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Biomedical subjects

R B Sim

Publications and source records attributed to R B Sim.

At least 127 records · Page 7Linked to original sources

Ligand binding by the p150,95 antigen of U937 monocytic cells: properties in common with complement receptor type 3 (CR3).

U937 cells (a monocytic cell line) grown in the presence of phorbol myristate acetate were surface labeled with 125I and the iC3b-binding proteins isolated by affinity chromatography on iC3b-Sepharose in the presence of divalent cations. Three polypeptides of 170, 150 and 95 kDa were found to bind specifically to iC3b-Sepharose. The polypeptides of 170 and 95 kDa were identified as the alpha and the beta subunits of CR3 by immunoprecipitation with OKM1 monoclonal antibody. The 150-kDa polypeptide was not immunoprecipitated by antibodies to the alpha subunit of CR3 or LFA-1. However, the 150-kDa polypeptide, together with the 95-kDa polypeptide, was immunoprecipitated with an anti-beta subunit-specific antibody IB4, which immunoprecipitates LFA-1, CR3 and p150,95. These results indicated that the 150-kDa polypeptide is the alpha subunit of the p150,95 antigen. The binding of p150,95 and CR3 to iC3b-Sepharose is specific as neither binds to C3u-Sepharose. A monoclonal antibody, 3.9, which immunoprecipitated the 150 and a 95-kDa polypeptide from U937 cells was characterized as being directed against the alpha-subunit of the p150,95 antigen. Phorbol myristate acetate-stimulated U937 cells from rosettes with EAC3b and EAiC3b but not with EAC3d cells. Monoclonal antibody 3.9 does not inhibit either type of rosetting, but we were unable to exclude a role for p150,95 in adherence of iC3b-coated particles. Since there is no rosetting with C3d-bearing particles it is unlikely that p150,95 is a receptor for C3d, a role for p150,95 which has been suggested by others (Wright, S.D., Licht, M.R. and Silverstein, S.C., Fed. Proc. 1984. 43: 413).

Antibodies, Monoclonal

Partial characterization of human complement factor H by protein and cDNA sequencing: homology with other complement and non-complement proteins.

Factor H, a control protein of the human complement system, is closely related in functional activity to two other complement control proteins, C4b-binding protein (C4bp) and complement receptor type 1 (CR1). C4bp is known to have an unusual primary structure consisting of eight homologous units each about 60 amino acids long. Such units also occur in the N-terminal regions of the complement proteins C2 and factor B, and in the non-complement serum glycoprotein beta 2I. Amino acid sequencing, and sequencing of a factor H cDNA clone, show that factor H also contains internal repeating units, and is homologous to the proteins listed above.

Amino Acid Sequence

Release of immune complexes bound to erythrocyte complement receptor (CR1), with particular reference to the role of factor I.

The release of 125I-bovine serum albumin (BSA)-anti-BSA immune complexes (IC) bound to human erythrocyte complement receptors (E-CR1) was studied. IC were complement-solubilized in normal human serum (NHS), and reacted with human erythrocytes at conditions optimal for binding of the IC to E-CR1. E-CR1-bound IC could be released by the addition of NHS or purified factor I. Factor I-deficient or I-depleted serum mediated no release, and addition of purified factor I restored the release. Factor H was not required for the release of IC. The kinetics of IC release was influenced by the NHS concentration, the presence of EDTA, and the time of prior storage of the erythrocytes at 4 degrees C. NHS (1:5 to 1:10) in the presence of EDTA caused nearly maximal release within 10-20 min at 37 degrees C. In the absence of EDTA the NHS-induced IC release was markedly slower. IC released within the first 30 min showed significant rebinding to new E. The release of IC was not associated with loss of the IC binding activity of E-CR1. The NHS-mediated release of IC could be inhibited by rabbit anti-CR1 and by a mixture of protease inhibitors. Release induced by purified factor I was also inhibited by protease inhibitors. The affinity of IC binding to E-CR1 was reduced after cleavage of CR1-bound C3b-IC to iC3b-IC by factor I.

Antigen-Antibody Complex

Structural and functional analysis of the complement component factor H with the use of different enzymes and monoclonal antibodies to factor H.

