protein antibody, which reacts with the SC5b-9 complex, to the EIgM. Controls were native sheep erythrocytes (E) treated similarly which, in contrast to EIgM, do not activate the classical pathway of complement. Cycloheximide (1.0 microgram/ml) in the cell cultures resulted in no specific binding of the anti-C9 antibodies to EIgM. A fraction of the EIgM was lysed during incubation with the monocytes. We conclude that the monocytes secrete C5, C6, C7, C8, and C9, which form the membrane attack complex of complement (C5b-9) on the EIgM.

Animals

Complement-dependent in vitro cytotoxicity against autologous invasive bladder tumor cells in humans. Evaluation of the possible role of naturally-occurring antibodies in complement-dependent cytotoxicity.

Complement-dependent serum-mediated cytotoxicity (CDC) was measured in a 51-chromium release assay against autologous tumor cells from 7 non-invasive and 9 invasive transitional-cell tumors of the urinary bladder. CDC was demonstrated against tumor cells from invasive tumors. Heat-inactivation of autologous sera lead to complete loss of cytotoxicity. There were no differences in CDC of autologous sera from patients and allogenic sera from controls. The cytotoxic response seems to be strongly dependent on the target cell. CDC was significantly reduced by use of an allogenic C 2 deficient serum. Direct immunofluorescence did not reveal any tumor cell associated immunoglobulins of IgG or IgM classes. Indirect immunofluorescence with autologous heat-inactivated sera demonstrated in most cases both IgG and IgM attachment to the tumor cells, but there were no obvious relations between indirect immunofluorescence and CDC. Absorption of allogenic sera to trypsin- or neuraminidase-treated erythrocytes did not affect CDC of these sera against invasive tumor targets. The results indicate a complement-dependent cytotoxicity against target cells from invasive bladder tumors. Complement seems to be activated through the classical pathway, but the possible role of naturally-occurring antibodies against invasive tumor targets is not clarified.

Aged

Protection of human amniotic epithelial cells (HAEC) from complement-mediated lysis: expression on the cells of three complement inhibitory membrane proteins.

Cultured human amniotic epithelial cells (HAEC) were found by immunofluorescence microscopy to express three complement inhibitory membrane proteins, CD59 antigen, decay-accelerating factor (DAF) and membrane attack complex (MAC) inhibitory protein (MIP), on their surfaces. The effects of incubation with Fab2 fragments of monoclonal antibodies (mAb) raised against these proteins on susceptibility of sensitized cells to lysis by homologous complement was examined. Percentage cell lysis was markedly increased in the presence of Fab2 anti-CD59 and to a lesser, but significant, extent in the presence of Fab2 anti-DAF. Fab2 anti-MIP did not alter the sensitivity of the cells to lysis by complement.

Amnion

Lysis of tumor cells by antibody and complement. VII. Complement-dependent 86Rb release--a nonlethal event?

The guinea pig hepatoma (line-1) treated with anti-Forssman antibody (TA) and GPC sequentially released 86Rb, 14C from 14C aminoidobutyric acid and failed to exclude trypan blue. Incubation of TA with fluid phase GPC for 1 min caused maximal 86Rb release; however, if the GPC was removed at this time, the cells were not subsequently killed. Using a number of naturally occurring human sera deficient in a complement component we have shown 86Rb release requires the binding of the complement components 1 through 8, but there was no absolute requirement for C9. Irreversible damage to the cell as measured by 14C AIB release or uptake of trypan blue required the complete sequence of complete sequence of complement components. These observations indicate that 86Rb release is not a relible indicator cytotoxicity.

Animals

Complement components, complement activation, and acute phase response in systemic lupus erythematosus.

