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A complement receptor for opsonized immune complexes on erythrocytes from Oncorhynchus mykiss but not Ictalarus punctatus.

Immune complexes activate the classical pathway of complement resulting in the covalent deposition of fragments of the third (C3b) and fourth (C4b) components of complement, thus opsonizing the complexes for uptake by CD35 found on human erythrocytes. The complexes are then transported to and cleared from the circulation by the reticuloendothelial system. It has been shown that rainbow trout can remove immune complexes from the circulation in a complement-dependent manner similar to that found in the human. However, the cell or cell types involved have not been identified. The purpose of this study was to investigate whether a complement-dependent immune adherence receptor is expressed on erythrocytes from the rainbow trout (Oncorhynchus mykiss) and the channel catfish (Ictalarus punctatus). Coating fluorescent microparticles with BSA, and then binding them to anti-BSA created an artificial immune complex that was incubated with normal fish serum, normal human serum or EDTA-treated serum. The complement-coated immune complexes were then incubated with either fish or human erythrocytes and analyzed for binding by flow cytometry and further visualized by fluorescence microscopy. Our results indicate that erythrocytes from rainbow trout are capable of binding immune complexes when pretreated with serum from either the trout or human, but not when pretreated with serum containing EDTA. By contrast, erythrocytes from the channel catfish did not bind immune complexes pretreated with autologous or human serum. These data suggest that differences exist in receptor distribution between two closely related species of fish, and a potentially homologous relationship in receptor expression, and possibility function, exist between two highly divergent species.

Animals↗

Immune adherence in renal glomeruli. Complement receptor sites on glomerular capillary epithelial cells.

Several very recent reports have indicated the presence of receptor sites for the third component of complement in human but not other vertebrate renal glomeruli. The present study constitutes a demonstration that the glomerular capillary epithelial cell bears this receptor, detectable with either EAC complexes (EAC1423b) or fluores ceinated zymosan-C3 (ZC3b) complexes, Fresh, unfixed frozen sections of normal or diseased human kidneys, mechanically isolated human glomeruli, dissociated glomerular cells, and glomeruli and golmerular cells maintained in tissue culture were examined with various EAC complexes or ZC3b and examined by phase light microscopy, fluorescence microscopy, or transmission and scanning electron microscopy. Clearly, by scanning electron microscopy it was determined that glomerular capillary epithelial cells bind the immune-adherence EAC indicator cells. Because glomeruli or glomerular epithelial cells did not bind E, EA, EACI, EAC14, or EAC142 but did bind EAC1423b or ZC3b, it is concluded that C3b (activated bound fragment of the third component of complement) is responsible for the immune-adherence reaction in glomeruli. Preliminary examination of diseased renal biopsies indicates that sclerotic glomeruli, focal segmental sclerotic or proliferative glomerular capillary lesions, and proliferative epithelial crescents are immune-adherence negative. Furthermore, a clear or consistent inverse relationship between glomerular capillary deposits of C3 which presumably might block epithelial C3 receptor sites, and immune-adherence reactivity with EAC in vitro was not as evident in this study as reported previously by other investigators. Nevertheless, it is still attractive to conceive that glomerular C3 receptor sites might be responsible for binding of antigen-antibody-complement complexes and formation of immune-complex deposits, at least on the epimembranous (subepithelial) surface of glomerular capillary walls. Inability to demonstrate this immune-adherence phenomenon in glomeruli of other vertebrate animals suggests among other things that more investigation is necessary before ascribing a unique or universal significance to the C3 receptors identified in human glomeruli.

Animals↗

Identification of a spontaneously shed fragment of B cell complement receptor type two (CR2) containing the C3d-binding site.

