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Effect of antibodies directed against complement receptors on phagocytosis by polymorphonuclear leukocytes: use of iodination as a convenient measure of phagocytosis.

Two monoclonal antibodies (Mab), designated 60.3 and 60.1, markedly inhibited the phagocytosis of serum-opsonized zymosan by human polymorphonuclear leukocytes (PMN) as measured by the iodination reaction and by microscopic visualization. These antibodies also inhibited rosette formation with EC3bi without decreasing EC3b rosetting, suggesting that Mab 60.3 and 60.1 inhibit the phagocytosis of opsonized zymosan through reaction with the C3bi receptor (CR3) on the leukocyte surface. In support of this concept is the finding that the PMN of two patients with recurrent infections do not ingest opsonized zymosan, lack C3bi receptor function, and react weakly or not at all with Mab 60.3 and 60.1. At concentrations which completely inhibited ingestion of opsonized zymosan, both Mab partially inhibited iodination with Staphylococcus aureus 502A as the particle, and did not affect iodination when Staphylococcus epidermidis was used. This presumably reflects a variable need among the opsonized particles for CR3 for ingestion. Mab 60.3 also inhibited the phagocytosis of certain unopsonized particles as measured by iodination, indicating that the antigens recognized by the Mab do not influence phagocytosis solely by functioning as a C3bi receptor. Mab 60.3 increased the phagocytosis of unopsonized, heat-killed S. aureus by reaction with the PMN via its antibody-combining site, and with the staphylococcal protein A via its Fc region (reverse opsonization). This process required protein A-containing organisms (S. aureus 502A or Cowan 1 but not S. aureus Wood 46 or S. epidermidis), was inhibited by purified protein A, and was not seen either when the F(ab')2 or Fab fragments of the antibody, or when PMN which lack or have low levels of the antigen were employed. Thus, these studies, using iodination as a convenient method for the measurement of phagocytosis, demonstrated two effects of antibodies directed against PMN cell surface components: inhibition of phagocytosis by reaction with the C3bi receptor, and stimulation of phagocytosis by reverse opsonization.

Animals↗

Characterization of patients with an increased susceptibility to bacterial infections and a genetic deficiency of leukocyte membrane complement receptor type 3 and the related membrane antigen LFA-1.

Three children from two unrelated families had a history of recurrent bacterial infections, and their neutrophils were shown to have deficient phagocytic and respiratory responses and possible deficiencies in chemotaxis or adherence. Their neutrophils were strikingly deficient in the ability to ingest or give a respiratory burst in response to unopsonized bakers' yeast or zymosan (Z). Tests for neutrophil and monocyte CR1 (C3b/iC3b receptor) and CR3 (iC3b receptor) demonstrated rosettes with both EC3b and EC3bi. However, EC3bi were bound only to CR1, and not to CR3, because EC3bi rosettes were inhibited completely by anti-CR1. Neutrophils, monocytes, and natural killer (NK) cells also did not fluorescence stain with monoclonal antibodies specific for the alpha-chain of CR3 (anti-Mac-1, anti-Mol, OKM1, and MN-41). Quantitation of C receptors with 125I monoclonal anti-CR1 and anti-CR3 indicated that neutrophils from each patient expressed normal amounts of CR1 per cell but less than 10% of the normal amount of CR3. Examination of neutrophils by sodium dodecyl sulfate-polyacrylamide gel electrophoresis demonstrated that a normal glycoprotein of approximately 165,000 daltons was missing. Immunoblotting of these gels indicated that the missing band was the alpha-chain of CR3. Subsequent analysis of all three patients' cells also demonstrated a deficiency of LFA-1 alpha-chain and the common beta-chain that is shared by the CR3/LFA-1/p150,95 membrane antigen family. The deficiency of LFA-1 probably explained the absent NK cell function, as normal NK cell activity is inhibited by anti-LFA-1 but not by anti-CR3. The reduced phagocytic and respiratory responses to Z were probably due to CR3 deficiency, because treatment of normal neutrophils with anti-CR3, but not anti-FLA-1, inhibits responses to Z by 80% to 90%. Ingestion of Staphylococcus epidermidis by normal neutrophils was shown to be partially inhibited by monoclonal antibodies to the alpha-chain of either CR3 or LFA-1, and monoclonal antibody to the common beta-chain inhibited ingestion by 75%. Thus, both CR3 and LFA-1 may have previously unrecognized functions as phagocyte receptors for bacteria. The absence of this type of nonimmune recognition of bacteria by these children's neutrophils may be one of the reasons for their increased susceptibility to bacterial infections.

Antigens, Surface↗

Biosynthesis and assembly of the alpha and beta subunits of Mac-1, a macrophage glycoprotein associated with complement receptor function.