The investigation concerned 33 systemic lupus erythematosus (SLE) patients assigned to three groups representing mild SLE, more severe extra renal SLE, and SLE with significant renal involvement. In patients with extrarenal disease, the inflammatory plasma protein response was often pronounced during exacerbation, as evidenced by markedly increased concentrations of C-reactive protein (CRP), alpha 1-antichymotrypsin, alpha 1-antitrypsin, and orosomucoid. CRP responses were rare in patients with renal involvement, despite the increased concentrations of other acute-phase reactants in some of these patients. Superimposed bacterial infections were not clearly distinguished by raised CRP concentrations. The classical pathway of complement was activated in all patients during exacerbation, as indicated by increased concentrations of C1r-C1s-C1 inactivator complexes and C2a fragments. C1, C2, and probably also C3 activation varied according to the amounts of circulating C1q-binding immune complexes, as measured by solid-phase assay. Manifest hypocomplementemia was usually associated with glomerulonephritis. Participation of complement components in the inflammatory plasma protein response apparently counteracted the development of hypocomplementemia in many patients with extrarenal SLE. Circulating C3d was detected in all patients during exacerbation of renal disease and in most patients with severe extrarenal manifestations. Inverse relationships were found between immunochemical C2 concentrations and the percentage of cleaved C2 and between C3 and C3d. There was no appreciable consumption of factors B and D and properdin of the alternative pathway in the patients. High concentrations of factor D, a low molecular weight protein, were exclusively found in patients with renal involvement and could be ascribed to retention due to reduced glomerular filtration.

Antigen-Antibody Complex

Structural and functional characterization of the RNA-positive complementation groups, C and D, of the New Jersey serotype of vesicular stomatitis virus: assignment of the M gene to the C complementation group.

The structural and functional lesions in the RNA-positive complementation groups, C and D, of the New Jersey serotype (Hazelhurst subtype) of vesicular stomatitis virus have been characterized. The M protein of the temperature-sensitive mutant C1, the prototype of the C complementation group, was degraded at the restrictive temperature in vivo, and was resolved from the wild-type M protein by SDS-polyacrylamide gel electrophoresis and nonequilibrium pH gradient electrophoresis. Coreversion of these properties and the temperature-sensitive phenotype was observed in a spontaneous revertant. On the basis of these results, the M gene was assigned to the C complementation group. Intracellular nucleocapsids could not be isolated from New Jersey serotype infections by procedures developed for Indiana serotype infections. Therefore, in order to assess the ability of New Jersey ts mutants to accumulate nucleocapsids at the restrictive temperature, a procedure for their isolation was developed. Hypertranscription was observed in C1-infected cells incubated at the restrictive temperature, but was not accompanied by proportionate increases in intracellular viral nucleocapsids or protein synthesis. The G and N proteins of the temperature-sensitive mutant D1, the sole representative of the D complementation group, were electrophoretic variants. The relative yield of intracellular D1 N protein was lower at the restrictive than at the permissive temperature, and the D1 L protein was thermolabile. No intracellular viral nucleocapsids were detected in D1 infected cells incubated at the restrictive temperature; however, more 40 S and less message-sized RNA were synthesized at the restrictive than at the permissive temperature. These results suggested functional defects in both the N protein and polymerase of D1.

Animals

Complement-mediated solubilization of immune complexes. Solubilization inhibition and complement factor levels in SLE patients.

Thirty-two of 36 serum samples from 19 SLE patients showed reduced capacity to mediate complement-dependent solubilization of immune complexes (IC). SLE patients with nephritis exerted the lowest complement-mediated solubilization capacity (CMSC) whereas sera from patients with inactive disease gave the highest CMSC values, with three out of four samples within the normal reference range. Thirty-five of the 36 serum samples showed inhibition of CMSC in a newly developed CMSC inhibition assay. The strongest CMSC inhibition was exerted by sera from newly discovered cases of SLE who received no medical treatment and the lowest inhibition by sera from patients with inactive disease. There was a significant negative correlation between CMSC and CMSC inhibition (r = -0.67, P less than 0.001). Sera with low concentrations of C1q, C3, factor B or high C3d levels showed markedly reduced CMSC values. Pronounced CMSC inhibition was observed only in samples with normal or high factor H values. No significant correlation was found between CMSC or CMSC inhibition and circulating IC levels, but pronounced CMSC inhibition was registered only in strongly IC positive sera.

Adolescent

Kinetics of polymerization of a fluoresceinated derivative of complement protein C9 by the membrane-bound complex of complement proteins C5b-8.