CR2 is a 140-kilodalton glycoprotein expressed on B lymphocytes which binds to both C3d and Epstein-Barr virus (EBV). The present study identified a 72-kilodalton C3d-binding protein (gp72) in the spent culture media of Raji B lymphoblastoid cells as a spontaneously shed fragment of the 140-kilodalton CR2 molecule. Both polyclonal and monoclonal antibodies (AB) were used in several assay systems to detect antigenic determinants shared between the gp72 fragment and CR2. Rabbit antibodies to either intact CR2 or gp72 blocked C3d receptor activity, and this inhibitory activity was removed by absorption of anti-CR2 with purified gp72.OKB7, a monoclonal anti-CR2 AB that blocks both C3d and EBV binding to CR2, reacted specifically with both CR2 and gp72, whereas both anti-B2 and HB-5 monoclonal anti-CR2 AB, that block neither of these receptor sites, were unreactive with gp72. The data suggested that the gp72 fragment was not present as such in intact cells, but rather was a product of cells generated by proteolysis of CR2. Thus, intrinsically labeled gp72 was isolated from Raji cell media by affinity chromatography on OKB7-Sepharose, but only intact CR2 was isolated from the Raji cell fraction solubilized in the presence of protease inhibitors. Several lines of evidence suggested that gp72 was not a second type of C3d receptor that was distinct from CR2. First, Raji cells expressed nearly identical amounts of OKB7 and HB-5 epitopes when analyzed by flow cytometry or radioimmune assay, excluding the possibility that B cells expressed OKB7 antigens in both CR2 and a distinct HB-5-negative C3d receptor. Second, all Raji cell surface C3d receptor activity was associated with HB-5-reactive CR2 molecules. We conclude that gp72 represents a spontaneously shed proteolytic fragment of CR2 that contains the C3d-binding site and the closely associated OKB7 epitope.

B-Lymphocytes↗

Fibronectin-enhanced phagocytosis of an alternative pathway activator by human culture-derived macrophages is mediated by the C4b/C3b complement receptor (CR1).

We examined the ability of human monocytes and culture-derived macrophages under serum-free conditions to phagocytose desialated sheep erythrocytes (E), an activator of the alternative pathway of human complement. Freshly derived monocytes ingested desialated erythrocytes, but the degree of phagocytosis varied among individual donors. However, exposing the phagocyte to intact plasma fibronectin (Fn) had no effect on monocyte phagocytosis. Macrophages derived from monocytes in culture were far more efficient at ingesting desialated E, and the extent of phagocytosis was proportional to the degree of desialation. Although exposure of macrophages to substrate-bound Fn or fluid-phase Fn enhanced the phagocytosis of desialated E, pretreatment of desialated E with Fn did not enhance phagocytosis, demonstrating that Fn acted through an interaction with the macrophages. Fn-enhanced phagocytosis of desialated E was inhibited by treating macrophages with a monoclonal antibody to the C4b/C3b receptor (CR1), but not with a monoclonal antibody to the receptor for C3bi (CR3). Addition of cobra venom factor (CVF) to the macrophages also inhibited Fn-enhanced phagocytosis of desialated E. Phagocytosis of IgG-sensitized E, either in the absence or in the presence of Fn, was not significantly affected by anti-CR1 or CVF, demonstrating that these reagents did not lead to a general inhibition of phagocytosis. These experiments suggest that macrophages may deposit enough C3b onto desialated E to cause CR1-mediated phagocytosis in the presence of Fn. The ability of macrophages to opsonize and ingest foreign particles that activate complement may be critically important in areas of inflammation where concentrations of serum-derived specific opsonins may be inadequate.

Animals↗

Serum protects against azurophil granule dependent down-regulation of complement receptor type 1 (CR1) on human neutrophils.

We have investigated the effect of gradual degranulation on the expression of functional receptors (CR1 and CR3) on human neutrophils. Incubation with increasing concentrations of fMLP (10(-10) - 10(-7) M) translocated CR1 and CR3 to the cell surface in a similar kinetic pattern. When reaching maximal expression of receptors (10(-7) M fMLP), 78 +/- 10% and 87 +/- 9% of the total pool of CR1 and CR3, respectively, were translocated to the cell surface. To drive the mobilization process further, cytochalasin B was introduced to increase the stimulatory effect of fMLP. No further increase in CR1 surface expression was obtained. However, we found a characteristic time course of surface appearance of CR1 and CR3 with a maximal surface expression within 1 minute, followed by a time-related down-regulation of CR1 but not CR3. In addition, the total pool of CR1 in cytochalasin B treated neutrophils was reduced after 15 minutes stimulation with fMLP measured by flow cytometry and immunoblotting, indicating degradation of CR1. The down-regulation of CR1 was concomitant with a translocation of azurophil granules, in terms of upregulation of CD63. Azurophil, but not specific nor secretory, granule fractions caused a down-regulation of CR1 on fMLP activated neutrophils. The presence of human sera and serine protease inhibitor protected CR1 from down-regulation. Together, these findings indicate that intracellular stored proteases, released in the late part of the sequential mobilization process, alters the expression of functional receptors mobilized in the early part of the mobilization process. The findings also focus on the importance of the microenvironment for the net outcome of neutrophil activation in terms of functional receptor expression.