Mac-1 is a macrophage surface antigen containing noncovalently associated alpha and beta subunits of Mr = 170,000 and 95,000, respectively (Kürzinger, K., and Springer, T.A. (1982) J. Biol. Chem. 257, 12412-12418). To determine whether the subunits are derived from a common or separate precursor, the biosynthesis of Mac-1 was studied. [35S]Methionine pulse-chase-labeled material was immunoprecipitated with either a monoclonal antibody recognizing an alpha chain determinant present in the associated alpha 1 beta 1 complex or a polyclonal antiserum recognizing the alpha 1 beta 1 complex as well as the free beta subunit. In peritoneal exudate macrophages, the alpha subunit was derived from a precursor of Mr = 161,000 which was converted to the mature Mr = 170,000 chain with a t1/2 of 30 to 45 min. The beta subunit was derived from a Mr = 87,000 precursor which became associated with the alpha subunit and was converted to Mr = 95,000 with a t1/2 of 2 h. Labeled beta chain took longer than alpha to become associated with the alpha 1 beta 1 complex in a number of different types of peritoneal macrophage populations, correlating with synthesis of an excess of beta. In the P388D1 macrophage-like tumor line, alpha and beta were processed with t1/2s of about 2 and 1 h. Both alpha and beta precursors were present in the complex, suggesting that complex formation preceded processing.

Animals↗

The baboon erythrocyte complement receptor is a glycophosphatidylinositol-linked protein encoded by a homologue of the human CR1-like genetic element.

The human erythrocyte CA receptor (E-CR) is the type 1 complement receptor (CR1), the most common form of which is a 220,000 Mr integral membrane glycoprotein composed of 30 short consensus repeats (SCRs). The E-CR of many nonhuman primates is a smaller receptor of unknown genetic origin. Recently, we identified a chimp cDNA, termed CR1b, which represented transcription of a homologue of the human genetic element, CR1-like. The purpose of this study was to identify CR1b in the baboon and, if present, determine whether it encodes the 65,000 Mr baboon E-CR. Baboon bone marrow cDNA was amplified by PCR using primers specific for the signal peptide-encoding region of human CR1 and the 3' region of chimp CR1b. This amplification yielded a CR1b sequence predicted to encode seven SCRs followed by a hydrophobic region, with an N terminus homologous to the N terminus of baboon E-CR. Expression of baboon CR1b yielded a membrane protein that reacted with an anti-CR1 mAb, was identical in size to baboon E-CR, and, like baboon E-CR, could bind baboon C3 linked to activated thiol-Sepharose (C3i-ATS), but not human C3i-ATS. Phosphatidylinositol-specific phospholipase C (PIPLC) released CR1b from Chinese hamster ovary cells and E-CR from baboon erythrocytes, demonstrating that both of these proteins are glycophosphatidylinositol linked to the membrane. Thus, the data indicate that baboon CR1b, a homologue of the human CR1-like genetic element, encodes a glycophosphatidylinositol-linked protein that is the baboon E-CR.

Amino Acid Sequence↗

An intronic silencer regulates B lymphocyte cell- and stage-specific expression of the human complement receptor type 2 (CR2, CD21) gene.

Human CR2 (CD21) is a B lymphocyte protein whose surface expression is restricted primarily to the mature cell stage during development. To study the transcriptional mechanisms that govern cell- and stage-restricted CR2 expression, we first performed transient transfection analysis using constructs extending from -5 kb to +75 bp (-5 kb/+75) in the CR2 promoter. The promoter was found to be broadly active, with no evidence of cell- or stage-specific reporter gene expression. However, the addition of a 2.5-kb intronic gene segment (containing a DNase I hypersensitive site) to the (-5-kb/+75) construct resulted in appropriate reporter gene expression, defined as the silencing of the (-5-kb/+75) promoter activity only in non-CR2-expressing cells. Interestingly, appropriate reporter gene expression required stable transfection of the constructs in cell lines, suggesting nuclear matrix or chromatin interactions may be important for appropriate CR2 gene expression. Importantly, transgenic mice also required the intronic silencer to generate lymphoid tissue-specific reporter gene expression. Some transgenic founder lines did not demonstrate reporter gene expression, however, indicating that additional transcriptional regulatory elements are present in other regions of the CR2 gene. In summary, these data support the hypothesis that human CR2 expression is regulated primarily by an intronic silencer with lineage- and B cell stage-specific activity.

Animals↗

Surface markers of complement receptor lymphocytes.