The action of six different enzymes on the function and structure of Factor H was investigated by use of sodium dodecyl sulphate/polyacrylamide-gel electrophoresis, haemagglutination, two enzyme-linked immunosorbent assay systems and an assay for Factor I cofactor activity. Six monoclonal antibodies directed against the 38 kDa tryptic fragment of Factor H [which contains the binding site for C3b (a 180 kDa fragment of the third component of complement) and the cofactor activity] were also used to detect cleavage products derived from the same fragment. Elastase, chymotrypsin A4 or trypsin first cleaved Factor H to 36-38 kDa fragments carrying all six monoclonal anti-(Factor H)-binding sites. In parallel, the interaction of Factor H with surface-bound C3b was lost, whereas the cofactor function was preserved. Further cleavage of the 36-38 kDa fragments into two 13-19 kDa fragments (one carrying the MAH4 and MRC OX 24 epitopes, the other the MAH1, MAH2, MAH3 and MRC OX 23 epitopes) destroyed cofactor activity. Pepsin, bromelain or papain rapidly split off a 13-15 kDa fragment of Factor H carrying the MAH1, MAH2, MAH3 and MRC OX 23 epitopes and destroyed all tested functions of Factor H. Ficin cleaved Factor H into disulphide-linked fragments smaller than 25 kDa, but did not affect the functions of the Factor H molecule. The 38 kDa tryptic fragment of Factor H is the N-terminal end of the Factor H molecule, as determined by N-terminal sequence analysis. A model is presented of the substructure of Factor H.

Amino Acids

Large-scale isolation of complement receptor type 1 (CR1) from human erythrocytes. Proteolytic fragmentation studies.

A large-scale procedure for the isolation of complement receptor type 1 (CR1, the C3b receptor) from human erythrocytes is described. Two of the four known phenotypes of CR1 are detectable in the isolated material. Amino acid and hexosamine analysis of the A phenotype (Mr 240 000) indicates a polypeptide chain length of about 2030 amino acids and a carbohydrate content of 8%. Both N- and O-linked sugars appear to be present. Trypsin digestion of isolated CR1 shows that it is degraded rapidly and extensively, and no stable products of Mr greater than 25000 are found. The ability of the receptor to bind to solid-phase ligand is destroyed after a single cleavage by trypsin. The capacity of the receptor to act as a cofactor for Factor I-mediated cleavage of soluble C3b is, however, only gradually decreased by proteolysis, and 30% of this activity remains after extensive degradation. The same pattern of loss of binding to solid-phase ligand, with partial retention of interaction with soluble ligand, is also characteristic of the complement proteins Factor H and C4bp, which are functionally related to CR1.

Amino Acids

Isolation of complement-fragment-iC3b-binding proteins by affinity chromatography. The identification of p150,95 as an iC3b-binding protein.

The proteins from labelled human spleen membranes and polymorphonuclear leucocytes which bind to the iC3b fragment of complement component C3 were prepared by iC3b-Sepharose chromatography in the presence of bivalent cations. Complement receptor type 3(CR3) was eluted from iC3b-Sepharose by removal of bivalent cations. Complement receptors type 1 and 2 (present in spleen but not in polymorphonuclear leucocytes) were sequentially eluted by an NaCl gradient. An additional protein of Mr 135 000 was eluted from iC3b-Sepharose under the same conditions as those used to elute CR3. Preabsorption of the starting material on an anti-(CR3 beta-subunit) antibody column before iC3b-Sepharose chromatography removed the alpha- and beta-chains of CR3 and the 135 000-Mr protein. Preabsorption with iC3b-Sepharose before the anti-(CR3 beta-subunit) antibody column showed that iC3b binds CR3 and p150,95, the smallest member of the group of three homologous proteins that share the same beta-subunit.

Antibodies, Monoclonal

The generation of active fragments of complement receptor type 2 by trypsin digestion.

B lymphocytes and Raji cells express the complement receptor type 2 (CR2) of 145 kDa which recognises the C3d fragment of C3. When intact cells are treated with trypsin, CR2 is degraded. There is a parallel loss in C3d-mediated rosetting and in proteins which bind to C3d-Sepharose. Initially 97 and then 83 kDa fragments of CR2 are produced which retain C3d binding activity. These fragments are associated with the cell surface and mediate rosetting. Purified 125I-labelled CR2, solubilised in detergent, produces fragments of apparently identical size on treatment with trypsin. The 83 kDa fragment produced by trypsin treatment closely resembles the major C3d binding protein spontaneously released into Raji cell culture medium.

B-Lymphocytes

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

Expression of complement factor H on the cell surface of the human monocytic cell line U937.