Adolescent↗

Human anti-endotoxin antibody HA-1A mediates complement-dependent binding of Escherichia coli J5 lipopolysaccharide to complement receptor type 1 of human erythrocytes and neutrophils.

HA-1A has been shown clinically to decrease mortality in septic patients with gram-negative bacteremia. In this study, the ability of HA-1A to augment the serum complement-dependent immune adherence of 125I-labeled Escherichia coli J5 lipopolysaccharide (LPS) to human erythrocytes (RBC) and polymorphonuclear leukocytes (PMNL) was evaluated. In vitro studies indicated three things: HA-1A mediates immune adherence of 125I-J5 LPS to human RBC and PMNL in a dose-dependent manner; under these conditions, high concentrations of LPS (400 ng/mL) could be specifically bound. Immune adherence occurs via the classical complement pathway as demonstrated by its calcium dependence; HA-1A-J5 LPS-C' immune complexes bound to CR1 on human RBC and PMNL. PMNL binding and internalization of immune complexes was demonstrated by trypsin stripping of externally bound immune complexes. These studies support the proposal that HA-1A can lower the bioavailability of endotoxin by mediating binding and potential clearance of LPS via human RBC through the reticuloendothelial system or via direct internalization by peripheral blood PMNL.

Antibodies, Monoclonal↗

Effect of plasmapheresis on ligand binding capacity and expression of erythrocyte complement receptor type 1 (CR1) of patients with systemic lupus erythematosus (SLE).

The functional activity and the expression of CR1 on the erythrocytes (E) of patients with SLE were, respectively, determined by measuring the binding to E of either complement-opsonized bovine serum albumin (BSA)-anti-BSA immune complexes (ICC) or specific anti-ECR1 MoAbs. We found that both the functional activity and levels of ECR1 in SLE patients homozygous for ECR1 high density allele were significantly lowered compared with healthy controls having the same allele. Soon after plasmapheresis there was a significant increase in E ICC binding activity, and this increased functional activity was stable. Moreover, plasmapheresis reduced the level of immune complexes demonstrable in the circulation of the patients. The expression of ECR1 determined with several different anti-CR1 MoAbs was also elevated as a consequence of plasmapheresis. This elevation was observed for both MoAb 1B4, which competes for the ICC binding site of ECR1, and for MoAb HB8592, which does not, but the time course for the increase in binding of the two MoAbs was different, in that the epitope recognized by MoAb 1B4 increased more rapidly. The present results, considered in the context of previous findings, suggest that more than one mechanism may be operative with respect to the effects of the plasmapheresis in increasing ECR1 levels defined by different epitopes on the molecule.

Alleles↗

Complement receptors on guinea pig epidermal Langerhans cells.

A population of guinea pig epidermal cells possessed the ability to form rosettes with IgM antibody-sensitized sheep erythrocytes coated with purified human C3b (SEAIgMC1-), but not with intermediates carrying C1, C4, or C2. This population of rosette-forming epidermal cells was identified as Langerhans cells (LC) ultrastructurally and by LC depletion and enrichment studies. In addition, these cells were able to bind fluid phase C3b, which inhibited any subsequent SEAIgMC1-3b rosette formation. Rosette formation was also inhibited after SEAIgMC1-3b pretreatment with beta 1H and C3b-inactivator. LC were shown to possess trypsin-resistant C3b and Fc receptors, and unlike the temperature-independent nature of LC Fc-rosette formation, the ability of LC to form C3 rosettes was a temperature-dependent process. The finding of C3b receptors on the surface of guinea pig epidermal LC supports the concept that they are of the phagocytic monocyte-macrophage family.

Animals↗