Normal blood lymphocytes bearing complement receptors (CRL) were divided into two populations, one expressing both CR1 (C4b-C3b receptor) and CR2 (C3d receptor) and a second expressing only CR1. Nearly all of the population that expressed both CR1 and CR2 also bore membrane surface immunoglobulins (Ig) and Ia antigens. The majority of cells that had only CR1 lacked detectable surface Ig. These Ig- CR1+ CR2- cells could be distinguished from the majority of monocytes and immature granulocytes, in that the latter ingested latex particles and expressed CR2 as well as CR1. The Ig- CR1+ cells were further subdivided into an Ia-bearing subpopulation and another that lacked Ia. Among the Ig- Ia- CR1+ cells, one third formed spontaneous rosettes with sheep erythrocytes while all of the remaining CRL were erythrocyte-rosette negative. Essentially all CRL in normal blood had IgG Fc receptors, but a qualitative heterogeneity in the Fc receptors of Ia+ CRL vs. Ia- CRL was observed in their binding of different immune complex systems.

Antigens, Surface↗

Role of complement receptors in opsonophagocytosis of group B streptococci by adult and neonatal neutrophils.

The role of complement receptors in bactericidal activity for types III and Ia group B streptococci (GBS) by adult or neonatal polymorphonuclear leukocytes (PMNL) was explored using polyclonal and monoclonal antibodies to complement receptors one (CR1) and three (CR3). In an opsonophagocytic assay, selective blockade of the CR3 sugar or lectin-like binding site on adult or neonatal PMNL effected a significant reduction in killing of both GBS serotypes that was more pronounced for type III. In contrast, blockade of the iC3b binding site effected greater inhibition of bactericidal activity for type Ia than for type III GBS. When both the CR3 sugar or lectin-like binding site and CR1 were blocked, inhibition was enhanced for type Ia GBS by adult PMNL and for both serotypes by neonatal PMNL. These results demonstrate a role for both CR1 and CR3 in the opsonophagocytosis of GBS. Possibly, differences in CR3 epitope utilization contribute to the differential virulence among GBS serotypes in neonates.

Adult↗

Calcium requirements for increased complement receptor expression during neutrophil activation.

It has recently been shown that human neutrophils rapidly increase surface expression of membrane receptors for C3b (CR1) and C3bi (CR3) in response to chemoattractants and other stimuli. In the present studies, we used monoclonal antibodies and flow cytometry to assess the role of Ca2+ in this process. Stimulation with ionophore A23187 in the presence of 1.2 mM Ca2+ increased CR1 330% and CR3 650% compared with unstimulated cells at 37 degrees C. Because this indicated that increasing the cytosolic free Ca2+ caused increased receptor expression, we examined the role of Ca2+ in the response to other stimuli as well. Adding 1.2 mM Ca2+ or 5 mM EDTA to the media in which the polymorphonuclear leukocytes were suspended had no effect on the CR1 response to f-MLP or LTB4, whereas Ca2+ slightly enhanced and EDTA markedly inhibited the CR3 response to these stimuli. The effects of Mg2+-EGTA and EDTA were identical. TMB-8 (200 microM), which inhibits the release of Ca2+ from intracellular stores, completely blocked the increased expression of both receptors induced by fMLP or LTB4. Increased expression of both receptors was also prevented by the calmodulin antagonists chlorpromazine (50 microM) and trifluoperazine (10 microM), but not by chlorpromazine sulfoxide. Phorbol myristate acetate (0.1 ng/ml) increased CR1 230% and CR3 265%. Again Ca2+ and EDTA did not alter the CR1 response, whereas Ca2+ increased CR3 to 287% and EDTA reduced CR3 to 187% of control. TMB-8 (250 microM) completely blocked both CR1 and CR3 responses to this stimulus as well. Thus, release of intracellular Ca2+ is necessary and sufficient for increased CR1 expression in response to diverse stimuli, but maximal increases in CR3 expression require an additional influx of extracellular Ca2+. These results indicate that the mechanisms by which the surface expression of the two different complement receptors increase are different in their requirements for extracellular Ca2+. In comparison with the work of others, we suggest that the processes of increased complement receptor expression and secretion of granular enzymes may also differ.

Calcimycin↗

Expression of complement receptor type 1 (CR1) on erythrocytes of paracoccidiodomycosis patients.

Complement receptor type 1 (CR1) is a membrane glycoprotein that acts as a receptor for the C3b, iC3b and C4b fragments of complement. In primates, one function of erythrocytes is to promote safe clearance of immunocomplexes (IC) from the circulation through CR1. Theoretically, in diseases characterized by high levels of circulating IC, an erythrocyte CR1 (CR1/E) deficiency may favor IC deposition in tissues or facilitate inappropriate activation of leukocytes in the circulation. Depression of the cell immune response occurs in paracoccidioidomycosis (PCM), especially in the more severe cases, and is frequently associated with high serum IC levels. In the present study we quantified the number of CR1/E in patients with the acute and chronic forms of PCM before and after treatment and correlated it with serum IC levels and CD4+ and CD8+ T cell concentration in the peripheral blood of these patients. Patients with PCM, particularly those with active disease and who had received treatment for shorter periods of time, had low numbers of CR1/E. In addition, an increase in serum IC concentration and a reduction in the CD4+/CD8+ T cell ratio were observed. After treatment there was a significant increase in mean CR1/E number and a reduction in serum IC levels. In patients with the chronic form of the disease the CD4+/CD8+ T cell ratio tended to increase after treatment and was associated with increased CR1/E levels. These results suggest that the reduction in CR1/E observed in patients is a phenomenon acquired with the disease and that CR1 could play a role in the pathogenesis of PCM.