Binding assays and immunocytochemical staining with monoclonal antibodies against the human serum complement protein factor H indicate that factor H antigen is present on the surface of more than 95% of the cells of the human monocytic cell line U937. The antigen is uniformly distributed and there are 10 000-15 000 copies/cell. Factor H antigen is strongly associated with the cell surface and is not removed by hypotonic or hypertonic washes. Factor H antigen has been isolated from surface radioiodinated and 35S biosynthetically labeled cells using polyclonal anti-factor H-Sepharose columns. The antigen is indistinguishable from serum factor H in molecular weight. Secretion of factor H by U937 cells was not detected using sensitive tests in which factor H secretion by monocytes was apparent. Phorbol myristate acetate stimulation of the cells had no effect on the average number of factor H molecules expressed. We conclude that factor H is synthesized by U937 cells, but is not secreted, and remains strongly associated with the cell surface. The surface-bound factor H may function as a C3b receptor.

Antibodies, Monoclonal

Interaction of human monocytes, macrophages, and polymorphonuclear leukocytes with zymosan in vitro. Role of type 3 complement receptors and macrophage-derived complement.

Macrophages take up zymosan in the absence of exogenous complement via receptors for iC3b (type 3 complement receptors) acting with or without lectin-like receptors for mannosyl-fucosyl-terminated glycoconjugates. We previously provided evidence that macrophages themselves secrete complement-alternative pathway components able to opsonize zymosan locally (Ezekowitz et al., J. Exp. Med. 1984. 159:244-260). We show here that covalently bound C3 cleavage products C3b and iC3b can be eluted from zymosan particles cultivated with 36-h adherent human monocytes in the absence of serum. The ligand binding site of type 3 complement receptors is involved in macrophage-zymosan interactions as shown by inhibition studies of zymosan binding and uptake with Fab fragments of anti-C3 antibodies and monoclonal antireceptor antibodies M01 and OKM10. In contrast, antibody IB4, which binds to a receptor epitope distinct from the binding site, does not inhibit zymosan uptake. Selective modulation of macrophage receptors onto anticomplement receptor antibody and mannose-rich yeast mannan, respectively, confirms that the complement and lectin-like receptors are distinct. Human polymorphonuclear leukocytes, which express receptors for complement, but are not known to secrete complement proteins, bind and ingest only exogenously opsonized zymosan. Unopsonized zymosan is a poor trigger of respiratory burst activity in neutrophils or 7-d adherent human macrophages, but induces cell aggregation and secretion of large amounts of superoxide anion when these cells are co-cultivated in serum-free medium and challenged with zymosan. Our studies indicate that complement and/or other products synthesized by macrophages at extravascular sites could play an important role in opsonization and lysis of pathogens able to activate the alternative pathway and mediate macrophage-neutrophil collaboration in first-line host defence.

Animals

Preparation of antibodies against the fourth complement component (C4) and development of a direct electroimmunoassay for quantification of C4d.

The specificity of several preparations of antihuman C4 antibodies were examined by crossed immunoelectrophoresis. Two antibody preparations with anti-C4c and anti-"total" C4 reactivity respectively were prepared by immunoadsorption procedures and defined by comparison with reference antibodies of known specificity. These two antibody preparations were used in the development of a rocket immunoelectrophoresis with an intermediate gel for specific and direct quantification of C4d. This method permits the selective quantification of activation of the classical complement pathway as opposed to the alternative pathway activation.

Antibodies

Analysis of C3-receptor activity on human B-lymphocytes and isolation of the complement receptor type 2 (CR2).

The rosetting of defined C3-fragment-coated sheep erythrocytes to B-cell-enriched tonsil lymphocytes was measured. The rosetting lymphocytes were homogeneous with respect to expression of C3b, iC3b and C3d receptors. Isolation of receptors for C3 fragments from surface-radioiodinated lymphocytes by affinity chromatography on immobilized C3u, iC3b and C3d,g produced two proteins with partially overlapping specificities. A protein of 240 000 Mr, recognized by the monoclonal antibody To5 and identified as CR1 (complement receptor type 1), had affinity for C3u and iC3b. A protein of 145 000 Mr, recognized by the monoclonal antibody B2, had affinity for all three C3 fragments. Inhibition of rosetting by antibodies to these proteins indicates that CR1 is responsible for C3b-mediated rosetting and that the 145000-Mr receptor (CR2) is responsible for C3d-mediated rosetting. Partial inhibition by both anti-CR1 and anti-CR2 antibodies of iC3b-mediated rosetting indicates that both receptors are involved in iC3b-mediated rosetting. No other protein appears to be involved in tonsil B-cell rosetting to C3-fragment-coated cells. A method for preparing CR2 from tonsil lymphocytes based on affinity chromatography on C3d,g-Sepharose has been developed. Forty tonsil pairs (2 X 10(10) B-cells) yield about 40 micrograms of pure protein equivalent to a purification of 6500-fold from a detergent extract.