The fluorescence self-quenching by energy transfer of FITC-C9, a fluoresceinated derivative of human complement protein C9 [Sims, P.J. (1984) Biochemistry (preceding paper in this issue)], has been used to monitor the kinetics of C9 polymerization induced by the membrane-associated complex of complement proteins C5b-8. Time-based measurements of the fluorescence change observed during incubation of FITC-C9 with C5b-8-treated sheep red blood cell ghost membranes at various temperatures revealed that C9 polymerization induced by the C5b-8 proteins exhibits a temperature dependence similar to that previously reported for the complement-mediated hemolysis of these cells, with an Arrhenius activation energy for FITC-C9 polymerization of 13.3 +/- 3.2 kcal mol-1 (mean +/- 2 SD). Similar measurements obtained with C5b-8-treated unilamellar vesicles composed of either egg yolk phosphatidylcholine (egg PC), dipalmitoylphosphatidylcholine (DPPC), or dimyristoylphosphatidylcholine (DMPC) revealed activation energies of between 20 and 25 kcal mol-1 for FITC-C9 polymerization by C5b-8 bound to these membranes. Temperature-dependent rates of C9 polymerization were observed to be largely unaffected by the phase state of membrane lipid in the target C5b-8 vesicles. The significance of these observations of the mechanism of C9 activation of membrane insertion is considered.

Animals

Intersection of the complement and immune systems: a signal transduction complex of the B lymphocyte-containing complement receptor type 2 and CD19.

The complement system augments the humoral immune response, possibly by a mechanism that involves the B lymphocyte membrane receptor, CR2, which binds the C3dg fragment of C3 and triggers several B cell responses in vitro. The present study demonstrates that CR2 associates with a complex of membrane proteins that may mediate signal transduction by ligated CR2. Monoclonal antibodies to CR2 immunoprecipitated from digitonin lysates of Raji B lymphoblastoid cells a membrane complex containing CR2, approximately equimolar amounts of CD19, which is a member of the immunoglobulin superfamily, and three unidentified components: p130, p50, and p20. The complex, which was immunoprecipitated also with anti-CD19, could be dissociated by Nonidet P-40, accounting for its absence in previous studies of CR2. Expression of recombinant CR2 and CD19 in K562 erythroleukemia cells led to formation of a complex that contained not only these two proteins but also p130, p50, and p20, and another component, p14. These unidentified components of the CR2/CD19 complex coimmunoprecipitated with CD19 and not with CR2 from singly transfected cells, indicating primary association with the former. CD19 replicated the capacity of CR2 to interact synergistically with mIgM for increasing free intracellular Ca2+, suggesting that the complex mediates this function of CR2. Therefore, CR2 associates directly with CD19 to become a ligand-binding subunit of a pre-existing signal transduction complex of the B cell that may be representative of a family of membrane protein complexes. This interaction between the complement and immune systems differs from that between immunoglobulin and Clq by involving membrane rather than plasma proteins, and by having complement involved in the afferent phase of the immune response.

Antigens, CD

The IgG subclass pattern of complement activation depends on epitope density and antibody and complement concentration.

Using a matched series of human-mouse chimaeric IgG anti-5-iodo-4-hydroxy-3-nitrophenacetyl (anti-NIP) antibodies and NIP-bovine serum albumin (NIP-BSA) we examined how different variables influence the activation pattern of complement. When BSA was used with different hapten densities and the input of NIP-BSA was altered, we observed a change in the subclass reaction pattern. IgG3 fixed more Clq than IgG1 and IgG2 in all situations. IgG1 was slightly better than IgG3 and IgG2 at high antigen concentrations at activating C4 and C3 and inducing formation of the terminal complement complex (TCC). When the epitope density and/or the NIP-BSA concentration was reduced, IgG3 became best, followed by IgG1 and IgG2. IgG1 now revealed a marked prozone. Furthermore, IgG4 was found to activate C3 and mediate TCC formation at high epitope and complement concentrations.

Antibodies

Assessment of the activation pathways of the complement in psoriatic patients by use of complement fragment C4d and Bb measurements.

We have measured the complement fragment C4d and Bb levels in the plasma of 51 psoriatic patients and 54 normal controls. The C4d and Bb levels were not significantly elevated in the plasma of the psoriatic patients when compared with those of controls, except in patients with more than 60% skin involvement who exhibited an increase in Bb levels. C4d levels, however, did decrease slightly after successful treatment of psoriasis. Although these results suggest that the C4d and Bb levels partly reflect the complement activation in vivo, they do not seem to be suitable parameters to clarify the mechanism of complement activation in psoriasis.

Adolescent