Antigen-Antibody Complex↗

C3bi-binding protein on Candida albicans: temperature-dependent expression and relationship to human complement receptor type 3.

We investigated in detail the previously described capacity of pseudohyphae of Candida albicans to bind C3-coated particles. We show that the expression of the C3bi receptor of C. albicans was dependent upon the growth temperature of the fungi. C. albicans grown at 30 degrees C bound strongly to EAC1423bi, whereas those cells grown at 38.5 degrees C were completely devoid of this capacity. The molecule responsible for the attachment of EAC1423bi was heat labile and trypsin sensitive. Several, but not all, monoclonal antibodies to the alpha-chain of human complement receptor type 3 (CR3) stained C. albicans, and this reactivity was expressed in parallel with the capacity of C. albicans to bind EAC1423bi, i.e., both were dependent on the growth temperature of the fungi and were trypsin sensitive. In contrast to CR3, the binding of EAC1423bi to C. albicans did not require the presence of divalent cations. Rabbit immunoglobulin G antibodies directed against C. albicans inhibited the binding of EAC1423bi to C. albicans but not to human CR3. These inhibiting IgG antibodies recognized antigens expressed on the surface of pseudohyphae but not those of yeast cells. OKM-1, a monoclonal antibody to human CR3 inhibited the attachment of EAC1423bi to CR3 and also to C. albicans. OKM-1 precipitated a 130-kilodalton band from solubilized 125I-labeled C. albicans. We conclude that the complement receptors on C. albicans and human CR3 were antigenically related but not identical and that they differed in their functional characteristics.

Animals↗

The interaction of soluble human complement receptor type 1 (sCR1, BRL55730) with human complement component C4.

Human CR1 is a membrane-bound protein which plays an important role in the control of the human complement system. In addition to its involvement in the processing and clearance of immune complexes with C3b or C4b on their surface, CR1 acts as a cofactor for the proteolysis of C3b and C4b by Factor I. sCR1 is a recombinant, soluble form of CR1 which retains the cofactor activities of CR1, and is of potential therapeutic value for the suppression of complement-mediated tissue damage in vivo. An assay has been established using microtitre plates to explore the binding of sCR1 to the two isotypes of C4, C4A and C4B, and to C4 fragments. Specific binding of 125I-sCR1 to C4b and ammonia-treated C4 has been demonstrated. The binding of 125I-sCR1 to ammonia-treated C4 is dependent on pH and ionic strength, decreasing with an increase in pH and with an increase in ionic strength. At physiological ionic strength, up to twice as much 125I-sCR1 bound to ammonia-treated C4A as bound to ammonia-treated C4B. This preference of sCR1 for binding to the C4A isotype has implications for the clinical association of immune complex disease with C4A null alleles.

Ammonia↗

Expression of complement receptors 1 and 2 on follicular dendritic cells is necessary for the generation of a strong antigen-specific IgG response.

Two mechanisms could account for the impaired humoral immune response found in Cr2-/- mice. The absence of complement receptors 1 and 2 (CR1, CR2) on B cells could affect their activation. Alternatively, impaired Ag trapping by follicular dendritic cells (FDC) could affect B cell maturation into Ig-secreting or memory B cells. To compare the roles of CR1 and CR2 on B cells vs FDC in this abnormal response, bone marrow (BM) chimeric mice were generated and immunized with specific T-dependent Ags. The primary and secondary Ab response was measured. Cr2+/+ animals reconstituted with a Cr2-/- BM generated a diminished but detectable humoral immune response compared with controls. When injected with preformed immune complexes (IC), these mice maintained follicular IC localization. Cr2-/- animals reconstituted with a Cr2+/+ BM had an initial rise in the Ab titer, but were unable to maintain it as shown by a pronounced decrease in the IgG titer. This defect persisted during the secondary immune response. Follicular IC trapping was also impaired. Despite the abnormal Ab response, germinal center formation was retained in all of the chimeric animals. These experiments are the first to demonstrate an absolute requirement for CR1 and CR2 expression on FDC in the generation of a normal humoral immune response.

Animals↗