Antibodies

Localisation of a group of antigenic sites in complement component C3, and identification of a new fragmentation pattern.

Immunisation of rabbits or goats with denaturated human C3 reproducibly gives rise to an antiserum of restricted specificity which precipitates native C3, C3b and iC3b, but not C3c or C3d isolated from 'aged' serum. The antigenic sites recognised by the antiserum appear to be localised in a small segment of the polypeptide chain located close to the N-terminus of the C3b alpha' chain. Affinity chromatography using antibodies developed by this procedure reveals an unusual pattern of degradation of C3 which occurs on conventional 'ageing' of serum at 37 degrees C.

Amino Acids

Drugs that induce systemic lupus erythematosus inhibit complement component C4.

The syndrome resembling systemic lupus erythematosus (SLE) associated with long-term treatment with hydralazine and isoniazid seems to be due to the drugs themselves rather than their metabolites. This syndrome is associated with deposition of immune complexes; and in the complement system inhibition of C4 is likely to increase deposition of immune complexes. In vitro, hydralazine and isoniazid inhibited 50% of the binding of C4 at 840 mumol/l and 1.05 mmol/l, respectively--ie, within the concentration ranges that have been used in therapy. Acetylated metabolites were not inhibitory at the maximum concentrations tested; and iproniazid, which does not cause SLE, gave 50% inhibition only at a concentration far exceeding that used in therapy.

Acetylation

Substances that can trigger activation of the alternative pathway of complement have anti-melanoma activity in mice.

Intraperitoneal (i.p.) injection of substances that can ignite the alternative pathway of complement, namely isolated human C3b or C3(H2O), guinea-pig C3(H2O) or cobra venom factor, or conventionally prepared zymosan, will reproducibly and very significantly increase the mean survival time of C57BL mice previously inoculated i.p. with melanoma cells. The effect is greater at higher doses and earlier post-inoculation (p.i.) administration, but the substances are active at low doses (30-100 micrograms/mouse) if given early enough. It is likely that C3b or C3(H2O) was the previously unidentified anti-tumour factor activated in serum by S. aureus treatment or serum fractionation and described elsewhere. Activation of the alternative pathway of complement appears to have potential interest for cancer therapy.

Animals

Local opsonization by secreted macrophage complement components. Role of receptors for complement in uptake of zymosan.

We have examined the role of macrophage (M phi plasma membrane receptors for the cleaved third complement component (iC3b; CR3) and mannosyl, fucosyl terminated glycoproteins (MFR) in uptake of unopsonized zymosan. Monoclonal antibodies against CR3, M1/70 (Mac-1) and MO1, each inhibited approximately 50% of uptake of 125I-zymosan by murine and human M phi, respectively. Yeast mannan inhibited 0-50% of zymosan uptake in various M phi, in parallel with their expression of MFR. We demonstrated that M phi were the source of C3 in our assay and that the activity of other components of the complement system, namely a C3 convertase, factor I, and a factor I cofactor were also present in serum-free cultures of human monocytes. Macrophage C3 was deposited rapidly, within 10 min, on the zymosan particles and mediated binding, ingestion, and stimulation of superoxide release in BCG-activated and thioglycollate-elicited peritoneal M phi via CR3. Local secretion of complement proteins by M phi themselves can therefore opsonize pathogens and cells able to activate the alternative pathway and effect their destruction.

Animals

The effect of danazol on the production of C1 inhibitor in the guinea pig.

The production of C1 inhibitor (C1-INH) in guinea pig liver was studied following administration of danazol. Immunochemical assays of the inhibitor were performed on serial serum specimens. An increase in serum C1-INH was observed following danazol treatment. Immunohistochemical studies confirmed that the liver is the sole site of synthesis of C1-INH in guinea pigs. This appears to occur in certain clones of hepatocytes. Ultrastructural studies revealed an increase in coarse endoplasmic reticulum and mitochondria in danazol-treated animals. In in vitro studies with liver slices, however, more C1-INH was detected in culture supernatants from untreated animals than from danazol-treated animals. This observation suggests that secretion of C1-INH from stimulated hepatocytes may require additional factors which are present in vivo but not in vitro.

Animals